id	sid	tid	token	lemma	pos
brj-24331	1	1	peer	peer	NOUN
brj-24331	1	2	-	-	PUNCT
brj-24331	1	3	review	review	NOUN
brj-24331	1	4	article	article	NOUN
brj-24331	1	5	peer	peer	NOUN
brj-24331	1	6	-	-	PUNCT
brj-24331	1	7	reviewed	review	VERB
brj-24331	1	8	article	article	NOUN
brj-24331	1	9	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	1	10	sangaré	sangaré	PROPN
brj-24331	1	11	et	et	PROPN
brj-24331	1	12	al	al	PROPN
brj-24331	1	13	.	.	PROPN
brj-24331	2	1	(	(	PUNCT
brj-24331	2	2	2025	2025	NUM
brj-24331	2	3	)	)	PUNCT
brj-24331	2	4	.	.	PUNCT
brj-24331	3	1	“	"	PUNCT
brj-24331	3	2	pyrogasification	pyrogasification	NOUN
brj-24331	3	3	of	of	ADP
brj-24331	3	4	biomass	biomass	NOUN
brj-24331	3	5	,	,	PUNCT
brj-24331	3	6	”	"	PUNCT
brj-24331	3	7	bioresources	bioresource	NOUN
brj-24331	3	8	20(2	20(2	NUM
brj-24331	3	9	)	)	PUNCT
brj-24331	3	10	,	,	PUNCT
brj-24331	3	11	2844	2844	NUM
brj-24331	3	12	-	-	SYM
brj-24331	3	13	2870	2870	NUM
brj-24331	3	14	.	.	PUNCT
brj-24331	3	15	2843	2843	NUM
brj-24331	3	16	comparative	comparative	ADJ
brj-24331	3	17	analysis	analysis	NOUN
brj-24331	3	18	of	of	ADP
brj-24331	3	19	cfd	cfd	NOUN
brj-24331	3	20	modeling	modeling	NOUN
brj-24331	3	21	and	and	CCONJ
brj-24331	3	22	process	process	NOUN
brj-24331	3	23	simulation	simulation	NOUN
brj-24331	3	24	for	for	ADP
brj-24331	3	25	pyro	pyro	NOUN
brj-24331	3	26	-	-	PUNCT
brj-24331	3	27	gasification	gasification	NOUN
brj-24331	3	28	of	of	ADP
brj-24331	3	29	biomass	biomass	NOUN
brj-24331	3	30	diakaridia	diakaridia	NOUN
brj-24331	3	31	sangaré	sangaré	NOUN
brj-24331	3	32	,	,	PUNCT
brj-24331	3	33	a	a	DET
brj-24331	3	34	,	,	PUNCT
brj-24331	3	35	b	b	NOUN
brj-24331	3	36	,	,	PUNCT
brj-24331	3	37	c	c	NOUN
brj-24331	3	38	,	,	PUNCT
brj-24331	3	39	*	*	PROPN
brj-24331	3	40	verónica	verónica	PROPN
brj-24331	3	41	belandria	belandria	PROPN
brj-24331	3	42	,	,	PUNCT
brj-24331	3	43	c	c	X
brj-24331	3	44	,	,	PUNCT
brj-24331	3	45	d	d	PROPN
brj-24331	3	46	stéphane	stéphane	PROPN
brj-24331	3	47	bostyn	bostyn	PROPN
brj-24331	3	48	,	,	PUNCT
brj-24331	3	49	c	c	X
brj-24331	3	50	,	,	PUNCT
brj-24331	3	51	d	d	PROPN
brj-24331	3	52	and	and	CCONJ
brj-24331	3	53	mario	mario	PROPN
brj-24331	3	54	moscosa	moscosa	PROPN
brj-24331	3	55	-	-	PUNCT
brj-24331	3	56	santillan	santillan	PROPN
brj-24331	3	57	b	b	PROPN
brj-24331	3	58	,	,	PUNCT
brj-24331	3	59	*	*	PUNCT
brj-24331	3	60	*	*	PUNCT
brj-24331	3	61	corresponding	correspond	VERB
brj-24331	3	62	authors	author	NOUN
brj-24331	3	63	:	:	PUNCT
brj-24331	3	64	diakaridia.sangare@cirad.fr	diakaridia.sangare@cirad.fr	PROPN
brj-24331	3	65	,	,	PUNCT
brj-24331	3	66	mario.moscosa@uaslp.mx	mario.moscosa@uaslp.mx	ADJ
brj-24331	3	67	doi	doi	NOUN
brj-24331	3	68	:	:	PUNCT
brj-24331	3	69	10.15376	10.15376	NUM
brj-24331	3	70	/	/	SYM
brj-24331	3	71	biores.20.2.2844	biores.20.2.2844	PROPN
brj-24331	3	72	-	-	ADJ
brj-24331	3	73	2870	2870	NUM
brj-24331	3	74	graphical	graphical	ADJ
brj-24331	3	75	abstract	abstract	ADJ
brj-24331	3	76	https://orcid.org/0000-0002-6643-5512	https://orcid.org/0000-0002-6643-5512	NOUN
brj-24331	3	77	https://orcid.org/0000-0002-1354-2963	https://orcid.org/0000-0002-1354-2963	ADJ
brj-24331	3	78	peer	peer	NOUN
brj-24331	3	79	-	-	PUNCT
brj-24331	3	80	reviewed	review	VERB
brj-24331	3	81	article	article	NOUN
brj-24331	3	82	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	3	83	sangaré	sangaré	PROPN
brj-24331	3	84	et	et	PROPN
brj-24331	3	85	al	al	PROPN
brj-24331	3	86	.	.	PROPN
brj-24331	4	1	(	(	PUNCT
brj-24331	4	2	2025	2025	NUM
brj-24331	4	3	)	)	PUNCT
brj-24331	4	4	.	.	PUNCT
brj-24331	5	1	“	"	PUNCT
brj-24331	5	2	pyrogasification	pyrogasification	NOUN
brj-24331	5	3	of	of	ADP
brj-24331	5	4	biomass	biomass	NOUN
brj-24331	5	5	,	,	PUNCT
brj-24331	5	6	”	"	PUNCT
brj-24331	5	7	bioresources	bioresource	NOUN
brj-24331	5	8	20(2	20(2	NUM
brj-24331	5	9	)	)	PUNCT
brj-24331	5	10	,	,	PUNCT
brj-24331	5	11	2844	2844	NUM
brj-24331	5	12	-	-	SYM
brj-24331	5	13	2870	2870	NUM
brj-24331	5	14	.	.	PUNCT
brj-24331	5	15	2844	2844	NUM
brj-24331	5	16	comparative	comparative	ADJ
brj-24331	5	17	analysis	analysis	NOUN
brj-24331	5	18	of	of	ADP
brj-24331	5	19	cfd	cfd	NOUN
brj-24331	5	20	modeling	modeling	NOUN
brj-24331	5	21	and	and	CCONJ
brj-24331	5	22	process	process	NOUN
brj-24331	5	23	simulation	simulation	NOUN
brj-24331	5	24	for	for	ADP
brj-24331	5	25	pyro	pyro	NOUN
brj-24331	5	26	-	-	PUNCT
brj-24331	5	27	gasification	gasification	NOUN
brj-24331	5	28	of	of	ADP
brj-24331	5	29	biomass	biomass	NOUN
brj-24331	5	30	diakaridia	diakaridia	NOUN
brj-24331	5	31	sangaré	sangaré	NOUN
brj-24331	5	32	,	,	PUNCT
brj-24331	5	33	a	a	DET
brj-24331	5	34	,	,	PUNCT
brj-24331	5	35	b	b	NOUN
brj-24331	5	36	,	,	PUNCT
brj-24331	5	37	c	c	NOUN
brj-24331	5	38	,	,	PUNCT
brj-24331	5	39	*	*	PROPN
brj-24331	5	40	verónica	verónica	PROPN
brj-24331	5	41	belandria	belandria	PROPN
brj-24331	5	42	,	,	PUNCT
brj-24331	5	43	c	c	X
brj-24331	5	44	,	,	PUNCT
brj-24331	5	45	d	d	PROPN
brj-24331	5	46	stéphane	stéphane	PROPN
brj-24331	5	47	bostyn	bostyn	PROPN
brj-24331	5	48	,	,	PUNCT
brj-24331	5	49	c	c	X
brj-24331	5	50	,	,	PUNCT
brj-24331	5	51	d	d	PROPN
brj-24331	5	52	and	and	CCONJ
brj-24331	5	53	mario	mario	PROPN
brj-24331	5	54	moscosa	moscosa	PROPN
brj-24331	5	55	-	-	PUNCT
brj-24331	5	56	santillan	santillan	PROPN
brj-24331	5	57	b	b	PROPN
brj-24331	5	58	,	,	PUNCT
brj-24331	5	59	*	*	PUNCT
brj-24331	5	60	a	a	DET
brj-24331	5	61	comparative	comparative	ADJ
brj-24331	5	62	analysis	analysis	NOUN
brj-24331	5	63	of	of	ADP
brj-24331	5	64	computational	computational	ADJ
brj-24331	5	65	fluid	fluid	ADJ
brj-24331	5	66	dynamics	dynamic	NOUN
brj-24331	5	67	(	(	PUNCT
brj-24331	5	68	cfd	cfd	NOUN
brj-24331	5	69	)	)	PUNCT
brj-24331	5	70	modeling	modeling	NOUN
brj-24331	5	71	and	and	CCONJ
brj-24331	5	72	process	process	NOUN
brj-24331	5	73	simulation	simulation	NOUN
brj-24331	5	74	(	(	PUNCT
brj-24331	5	75	sim	sim	NOUN
brj-24331	5	76	)	)	PUNCT
brj-24331	5	77	was	be	AUX
brj-24331	5	78	carried	carry	VERB
brj-24331	5	79	out	out	ADP
brj-24331	5	80	to	to	PART
brj-24331	5	81	evaluate	evaluate	VERB
brj-24331	5	82	biomass	biomass	NOUN
brj-24331	5	83	pyrogasification	pyrogasification	NOUN
brj-24331	5	84	,	,	PUNCT
brj-24331	5	85	using	use	VERB
brj-24331	5	86	experimental	experimental	ADJ
brj-24331	5	87	data	datum	NOUN
brj-24331	5	88	from	from	ADP
brj-24331	5	89	agave	agave	NOUN
brj-24331	5	90	bagasse	bagasse	NOUN
brj-24331	5	91	(	(	PUNCT
brj-24331	5	92	ab	ab	NOUN
brj-24331	5	93	)	)	PUNCT
brj-24331	5	94	as	as	ADP
brj-24331	5	95	a	a	DET
brj-24331	5	96	case	case	NOUN
brj-24331	5	97	study	study	NOUN
brj-24331	5	98	.	.	PUNCT
brj-24331	6	1	experimental	experimental	ADJ
brj-24331	6	2	data	datum	NOUN
brj-24331	6	3	were	be	AUX
brj-24331	6	4	obtained	obtain	VERB
brj-24331	6	5	via	via	ADP
brj-24331	6	6	thermogravimetric	thermogravimetric	ADJ
brj-24331	6	7	analysis	analysis	NOUN
brj-24331	6	8	(	(	PUNCT
brj-24331	6	9	tga	tga	NOUN
brj-24331	6	10	)	)	PUNCT
brj-24331	6	11	under	under	ADP
brj-24331	6	12	varying	vary	VERB
brj-24331	6	13	conditions	condition	NOUN
brj-24331	6	14	,	,	PUNCT
brj-24331	6	15	including	include	VERB
brj-24331	6	16	non	non	ADJ
brj-24331	6	17	-	-	ADJ
brj-24331	6	18	isothermal	isothermal	ADJ
brj-24331	6	19	(	(	PUNCT
brj-24331	6	20	700	700	NUM
brj-24331	6	21	to	to	PART
brj-24331	6	22	1000	1000	NUM
brj-24331	6	23	°	°	NOUN
brj-24331	6	24	c	c	NOUN
brj-24331	6	25	)	)	PUNCT
brj-24331	6	26	and	and	CCONJ
brj-24331	6	27	isothermal	isothermal	ADJ
brj-24331	6	28	(	(	PUNCT
brj-24331	6	29	900	900	NUM
brj-24331	6	30	°	°	NOUN
brj-24331	6	31	c	c	NOUN
brj-24331	6	32	and	and	CCONJ
brj-24331	6	33	950	950	NUM
brj-24331	6	34	°	°	NOUN
brj-24331	6	35	c	c	NOUN
brj-24331	6	36	)	)	PUNCT
brj-24331	6	37	gasification	gasification	NOUN
brj-24331	6	38	at	at	ADP
brj-24331	6	39	different	different	ADJ
brj-24331	6	40	air	air	NOUN
brj-24331	6	41	-	-	PUNCT
brj-24331	6	42	to	to	ADP
brj-24331	6	43	-	-	PUNCT
brj-24331	6	44	biomass	biomass	NOUN
brj-24331	6	45	ratios	ratio	NOUN
brj-24331	6	46	(	(	PUNCT
brj-24331	6	47	abr	abr	PROPN
brj-24331	6	48	)	)	PUNCT
brj-24331	6	49	.	.	PUNCT
brj-24331	7	1	cfd	cfd	NOUN
brj-24331	7	2	modeling	modeling	NOUN
brj-24331	7	3	in	in	ADP
brj-24331	7	4	comsol	comsol	NOUN
brj-24331	7	5	multiphysics	multiphysic	NOUN
brj-24331	7	6	focused	focus	VERB
brj-24331	7	7	on	on	ADP
brj-24331	7	8	microscale	microscale	ADJ
brj-24331	7	9	mass	mass	NOUN
brj-24331	7	10	and	and	CCONJ
brj-24331	7	11	heat	heat	NOUN
brj-24331	7	12	transfer	transfer	NOUN
brj-24331	7	13	phenomena	phenomenon	NOUN
brj-24331	7	14	,	,	PUNCT
brj-24331	7	15	while	while	SCONJ
brj-24331	7	16	aspen	aspen	ADJ
brj-24331	7	17	plus	plus	CCONJ
brj-24331	7	18	simulations	simulation	NOUN
brj-24331	7	19	provided	provide	VERB
brj-24331	7	20	macro	macro	ADJ
brj-24331	7	21	-	-	NOUN
brj-24331	7	22	scale	scale	NOUN
brj-24331	7	23	process	process	NOUN
brj-24331	7	24	insights	insight	NOUN
brj-24331	7	25	.	.	PUNCT
brj-24331	8	1	results	result	NOUN
brj-24331	8	2	showed	show	VERB
brj-24331	8	3	that	that	SCONJ
brj-24331	8	4	sim	sim	NOUN
brj-24331	8	5	closely	closely	ADV
brj-24331	8	6	matched	match	VERB
brj-24331	8	7	experimental	experimental	ADJ
brj-24331	8	8	product	product	NOUN
brj-24331	8	9	yields	yield	NOUN
brj-24331	8	10	under	under	ADP
brj-24331	8	11	isothermal	isothermal	ADJ
brj-24331	8	12	conditions	condition	NOUN
brj-24331	8	13	(	(	PUNCT
brj-24331	8	14	maximum	maximum	ADJ
brj-24331	8	15	deviation	deviation	NOUN
brj-24331	8	16	:	:	PUNCT
brj-24331	8	17	4.23	4.23	NUM
brj-24331	8	18	wt.%	wt.%	ADJ
brj-24331	8	19	)	)	PUNCT
brj-24331	8	20	,	,	PUNCT
brj-24331	8	21	while	while	SCONJ
brj-24331	8	22	cfd	cfd	NOUN
brj-24331	8	23	excelled	excel	VERB
brj-24331	8	24	in	in	ADP
brj-24331	8	25	predicting	predict	VERB
brj-24331	8	26	gas	gas	NOUN
brj-24331	8	27	composition	composition	NOUN
brj-24331	8	28	under	under	ADP
brj-24331	8	29	non	non	ADJ
brj-24331	8	30	-	-	ADJ
brj-24331	8	31	isothermal	isothermal	ADJ
brj-24331	8	32	conditions	condition	NOUN
brj-24331	8	33	(	(	PUNCT
brj-24331	8	34	e.g.	e.g.	ADV
brj-24331	8	35	,	,	PUNCT
brj-24331	8	36	h₂	h₂	PROPN
brj-24331	8	37	deviation	deviation	NOUN
brj-24331	8	38	:	:	PUNCT
brj-24331	8	39	3.29	3.29	NUM
brj-24331	8	40	vol.%	vol.%	NOUN
brj-24331	8	41	)	)	PUNCT
brj-24331	8	42	.	.	PUNCT
brj-24331	9	1	sensitivity	sensitivity	NOUN
brj-24331	9	2	analysis	analysis	NOUN
brj-24331	9	3	showed	show	VERB
brj-24331	9	4	how	how	SCONJ
brj-24331	9	5	temperature	temperature	NOUN
brj-24331	9	6	and	and	CCONJ
brj-24331	9	7	abr	abr	NOUN
brj-24331	9	8	are	be	AUX
brj-24331	9	9	critical	critical	ADJ
brj-24331	9	10	factors	factor	NOUN
brj-24331	9	11	that	that	PRON
brj-24331	9	12	influence	influence	VERB
brj-24331	9	13	the	the	DET
brj-24331	9	14	product	product	NOUN
brj-24331	9	15	yield	yield	NOUN
brj-24331	9	16	and	and	CCONJ
brj-24331	9	17	gas	gas	NOUN
brj-24331	9	18	composition	composition	NOUN
brj-24331	9	19	,	,	PUNCT
brj-24331	9	20	highlighting	highlight	VERB
brj-24331	9	21	the	the	DET
brj-24331	9	22	strengths	strength	NOUN
brj-24331	9	23	of	of	ADP
brj-24331	9	24	each	each	DET
brj-24331	9	25	modeling	modeling	NOUN
brj-24331	9	26	approach	approach	NOUN
brj-24331	9	27	.	.	PUNCT
brj-24331	10	1	these	these	DET
brj-24331	10	2	findings	finding	NOUN
brj-24331	10	3	underline	underline	VERB
brj-24331	10	4	the	the	DET
brj-24331	10	5	potential	potential	NOUN
brj-24331	10	6	of	of	ADP
brj-24331	10	7	integrating	integrate	VERB
brj-24331	10	8	cfd	cfd	NOUN
brj-24331	10	9	and	and	CCONJ
brj-24331	10	10	sim	sim	ADJ
brj-24331	10	11	approaches	approach	NOUN
brj-24331	10	12	for	for	ADP
brj-24331	10	13	improving	improve	VERB
brj-24331	10	14	the	the	DET
brj-24331	10	15	accuracy	accuracy	NOUN
brj-24331	10	16	of	of	ADP
brj-24331	10	17	biomass	biomass	NOUN
brj-24331	10	18	conversion	conversion	NOUN
brj-24331	10	19	modeling	modeling	NOUN
brj-24331	10	20	,	,	PUNCT
brj-24331	10	21	paving	pave	VERB
brj-24331	10	22	the	the	DET
brj-24331	10	23	way	way	NOUN
brj-24331	10	24	for	for	ADP
brj-24331	10	25	optimized	optimize	VERB
brj-24331	10	26	process	process	NOUN
brj-24331	10	27	designs	design	NOUN
brj-24331	10	28	and	and	CCONJ
brj-24331	10	29	scalable	scalable	ADJ
brj-24331	10	30	industrial	industrial	ADJ
brj-24331	10	31	applications	application	NOUN
brj-24331	10	32	.	.	PUNCT
brj-24331	11	1	doi	doi	NOUN
brj-24331	11	2	:	:	PUNCT
brj-24331	11	3	10.15376	10.15376	NUM
brj-24331	11	4	/	/	SYM
brj-24331	11	5	biores.20.2.2844	biores.20.2.2844	PROPN
brj-24331	11	6	-	-	PUNCT
brj-24331	11	7	2870	2870	NUM
brj-24331	11	8	keywords	keyword	NOUN
brj-24331	11	9	:	:	PUNCT
brj-24331	11	10	biomass	biomass	NOUN
brj-24331	11	11	;	;	PUNCT
brj-24331	11	12	pyrolysis	pyrolysis	NOUN
brj-24331	11	13	;	;	PUNCT
brj-24331	11	14	gasification	gasification	NOUN
brj-24331	11	15	;	;	PUNCT
brj-24331	11	16	cfd	cfd	NOUN
brj-24331	11	17	modeling	modeling	NOUN
brj-24331	11	18	;	;	PUNCT
brj-24331	11	19	process	process	NOUN
brj-24331	11	20	simulation	simulation	NOUN
brj-24331	11	21	;	;	PUNCT
brj-24331	11	22	sensitivity	sensitivity	NOUN
brj-24331	11	23	analysis	analysis	NOUN
brj-24331	11	24	contact	contact	NOUN
brj-24331	11	25	information	information	NOUN
brj-24331	11	26	:	:	PUNCT
brj-24331	11	27	a	a	DET
brj-24331	11	28	:	:	PUNCT
brj-24331	11	29	cirad	cirad	ADJ
brj-24331	11	30	,	,	PUNCT
brj-24331	11	31	upr	upr	ADJ
brj-24331	11	32	biowooeb	biowooeb	PROPN
brj-24331	11	33	,	,	PUNCT
brj-24331	11	34	73	73	NUM
brj-24331	11	35	rue	rue	PROPN
brj-24331	11	36	jean	jean	PROPN
brj-24331	11	37	-	-	PUNCT
brj-24331	11	38	françois	françois	PROPN
brj-24331	11	39	breton	breton	PROPN
brj-24331	11	40	,	,	PUNCT
brj-24331	11	41	f-34398	f-34398	PROPN
brj-24331	11	42	montpellier	montpellier	NOUN
brj-24331	11	43	,	,	PUNCT
brj-24331	11	44	france	france	PROPN
brj-24331	11	45	;	;	PUNCT
brj-24331	11	46	b	b	X
brj-24331	11	47	:	:	PUNCT
brj-24331	11	48	facultad	facultad	PROPN
brj-24331	11	49	de	de	PROPN
brj-24331	11	50	ciencias	ciencias	PROPN
brj-24331	11	51	químicas	químicas	PROPN
brj-24331	11	52	universidad	universidad	PROPN
brj-24331	11	53	autónoma	autónoma	PROPN
brj-24331	11	54	de	de	PROPN
brj-24331	11	55	san	san	PROPN
brj-24331	11	56	luis	luis	PROPN
brj-24331	11	57	potosí	potosí	PROPN
brj-24331	11	58	av	av	PROPN
brj-24331	11	59	.	.	PUNCT
brj-24331	12	1	dr	dr	PROPN
brj-24331	12	2	.	.	PROPN
brj-24331	12	3	nava	nava	PROPN
brj-24331	12	4	#	#	PROPN
brj-24331	12	5	6	6	NUM
brj-24331	12	6	,	,	PUNCT
brj-24331	12	7	zona	zona	PROPN
brj-24331	12	8	universitaria	universitaria	PROPN
brj-24331	12	9	san	san	PROPN
brj-24331	12	10	luis	luis	PROPN
brj-24331	12	11	potosí	potosí	PROPN
brj-24331	12	12	,	,	PUNCT
brj-24331	12	13	s.l.p	s.l.p	NOUN
brj-24331	12	14	.	.	PUNCT
brj-24331	12	15	,	,	PUNCT
brj-24331	12	16	cp	cp	PROPN
brj-24331	12	17	:	:	PUNCT
brj-24331	12	18	78210	78210	NUM
brj-24331	12	19	,	,	PUNCT
brj-24331	12	20	méxico	méxico	PROPN
brj-24331	12	21	;	;	PUNCT
brj-24331	12	22	c	c	X
brj-24331	12	23	:	:	PUNCT
brj-24331	12	24	institut	institut	PROPN
brj-24331	12	25	de	de	PROPN
brj-24331	12	26	combustion	combustion	PROPN
brj-24331	12	27	,	,	PUNCT
brj-24331	12	28	aérothermique	aérothermique	ADJ
brj-24331	12	29	,	,	PUNCT
brj-24331	12	30	réactivité	réactivité	NOUN
brj-24331	12	31	,	,	PUNCT
brj-24331	12	32	et	et	NOUN
brj-24331	12	33	environnement	environnement	NOUN
brj-24331	12	34	(	(	PUNCT
brj-24331	12	35	icare)-cnrs	icare)-cnrs	NOUN
brj-24331	12	36	upr3021	upr3021	NOUN
brj-24331	12	37	,	,	PUNCT
brj-24331	12	38	1c	1c	NUM
brj-24331	12	39	avenue	avenue	PROPN
brj-24331	12	40	de	de	X
brj-24331	12	41	la	la	X
brj-24331	12	42	recherche	recherche	X
brj-24331	12	43	scientifique	scientifique	PROPN
brj-24331	12	44	45071	45071	NUM
brj-24331	12	45	orléans	orléans	PROPN
brj-24331	12	46	cedex	cedex	PROPN
brj-24331	12	47	2	2	NUM
brj-24331	12	48	,	,	PUNCT
brj-24331	12	49	france	france	PROPN
brj-24331	12	50	;	;	PUNCT
brj-24331	12	51	d	d	X
brj-24331	12	52	:	:	PUNCT
brj-24331	13	1	université	université	PROPN
brj-24331	13	2	d'orléans	d'orléans	PROPN
brj-24331	13	3	,	,	PUNCT
brj-24331	13	4	institut	institut	PROPN
brj-24331	13	5	universitaire	universitaire	PROPN
brj-24331	13	6	de	de	X
brj-24331	13	7	technologie	technologie	PROPN
brj-24331	13	8	,	,	PUNCT
brj-24331	13	9	16	16	NUM
brj-24331	13	10	rue	rue	PROPN
brj-24331	13	11	d'issoudun	d'issoudun	PROPN
brj-24331	13	12	bp16724	bp16724	PROPN
brj-24331	13	13	45067	45067	NUM
brj-24331	13	14	orléans	orléans	PROPN
brj-24331	13	15	cedex	cedex	NOUN
brj-24331	13	16	2	2	NUM
brj-24331	13	17	,	,	PUNCT
brj-24331	13	18	france	france	PROPN
brj-24331	13	19	;	;	PUNCT
brj-24331	13	20	*	*	PUNCT
brj-24331	13	21	corresponding	correspond	VERB
brj-24331	13	22	authors	author	NOUN
brj-24331	13	23	:	:	PUNCT
brj-24331	13	24	diakaridia.sangare@cirad.fr	diakaridia.sangare@cirad.fr	NOUN
brj-24331	13	25	,	,	PUNCT
brj-24331	13	26	mario.moscosa@uaslp.mx	mario.moscosa@uaslp.mx	ADJ
brj-24331	13	27	introduction	introduction	NOUN
brj-24331	13	28	the	the	DET
brj-24331	13	29	rising	rise	VERB
brj-24331	13	30	global	global	ADJ
brj-24331	13	31	energy	energy	NOUN
brj-24331	13	32	demand	demand	NOUN
brj-24331	13	33	and	and	CCONJ
brj-24331	13	34	environmental	environmental	ADJ
brj-24331	13	35	concerns	concern	NOUN
brj-24331	13	36	associated	associate	VERB
brj-24331	13	37	with	with	ADP
brj-24331	13	38	fossil	fossil	NOUN
brj-24331	13	39	fuel	fuel	NOUN
brj-24331	13	40	use	use	NOUN
brj-24331	13	41	have	have	AUX
brj-24331	13	42	intensified	intensify	VERB
brj-24331	13	43	the	the	DET
brj-24331	13	44	search	search	NOUN
brj-24331	13	45	for	for	ADP
brj-24331	13	46	sustainable	sustainable	ADJ
brj-24331	13	47	energy	energy	NOUN
brj-24331	13	48	alternatives	alternative	NOUN
brj-24331	13	49	(	(	PUNCT
brj-24331	13	50	shahbaz	shahbaz	PROPN
brj-24331	13	51	et	et	PROPN
brj-24331	13	52	al	al	PROPN
brj-24331	13	53	.	.	PROPN
brj-24331	13	54	2017	2017	NUM
brj-24331	13	55	;	;	PUNCT
brj-24331	13	56	okoro	okoro	NOUN
brj-24331	13	57	et	et	PROPN
brj-24331	13	58	al	al	PROPN
brj-24331	13	59	.	.	PROPN
brj-24331	13	60	2020	2020	NUM
brj-24331	13	61	;	;	PUNCT
brj-24331	13	62	ajorloo	ajorloo	NOUN
brj-24331	13	63	et	et	PROPN
brj-24331	13	64	al	al	PROPN
brj-24331	13	65	.	.	PROPN
brj-24331	13	66	2022	2022	NUM
brj-24331	13	67	)	)	PUNCT
brj-24331	13	68	.	.	PUNCT
brj-24331	14	1	biomass	biomass	NOUN
brj-24331	14	2	,	,	PUNCT
brj-24331	14	3	as	as	ADP
brj-24331	14	4	a	a	DET
brj-24331	14	5	renewable	renewable	ADJ
brj-24331	14	6	energy	energy	NOUN
brj-24331	14	7	source	source	NOUN
brj-24331	14	8	,	,	PUNCT
brj-24331	14	9	offers	offer	VERB
brj-24331	14	10	a	a	DET
brj-24331	14	11	significant	significant	ADJ
brj-24331	14	12	advantage	advantage	NOUN
brj-24331	14	13	due	due	ADP
brj-24331	14	14	to	to	ADP
brj-24331	14	15	its	its	PRON
brj-24331	14	16	potential	potential	NOUN
brj-24331	14	17	to	to	PART
brj-24331	14	18	reduce	reduce	VERB
brj-24331	14	19	net	net	ADJ
brj-24331	14	20	co₂	co₂	NOUN
brj-24331	14	21	emissions	emission	NOUN
brj-24331	14	22	and	and	CCONJ
brj-24331	14	23	its	its	PRON
brj-24331	14	24	abundance	abundance	NOUN
brj-24331	14	25	across	across	ADP
brj-24331	14	26	diverse	diverse	ADJ
brj-24331	14	27	regions	region	NOUN
brj-24331	14	28	(	(	PUNCT
brj-24331	14	29	ajorloo	ajorloo	NOUN
brj-24331	14	30	et	et	PROPN
brj-24331	14	31	al	al	PROPN
brj-24331	14	32	.	.	PROPN
brj-24331	14	33	2022	2022	NUM
brj-24331	14	34	)	)	PUNCT
brj-24331	14	35	.	.	PUNCT
brj-24331	15	1	however	however	ADV
brj-24331	15	2	,	,	PUNCT
brj-24331	15	3	using	use	VERB
brj-24331	15	4	biomass	biomass	NOUN
brj-24331	15	5	as	as	SCONJ
brj-24331	15	6	an	an	DET
brj-24331	15	7	energy	energy	NOUN
brj-24331	15	8	source	source	NOUN
brj-24331	15	9	requires	require	VERB
brj-24331	15	10	efficient	efficient	ADJ
brj-24331	15	11	conversion	conversion	NOUN
brj-24331	15	12	processes	process	NOUN
brj-24331	15	13	.	.	PUNCT
brj-24331	16	1	in	in	ADP
brj-24331	16	2	this	this	DET
brj-24331	16	3	field	field	NOUN
brj-24331	16	4	,	,	PUNCT
brj-24331	16	5	thermochemical	thermochemical	ADJ
brj-24331	16	6	methods	method	NOUN
brj-24331	16	7	,	,	PUNCT
brj-24331	16	8	such	such	ADJ
brj-24331	16	9	as	as	ADP
brj-24331	16	10	pyrolysis	pyrolysis	NOUN
brj-24331	16	11	,	,	PUNCT
brj-24331	16	12	gasification	gasification	NOUN
brj-24331	16	13	,	,	PUNCT
brj-24331	16	14	and	and	CCONJ
brj-24331	16	15	combustion	combustion	NOUN
brj-24331	16	16	,	,	PUNCT
brj-24331	16	17	are	be	AUX
brj-24331	16	18	the	the	DET
brj-24331	16	19	most	most	ADV
brj-24331	16	20	widely	widely	ADV
brj-24331	16	21	used	use	VERB
brj-24331	16	22	technologies	technology	NOUN
brj-24331	16	23	(	(	PUNCT
brj-24331	16	24	nsaful	nsaful	PROPN
brj-24331	16	25	et	et	PROPN
brj-24331	16	26	al	al	PROPN
brj-24331	16	27	.	.	PROPN
brj-24331	16	28	2013	2013	NUM
brj-24331	16	29	;	;	PUNCT
brj-24331	16	30	liu	liu	PROPN
brj-24331	16	31	et	et	PROPN
brj-24331	16	32	al	al	PROPN
brj-24331	16	33	.	.	PROPN
brj-24331	16	34	2017	2017	NUM
brj-24331	16	35	)	)	PUNCT
brj-24331	16	36	.	.	PUNCT
brj-24331	17	1	among	among	ADP
brj-24331	17	2	thermochemical	thermochemical	ADJ
brj-24331	17	3	conversion	conversion	NOUN
brj-24331	17	4	processes	process	NOUN
brj-24331	17	5	,	,	PUNCT
brj-24331	17	6	pyrolysis	pyrolysis	NOUN
brj-24331	17	7	and	and	CCONJ
brj-24331	17	8	gasification	gasification	NOUN
brj-24331	17	9	are	be	AUX
brj-24331	17	10	efficient	efficient	ADJ
brj-24331	17	11	methods	method	NOUN
brj-24331	17	12	to	to	PART
brj-24331	17	13	convert	convert	VERB
brj-24331	17	14	biomass	biomass	NOUN
brj-24331	17	15	into	into	ADP
brj-24331	17	16	valuable	valuable	ADJ
brj-24331	17	17	products	product	NOUN
brj-24331	17	18	such	such	ADJ
brj-24331	17	19	as	as	ADP
brj-24331	17	20	synthesis	synthesis	NOUN
brj-24331	17	21	gas	gas	NOUN
brj-24331	17	22	,	,	PUNCT
brj-24331	17	23	biochar	biochar	NOUN
brj-24331	17	24	,	,	PUNCT
brj-24331	17	25	and	and	CCONJ
brj-24331	17	26	bio	bio	NOUN
brj-24331	17	27	-	-	NOUN
brj-24331	17	28	oil	oil	NOUN
brj-24331	17	29	.	.	PUNCT
brj-24331	18	1	gasification	gasification	NOUN
brj-24331	18	2	is	be	AUX
brj-24331	18	3	particularly	particularly	ADV
brj-24331	18	4	https://orcid.org/0000-0002-6643-5512	https://orcid.org/0000-0002-6643-5512	ADJ
brj-24331	18	5	https://orcid.org/0000-0002-1354-2963	https://orcid.org/0000-0002-1354-2963	ADJ
brj-24331	18	6	peer	peer	NOUN
brj-24331	18	7	-	-	PUNCT
brj-24331	18	8	reviewed	review	VERB
brj-24331	18	9	article	article	NOUN
brj-24331	18	10	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	18	11	sangaré	sangaré	PROPN
brj-24331	18	12	et	et	PROPN
brj-24331	18	13	al	al	PROPN
brj-24331	18	14	.	.	PROPN
brj-24331	19	1	(	(	PUNCT
brj-24331	19	2	2025	2025	NUM
brj-24331	19	3	)	)	PUNCT
brj-24331	19	4	.	.	PUNCT
brj-24331	20	1	“	"	PUNCT
brj-24331	20	2	pyrogasification	pyrogasification	NOUN
brj-24331	20	3	of	of	ADP
brj-24331	20	4	biomass	biomass	NOUN
brj-24331	20	5	,	,	PUNCT
brj-24331	20	6	”	"	PUNCT
brj-24331	20	7	bioresources	bioresource	NOUN
brj-24331	20	8	20(2	20(2	NUM
brj-24331	20	9	)	)	PUNCT
brj-24331	20	10	,	,	PUNCT
brj-24331	20	11	2844	2844	NUM
brj-24331	20	12	-	-	SYM
brj-24331	20	13	2870	2870	NUM
brj-24331	20	14	.	.	PUNCT
brj-24331	21	1	2845	2845	NUM
brj-24331	21	2	versatile	versatile	ADJ
brj-24331	21	3	,	,	PUNCT
brj-24331	21	4	enabling	enable	VERB
brj-24331	21	5	the	the	DET
brj-24331	21	6	production	production	NOUN
brj-24331	21	7	of	of	ADP
brj-24331	21	8	synthesis	synthesis	NOUN
brj-24331	21	9	gas	gas	NOUN
brj-24331	21	10	(	(	PUNCT
brj-24331	21	11	syngas	syngas	NOUN
brj-24331	21	12	)	)	PUNCT
brj-24331	21	13	as	as	ADP
brj-24331	21	14	a	a	DET
brj-24331	21	15	precursor	precursor	NOUN
brj-24331	21	16	for	for	ADP
brj-24331	21	17	energy	energy	NOUN
brj-24331	21	18	generation	generation	NOUN
brj-24331	21	19	and	and	CCONJ
brj-24331	21	20	chemical	chemical	NOUN
brj-24331	21	21	synthesis	synthesis	NOUN
brj-24331	21	22	(	(	PUNCT
brj-24331	21	23	nsaful	nsaful	PROPN
brj-24331	21	24	et	et	PROPN
brj-24331	21	25	al	al	PROPN
brj-24331	21	26	.	.	PROPN
brj-24331	21	27	2013	2013	NUM
brj-24331	21	28	;	;	PUNCT
brj-24331	21	29	liu	liu	PROPN
brj-24331	21	30	et	et	PROPN
brj-24331	21	31	al	al	PROPN
brj-24331	21	32	.	.	PROPN
brj-24331	21	33	2017	2017	NUM
brj-24331	21	34	)	)	PUNCT
brj-24331	21	35	.	.	PUNCT
brj-24331	22	1	the	the	DET
brj-24331	22	2	syngas	syngas	NOUN
brj-24331	22	3	can	can	AUX
brj-24331	22	4	be	be	AUX
brj-24331	22	5	used	use	VERB
brj-24331	22	6	as	as	ADP
brj-24331	22	7	a	a	DET
brj-24331	22	8	source	source	NOUN
brj-24331	22	9	of	of	ADP
brj-24331	22	10	energy	energy	NOUN
brj-24331	22	11	(	(	PUNCT
brj-24331	22	12	electricity	electricity	NOUN
brj-24331	22	13	,	,	PUNCT
brj-24331	22	14	hydrogen	hydrogen	NOUN
brj-24331	22	15	)	)	PUNCT
brj-24331	22	16	and	and	CCONJ
brj-24331	22	17	in	in	ADP
brj-24331	22	18	the	the	DET
brj-24331	22	19	manufacture	manufacture	NOUN
brj-24331	22	20	of	of	ADP
brj-24331	22	21	high	high	ADV
brj-24331	22	22	-	-	PUNCT
brj-24331	22	23	valueadded	valueadde	VERB
brj-24331	22	24	products	product	NOUN
brj-24331	22	25	in	in	ADP
brj-24331	22	26	the	the	DET
brj-24331	22	27	chemical	chemical	NOUN
brj-24331	22	28	industry	industry	NOUN
brj-24331	22	29	(	(	PUNCT
brj-24331	22	30	basu	basu	PROPN
brj-24331	22	31	2018	2018	NUM
brj-24331	22	32	;	;	PUNCT
brj-24331	22	33	sangaré	sangaré	PROPN
brj-24331	22	34	et	et	PROPN
brj-24331	22	35	al	al	PROPN
brj-24331	22	36	.	.	PROPN
brj-24331	22	37	2022	2022	NUM
brj-24331	22	38	)	)	PUNCT
brj-24331	22	39	.	.	PUNCT
brj-24331	23	1	pyrolysis	pyrolysis	NOUN
brj-24331	23	2	is	be	AUX
brj-24331	23	3	the	the	DET
brj-24331	23	4	initial	initial	ADJ
brj-24331	23	5	stage	stage	NOUN
brj-24331	23	6	of	of	ADP
brj-24331	23	7	gasification	gasification	NOUN
brj-24331	23	8	,	,	PUNCT
brj-24331	23	9	and	and	CCONJ
brj-24331	23	10	it	it	PRON
brj-24331	23	11	plays	play	VERB
brj-24331	23	12	a	a	DET
brj-24331	23	13	critical	critical	ADJ
brj-24331	23	14	role	role	NOUN
brj-24331	23	15	in	in	ADP
brj-24331	23	16	determining	determine	VERB
brj-24331	23	17	product	product	NOUN
brj-24331	23	18	distribution	distribution	NOUN
brj-24331	23	19	,	,	PUNCT
brj-24331	23	20	including	include	VERB
brj-24331	23	21	non	non	ADJ
brj-24331	23	22	-	-	ADJ
brj-24331	23	23	condensable	condensable	ADJ
brj-24331	23	24	gases	gas	NOUN
brj-24331	23	25	(	(	PUNCT
brj-24331	23	26	ncg	ncg	PROPN
brj-24331	23	27	)	)	PUNCT
brj-24331	23	28	,	,	PUNCT
brj-24331	23	29	solid	solid	ADJ
brj-24331	23	30	carbon	carbon	NOUN
brj-24331	23	31	(	(	PUNCT
brj-24331	23	32	biochar	biochar	NOUN
brj-24331	23	33	)	)	PUNCT
brj-24331	23	34	,	,	PUNCT
brj-24331	23	35	and	and	CCONJ
brj-24331	23	36	condensable	condensable	ADJ
brj-24331	23	37	vapor	vapor	NOUN
brj-24331	23	38	(	(	PUNCT
brj-24331	23	39	bio	bio	NOUN
brj-24331	23	40	-	-	NOUN
brj-24331	23	41	oil	oil	NOUN
brj-24331	23	42	)	)	PUNCT
brj-24331	23	43	.	.	PUNCT
brj-24331	24	1	factors	factor	NOUN
brj-24331	24	2	such	such	ADJ
brj-24331	24	3	as	as	ADP
brj-24331	24	4	temperature	temperature	NOUN
brj-24331	24	5	,	,	PUNCT
brj-24331	24	6	heating	heating	NOUN
brj-24331	24	7	rate	rate	NOUN
brj-24331	24	8	,	,	PUNCT
brj-24331	24	9	and	and	CCONJ
brj-24331	24	10	the	the	DET
brj-24331	24	11	air	air	NOUN
brj-24331	24	12	-	-	PUNCT
brj-24331	24	13	tobiomass	tobiomass	NOUN
brj-24331	24	14	ratio	ratio	NOUN
brj-24331	24	15	(	(	PUNCT
brj-24331	24	16	abr	abr	NOUN
brj-24331	24	17	)	)	PUNCT
brj-24331	24	18	strongly	strongly	ADV
brj-24331	24	19	influence	influence	VERB
brj-24331	24	20	the	the	DET
brj-24331	24	21	yield	yield	NOUN
brj-24331	24	22	of	of	ADP
brj-24331	24	23	the	the	DET
brj-24331	24	24	products	product	NOUN
brj-24331	24	25	.	.	PUNCT
brj-24331	25	1	in	in	ADP
brj-24331	25	2	addition	addition	NOUN
brj-24331	25	3	,	,	PUNCT
brj-24331	25	4	bio	bio	NOUN
brj-24331	25	5	-	-	NOUN
brj-24331	25	6	oils	oil	NOUN
brj-24331	25	7	,	,	PUNCT
brj-24331	25	8	including	include	VERB
brj-24331	25	9	tars	tar	NOUN
brj-24331	25	10	,	,	PUNCT
brj-24331	25	11	reach	reach	VERB
brj-24331	25	12	their	their	PRON
brj-24331	25	13	maximum	maximum	ADJ
brj-24331	25	14	yield	yield	NOUN
brj-24331	25	15	between	between	ADP
brj-24331	25	16	400	400	NUM
brj-24331	25	17	and	and	CCONJ
brj-24331	25	18	700	700	NUM
brj-24331	25	19	°	°	NOUN
brj-24331	25	20	c	c	NOUN
brj-24331	25	21	,	,	PUNCT
brj-24331	25	22	before	before	ADP
brj-24331	25	23	undergoing	undergo	VERB
brj-24331	25	24	thermal	thermal	ADJ
brj-24331	25	25	cracking	cracking	NOUN
brj-24331	25	26	into	into	ADP
brj-24331	25	27	lighter	light	ADJ
brj-24331	25	28	gases	gas	NOUN
brj-24331	25	29	at	at	ADP
brj-24331	25	30	temperatures	temperature	NOUN
brj-24331	25	31	above	above	ADP
brj-24331	25	32	700	700	NUM
brj-24331	25	33	°	°	NOUN
brj-24331	25	34	c	c	NOUN
brj-24331	25	35	(	(	PUNCT
brj-24331	25	36	lin	lin	PROPN
brj-24331	25	37	et	et	PROPN
brj-24331	25	38	al	al	PROPN
brj-24331	25	39	.	.	PROPN
brj-24331	25	40	2016	2016	NUM
brj-24331	25	41	;	;	PUNCT
brj-24331	25	42	sangaré	sangaré	PROPN
brj-24331	25	43	et	et	PROPN
brj-24331	25	44	al	al	PROPN
brj-24331	25	45	.	.	PROPN
brj-24331	25	46	2022	2022	NUM
brj-24331	25	47	)	)	PUNCT
brj-24331	25	48	.	.	PUNCT
brj-24331	26	1	although	although	SCONJ
brj-24331	26	2	the	the	DET
brj-24331	26	3	increased	increase	VERB
brj-24331	26	4	temperature	temperature	NOUN
brj-24331	26	5	and	and	CCONJ
brj-24331	26	6	heating	heating	NOUN
brj-24331	26	7	rates	rate	NOUN
brj-24331	26	8	generally	generally	ADV
brj-24331	26	9	favor	favor	VERB
brj-24331	26	10	gas	gas	NOUN
brj-24331	26	11	production	production	NOUN
brj-24331	26	12	,	,	PUNCT
brj-24331	26	13	they	they	PRON
brj-24331	26	14	also	also	ADV
brj-24331	26	15	complicate	complicate	VERB
brj-24331	26	16	process	process	NOUN
brj-24331	26	17	optimization	optimization	NOUN
brj-24331	26	18	by	by	ADP
brj-24331	26	19	favoring	favor	VERB
brj-24331	26	20	tar	tar	NOUN
brj-24331	26	21	formation	formation	NOUN
brj-24331	26	22	,	,	PUNCT
brj-24331	26	23	a	a	DET
brj-24331	26	24	major	major	ADJ
brj-24331	26	25	operational	operational	ADJ
brj-24331	26	26	challenge	challenge	NOUN
brj-24331	26	27	due	due	ADP
brj-24331	26	28	to	to	ADP
brj-24331	26	29	its	its	PRON
brj-24331	26	30	tendency	tendency	NOUN
brj-24331	26	31	to	to	PART
brj-24331	26	32	condense	condense	VERB
brj-24331	26	33	and	and	CCONJ
brj-24331	26	34	obstruct	obstruct	VERB
brj-24331	26	35	pipelines	pipeline	NOUN
brj-24331	26	36	(	(	PUNCT
brj-24331	26	37	devi	devi	PROPN
brj-24331	26	38	et	et	PROPN
brj-24331	26	39	al	al	PROPN
brj-24331	26	40	.	.	PROPN
brj-24331	26	41	2005	2005	NUM
brj-24331	26	42	)	)	PUNCT
brj-24331	26	43	.	.	PUNCT
brj-24331	27	1	in	in	ADP
brj-24331	27	2	addition	addition	NOUN
brj-24331	27	3	,	,	PUNCT
brj-24331	27	4	these	these	DET
brj-24331	27	5	complex	complex	ADJ
brj-24331	27	6	mixtures	mixture	NOUN
brj-24331	27	7	,	,	PUNCT
brj-24331	27	8	which	which	PRON
brj-24331	27	9	include	include	VERB
brj-24331	27	10	polycyclic	polycyclic	ADJ
brj-24331	27	11	aromatic	aromatic	ADJ
brj-24331	27	12	hydrocarbons	hydrocarbon	NOUN
brj-24331	27	13	(	(	PUNCT
brj-24331	27	14	pahs	pahs	PROPN
brj-24331	27	15	)	)	PUNCT
brj-24331	27	16	,	,	PUNCT
brj-24331	27	17	require	require	VERB
brj-24331	27	18	advanced	advanced	ADJ
brj-24331	27	19	mitigation	mitigation	NOUN
brj-24331	27	20	techniques	technique	NOUN
brj-24331	27	21	,	,	PUNCT
brj-24331	27	22	including	include	VERB
brj-24331	27	23	thermal	thermal	ADJ
brj-24331	27	24	and	and	CCONJ
brj-24331	27	25	catalytic	catalytic	ADJ
brj-24331	27	26	cracking	cracking	NOUN
brj-24331	27	27	(	(	PUNCT
brj-24331	27	28	li	li	PROPN
brj-24331	27	29	and	and	CCONJ
brj-24331	27	30	suzuki	suzuki	PROPN
brj-24331	27	31	2009	2009	NUM
brj-24331	27	32	;	;	PUNCT
brj-24331	27	33	yan	yan	PROPN
brj-24331	27	34	et	et	PROPN
brj-24331	27	35	al	al	PROPN
brj-24331	27	36	.	.	PROPN
brj-24331	27	37	2014	2014	NUM
brj-24331	27	38	;	;	PUNCT
brj-24331	27	39	zeng	zeng	PROPN
brj-24331	27	40	et	et	PROPN
brj-24331	27	41	al	al	PROPN
brj-24331	27	42	.	.	PROPN
brj-24331	27	43	2020	2020	NUM
brj-24331	27	44	)	)	PUNCT
brj-24331	27	45	.	.	PUNCT
brj-24331	28	1	to	to	PART
brj-24331	28	2	solve	solve	VERB
brj-24331	28	3	these	these	DET
brj-24331	28	4	challenges	challenge	NOUN
brj-24331	28	5	,	,	PUNCT
brj-24331	28	6	the	the	DET
brj-24331	28	7	pyro	pyro	NOUN
brj-24331	28	8	-	-	PUNCT
brj-24331	28	9	gasification	gasification	NOUN
brj-24331	28	10	process	process	NOUN
brj-24331	28	11	offers	offer	VERB
brj-24331	28	12	a	a	DET
brj-24331	28	13	promising	promising	ADJ
brj-24331	28	14	solution	solution	NOUN
brj-24331	28	15	.	.	PUNCT
brj-24331	29	1	this	this	DET
brj-24331	29	2	process	process	NOUN
brj-24331	29	3	consists	consist	VERB
brj-24331	29	4	of	of	ADP
brj-24331	29	5	two	two	NUM
brj-24331	29	6	main	main	ADJ
brj-24331	29	7	stages	stage	NOUN
brj-24331	29	8	:	:	PUNCT
brj-24331	29	9	an	an	DET
brj-24331	29	10	initial	initial	ADJ
brj-24331	29	11	pyrolysis	pyrolysis	NOUN
brj-24331	29	12	stage	stage	NOUN
brj-24331	29	13	,	,	PUNCT
brj-24331	29	14	where	where	SCONJ
brj-24331	29	15	biomass	biomass	NOUN
brj-24331	29	16	is	be	AUX
brj-24331	29	17	thermally	thermally	ADV
brj-24331	29	18	decomposed	decompose	VERB
brj-24331	29	19	to	to	PART
brj-24331	29	20	produce	produce	VERB
brj-24331	29	21	biochar	biochar	NOUN
brj-24331	29	22	,	,	PUNCT
brj-24331	29	23	non	non	ADJ
brj-24331	29	24	-	-	ADJ
brj-24331	29	25	condensable	condensable	ADJ
brj-24331	29	26	gases	gas	NOUN
brj-24331	29	27	,	,	PUNCT
brj-24331	29	28	and	and	CCONJ
brj-24331	29	29	condensable	condensable	ADJ
brj-24331	29	30	vapor	vapor	NOUN
brj-24331	29	31	(	(	PUNCT
brj-24331	29	32	including	include	VERB
brj-24331	29	33	tar	tar	NOUN
brj-24331	29	34	)	)	PUNCT
brj-24331	29	35	,	,	PUNCT
brj-24331	29	36	followed	follow	VERB
brj-24331	29	37	by	by	ADP
brj-24331	29	38	partial	partial	ADJ
brj-24331	29	39	oxidation	oxidation	NOUN
brj-24331	29	40	of	of	ADP
brj-24331	29	41	condensable	condensable	ADJ
brj-24331	29	42	vapor	vapor	NOUN
brj-24331	29	43	and	and	CCONJ
brj-24331	29	44	char	char	NOUN
brj-24331	29	45	.	.	PUNCT
brj-24331	30	1	during	during	ADP
brj-24331	30	2	the	the	DET
brj-24331	30	3	partial	partial	ADJ
brj-24331	30	4	oxidation	oxidation	NOUN
brj-24331	30	5	stage	stage	NOUN
brj-24331	30	6	,	,	PUNCT
brj-24331	30	7	the	the	DET
brj-24331	30	8	biochar	biochar	NOUN
brj-24331	30	9	and	and	CCONJ
brj-24331	30	10	tars	tar	NOUN
brj-24331	30	11	generated	generate	VERB
brj-24331	30	12	during	during	ADP
brj-24331	30	13	pyrolysis	pyrolysis	NOUN
brj-24331	30	14	are	be	AUX
brj-24331	30	15	converted	convert	VERB
brj-24331	30	16	into	into	ADP
brj-24331	30	17	syngas	syngas	NOUN
brj-24331	30	18	through	through	ADP
brj-24331	30	19	thermal	thermal	ADJ
brj-24331	30	20	oxidation	oxidation	NOUN
brj-24331	30	21	processes	process	NOUN
brj-24331	30	22	(	(	PUNCT
brj-24331	30	23	okoro	okoro	NOUN
brj-24331	30	24	et	et	PROPN
brj-24331	30	25	al	al	PROPN
brj-24331	30	26	.	.	PROPN
brj-24331	30	27	2020	2020	NUM
brj-24331	30	28	;	;	PUNCT
brj-24331	30	29	sangaré	sangaré	PROPN
brj-24331	30	30	et	et	PROPN
brj-24331	30	31	al	al	PROPN
brj-24331	30	32	.	.	PROPN
brj-24331	30	33	2024a	2024a	NUM
brj-24331	30	34	)	)	PUNCT
brj-24331	30	35	.	.	PUNCT
brj-24331	31	1	although	although	SCONJ
brj-24331	31	2	gasification	gasification	NOUN
brj-24331	31	3	and	and	CCONJ
brj-24331	31	4	pyro	pyro	NOUN
brj-24331	31	5	-	-	PUNCT
brj-24331	31	6	gasification	gasification	NOUN
brj-24331	31	7	are	be	AUX
brj-24331	31	8	similar	similar	ADJ
brj-24331	31	9	processes	process	NOUN
brj-24331	31	10	,	,	PUNCT
brj-24331	31	11	the	the	DET
brj-24331	31	12	distribution	distribution	NOUN
brj-24331	31	13	of	of	ADP
brj-24331	31	14	products	product	NOUN
brj-24331	31	15	can	can	AUX
brj-24331	31	16	vary	vary	VERB
brj-24331	31	17	depending	depend	VERB
brj-24331	31	18	on	on	ADP
brj-24331	31	19	the	the	DET
brj-24331	31	20	operating	operating	NOUN
brj-24331	31	21	conditions	condition	NOUN
brj-24331	31	22	.	.	PUNCT
brj-24331	32	1	in	in	ADP
brj-24331	32	2	both	both	DET
brj-24331	32	3	cases	case	NOUN
brj-24331	32	4	,	,	PUNCT
brj-24331	32	5	product	product	NOUN
brj-24331	32	6	distribution	distribution	NOUN
brj-24331	32	7	is	be	AUX
brj-24331	32	8	strongly	strongly	ADV
brj-24331	32	9	influenced	influence	VERB
brj-24331	32	10	by	by	ADP
brj-24331	32	11	heating	heating	NOUN
brj-24331	32	12	rate	rate	NOUN
brj-24331	32	13	,	,	PUNCT
brj-24331	32	14	gasifying	gasifying	NOUN
brj-24331	32	15	agent	agent	NOUN
brj-24331	32	16	,	,	PUNCT
brj-24331	32	17	and	and	CCONJ
brj-24331	32	18	temperature	temperature	NOUN
brj-24331	32	19	.	.	PUNCT
brj-24331	33	1	numerous	numerous	ADJ
brj-24331	33	2	studies	study	NOUN
brj-24331	33	3	have	have	AUX
brj-24331	33	4	been	be	AUX
brj-24331	33	5	conducted	conduct	VERB
brj-24331	33	6	on	on	ADP
brj-24331	33	7	the	the	DET
brj-24331	33	8	gasification	gasification	NOUN
brj-24331	33	9	of	of	ADP
brj-24331	33	10	charcoal	charcoal	NOUN
brj-24331	33	11	using	use	VERB
brj-24331	33	12	various	various	ADJ
brj-24331	33	13	gasifying	gasifying	NOUN
brj-24331	33	14	agents	agent	NOUN
brj-24331	33	15	,	,	PUNCT
brj-24331	33	16	including	include	VERB
brj-24331	33	17	air	air	NOUN
brj-24331	33	18	(	(	PUNCT
brj-24331	33	19	wang	wang	PROPN
brj-24331	33	20	et	et	PROPN
brj-24331	33	21	al	al	PROPN
brj-24331	33	22	.	.	PROPN
brj-24331	33	23	2008	2008	NUM
brj-24331	33	24	;	;	PUNCT
brj-24331	33	25	zhang	zhang	PROPN
brj-24331	33	26	et	et	PROPN
brj-24331	33	27	al	al	PROPN
brj-24331	33	28	.	.	PROPN
brj-24331	33	29	2015	2015	NUM
brj-24331	33	30	;	;	PUNCT
brj-24331	33	31	zhang	zhang	PROPN
brj-24331	33	32	et	et	PROPN
brj-24331	33	33	al	al	PROPN
brj-24331	33	34	.	.	PROPN
brj-24331	33	35	2017	2017	NUM
brj-24331	33	36	)	)	PUNCT
brj-24331	33	37	,	,	PUNCT
brj-24331	33	38	steam	steam	NOUN
brj-24331	33	39	(	(	PUNCT
brj-24331	33	40	moghadam	moghadam	PROPN
brj-24331	33	41	et	et	PROPN
brj-24331	33	42	al	al	PROPN
brj-24331	33	43	.	.	PROPN
brj-24331	33	44	2014	2014	NUM
brj-24331	33	45	;	;	PUNCT
brj-24331	33	46	jayaraman	jayaraman	NOUN
brj-24331	33	47	and	and	CCONJ
brj-24331	33	48	gökalp	gökalp	NOUN
brj-24331	33	49	2015	2015	NUM
brj-24331	33	50	;	;	PUNCT
brj-24331	33	51	elorf	elorf	PROPN
brj-24331	33	52	et	et	PROPN
brj-24331	33	53	al	al	PROPN
brj-24331	33	54	.	.	PROPN
brj-24331	33	55	2019	2019	NUM
brj-24331	33	56	)	)	PUNCT
brj-24331	33	57	,	,	PUNCT
brj-24331	33	58	oxygen	oxygen	NOUN
brj-24331	33	59	(	(	PUNCT
brj-24331	33	60	niu	niu	PROPN
brj-24331	33	61	et	et	PROPN
brj-24331	33	62	al	al	PROPN
brj-24331	33	63	.	.	PROPN
brj-24331	33	64	2014	2014	NUM
brj-24331	33	65	)	)	PUNCT
brj-24331	33	66	,	,	PUNCT
brj-24331	33	67	carbon	carbon	NOUN
brj-24331	33	68	dioxide	dioxide	NOUN
brj-24331	33	69	(	(	PUNCT
brj-24331	33	70	gao	gao	PROPN
brj-24331	33	71	et	et	PROPN
brj-24331	33	72	al	al	PROPN
brj-24331	33	73	.	.	PROPN
brj-24331	33	74	2016b	2016b	NUM
brj-24331	33	75	)	)	PUNCT
brj-24331	33	76	,	,	PUNCT
brj-24331	33	77	supercritical	supercritical	ADJ
brj-24331	33	78	water	water	NOUN
brj-24331	33	79	(	(	PUNCT
brj-24331	33	80	guo	guo	PROPN
brj-24331	33	81	et	et	PROPN
brj-24331	33	82	al	al	PROPN
brj-24331	33	83	.	.	PROPN
brj-24331	33	84	2015	2015	NUM
brj-24331	33	85	)	)	PUNCT
brj-24331	33	86	,	,	PUNCT
brj-24331	33	87	and	and	CCONJ
brj-24331	33	88	so	so	ADV
brj-24331	33	89	forth	forth	ADV
brj-24331	33	90	.	.	PUNCT
brj-24331	34	1	generally	generally	ADV
brj-24331	34	2	,	,	PUNCT
brj-24331	34	3	gasification	gasification	NOUN
brj-24331	34	4	with	with	ADP
brj-24331	34	5	oxygen	oxygen	NOUN
brj-24331	34	6	,	,	PUNCT
brj-24331	34	7	steam	steam	NOUN
brj-24331	34	8	,	,	PUNCT
brj-24331	34	9	carbon	carbon	NOUN
brj-24331	34	10	dioxide	dioxide	NOUN
brj-24331	34	11	,	,	PUNCT
brj-24331	34	12	or	or	CCONJ
brj-24331	34	13	supercritical	supercritical	ADJ
brj-24331	34	14	water	water	NOUN
brj-24331	34	15	yields	yield	VERB
brj-24331	34	16	syngas	syngas	NOUN
brj-24331	34	17	with	with	ADP
brj-24331	34	18	higher	high	ADJ
brj-24331	34	19	heating	heating	NOUN
brj-24331	34	20	values	value	NOUN
brj-24331	34	21	(	(	PUNCT
brj-24331	34	22	hhv	hhv	NOUN
brj-24331	34	23	)	)	PUNCT
brj-24331	34	24	than	than	ADP
brj-24331	34	25	air	air	NOUN
brj-24331	34	26	gasification	gasification	NOUN
brj-24331	34	27	.	.	PUNCT
brj-24331	35	1	however	however	ADV
brj-24331	35	2	,	,	PUNCT
brj-24331	35	3	air	air	NOUN
brj-24331	35	4	gasification	gasification	NOUN
brj-24331	35	5	remains	remain	VERB
brj-24331	35	6	the	the	DET
brj-24331	35	7	most	most	ADV
brj-24331	35	8	studied	study	VERB
brj-24331	35	9	and	and	CCONJ
brj-24331	35	10	applied	apply	VERB
brj-24331	35	11	method	method	NOUN
brj-24331	35	12	due	due	ADP
brj-24331	35	13	to	to	ADP
brj-24331	35	14	the	the	DET
brj-24331	35	15	low	low	ADJ
brj-24331	35	16	cost	cost	NOUN
brj-24331	35	17	of	of	ADP
brj-24331	35	18	air	air	NOUN
brj-24331	35	19	,	,	PUNCT
brj-24331	35	20	the	the	DET
brj-24331	35	21	reaction	reaction	NOUN
brj-24331	35	22	process	process	NOUN
brj-24331	35	23	's	's	PART
brj-24331	35	24	simplicity	simplicity	NOUN
brj-24331	35	25	,	,	PUNCT
brj-24331	35	26	and	and	CCONJ
brj-24331	35	27	the	the	DET
brj-24331	35	28	reactor	reactor	NOUN
brj-24331	35	29	's	's	PART
brj-24331	35	30	straightforward	straightforward	ADJ
brj-24331	35	31	design	design	NOUN
brj-24331	35	32	(	(	PUNCT
brj-24331	35	33	gao	gao	PROPN
brj-24331	35	34	et	et	PROPN
brj-24331	35	35	al	al	PROPN
brj-24331	35	36	.	.	PROPN
brj-24331	35	37	2016a	2016a	NOUN
brj-24331	35	38	;	;	PUNCT
brj-24331	35	39	okoro	okoro	NOUN
brj-24331	35	40	et	et	PROPN
brj-24331	35	41	al	al	PROPN
brj-24331	35	42	.	.	PROPN
brj-24331	35	43	2017	2017	NUM
brj-24331	35	44	)	)	PUNCT
brj-24331	35	45	.	.	PUNCT
brj-24331	36	1	despite	despite	SCONJ
brj-24331	36	2	the	the	DET
brj-24331	36	3	potential	potential	NOUN
brj-24331	36	4	of	of	ADP
brj-24331	36	5	pyro	pyro	NOUN
brj-24331	36	6	-	-	PUNCT
brj-24331	36	7	gasification	gasification	NOUN
brj-24331	36	8	,	,	PUNCT
brj-24331	36	9	product	product	NOUN
brj-24331	36	10	optimization	optimization	NOUN
brj-24331	36	11	and	and	CCONJ
brj-24331	36	12	tar	tar	NOUN
brj-24331	36	13	formation	formation	NOUN
brj-24331	36	14	challenges	challenge	NOUN
brj-24331	36	15	remain	remain	VERB
brj-24331	36	16	significant	significant	ADJ
brj-24331	36	17	,	,	PUNCT
brj-24331	36	18	as	as	SCONJ
brj-24331	36	19	these	these	PRON
brj-24331	36	20	depend	depend	VERB
brj-24331	36	21	heavily	heavily	ADV
brj-24331	36	22	on	on	ADP
brj-24331	36	23	operating	operating	NOUN
brj-24331	36	24	parameters	parameter	NOUN
brj-24331	36	25	.	.	PUNCT
brj-24331	37	1	while	while	SCONJ
brj-24331	37	2	experimental	experimental	ADJ
brj-24331	37	3	studies	study	NOUN
brj-24331	37	4	provide	provide	VERB
brj-24331	37	5	valuable	valuable	ADJ
brj-24331	37	6	data	datum	NOUN
brj-24331	37	7	,	,	PUNCT
brj-24331	37	8	their	their	PRON
brj-24331	37	9	interpretation	interpretation	NOUN
brj-24331	37	10	is	be	AUX
brj-24331	37	11	often	often	ADV
brj-24331	37	12	complicated	complicate	VERB
brj-24331	37	13	by	by	ADP
brj-24331	37	14	the	the	DET
brj-24331	37	15	difficulty	difficulty	NOUN
brj-24331	37	16	of	of	ADP
brj-24331	37	17	extrapolating	extrapolate	VERB
brj-24331	37	18	laboratory	laboratory	NOUN
brj-24331	37	19	-	-	PUNCT
brj-24331	37	20	scale	scale	NOUN
brj-24331	37	21	results	result	NOUN
brj-24331	37	22	to	to	ADP
brj-24331	37	23	industrial	industrial	ADJ
brj-24331	37	24	applications	application	NOUN
brj-24331	37	25	.	.	PUNCT
brj-24331	38	1	in	in	ADP
brj-24331	38	2	this	this	DET
brj-24331	38	3	context	context	NOUN
brj-24331	38	4	,	,	PUNCT
brj-24331	38	5	modeling	modeling	NOUN
brj-24331	38	6	and	and	CCONJ
brj-24331	38	7	simulation	simulation	NOUN
brj-24331	38	8	have	have	AUX
brj-24331	38	9	become	become	VERB
brj-24331	38	10	essential	essential	ADJ
brj-24331	38	11	tools	tool	NOUN
brj-24331	38	12	.	.	PUNCT
brj-24331	39	1	various	various	ADJ
brj-24331	39	2	modeling	modeling	NOUN
brj-24331	39	3	approaches	approach	NOUN
brj-24331	39	4	have	have	AUX
brj-24331	39	5	been	be	AUX
brj-24331	39	6	used	use	VERB
brj-24331	39	7	to	to	PART
brj-24331	39	8	study	study	VERB
brj-24331	39	9	biomass	biomass	NOUN
brj-24331	39	10	thermochemical	thermochemical	ADJ
brj-24331	39	11	conversion	conversion	NOUN
brj-24331	39	12	,	,	PUNCT
brj-24331	39	13	including	include	VERB
brj-24331	39	14	thermodynamic	thermodynamic	ADJ
brj-24331	39	15	equilibrium	equilibrium	NOUN
brj-24331	39	16	,	,	PUNCT
brj-24331	39	17	kinetic	kinetic	NOUN
brj-24331	39	18	,	,	PUNCT
brj-24331	39	19	and	and	CCONJ
brj-24331	39	20	computational	computational	ADJ
brj-24331	39	21	fluid	fluid	ADJ
brj-24331	39	22	dynamics	dynamic	NOUN
brj-24331	39	23	(	(	PUNCT
brj-24331	39	24	cfd	cfd	NOUN
brj-24331	39	25	)	)	PUNCT
brj-24331	39	26	models	model	NOUN
brj-24331	39	27	.	.	PUNCT
brj-24331	40	1	thermodynamic	thermodynamic	ADJ
brj-24331	40	2	equilibrium	equilibrium	NOUN
brj-24331	40	3	models	model	NOUN
brj-24331	40	4	are	be	AUX
brj-24331	40	5	effective	effective	ADJ
brj-24331	40	6	for	for	ADP
brj-24331	40	7	establishing	establish	VERB
brj-24331	40	8	theoretical	theoretical	ADJ
brj-24331	40	9	limits	limit	NOUN
brj-24331	40	10	,	,	PUNCT
brj-24331	40	11	offering	offer	VERB
brj-24331	40	12	insights	insight	NOUN
brj-24331	40	13	into	into	ADP
brj-24331	40	14	maximum	maximum	ADJ
brj-24331	40	15	efficiency	efficiency	NOUN
brj-24331	40	16	and	and	CCONJ
brj-24331	40	17	outputs	output	NOUN
brj-24331	40	18	under	under	ADP
brj-24331	40	19	ideal	ideal	ADJ
brj-24331	40	20	conditions	condition	NOUN
brj-24331	40	21	.	.	PUNCT
brj-24331	41	1	however	however	ADV
brj-24331	41	2	,	,	PUNCT
brj-24331	41	3	their	their	PRON
brj-24331	41	4	reliance	reliance	NOUN
brj-24331	41	5	on	on	ADP
brj-24331	41	6	simplifying	simplify	VERB
brj-24331	41	7	assumptions	assumption	NOUN
brj-24331	41	8	restricts	restrict	VERB
brj-24331	41	9	their	their	PRON
brj-24331	41	10	applicability	applicability	NOUN
brj-24331	41	11	to	to	ADP
brj-24331	41	12	nonequilibrium	nonequilibrium	NOUN
brj-24331	41	13	scenarios	scenario	NOUN
brj-24331	41	14	,	,	PUNCT
brj-24331	41	15	such	such	ADJ
brj-24331	41	16	as	as	ADP
brj-24331	41	17	low	low	ADJ
brj-24331	41	18	-	-	PUNCT
brj-24331	41	19	temperature	temperature	NOUN
brj-24331	41	20	oxidation	oxidation	NOUN
brj-24331	41	21	or	or	CCONJ
brj-24331	41	22	systems	system	NOUN
brj-24331	41	23	with	with	ADP
brj-24331	41	24	complex	complex	ADJ
brj-24331	41	25	reaction	reaction	NOUN
brj-24331	41	26	kinetics	kinetic	NOUN
brj-24331	41	27	(	(	PUNCT
brj-24331	41	28	beheshti	beheshti	VERB
brj-24331	41	29	et	et	PROPN
brj-24331	41	30	al	al	PROPN
brj-24331	41	31	.	.	PROPN
brj-24331	41	32	2015	2015	NUM
brj-24331	41	33	;	;	PUNCT
brj-24331	41	34	patra	patra	PROPN
brj-24331	41	35	and	and	CCONJ
brj-24331	41	36	sheth	sheth	PROPN
brj-24331	41	37	2015	2015	NUM
brj-24331	41	38	;	;	PUNCT
brj-24331	41	39	gmehling	gmehle	VERB
brj-24331	41	40	et	et	PROPN
brj-24331	41	41	al	al	PROPN
brj-24331	41	42	.	.	PROPN
brj-24331	41	43	2019	2019	NUM
brj-24331	41	44	;	;	PUNCT
brj-24331	41	45	peer	peer	NOUN
brj-24331	41	46	-	-	PUNCT
brj-24331	41	47	reviewed	review	VERB
brj-24331	41	48	article	article	NOUN
brj-24331	41	49	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	41	50	sangaré	sangaré	PROPN
brj-24331	41	51	et	et	PROPN
brj-24331	41	52	al	al	PROPN
brj-24331	41	53	.	.	PROPN
brj-24331	42	1	(	(	PUNCT
brj-24331	42	2	2025	2025	NUM
brj-24331	42	3	)	)	PUNCT
brj-24331	42	4	.	.	PUNCT
brj-24331	43	1	“	"	PUNCT
brj-24331	43	2	pyrogasification	pyrogasification	NOUN
brj-24331	43	3	of	of	ADP
brj-24331	43	4	biomass	biomass	NOUN
brj-24331	43	5	,	,	PUNCT
brj-24331	43	6	”	"	PUNCT
brj-24331	43	7	bioresources	bioresource	NOUN
brj-24331	43	8	20(2	20(2	NUM
brj-24331	43	9	)	)	PUNCT
brj-24331	43	10	,	,	PUNCT
brj-24331	43	11	2844	2844	NUM
brj-24331	43	12	-	-	SYM
brj-24331	43	13	2870	2870	NUM
brj-24331	43	14	.	.	PUNCT
brj-24331	43	15	2846	2846	NUM
brj-24331	43	16	safarian	safarian	PROPN
brj-24331	43	17	et	et	PROPN
brj-24331	43	18	al	al	PROPN
brj-24331	43	19	.	.	PROPN
brj-24331	43	20	2019	2019	NUM
brj-24331	43	21	)	)	PUNCT
brj-24331	43	22	.	.	PUNCT
brj-24331	44	1	kinetic	kinetic	ADJ
brj-24331	44	2	models	model	NOUN
brj-24331	44	3	,	,	PUNCT
brj-24331	44	4	on	on	ADP
brj-24331	44	5	the	the	DET
brj-24331	44	6	other	other	ADJ
brj-24331	44	7	hand	hand	NOUN
brj-24331	44	8	,	,	PUNCT
brj-24331	44	9	provide	provide	VERB
brj-24331	44	10	detailed	detailed	ADJ
brj-24331	44	11	insights	insight	NOUN
brj-24331	44	12	into	into	ADP
brj-24331	44	13	reaction	reaction	NOUN
brj-24331	44	14	mechanisms	mechanism	NOUN
brj-24331	44	15	and	and	CCONJ
brj-24331	44	16	rates	rate	NOUN
brj-24331	44	17	by	by	ADP
brj-24331	44	18	incorporating	incorporate	VERB
brj-24331	44	19	dynamic	dynamic	ADJ
brj-24331	44	20	chemical	chemical	NOUN
brj-24331	44	21	interactions	interaction	NOUN
brj-24331	44	22	(	(	PUNCT
brj-24331	44	23	upreti	upreti	PROPN
brj-24331	44	24	2017	2017	NUM
brj-24331	44	25	;	;	PUNCT
brj-24331	44	26	gmehling	gmehle	VERB
brj-24331	44	27	et	et	PROPN
brj-24331	44	28	al	al	PROPN
brj-24331	44	29	.	.	PROPN
brj-24331	44	30	2019	2019	NUM
brj-24331	44	31	;	;	PUNCT
brj-24331	44	32	ascher	ascher	PROPN
brj-24331	44	33	et	et	PROPN
brj-24331	44	34	al	al	PROPN
brj-24331	44	35	.	.	PROPN
brj-24331	44	36	2022	2022	NUM
brj-24331	44	37	)	)	PUNCT
brj-24331	44	38	.	.	PUNCT
brj-24331	45	1	however	however	ADV
brj-24331	45	2	,	,	PUNCT
brj-24331	45	3	these	these	DET
brj-24331	45	4	models	model	NOUN
brj-24331	45	5	often	often	ADV
brj-24331	45	6	fall	fall	VERB
brj-24331	45	7	short	short	ADJ
brj-24331	45	8	in	in	ADP
brj-24331	45	9	addressing	address	VERB
brj-24331	45	10	spatial	spatial	ADJ
brj-24331	45	11	and	and	CCONJ
brj-24331	45	12	temporal	temporal	ADJ
brj-24331	45	13	variations	variation	NOUN
brj-24331	45	14	within	within	ADP
brj-24331	45	15	reactors	reactor	NOUN
brj-24331	45	16	.	.	PUNCT
brj-24331	46	1	modeling	modeling	NOUN
brj-24331	46	2	and	and	CCONJ
brj-24331	46	3	simulation	simulation	NOUN
brj-24331	46	4	approaches	approach	NOUN
brj-24331	46	5	have	have	AUX
brj-24331	46	6	thus	thus	ADV
brj-24331	46	7	become	become	VERB
brj-24331	46	8	indispensable	indispensable	ADJ
brj-24331	46	9	for	for	ADP
brj-24331	46	10	navigating	navigate	VERB
brj-24331	46	11	these	these	DET
brj-24331	46	12	complexities	complexity	NOUN
brj-24331	46	13	and	and	CCONJ
brj-24331	46	14	bridging	bridge	VERB
brj-24331	46	15	the	the	DET
brj-24331	46	16	gap	gap	NOUN
brj-24331	46	17	between	between	ADP
brj-24331	46	18	laboratory	laboratory	NOUN
brj-24331	46	19	findings	finding	NOUN
brj-24331	46	20	and	and	CCONJ
brj-24331	46	21	industrial	industrial	ADJ
brj-24331	46	22	-	-	PUNCT
brj-24331	46	23	scale	scale	NOUN
brj-24331	46	24	applications	application	NOUN
brj-24331	46	25	.	.	PUNCT
brj-24331	47	1	cfd	cfd	NOUN
brj-24331	47	2	excels	excel	NOUN
brj-24331	47	3	in	in	ADP
brj-24331	47	4	resolving	resolve	VERB
brj-24331	47	5	spatially	spatially	ADV
brj-24331	47	6	and	and	CCONJ
brj-24331	47	7	temporally	temporally	ADV
brj-24331	47	8	detailed	detailed	ADJ
brj-24331	47	9	heat	heat	NOUN
brj-24331	47	10	and	and	CCONJ
brj-24331	47	11	mass	mass	NOUN
brj-24331	47	12	transfer	transfer	NOUN
brj-24331	47	13	phenomena	phenomenon	NOUN
brj-24331	47	14	,	,	PUNCT
brj-24331	47	15	while	while	SCONJ
brj-24331	47	16	process	process	NOUN
brj-24331	47	17	simulation	simulation	NOUN
brj-24331	47	18	(	(	PUNCT
brj-24331	47	19	sim	sim	NOUN
brj-24331	47	20	)	)	PUNCT
brj-24331	47	21	offers	offer	VERB
brj-24331	47	22	a	a	DET
brj-24331	47	23	macroscopic	macroscopic	ADJ
brj-24331	47	24	perspective	perspective	NOUN
brj-24331	47	25	,	,	PUNCT
brj-24331	47	26	integrating	integrate	VERB
brj-24331	47	27	equilibrium	equilibrium	NOUN
brj-24331	47	28	and	and	CCONJ
brj-24331	47	29	kinetic	kinetic	ADJ
brj-24331	47	30	assumptions	assumption	NOUN
brj-24331	47	31	(	(	PUNCT
brj-24331	47	32	vyazovkin	vyazovkin	X
brj-24331	47	33	et	et	PROPN
brj-24331	47	34	al	al	PROPN
brj-24331	47	35	.	.	PROPN
brj-24331	47	36	2014	2014	NUM
brj-24331	47	37	;	;	PUNCT
brj-24331	47	38	van	van	PROPN
brj-24331	47	39	hoecke	hoecke	PROPN
brj-24331	47	40	et	et	PROPN
brj-24331	47	41	al	al	PROPN
brj-24331	47	42	.	.	PROPN
brj-24331	47	43	2023	2023	NUM
brj-24331	47	44	;	;	PUNCT
brj-24331	47	45	sangaré	sangaré	PROPN
brj-24331	47	46	et	et	PROPN
brj-24331	47	47	al	al	PROPN
brj-24331	47	48	.	.	PROPN
brj-24331	47	49	2024b	2024b	NUM
brj-24331	47	50	)	)	PUNCT
brj-24331	47	51	.	.	PUNCT
brj-24331	48	1	despite	despite	SCONJ
brj-24331	48	2	extensive	extensive	ADJ
brj-24331	48	3	research	research	NOUN
brj-24331	48	4	on	on	ADP
brj-24331	48	5	these	these	DET
brj-24331	48	6	individual	individual	ADJ
brj-24331	48	7	approaches	approach	NOUN
brj-24331	48	8	,	,	PUNCT
brj-24331	48	9	comparative	comparative	ADJ
brj-24331	48	10	studies	study	NOUN
brj-24331	48	11	evaluating	evaluate	VERB
brj-24331	48	12	their	their	PRON
brj-24331	48	13	predictive	predictive	ADJ
brj-24331	48	14	accuracies	accuracy	NOUN
brj-24331	48	15	under	under	ADP
brj-24331	48	16	varying	vary	VERB
brj-24331	48	17	gasification	gasification	NOUN
brj-24331	48	18	conditions	condition	NOUN
brj-24331	48	19	remain	remain	VERB
brj-24331	48	20	scarce	scarce	ADJ
brj-24331	48	21	.	.	PUNCT
brj-24331	49	1	this	this	DET
brj-24331	49	2	study	study	NOUN
brj-24331	49	3	aims	aim	VERB
brj-24331	49	4	to	to	PART
brj-24331	49	5	bridge	bridge	VERB
brj-24331	49	6	this	this	DET
brj-24331	49	7	gap	gap	NOUN
brj-24331	49	8	by	by	ADP
brj-24331	49	9	conducting	conduct	VERB
brj-24331	49	10	a	a	DET
brj-24331	49	11	comparative	comparative	ADJ
brj-24331	49	12	analysis	analysis	NOUN
brj-24331	49	13	of	of	ADP
brj-24331	49	14	cfd	cfd	NOUN
brj-24331	49	15	modeling	modeling	NOUN
brj-24331	49	16	using	use	VERB
brj-24331	49	17	comsol	comsol	NOUN
brj-24331	49	18	multiphysics	multiphysic	NOUN
brj-24331	49	19	and	and	CCONJ
brj-24331	49	20	sim	sim	ADJ
brj-24331	49	21	using	use	VERB
brj-24331	49	22	aspen	aspen	NOUN
brj-24331	49	23	plus	plus	CCONJ
brj-24331	49	24	for	for	ADP
brj-24331	49	25	the	the	DET
brj-24331	49	26	pyrogasification	pyrogasification	NOUN
brj-24331	49	27	of	of	ADP
brj-24331	49	28	agave	agave	NOUN
brj-24331	49	29	bagasse	bagasse	NOUN
brj-24331	49	30	,	,	PUNCT
brj-24331	49	31	a	a	DET
brj-24331	49	32	by	by	NOUN
brj-24331	49	33	-	-	PUNCT
brj-24331	49	34	product	product	NOUN
brj-24331	49	35	of	of	ADP
brj-24331	49	36	mezcal	mezcal	ADJ
brj-24331	49	37	production	production	NOUN
brj-24331	49	38	.	.	PUNCT
brj-24331	50	1	the	the	DET
brj-24331	50	2	objective	objective	NOUN
brj-24331	50	3	is	be	AUX
brj-24331	50	4	also	also	ADV
brj-24331	50	5	to	to	PART
brj-24331	50	6	highlight	highlight	VERB
brj-24331	50	7	their	their	PRON
brj-24331	50	8	respective	respective	ADJ
brj-24331	50	9	strengths	strength	NOUN
brj-24331	50	10	and	and	CCONJ
brj-24331	50	11	limitations	limitation	NOUN
brj-24331	50	12	in	in	ADP
brj-24331	50	13	predicting	predict	VERB
brj-24331	50	14	pyro	pyro	NOUN
brj-24331	50	15	-	-	PUNCT
brj-24331	50	16	gasification	gasification	NOUN
brj-24331	50	17	behavior	behavior	NOUN
brj-24331	50	18	.	.	PUNCT
brj-24331	51	1	experimental	experimental	ADJ
brj-24331	51	2	data	datum	NOUN
brj-24331	51	3	obtained	obtain	VERB
brj-24331	51	4	through	through	ADP
brj-24331	51	5	thermogravimetric	thermogravimetric	ADJ
brj-24331	51	6	analysis	analysis	NOUN
brj-24331	51	7	(	(	PUNCT
brj-24331	51	8	tga	tga	NOUN
brj-24331	51	9	)	)	PUNCT
brj-24331	51	10	under	under	ADP
brj-24331	51	11	isothermal	isothermal	ADJ
brj-24331	51	12	and	and	CCONJ
brj-24331	51	13	non	non	ADJ
brj-24331	51	14	-	-	ADJ
brj-24331	51	15	isothermal	isothermal	ADJ
brj-24331	51	16	conditions	condition	NOUN
brj-24331	51	17	were	be	AUX
brj-24331	51	18	used	use	VERB
brj-24331	51	19	to	to	PART
brj-24331	51	20	validate	validate	VERB
brj-24331	51	21	and	and	CCONJ
brj-24331	51	22	evaluate	evaluate	VERB
brj-24331	51	23	model	model	NOUN
brj-24331	51	24	performance	performance	NOUN
brj-24331	51	25	.	.	PUNCT
brj-24331	52	1	the	the	DET
brj-24331	52	2	specific	specific	ADJ
brj-24331	52	3	objectives	objective	NOUN
brj-24331	52	4	were	be	AUX
brj-24331	52	5	(	(	PUNCT
brj-24331	52	6	1	1	X
brj-24331	52	7	)	)	PUNCT
brj-24331	52	8	to	to	PART
brj-24331	52	9	assess	assess	VERB
brj-24331	52	10	the	the	DET
brj-24331	52	11	accuracy	accuracy	NOUN
brj-24331	52	12	of	of	ADP
brj-24331	52	13	cfd	cfd	NOUN
brj-24331	52	14	and	and	CCONJ
brj-24331	52	15	sim	sim	NOUN
brj-24331	52	16	in	in	ADP
brj-24331	52	17	predicting	predict	VERB
brj-24331	52	18	product	product	NOUN
brj-24331	52	19	yields	yield	NOUN
brj-24331	52	20	(	(	PUNCT
brj-24331	52	21	biochar	biochar	NOUN
brj-24331	52	22	,	,	PUNCT
brj-24331	52	23	bio	bio	NOUN
brj-24331	52	24	-	-	NOUN
brj-24331	52	25	oil	oil	NOUN
brj-24331	52	26	,	,	PUNCT
brj-24331	52	27	and	and	CCONJ
brj-24331	52	28	non	non	ADJ
brj-24331	52	29	-	-	ADJ
brj-24331	52	30	condensable	condensable	ADJ
brj-24331	52	31	gases	gas	NOUN
brj-24331	52	32	)	)	PUNCT
brj-24331	52	33	and	and	CCONJ
brj-24331	52	34	gas	gas	NOUN
brj-24331	52	35	compositions	composition	NOUN
brj-24331	52	36	;	;	PUNCT
brj-24331	52	37	(	(	PUNCT
brj-24331	52	38	2	2	X
brj-24331	52	39	)	)	PUNCT
brj-24331	52	40	to	to	PART
brj-24331	52	41	identify	identify	VERB
brj-24331	52	42	the	the	DET
brj-24331	52	43	operational	operational	ADJ
brj-24331	52	44	conditions	condition	NOUN
brj-24331	52	45	where	where	SCONJ
brj-24331	52	46	each	each	DET
brj-24331	52	47	method	method	NOUN
brj-24331	52	48	performs	perform	VERB
brj-24331	52	49	optimally	optimally	ADV
brj-24331	52	50	;	;	PUNCT
brj-24331	52	51	(	(	PUNCT
brj-24331	52	52	3	3	X
brj-24331	52	53	)	)	PUNCT
brj-24331	52	54	to	to	PART
brj-24331	52	55	provide	provide	VERB
brj-24331	52	56	insights	insight	NOUN
brj-24331	52	57	into	into	ADP
brj-24331	52	58	integrating	integrate	VERB
brj-24331	52	59	cfd	cfd	NOUN
brj-24331	52	60	and	and	CCONJ
brj-24331	52	61	sim	sim	VERB
brj-24331	52	62	for	for	ADP
brj-24331	52	63	improved	improved	ADJ
brj-24331	52	64	modeling	modeling	NOUN
brj-24331	52	65	frameworks	framework	NOUN
brj-24331	52	66	.	.	PUNCT
brj-24331	53	1	by	by	ADP
brj-24331	53	2	addressing	address	VERB
brj-24331	53	3	these	these	DET
brj-24331	53	4	objectives	objective	NOUN
brj-24331	53	5	,	,	PUNCT
brj-24331	53	6	the	the	DET
brj-24331	53	7	study	study	NOUN
brj-24331	53	8	contributes	contribute	VERB
brj-24331	53	9	to	to	ADP
brj-24331	53	10	the	the	DET
brj-24331	53	11	development	development	NOUN
brj-24331	53	12	of	of	ADP
brj-24331	53	13	more	more	ADV
brj-24331	53	14	accurate	accurate	ADJ
brj-24331	53	15	and	and	CCONJ
brj-24331	53	16	scalable	scalable	ADJ
brj-24331	53	17	modeling	modeling	NOUN
brj-24331	53	18	strategies	strategy	NOUN
brj-24331	53	19	for	for	ADP
brj-24331	53	20	biomass	biomass	NOUN
brj-24331	53	21	pyro	pyro	NOUN
brj-24331	53	22	-	-	PUNCT
brj-24331	53	23	gasification	gasification	NOUN
brj-24331	53	24	,	,	PUNCT
brj-24331	53	25	facilitating	facilitate	VERB
brj-24331	53	26	process	process	NOUN
brj-24331	53	27	optimization	optimization	NOUN
brj-24331	53	28	and	and	CCONJ
brj-24331	53	29	reducing	reduce	VERB
brj-24331	53	30	the	the	DET
brj-24331	53	31	environmental	environmental	ADJ
brj-24331	53	32	footprint	footprint	NOUN
brj-24331	53	33	of	of	ADP
brj-24331	53	34	bioenergy	bioenergy	NOUN
brj-24331	53	35	production	production	NOUN
brj-24331	53	36	.	.	PUNCT
brj-24331	54	1	experimental	experimental	ADJ
brj-24331	54	2	feedstock	feedstock	NOUN
brj-24331	54	3	properties	property	NOUN
brj-24331	54	4	and	and	CCONJ
brj-24331	54	5	description	description	NOUN
brj-24331	54	6	this	this	DET
brj-24331	54	7	study	study	NOUN
brj-24331	54	8	focused	focus	VERB
brj-24331	54	9	on	on	ADP
brj-24331	54	10	agave	agave	NOUN
brj-24331	54	11	bagasse	bagasse	NOUN
brj-24331	54	12	(	(	PUNCT
brj-24331	54	13	ab	ab	NOUN
brj-24331	54	14	)	)	PUNCT
brj-24331	54	15	,	,	PUNCT
brj-24331	54	16	a	a	DET
brj-24331	54	17	by	by	ADP
brj-24331	54	18	-	-	PUNCT
brj-24331	54	19	product	product	NOUN
brj-24331	54	20	of	of	ADP
brj-24331	54	21	mezcal	mezcal	ADJ
brj-24331	54	22	production	production	NOUN
brj-24331	54	23	.	.	PUNCT
brj-24331	55	1	the	the	DET
brj-24331	55	2	ab	ab	PROPN
brj-24331	55	3	was	be	AUX
brj-24331	55	4	collected	collect	VERB
brj-24331	55	5	from	from	ADP
brj-24331	55	6	the	the	DET
brj-24331	55	7	"	"	PUNCT
brj-24331	55	8	santa	santa	PROPN
brj-24331	55	9	teresa	teresa	PROPN
brj-24331	55	10	"	"	PUNCT
brj-24331	55	11	distillery	distillery	NOUN
brj-24331	55	12	in	in	ADP
brj-24331	55	13	san	san	PROPN
brj-24331	55	14	luis	luis	PROPN
brj-24331	55	15	potosí	potosí	PROPN
brj-24331	55	16	,	,	PUNCT
brj-24331	55	17	mexico	mexico	PROPN
brj-24331	55	18	.	.	PUNCT
brj-24331	56	1	it	it	PRON
brj-24331	56	2	was	be	AUX
brj-24331	56	3	initially	initially	ADV
brj-24331	56	4	air	air	NOUN
brj-24331	56	5	-	-	PUNCT
brj-24331	56	6	dried	dry	VERB
brj-24331	56	7	at	at	ADP
brj-24331	56	8	ambient	ambient	ADJ
brj-24331	56	9	temperature	temperature	NOUN
brj-24331	56	10	(	(	PUNCT
brj-24331	56	11	28	28	NUM
brj-24331	56	12	to	to	PART
brj-24331	56	13	35	35	NUM
brj-24331	56	14	°	°	NOUN
brj-24331	57	1	c	c	NOUN
brj-24331	58	1	)	)	PUNCT
brj-24331	59	1	for	for	ADP
brj-24331	59	2	approximately	approximately	ADV
brj-24331	59	3	one	one	NUM
brj-24331	59	4	week	week	NOUN
brj-24331	59	5	to	to	PART
brj-24331	59	6	reduce	reduce	VERB
brj-24331	59	7	moisture	moisture	NOUN
brj-24331	59	8	content	content	NOUN
brj-24331	59	9	,	,	PUNCT
brj-24331	59	10	followed	follow	VERB
brj-24331	59	11	by	by	ADP
brj-24331	59	12	drying	dry	VERB
brj-24331	59	13	at	at	ADP
brj-24331	59	14	105	105	NUM
brj-24331	59	15	°	°	ADP
brj-24331	59	16	c	c	NOUN
brj-24331	59	17	for	for	ADP
brj-24331	59	18	24	24	NUM
brj-24331	59	19	h	h	NOUN
brj-24331	59	20	to	to	PART
brj-24331	59	21	achieve	achieve	VERB
brj-24331	59	22	a	a	DET
brj-24331	59	23	constant	constant	ADJ
brj-24331	59	24	mass	mass	NOUN
brj-24331	59	25	.	.	PUNCT
brj-24331	60	1	the	the	DET
brj-24331	60	2	dried	dry	VERB
brj-24331	60	3	material	material	NOUN
brj-24331	60	4	was	be	AUX
brj-24331	60	5	then	then	ADV
brj-24331	60	6	milled	mill	VERB
brj-24331	60	7	to	to	ADP
brj-24331	60	8	a	a	DET
brj-24331	60	9	particle	particle	NOUN
brj-24331	60	10	size	size	NOUN
brj-24331	60	11	between	between	ADP
brj-24331	60	12	0.1	0.1	NUM
brj-24331	60	13	and	and	CCONJ
brj-24331	60	14	1	1	NUM
brj-24331	60	15	mm	mm	NOUN
brj-24331	60	16	,	,	PUNCT
brj-24331	60	17	ensuring	ensure	VERB
brj-24331	60	18	uniformity	uniformity	NOUN
brj-24331	60	19	for	for	ADP
brj-24331	60	20	thermochemical	thermochemical	ADJ
brj-24331	60	21	conversion	conversion	NOUN
brj-24331	60	22	experiments	experiment	NOUN
brj-24331	60	23	.	.	PUNCT
brj-24331	61	1	a	a	DET
brj-24331	61	2	char	char	NOUN
brj-24331	61	3	was	be	AUX
brj-24331	61	4	produced	produce	VERB
brj-24331	61	5	from	from	ADP
brj-24331	61	6	ab	ab	PROPN
brj-24331	61	7	through	through	ADP
brj-24331	61	8	pyrolysis	pyrolysis	NOUN
brj-24331	61	9	at	at	ADP
brj-24331	61	10	700	700	NUM
brj-24331	61	11	°	°	NOUN
brj-24331	61	12	c	c	NOUN
brj-24331	61	13	,	,	PUNCT
brj-24331	61	14	using	use	VERB
brj-24331	61	15	a	a	DET
brj-24331	61	16	heating	heating	NOUN
brj-24331	61	17	rate	rate	NOUN
brj-24331	61	18	of	of	ADP
brj-24331	61	19	20	20	NUM
brj-24331	61	20	°	°	NOUN
brj-24331	61	21	c	c	NOUN
brj-24331	61	22	/	/	SYM
brj-24331	61	23	min	min	NOUN
brj-24331	61	24	under	under	ADP
brj-24331	61	25	argon	argon	NOUN
brj-24331	61	26	atmosphere	atmosphere	NOUN
brj-24331	61	27	until	until	SCONJ
brj-24331	61	28	the	the	DET
brj-24331	61	29	final	final	ADJ
brj-24331	61	30	temperature	temperature	NOUN
brj-24331	61	31	was	be	AUX
brj-24331	61	32	reached	reach	VERB
brj-24331	61	33	.	.	PUNCT
brj-24331	62	1	the	the	DET
brj-24331	62	2	properties	property	NOUN
brj-24331	62	3	of	of	ADP
brj-24331	62	4	this	this	DET
brj-24331	62	5	char	char	NOUN
brj-24331	62	6	,	,	PUNCT
brj-24331	62	7	along	along	ADP
brj-24331	62	8	with	with	ADP
brj-24331	62	9	the	the	DET
brj-24331	62	10	physicochemical	physicochemical	ADJ
brj-24331	62	11	characteristics	characteristic	NOUN
brj-24331	62	12	of	of	ADP
brj-24331	62	13	raw	raw	PROPN
brj-24331	62	14	ab	ab	PROPN
brj-24331	62	15	,	,	PUNCT
brj-24331	62	16	are	be	AUX
brj-24331	62	17	presented	present	VERB
brj-24331	62	18	in	in	ADP
brj-24331	62	19	table	table	NOUN
brj-24331	62	20	1	1	NUM
brj-24331	62	21	,	,	PUNCT
brj-24331	62	22	and	and	CCONJ
brj-24331	62	23	a	a	DET
brj-24331	62	24	detailed	detailed	ADJ
brj-24331	62	25	description	description	NOUN
brj-24331	62	26	of	of	ADP
brj-24331	62	27	this	this	DET
brj-24331	62	28	feedstock	feedstock	NOUN
brj-24331	62	29	is	be	AUX
brj-24331	62	30	available	available	ADJ
brj-24331	62	31	in	in	ADP
brj-24331	62	32	previous	previous	ADJ
brj-24331	62	33	publications	publication	NOUN
brj-24331	62	34	(	(	PUNCT
brj-24331	62	35	sangaré	sangaré	NOUN
brj-24331	62	36	et	et	PROPN
brj-24331	62	37	al	al	PROPN
brj-24331	62	38	.	.	PROPN
brj-24331	62	39	2024a	2024a	NUM
brj-24331	62	40	,	,	PUNCT
brj-24331	62	41	b	b	NOUN
brj-24331	62	42	)	)	PUNCT
brj-24331	62	43	.	.	PUNCT
brj-24331	63	1	peer	peer	NOUN
brj-24331	63	2	-	-	PUNCT
brj-24331	63	3	reviewed	review	VERB
brj-24331	63	4	article	article	NOUN
brj-24331	63	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	63	6	sangaré	sangaré	PROPN
brj-24331	63	7	et	et	PROPN
brj-24331	63	8	al	al	PROPN
brj-24331	63	9	.	.	PROPN
brj-24331	64	1	(	(	PUNCT
brj-24331	64	2	2025	2025	NUM
brj-24331	64	3	)	)	PUNCT
brj-24331	64	4	.	.	PUNCT
brj-24331	65	1	“	"	PUNCT
brj-24331	65	2	pyrogasification	pyrogasification	NOUN
brj-24331	65	3	of	of	ADP
brj-24331	65	4	biomass	biomass	NOUN
brj-24331	65	5	,	,	PUNCT
brj-24331	65	6	”	"	PUNCT
brj-24331	65	7	bioresources	bioresource	NOUN
brj-24331	65	8	20(2	20(2	NUM
brj-24331	65	9	)	)	PUNCT
brj-24331	65	10	,	,	PUNCT
brj-24331	65	11	2844	2844	NUM
brj-24331	65	12	-	-	SYM
brj-24331	65	13	2870	2870	NUM
brj-24331	65	14	.	.	PUNCT
brj-24331	65	15	2847	2847	NUM
brj-24331	65	16	experimental	experimental	ADJ
brj-24331	65	17	setup	setup	NOUN
brj-24331	65	18	and	and	CCONJ
brj-24331	65	19	analytical	analytical	ADJ
brj-24331	65	20	methods	method	NOUN
brj-24331	65	21	the	the	DET
brj-24331	65	22	experiments	experiment	NOUN
brj-24331	65	23	were	be	AUX
brj-24331	65	24	conducted	conduct	VERB
brj-24331	65	25	using	use	VERB
brj-24331	65	26	a	a	DET
brj-24331	65	27	netzsch	netzsch	PROPN
brj-24331	65	28	sta	sta	NOUN
brj-24331	65	29	449	449	NUM
brj-24331	65	30	f3	f3	PROPN
brj-24331	65	31	jupiter	jupiter	PROPN
brj-24331	65	32	thermal	thermal	PROPN
brj-24331	65	33	analyzer	analyzer	PROPN
brj-24331	65	34	,	,	PUNCT
brj-24331	65	35	coupled	couple	VERB
brj-24331	65	36	with	with	ADP
brj-24331	65	37	an	an	DET
brj-24331	65	38	sra	sra	PROPN
brj-24331	65	39	solia	solia	PROPN
brj-24331	65	40	490	490	NUM
brj-24331	65	41	μ	μ	PROPN
brj-24331	65	42	-	-	PUNCT
brj-24331	65	43	gc	gc	PROPN
brj-24331	65	44	,	,	PUNCT
brj-24331	65	45	equipped	equip	VERB
brj-24331	65	46	with	with	ADP
brj-24331	65	47	three	three	NUM
brj-24331	65	48	thermal	thermal	ADJ
brj-24331	65	49	conductivity	conductivity	NOUN
brj-24331	65	50	detectors	detector	NOUN
brj-24331	65	51	(	(	PUNCT
brj-24331	65	52	tcd	tcd	NOUN
brj-24331	65	53	)	)	PUNCT
brj-24331	65	54	to	to	PART
brj-24331	65	55	allow	allow	VERB
brj-24331	65	56	comprehensive	comprehensive	ADJ
brj-24331	65	57	gas	gas	NOUN
brj-24331	65	58	quantitation	quantitation	NOUN
brj-24331	65	59	and	and	CCONJ
brj-24331	65	60	analysis	analysis	NOUN
brj-24331	65	61	.	.	PUNCT
brj-24331	66	1	the	the	DET
brj-24331	66	2	experimental	experimental	ADJ
brj-24331	66	3	setup	setup	NOUN
brj-24331	66	4	and	and	CCONJ
brj-24331	66	5	analytical	analytical	ADJ
brj-24331	66	6	methodology	methodology	NOUN
brj-24331	66	7	used	use	VERB
brj-24331	66	8	were	be	AUX
brj-24331	66	9	described	describe	VERB
brj-24331	66	10	in	in	ADP
brj-24331	66	11	a	a	DET
brj-24331	66	12	previous	previous	ADJ
brj-24331	66	13	study	study	NOUN
brj-24331	66	14	(	(	PUNCT
brj-24331	66	15	sangaré	sangaré	NOUN
brj-24331	66	16	et	et	PROPN
brj-24331	66	17	al	al	PROPN
brj-24331	66	18	.	.	PROPN
brj-24331	66	19	2024a	2024a	NUM
brj-24331	66	20	)	)	PUNCT
brj-24331	66	21	.	.	PUNCT
brj-24331	67	1	for	for	ADP
brj-24331	67	2	each	each	DET
brj-24331	67	3	experiment	experiment	NOUN
brj-24331	67	4	,	,	PUNCT
brj-24331	67	5	around	around	ADV
brj-24331	67	6	150	150	NUM
brj-24331	67	7	±	±	NUM
brj-24331	67	8	2	2	NUM
brj-24331	67	9	mg	mg	ADP
brj-24331	67	10	of	of	ADP
brj-24331	67	11	biomass	biomass	NOUN
brj-24331	67	12	;	;	PUNCT
brj-24331	67	13	was	be	AUX
brj-24331	67	14	placed	place	VERB
brj-24331	67	15	in	in	ADP
brj-24331	67	16	a	a	DET
brj-24331	67	17	crucible	crucible	NOUN
brj-24331	67	18	.	.	PUNCT
brj-24331	68	1	the	the	DET
brj-24331	68	2	biomass	biomass	NOUN
brj-24331	68	3	samples	sample	NOUN
brj-24331	68	4	were	be	AUX
brj-24331	68	5	heated	heat	VERB
brj-24331	68	6	from	from	ADP
brj-24331	68	7	room	room	NOUN
brj-24331	68	8	temperature	temperature	NOUN
brj-24331	68	9	to	to	ADP
brj-24331	68	10	700	700	NUM
brj-24331	68	11	°	°	NOUN
brj-24331	68	12	c	c	NOUN
brj-24331	68	13	at	at	ADP
brj-24331	68	14	40	40	NUM
brj-24331	68	15	°	°	NOUN
brj-24331	68	16	c	c	NOUN
brj-24331	68	17	/	/	SYM
brj-24331	68	18	min	min	NOUN
brj-24331	68	19	,	,	PUNCT
brj-24331	68	20	with	with	ADP
brj-24331	68	21	argon	argon	NOUN
brj-24331	68	22	as	as	ADP
brj-24331	68	23	the	the	DET
brj-24331	68	24	carrier	carrier	NOUN
brj-24331	68	25	gas	gas	NOUN
brj-24331	68	26	at	at	ADP
brj-24331	68	27	a	a	DET
brj-24331	68	28	flow	flow	NOUN
brj-24331	68	29	rate	rate	NOUN
brj-24331	68	30	of	of	ADP
brj-24331	68	31	20	20	NUM
brj-24331	68	32	ml	ml	NOUN
brj-24331	68	33	/	/	SYM
brj-24331	68	34	min	min	NOUN
brj-24331	68	35	.	.	PROPN
brj-24331	68	36	for	for	ADP
brj-24331	68	37	char	char	NOUN
brj-24331	68	38	oxidation	oxidation	NOUN
brj-24331	68	39	experiments	experiment	NOUN
brj-24331	68	40	,	,	PUNCT
brj-24331	68	41	air	air	NOUN
brj-24331	68	42	was	be	AUX
brj-24331	68	43	introduced	introduce	VERB
brj-24331	68	44	at	at	ADP
brj-24331	68	45	3	3	NUM
brj-24331	68	46	ml	ml	NOUN
brj-24331	68	47	/	/	SYM
brj-24331	68	48	min	min	NOUN
brj-24331	68	49	from	from	ADP
brj-24331	68	50	700	700	NUM
brj-24331	68	51	to	to	ADP
brj-24331	68	52	1000	1000	NUM
brj-24331	68	53	°	°	SYM
brj-24331	68	54	c	c	NOUN
brj-24331	68	55	under	under	ADP
brj-24331	68	56	non	non	ADJ
brj-24331	68	57	-	-	ADJ
brj-24331	68	58	isothermal	isothermal	ADJ
brj-24331	68	59	conditions	condition	NOUN
brj-24331	68	60	to	to	PART
brj-24331	68	61	evaluate	evaluate	VERB
brj-24331	68	62	all	all	DET
brj-24331	68	63	four	four	NUM
brj-24331	68	64	biomass	biomass	NOUN
brj-24331	68	65	types	type	NOUN
brj-24331	68	66	.	.	PUNCT
brj-24331	69	1	additionally	additionally	ADV
brj-24331	69	2	,	,	PUNCT
brj-24331	69	3	separate	separate	ADJ
brj-24331	69	4	isothermal	isothermal	ADJ
brj-24331	69	5	gasification	gasification	NOUN
brj-24331	69	6	experiments	experiment	NOUN
brj-24331	69	7	were	be	AUX
brj-24331	69	8	conducted	conduct	VERB
brj-24331	69	9	at	at	ADP
brj-24331	69	10	900	900	NUM
brj-24331	69	11	and	and	CCONJ
brj-24331	69	12	950	950	NUM
brj-24331	69	13	°	°	NOUN
brj-24331	69	14	c	c	NOUN
brj-24331	69	15	with	with	ADP
brj-24331	69	16	an	an	DET
brj-24331	69	17	airflow	airflow	NOUN
brj-24331	69	18	rate	rate	NOUN
brj-24331	69	19	of	of	ADP
brj-24331	69	20	4	4	NUM
brj-24331	69	21	ml	ml	NOUN
brj-24331	69	22	/	/	SYM
brj-24331	69	23	min	min	NOUN
brj-24331	69	24	,	,	PUNCT
brj-24331	69	25	focusing	focus	VERB
brj-24331	69	26	exclusively	exclusively	ADV
brj-24331	69	27	on	on	ADP
brj-24331	69	28	ab	ab	PROPN
brj-24331	69	29	to	to	PART
brj-24331	69	30	investigate	investigate	VERB
brj-24331	69	31	its	its	PRON
brj-24331	69	32	behavior	behavior	NOUN
brj-24331	69	33	under	under	ADP
brj-24331	69	34	these	these	DET
brj-24331	69	35	specific	specific	ADJ
brj-24331	69	36	conditions	condition	NOUN
brj-24331	69	37	.	.	PUNCT
brj-24331	70	1	cfd	cfd	NOUN
brj-24331	70	2	modeling	modeling	NOUN
brj-24331	70	3	strategy	strategy	NOUN
brj-24331	70	4	reactor	reactor	NOUN
brj-24331	70	5	geometry	geometry	NOUN
brj-24331	70	6	in	in	ADP
brj-24331	70	7	this	this	DET
brj-24331	70	8	cfd	cfd	NOUN
brj-24331	70	9	simulation	simulation	NOUN
brj-24331	70	10	,	,	PUNCT
brj-24331	70	11	the	the	DET
brj-24331	70	12	reactor	reactor	NOUN
brj-24331	70	13	geometry	geometry	NOUN
brj-24331	70	14	is	be	AUX
brj-24331	70	15	shown	show	VERB
brj-24331	70	16	in	in	ADP
brj-24331	70	17	fig	fig	NOUN
brj-24331	70	18	.	.	PUNCT
brj-24331	71	1	1	1	X
brj-24331	71	2	.	.	X
brj-24331	71	3	the	the	DET
brj-24331	71	4	reactor	reactor	NOUN
brj-24331	71	5	consists	consist	VERB
brj-24331	71	6	of	of	ADP
brj-24331	71	7	an	an	DET
brj-24331	71	8	alumina	alumina	NOUN
brj-24331	71	9	(	(	PUNCT
brj-24331	71	10	al₂o₃	al₂o₃	NOUN
brj-24331	71	11	)	)	PUNCT
brj-24331	71	12	crucible	crucible	NOUN
brj-24331	71	13	integrated	integrate	VERB
brj-24331	71	14	into	into	ADP
brj-24331	71	15	a	a	DET
brj-24331	71	16	thermogravimetric	thermogravimetric	ADJ
brj-24331	71	17	analyzer	analyzer	NOUN
brj-24331	71	18	,	,	PUNCT
brj-24331	71	19	with	with	ADP
brj-24331	71	20	a	a	DET
brj-24331	71	21	total	total	ADJ
brj-24331	71	22	volume	volume	NOUN
brj-24331	71	23	of	of	ADP
brj-24331	71	24	5	5	NUM
brj-24331	71	25	ml	ml	NOUN
brj-24331	71	26	.	.	PUNCT
brj-24331	72	1	the	the	DET
brj-24331	72	2	geometric	geometric	ADJ
brj-24331	72	3	models	model	NOUN
brj-24331	72	4	were	be	AUX
brj-24331	72	5	created	create	VERB
brj-24331	72	6	using	use	VERB
brj-24331	72	7	comsol	comsol	NOUN
brj-24331	72	8	multiphysics	multiphysics	PROPN
brj-24331	72	9	®	®	PROPN
brj-24331	72	10	6.2	6.2	NUM
brj-24331	72	11	.	.	PUNCT
brj-24331	73	1	based	base	VERB
brj-24331	73	2	on	on	ADP
brj-24331	73	3	the	the	DET
brj-24331	73	4	reactor	reactor	NOUN
brj-24331	73	5	geometry	geometry	NOUN
brj-24331	73	6	characteristics	characteristic	NOUN
brj-24331	73	7	and	and	CCONJ
brj-24331	73	8	to	to	PART
brj-24331	73	9	reduce	reduce	VERB
brj-24331	73	10	computational	computational	ADJ
brj-24331	73	11	time	time	NOUN
brj-24331	73	12	,	,	PUNCT
brj-24331	73	13	a	a	DET
brj-24331	73	14	2d	2d	NUM
brj-24331	73	15	axisymmetric	axisymmetric	ADJ
brj-24331	73	16	model	model	NOUN
brj-24331	73	17	was	be	AUX
brj-24331	73	18	employed	employ	VERB
brj-24331	73	19	,	,	PUNCT
brj-24331	73	20	adjusted	adjust	VERB
brj-24331	73	21	to	to	PART
brj-24331	73	22	correspond	correspond	VERB
brj-24331	73	23	to	to	ADP
brj-24331	73	24	the	the	DET
brj-24331	73	25	dimensions	dimension	NOUN
brj-24331	73	26	of	of	ADP
brj-24331	73	27	the	the	DET
brj-24331	73	28	reactors	reactor	NOUN
brj-24331	73	29	used	use	VERB
brj-24331	73	30	experimentally	experimentally	ADV
brj-24331	73	31	to	to	PART
brj-24331	73	32	simulate	simulate	VERB
brj-24331	73	33	the	the	DET
brj-24331	73	34	entire	entire	ADJ
brj-24331	73	35	pyrogasification	pyrogasification	NOUN
brj-24331	73	36	process	process	NOUN
brj-24331	73	37	.	.	PUNCT
brj-24331	74	1	the	the	DET
brj-24331	74	2	mesh	mesh	NOUN
brj-24331	74	3	independence	independence	NOUN
brj-24331	74	4	study	study	NOUN
brj-24331	74	5	was	be	AUX
brj-24331	74	6	conducted	conduct	VERB
brj-24331	74	7	in	in	ADP
brj-24331	74	8	the	the	DET
brj-24331	74	9	previous	previous	ADJ
brj-24331	74	10	publication	publication	NOUN
brj-24331	74	11	(	(	PUNCT
brj-24331	74	12	sangaré	sangaré	NOUN
brj-24331	74	13	et	et	PROPN
brj-24331	74	14	al	al	PROPN
brj-24331	74	15	.	.	PROPN
brj-24331	74	16	2024b	2024b	NUM
brj-24331	74	17	)	)	PUNCT
brj-24331	74	18	,	,	PUNCT
brj-24331	74	19	and	and	CCONJ
brj-24331	74	20	the	the	DET
brj-24331	74	21	final	final	ADJ
brj-24331	74	22	refined	refined	ADJ
brj-24331	74	23	mesh	mesh	NOUN
brj-24331	74	24	used	use	VERB
brj-24331	74	25	in	in	ADP
brj-24331	74	26	this	this	DET
brj-24331	74	27	work	work	NOUN
brj-24331	74	28	is	be	AUX
brj-24331	74	29	presented	present	VERB
brj-24331	74	30	in	in	ADP
brj-24331	74	31	fig	fig	NOUN
brj-24331	74	32	.	.	PUNCT
brj-24331	75	1	1	1	NUM
brj-24331	75	2	.	.	X
brj-24331	75	3	peer	peer	NOUN
brj-24331	75	4	-	-	PUNCT
brj-24331	75	5	reviewed	review	VERB
brj-24331	75	6	article	article	NOUN
brj-24331	75	7	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	75	8	sangaré	sangaré	PROPN
brj-24331	75	9	et	et	PROPN
brj-24331	75	10	al	al	PROPN
brj-24331	75	11	.	.	PROPN
brj-24331	76	1	(	(	PUNCT
brj-24331	76	2	2025	2025	NUM
brj-24331	76	3	)	)	PUNCT
brj-24331	76	4	.	.	PUNCT
brj-24331	77	1	“	"	PUNCT
brj-24331	77	2	pyrogasification	pyrogasification	NOUN
brj-24331	77	3	of	of	ADP
brj-24331	77	4	biomass	biomass	NOUN
brj-24331	77	5	,	,	PUNCT
brj-24331	77	6	”	"	PUNCT
brj-24331	77	7	bioresources	bioresource	NOUN
brj-24331	77	8	20(2	20(2	NUM
brj-24331	77	9	)	)	PUNCT
brj-24331	77	10	,	,	PUNCT
brj-24331	77	11	2844	2844	NUM
brj-24331	77	12	-	-	SYM
brj-24331	77	13	2870	2870	NUM
brj-24331	77	14	.	.	PUNCT
brj-24331	77	15	2848	2848	NUM
brj-24331	77	16	table	table	NOUN
brj-24331	77	17	1	1	NUM
brj-24331	77	18	.	.	PUNCT
brj-24331	77	19	physicochemical	physicochemical	ADJ
brj-24331	77	20	properties	property	NOUN
brj-24331	77	21	and	and	CCONJ
brj-24331	77	22	compositions	composition	NOUN
brj-24331	77	23	of	of	ADP
brj-24331	77	24	ab	ab	PROPN
brj-24331	77	25	ab	ab	PROPN
brj-24331	77	26	char	char	PROPN
brj-24331	77	27	700	700	NUM
brj-24331	77	28	°	°	NOUN
brj-24331	77	29	c	c	NOUN
brj-24331	77	30	char	char	NOUN
brj-24331	77	31	800	800	NUM
brj-24331	77	32	°	°	ADP
brj-24331	77	33	c	c	NOUN
brj-24331	77	34	char	char	NOUN
brj-24331	77	35	900	900	NUM
brj-24331	77	36	°	°	NOUN
brj-24331	77	37	c	c	NOUN
brj-24331	77	38	char	char	NOUN
brj-24331	77	39	1000	1000	NUM
brj-24331	77	40	°	°	NUM
brj-24331	77	41	c	c	NOUN
brj-24331	77	42	proximate	proximate	NOUN
brj-24331	77	43	analysis	analysis	NOUN
brj-24331	77	44	(	(	PUNCT
brj-24331	77	45	wt%	wt%	ADJ
brj-24331	77	46	)	)	PUNCT
brj-24331	77	47	moisture	moisture	NOUN
brj-24331	77	48	content	content	NOUN
brj-24331	77	49	(	(	PUNCT
brj-24331	77	50	mc	mc	PROPN
brj-24331	77	51	)	)	PUNCT
brj-24331	77	52	4.81±1.21	4.81±1.21	PROPN
brj-24331	77	53	volatile	volatile	ADJ
brj-24331	77	54	matter	matter	NOUN
brj-24331	77	55	(	(	PUNCT
brj-24331	77	56	vm	vm	NOUN
brj-24331	77	57	)	)	PUNCT
brj-24331	77	58	77.91±1.42	77.91±1.42	NUM
brj-24331	77	59	23.30	23.30	NUM
brj-24331	77	60	±	±	NUM
brj-24331	77	61	1.58	1.58	NUM
brj-24331	77	62	fixed	fix	VERB
brj-24331	77	63	carbon	carbon	NOUN
brj-24331	77	64	(	(	PUNCT
brj-24331	77	65	fc	fc	INTJ
brj-24331	77	66	)	)	PUNCT
brj-24331	77	67	a	a	DET
brj-24331	77	68	18.76±1.61	18.76±1.61	NUM
brj-24331	77	69	65.30	65.30	NUM
brj-24331	77	70	±	±	NUM
brj-24331	77	71	2.18	2.18	NUM
brj-24331	77	72	85.61	85.61	NUM
brj-24331	77	73	±	±	NUM
brj-24331	77	74	3.50	3.50	NUM
brj-24331	77	75	87.92	87.92	NUM
brj-24331	77	76	±	±	NUM
brj-24331	77	77	3.20	3.20	NUM
brj-24331	77	78	86.60	86.60	NUM
brj-24331	77	79	±	±	NUM
brj-24331	77	80	1.38	1.38	NUM
brj-24331	77	81	ash	ash	NOUN
brj-24331	77	82	3.34±	3.34±	NUM
brj-24331	77	83	0.43	0.43	NUM
brj-24331	77	84	12.90	12.90	NUM
brj-24331	77	85	±	±	NUM
brj-24331	77	86	0.84	0.84	NUM
brj-24331	77	87	14.39	14.39	NUM
brj-24331	77	88	±	±	NUM
brj-24331	77	89	2.19	2.19	NUM
brj-24331	77	90	12.08	12.08	NUM
brj-24331	77	91	±	±	NUM
brj-24331	77	92	3.20	3.20	NUM
brj-24331	77	93	13.40	13.40	NUM
brj-24331	77	94	±	±	NUM
brj-24331	77	95	1.38	1.38	NUM
brj-24331	77	96	ultimate	ultimate	ADJ
brj-24331	77	97	analysis	analysis	NOUN
brj-24331	77	98	(	(	PUNCT
brj-24331	77	99	wt%	wt%	NUM
brj-24331	77	100	)	)	PUNCT
brj-24331	77	101	carbon	carbon	NOUN
brj-24331	77	102	45.14	45.14	NUM
brj-24331	77	103	±	±	NUM
brj-24331	77	104	0.21	0.21	NUM
brj-24331	77	105	76.75	76.75	NUM
brj-24331	77	106	±	±	NUM
brj-24331	77	107	0.06	0.06	NUM
brj-24331	77	108	77.40	77.40	NUM
brj-24331	77	109	±	±	NUM
brj-24331	77	110	1.58	1.58	NUM
brj-24331	77	111	80.31	80.31	NUM
brj-24331	77	112	±	±	NUM
brj-24331	77	113	2.32	2.32	NUM
brj-24331	77	114	79.40	79.40	NUM
brj-24331	77	115	±	±	NUM
brj-24331	77	116	1.88	1.88	NUM
brj-24331	77	117	hydrogen	hydrogen	NOUN
brj-24331	77	118	5.50	5.50	NUM
brj-24331	77	119	±	±	NUM
brj-24331	77	120	0.23	0.23	NUM
brj-24331	77	121	1.90	1.90	NUM
brj-24331	77	122	±	±	NUM
brj-24331	77	123	0.00	0.00	NUM
brj-24331	77	124	1.41	1.41	NUM
brj-24331	77	125	±	±	NUM
brj-24331	77	126	0.01	0.01	NUM
brj-24331	77	127	0.94	0.94	NUM
brj-24331	77	128	±	±	NUM
brj-24331	77	129	0.00	0.00	NUM
brj-24331	77	130	0.75	0.75	NUM
brj-24331	77	131	±	±	NUM
brj-24331	77	132	0.01	0.01	NUM
brj-24331	77	133	nitrogen	nitrogen	NOUN
brj-24331	77	134	0.31±	0.31±	NOUN
brj-24331	77	135	0.10	0.10	NUM
brj-24331	77	136	0.61	0.61	NUM
brj-24331	77	137	±	±	NUM
brj-24331	77	138	0.06	0.06	NUM
brj-24331	77	139	0.86	0.86	NUM
brj-24331	77	140	±	±	NUM
brj-24331	77	141	0.07	0.07	NUM
brj-24331	77	142	0.88	0.88	NUM
brj-24331	77	143	±	±	NUM
brj-24331	77	144	0.04	0.04	NUM
brj-24331	77	145	0.98	0.98	NUM
brj-24331	77	146	±	±	NUM
brj-24331	77	147	0.04	0.04	NUM
brj-24331	77	148	sulfur	sulfur	NOUN
brj-24331	77	149	nd	nd	NOUN
brj-24331	77	150	.	.	PROPN
brj-24331	77	151	nd	nd	PROPN
brj-24331	77	152	.	.	PUNCT
brj-24331	77	153	oxygen	oxygen	NOUN
brj-24331	77	154	a	a	DET
brj-24331	77	155	45.71±	45.71±	NUM
brj-24331	77	156	0.22	0.22	NUM
brj-24331	77	157	7.84	7.84	NUM
brj-24331	77	158	±	±	NUM
brj-24331	77	159	0.12	0.12	NUM
brj-24331	77	160	7.20	7.20	NUM
brj-24331	77	161	±	±	NUM
brj-24331	77	162	1.52	1.52	NUM
brj-24331	77	163	7.78	7.78	NUM
brj-24331	77	164	±	±	NUM
brj-24331	77	165	2.28	2.28	NUM
brj-24331	77	166	5.10	5.10	NUM
brj-24331	77	167	±	±	NUM
brj-24331	77	168	1.90	1.90	NUM
brj-24331	77	169	chemical	chemical	NOUN
brj-24331	77	170	analysis	analysis	NOUN
brj-24331	77	171	(	(	PUNCT
brj-24331	77	172	wt%	wt%	NUM
brj-24331	77	173	)	)	PUNCT
brj-24331	77	174	*	*	PUNCT
brj-24331	77	175	extractives	extractive	NOUN
brj-24331	77	176	d	d	X
brj-24331	77	177	(	(	PUNCT
brj-24331	77	178	wt	wt	PROPN
brj-24331	77	179	.	.	PUNCT
brj-24331	77	180	)	)	PUNCT
brj-24331	78	1	tgl	tgl	PROPN
brj-24331	78	2	1.10	1.10	NUM
brj-24331	78	3	tann	tann	PROPN
brj-24331	78	4	0.40	0.40	NUM
brj-24331	78	5	lignin	lignin	PROPN
brj-24331	78	6	d	d	PROPN
brj-24331	78	7	(	(	PUNCT
brj-24331	78	8	wt.%	wt.%	PROPN
brj-24331	78	9	)	)	PUNCT
brj-24331	78	10	ligc	ligc	NOUN
brj-24331	78	11	5.01	5.01	NUM
brj-24331	78	12	ligh	ligh	PROPN
brj-24331	78	13	8.12	8.12	NUM
brj-24331	78	14	ligo	ligo	PROPN
brj-24331	78	15	1.12	1.12	NUM
brj-24331	78	16	hemicellulose	hemicellulose	NOUN
brj-24331	78	17	(	(	PUNCT
brj-24331	78	18	wt.%	wt.%	PROPN
brj-24331	78	19	)	)	PUNCT
brj-24331	78	20	43.81	43.81	NUM
brj-24331	78	21	cellulose	cellulose	NOUN
brj-24331	78	22	a	a	DET
brj-24331	78	23	(	(	PUNCT
brj-24331	78	24	wt.%	wt.%	PROPN
brj-24331	78	25	)	)	PUNCT
brj-24331	78	26	40.74	40.74	NUM
brj-24331	78	27	hhv(mj	hhv(mj	X
brj-24331	78	28	/	/	SYM
brj-24331	78	29	kg	kg	NOUN
brj-24331	78	30	)	)	PUNCT
brj-24331	78	31	16.5±0.3	16.5±0.3	NUM
brj-24331	78	32	bulk	bulk	ADJ
brj-24331	78	33	densityb	densityb	NOUN
brj-24331	78	34	(	(	PUNCT
brj-24331	78	35	kg	kg	NOUN
brj-24331	78	36	/	/	SYM
brj-24331	78	37	m3	m3	PROPN
brj-24331	78	38	)	)	PUNCT
brj-24331	78	39	673.4	673.4	NUM
brj-24331	78	40	358	358	NUM
brj-24331	78	41	actual	actual	ADJ
brj-24331	78	42	densityc	densityc	NOUN
brj-24331	78	43	(	(	PUNCT
brj-24331	78	44	kg	kg	NOUN
brj-24331	78	45	/	/	SYM
brj-24331	78	46	m3	m3	PROPN
brj-24331	78	47	)	)	PUNCT
brj-24331	78	48	1559	1559	NUM
brj-24331	78	49	porosity	porosity	NOUN
brj-24331	78	50	(	(	PUNCT
brj-24331	78	51	-	-	SYM
brj-24331	78	52	)	)	PUNCT
brj-24331	78	53	0.57	0.57	NUM
brj-24331	78	54	0.74	0.74	NUM
brj-24331	78	55	average	average	ADJ
brj-24331	78	56	particle	particle	NOUN
brj-24331	78	57	size	size	NOUN
brj-24331	78	58	(	(	PUNCT
brj-24331	78	59	mm	mm	NOUN
brj-24331	78	60	)	)	PUNCT
brj-24331	78	61	0.5	0.5	NUM
brj-24331	78	62	0.1	0.1	NUM
brj-24331	78	63	thermal	thermal	ADJ
brj-24331	78	64	conductivity	conductivity	NOUN
brj-24331	78	65	(	(	PUNCT
brj-24331	78	66	w	w	NOUN
brj-24331	78	67	/	/	SYM
brj-24331	78	68	m	m	NOUN
brj-24331	78	69	-	-	PUNCT
brj-24331	78	70	k	k	ADJ
brj-24331	78	71	)	)	PUNCT
brj-24331	78	72	kb	kb	PROPN
brj-24331	78	73	=	=	PUNCT
brj-24331	79	1	0.035	0.035	NUM
brj-24331	79	2	+	+	NUM
brj-24331	79	3	1.73	1.73	NUM
brj-24331	79	4	×	×	NOUN
brj-24331	79	5	10−4	10−4	NUM
brj-24331	79	6	t	t	NOUN
brj-24331	79	7	kchar	kchar	NOUN
brj-24331	79	8	=	=	NUM
brj-24331	79	9	0.08	0.08	NUM
brj-24331	79	10	-	-	PUNCT
brj-24331	79	11	3×10	3×10	NUM
brj-24331	79	12	-	-	SYM
brj-24331	79	13	4	4	NUM
brj-24331	79	14	t	t	NOUN
brj-24331	79	15	heat	heat	NOUN
brj-24331	79	16	capacity	capacity	NOUN
brj-24331	79	17	(	(	PUNCT
brj-24331	79	18	j	j	NOUN
brj-24331	79	19	/	/	SYM
brj-24331	79	20	kg·k	kg·k	ADJ
brj-24331	79	21	)	)	PUNCT
brj-24331	79	22	cpchar	cpchar	NOUN
brj-24331	79	23	=	=	SYM
brj-24331	79	24	1003.2	1003.2	NUM
brj-24331	79	25	+	+	NUM
brj-24331	79	26	2.09	2.09	NUM
brj-24331	79	27	t	t	NOUN
brj-24331	79	28	cpb	cpb	NOUN
brj-24331	79	29	=	=	PROPN
brj-24331	79	30	103.1	103.1	NUM
brj-24331	79	31	+	+	NUM
brj-24331	79	32	3.87	3.87	NUM
brj-24331	79	33	t	t	NOUN
brj-24331	79	34	standard	standard	ADJ
brj-24331	79	35	analysis	analysis	NOUN
brj-24331	79	36	methods	method	NOUN
brj-24331	79	37	moisture	moisture	VERB
brj-24331	79	38	content	content	NOUN
brj-24331	79	39	(	(	PUNCT
brj-24331	79	40	mc	mc	PROPN
brj-24331	79	41	)	)	PUNCT
brj-24331	79	42	en	en	ADP
brj-24331	79	43	14774	14774	NUM
brj-24331	79	44	-	-	SYM
brj-24331	79	45	3	3	NUM
brj-24331	79	46	:	:	SYM
brj-24331	79	47	2009	2009	NUM
brj-24331	79	48	:	:	PUNCT
brj-24331	79	49	e	e	X
brj-24331	79	50	volatile	volatile	ADJ
brj-24331	79	51	matter	matter	NOUN
brj-24331	79	52	(	(	PUNCT
brj-24331	79	53	vm	vm	NOUN
brj-24331	79	54	)	)	PUNCT
brj-24331	79	55	en	en	ADP
brj-24331	79	56	15148	15148	NUM
brj-24331	79	57	:	:	PUNCT
brj-24331	79	58	2009	2009	NUM
brj-24331	79	59	e	e	NOUN
brj-24331	79	60	ash	ash	NOUN
brj-24331	79	61	content	content	NOUN
brj-24331	79	62	en	en	ADP
brj-24331	79	63	14775	14775	NUM
brj-24331	79	64	:	:	PUNCT
brj-24331	79	65	2009	2009	NUM
brj-24331	79	66	:	:	PUNCT
brj-24331	79	67	e	e	X
brj-24331	79	68	fixed	fix	VERB
brj-24331	79	69	carbon	carbon	NOUN
brj-24331	79	70	(	(	PUNCT
brj-24331	79	71	fc	fc	INTJ
brj-24331	79	72	)	)	PUNCT
brj-24331	79	73	fc	fc	PROPN
brj-24331	80	1	=	=	NOUN
brj-24331	80	2	100	100	NUM
brj-24331	80	3	−	−	NOUN
brj-24331	81	1	[	[	X
brj-24331	81	2	mc	mc	X
brj-24331	81	3	+	+	NUM
brj-24331	81	4	vm+	vm+	ADJ
brj-24331	81	5	ash	ash	NOUN
brj-24331	81	6	]	]	PUNCT
brj-24331	81	7	proximate	proximate	VERB
brj-24331	81	8	analysis	analysis	NOUN
brj-24331	81	9	cen	cen	NOUN
brj-24331	81	10	/	/	SYM
brj-24331	81	11	ts	ts	PROPN
brj-24331	81	12	15104:2005	15104:2005	NUM
brj-24331	81	13	higher	high	ADJ
brj-24331	81	14	heating	heating	NOUN
brj-24331	81	15	values	value	NOUN
brj-24331	81	16	(	(	PUNCT
brj-24331	81	17	hhv	hhv	X
brj-24331	81	18	)	)	PUNCT
brj-24331	81	19	astm	astm	PROPN
brj-24331	81	20	d5865	d5865	PROPN
brj-24331	81	21	-	-	PUNCT
brj-24331	81	22	12	12	NUM
brj-24331	81	23	bulk	bulk	ADJ
brj-24331	81	24	density	density	NOUN
brj-24331	81	25	astm	astm	PROPN
brj-24331	81	26	e873	e873	PROPN
brj-24331	81	27	-	-	PROPN
brj-24331	81	28	82	82	NUM
brj-24331	81	29	nd	nd	NOUN
brj-24331	81	30	:	:	PUNCT
brj-24331	81	31	not	not	PART
brj-24331	81	32	detected	detect	VERB
brj-24331	81	33	(	(	PUNCT
brj-24331	81	34	<	<	NOUN
brj-24331	81	35	0.1	0.1	NUM
brj-24331	81	36	%	%	NOUN
brj-24331	81	37	)	)	PUNCT
brj-24331	81	38	;	;	PUNCT
brj-24331	81	39	a	a	PRON
brj-24331	81	40	:	:	PUNCT
brj-24331	81	41	by	by	ADP
brj-24331	81	42	difference	difference	NOUN
brj-24331	81	43	;	;	PUNCT
brj-24331	81	44	b	b	X
brj-24331	81	45	:	:	PUNCT
brj-24331	81	46	bulk	bulk	ADJ
brj-24331	81	47	density	density	NOUN
brj-24331	81	48	was	be	AUX
brj-24331	81	49	estimated	estimate	VERB
brj-24331	81	50	considering	consider	VERB
brj-24331	81	51	that	that	SCONJ
brj-24331	81	52	the	the	DET
brj-24331	81	53	porosity	porosity	NOUN
brj-24331	81	54	is	be	AUX
brj-24331	81	55	the	the	DET
brj-24331	81	56	space	space	NOUN
brj-24331	81	57	between	between	ADP
brj-24331	81	58	the	the	DET
brj-24331	81	59	biomass	biomass	NOUN
brj-24331	81	60	particles	particle	NOUN
brj-24331	81	61	;	;	PUNCT
brj-24331	82	1	c	c	X
brj-24331	82	2	:	:	PUNCT
brj-24331	82	3	actual	actual	ADJ
brj-24331	82	4	density	density	NOUN
brj-24331	82	5	estimated	estimate	VERB
brj-24331	82	6	from	from	ADP
brj-24331	82	7	biomass	biomass	NOUN
brj-24331	82	8	chemical	chemical	NOUN
brj-24331	82	9	composition	composition	NOUN
brj-24331	82	10	,	,	PUNCT
brj-24331	82	11	d	d	NOUN
brj-24331	82	12	:	:	PUNCT
brj-24331	82	13	methodology	methodology	NOUN
brj-24331	82	14	described	describe	VERB
brj-24331	82	15	by	by	ADP
brj-24331	82	16	debiagi	debiagi	PROPN
brj-24331	82	17	et	et	PROPN
brj-24331	82	18	al	al	PROPN
brj-24331	82	19	.	.	PROPN
brj-24331	82	20	(	(	PUNCT
brj-24331	82	21	2015	2015	NUM
brj-24331	82	22	)	)	PUNCT
brj-24331	82	23	and	and	CCONJ
brj-24331	82	24	*	*	NOUN
brj-24331	82	25	:	:	PUNCT
brj-24331	82	26	procedures	procedure	NOUN
brj-24331	82	27	described	describe	VERB
brj-24331	82	28	by	by	ADP
brj-24331	82	29	li	li	PROPN
brj-24331	82	30	et	et	PROPN
brj-24331	82	31	al	al	PROPN
brj-24331	82	32	.	.	PROPN
brj-24331	82	33	(	(	PUNCT
brj-24331	82	34	2004	2004	NUM
brj-24331	82	35	)	)	PUNCT
brj-24331	82	36	.	.	PUNCT
brj-24331	83	1	peer	peer	NOUN
brj-24331	83	2	-	-	PUNCT
brj-24331	83	3	reviewed	review	VERB
brj-24331	83	4	article	article	NOUN
brj-24331	83	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	83	6	sangaré	sangaré	PROPN
brj-24331	83	7	et	et	PROPN
brj-24331	83	8	al	al	PROPN
brj-24331	83	9	.	.	PROPN
brj-24331	84	1	(	(	PUNCT
brj-24331	84	2	2025	2025	NUM
brj-24331	84	3	)	)	PUNCT
brj-24331	84	4	.	.	PUNCT
brj-24331	85	1	“	"	PUNCT
brj-24331	85	2	pyrogasification	pyrogasification	NOUN
brj-24331	85	3	of	of	ADP
brj-24331	85	4	biomass	biomass	NOUN
brj-24331	85	5	,	,	PUNCT
brj-24331	85	6	”	"	PUNCT
brj-24331	85	7	bioresources	bioresource	NOUN
brj-24331	85	8	20(2	20(2	NUM
brj-24331	85	9	)	)	PUNCT
brj-24331	85	10	,	,	PUNCT
brj-24331	85	11	2844	2844	NUM
brj-24331	85	12	-	-	SYM
brj-24331	85	13	2870	2870	NUM
brj-24331	85	14	.	.	PUNCT
brj-24331	85	15	2849	2849	NUM
brj-24331	85	16	fig	fig	NOUN
brj-24331	85	17	.	.	PUNCT
brj-24331	86	1	1	1	X
brj-24331	86	2	.	.	X
brj-24331	86	3	the	the	DET
brj-24331	86	4	reactor	reactor	NOUN
brj-24331	86	5	geometry	geometry	NOUN
brj-24331	86	6	:	:	PUNCT
brj-24331	86	7	a	a	X
brj-24331	86	8	)	)	PUNCT
brj-24331	86	9	cfd	cfd	NOUN
brj-24331	86	10	domain	domain	NOUN
brj-24331	86	11	and	and	CCONJ
brj-24331	86	12	b	b	NOUN
brj-24331	86	13	)	)	PUNCT
brj-24331	86	14	2d	2d	NOUN
brj-24331	86	15	-	-	PUNCT
brj-24331	86	16	axisymmetric	axisymmetric	ADJ
brj-24331	86	17	meshed	mesh	VERB
brj-24331	86	18	cfd	cfd	PROPN
brj-24331	86	19	numerical	numerical	PROPN
brj-24331	86	20	model	model	PROPN
brj-24331	86	21	cfd	cfd	PROPN
brj-24331	86	22	modeling	modeling	NOUN
brj-24331	86	23	was	be	AUX
brj-24331	86	24	carried	carry	VERB
brj-24331	86	25	out	out	ADP
brj-24331	86	26	using	use	VERB
brj-24331	86	27	comsol	comsol	NOUN
brj-24331	86	28	multiphysics	multiphysic	NOUN
brj-24331	86	29	®	®	PROPN
brj-24331	86	30	6.2	6.2	NUM
brj-24331	86	31	.	.	PUNCT
brj-24331	87	1	the	the	DET
brj-24331	87	2	numerical	numerical	PROPN
brj-24331	87	3	modeling	modeling	NOUN
brj-24331	87	4	included	include	VERB
brj-24331	87	5	drying	drying	NOUN
brj-24331	87	6	,	,	PUNCT
brj-24331	87	7	devolatilization	devolatilization	NOUN
brj-24331	87	8	,	,	PUNCT
brj-24331	87	9	and	and	CCONJ
brj-24331	87	10	secondary	secondary	ADJ
brj-24331	87	11	reactions	reaction	NOUN
brj-24331	87	12	,	,	PUNCT
brj-24331	87	13	such	such	ADJ
brj-24331	87	14	as	as	ADP
brj-24331	87	15	tar	tar	NOUN
brj-24331	87	16	cracking	cracking	NOUN
brj-24331	87	17	and	and	CCONJ
brj-24331	87	18	the	the	DET
brj-24331	87	19	subsequent	subsequent	ADJ
brj-24331	87	20	char	char	NOUN
brj-24331	87	21	oxidation	oxidation	NOUN
brj-24331	87	22	and	and	CCONJ
brj-24331	87	23	homogeneous	homogeneous	ADJ
brj-24331	87	24	reactions	reaction	NOUN
brj-24331	87	25	in	in	ADP
brj-24331	87	26	fluid	fluid	ADJ
brj-24331	87	27	phases	phase	NOUN
brj-24331	87	28	.	.	PUNCT
brj-24331	88	1	due	due	ADP
brj-24331	88	2	to	to	ADP
brj-24331	88	3	its	its	PRON
brj-24331	88	4	characteristics	characteristic	NOUN
brj-24331	88	5	,	,	PUNCT
brj-24331	88	6	the	the	DET
brj-24331	88	7	system	system	NOUN
brj-24331	88	8	was	be	AUX
brj-24331	88	9	considered	consider	VERB
brj-24331	88	10	a	a	DET
brj-24331	88	11	porous	porous	ADJ
brj-24331	88	12	medium	medium	NOUN
brj-24331	88	13	system	system	NOUN
brj-24331	88	14	.	.	PUNCT
brj-24331	89	1	to	to	PART
brj-24331	89	2	describe	describe	VERB
brj-24331	89	3	the	the	DET
brj-24331	89	4	flow	flow	NOUN
brj-24331	89	5	in	in	ADP
brj-24331	89	6	the	the	DET
brj-24331	89	7	porous	porous	ADJ
brj-24331	89	8	medium	medium	NOUN
brj-24331	89	9	,	,	PUNCT
brj-24331	89	10	darcy	darcy	PROPN
brj-24331	89	11	's	's	PART
brj-24331	89	12	law	law	NOUN
brj-24331	89	13	was	be	AUX
brj-24331	89	14	used	use	VERB
brj-24331	89	15	in	in	ADP
brj-24331	89	16	combination	combination	NOUN
brj-24331	89	17	with	with	ADP
brj-24331	89	18	brinkman	brinkman	PROPN
brj-24331	89	19	's	's	PART
brj-24331	89	20	equations	equation	NOUN
brj-24331	89	21	,	,	PUNCT
brj-24331	89	22	which	which	PRON
brj-24331	89	23	allowed	allow	VERB
brj-24331	89	24	the	the	DET
brj-24331	89	25	incorporation	incorporation	NOUN
brj-24331	89	26	of	of	ADP
brj-24331	89	27	the	the	DET
brj-24331	89	28	velocity	velocity	NOUN
brj-24331	89	29	and	and	CCONJ
brj-24331	89	30	pressure	pressure	NOUN
brj-24331	89	31	interaction	interaction	NOUN
brj-24331	89	32	in	in	ADP
brj-24331	89	33	the	the	DET
brj-24331	89	34	porous	porous	ADJ
brj-24331	89	35	medium	medium	NOUN
brj-24331	89	36	associated	associate	VERB
brj-24331	89	37	with	with	ADP
brj-24331	89	38	the	the	DET
brj-24331	89	39	solid	solid	ADJ
brj-24331	89	40	phase	phase	NOUN
brj-24331	89	41	.	.	PUNCT
brj-24331	90	1	equation	equation	NOUN
brj-24331	90	2	(	(	PUNCT
brj-24331	90	3	1	1	X
brj-24331	90	4	)	)	PUNCT
brj-24331	90	5	describes	describe	VERB
brj-24331	90	6	fluid	fluid	ADJ
brj-24331	90	7	flow	flow	NOUN
brj-24331	90	8	in	in	ADP
brj-24331	90	9	a	a	DET
brj-24331	90	10	porous	porous	ADJ
brj-24331	90	11	medium	medium	NOUN
brj-24331	90	12	.	.	NOUN
brj-24331	90	13	1	1	NUM
brj-24331	90	14	𝜀𝑝	𝜀𝑝	NOUN
brj-24331	90	15	𝜌	𝜌	X
brj-24331	90	16	(	(	PUNCT
brj-24331	90	17	𝜕𝑢	𝜕𝑢	NOUN
brj-24331	90	18	𝜕𝑡	𝜕𝑡	NOUN
brj-24331	90	19	+	+	CCONJ
brj-24331	90	20	(	(	PUNCT
brj-24331	90	21	𝑢	𝑢	X
brj-24331	90	22	·	·	PUNCT
brj-24331	90	23	𝛻	𝛻	PROPN
brj-24331	90	24	)	)	PUNCT
brj-24331	90	25	𝑢	𝑢	PROPN
brj-24331	90	26	𝜀𝑝	𝜀𝑝	NOUN
brj-24331	90	27	)	)	PUNCT
brj-24331	91	1	=	=	PUNCT
brj-24331	91	2	−𝛻𝑝	−𝛻𝑝	NOUN
brj-24331	92	1	+	+	CCONJ
brj-24331	92	2	𝛻	𝛻	PROPN
brj-24331	92	3	·	·	PUNCT
brj-24331	92	4	(	(	PUNCT
brj-24331	92	5	1	1	NUM
brj-24331	92	6	𝜀𝑝	𝜀𝑝	NOUN
brj-24331	92	7	(	(	PUNCT
brj-24331	92	8	𝜇(𝛻𝑢	𝜇(𝛻𝑢	PROPN
brj-24331	92	9	+	+	PROPN
brj-24331	92	10	(	(	PUNCT
brj-24331	92	11	𝛻𝑢)𝜏	𝛻𝑢)𝜏	NOUN
brj-24331	92	12	)	)	PUNCT
brj-24331	92	13	−	−	PROPN
brj-24331	92	14	2	2	NUM
brj-24331	92	15	3	3	NUM
brj-24331	92	16	𝜇(𝛻	𝜇(𝛻	NOUN
brj-24331	92	17	·	·	PUNCT
brj-24331	92	18	𝑢)𝐼	𝑢)𝐼	NOUN
brj-24331	92	19	)	)	PUNCT
brj-24331	92	20	)	)	PUNCT
brj-24331	93	1	−	−	PROPN
brj-24331	93	2	(	(	PUNCT
brj-24331	93	3	𝜇	𝜇	X
brj-24331	93	4	𝜅	𝜅	X
brj-24331	93	5	+	+	X
brj-24331	93	6	𝑄𝑚	𝑄𝑚	PROPN
brj-24331	93	7	𝜀𝑝	𝜀𝑝	NOUN
brj-24331	93	8	2	2	NUM
brj-24331	93	9	)	)	PUNCT
brj-24331	93	10	𝑢	𝑢	PROPN
brj-24331	93	11	+	+	X
brj-24331	93	12	𝐹	𝐹	PROPN
brj-24331	93	13	(	(	PUNCT
brj-24331	93	14	1	1	NUM
brj-24331	93	15	)	)	PUNCT
brj-24331	93	16	where	where	SCONJ
brj-24331	93	17	u	u	NOUN
brj-24331	93	18	is	be	AUX
brj-24331	93	19	velocity	velocity	NOUN
brj-24331	93	20	(	(	PUNCT
brj-24331	93	21	m	m	NOUN
brj-24331	93	22	/	/	SYM
brj-24331	93	23	s	s	PART
brj-24331	93	24	)	)	PUNCT
brj-24331	93	25	,	,	PUNCT
brj-24331	93	26	μ	μ	PROPN
brj-24331	93	27	is	be	AUX
brj-24331	93	28	fluid	fluid	ADJ
brj-24331	93	29	viscosity	viscosity	NOUN
brj-24331	93	30	(	(	PUNCT
brj-24331	93	31	pa	pa	PROPN
brj-24331	93	32	-	-	PUNCT
brj-24331	93	33	s	s	PROPN
brj-24331	93	34	)	)	PUNCT
brj-24331	93	35	,	,	PUNCT
brj-24331	93	36	ρ	ρ	PROPN
brj-24331	93	37	is	be	AUX
brj-24331	93	38	fluid	fluid	ADJ
brj-24331	93	39	density	density	NOUN
brj-24331	93	40	(	(	PUNCT
brj-24331	93	41	kg	kg	NOUN
brj-24331	93	42	/	/	SYM
brj-24331	93	43	m3	m3	PROPN
brj-24331	93	44	)	)	PUNCT
brj-24331	93	45	,	,	PUNCT
brj-24331	93	46	εp	εp	ADP
brj-24331	93	47	is	be	AUX
brj-24331	93	48	porosity	porosity	NOUN
brj-24331	93	49	(	(	PUNCT
brj-24331	93	50	-	-	PUNCT
brj-24331	93	51	)	)	PUNCT
brj-24331	93	52	,	,	PUNCT
brj-24331	93	53	p	p	NOUN
brj-24331	93	54	is	be	AUX
brj-24331	93	55	pressure	pressure	NOUN
brj-24331	93	56	(	(	PUNCT
brj-24331	93	57	pa	pa	PROPN
brj-24331	93	58	)	)	PUNCT
brj-24331	93	59	,	,	PUNCT
brj-24331	93	60	κ	κ	PROPN
brj-24331	93	61	is	be	AUX
brj-24331	93	62	permeability	permeability	NOUN
brj-24331	93	63	(	(	PUNCT
brj-24331	93	64	m2	m2	PROPN
brj-24331	93	65	)	)	PUNCT
brj-24331	93	66	,	,	PUNCT
brj-24331	93	67	and	and	CCONJ
brj-24331	93	68	f	f	PROPN
brj-24331	93	69	represents	represent	VERB
brj-24331	93	70	external	external	ADJ
brj-24331	93	71	forces	force	NOUN
brj-24331	93	72	(	(	PUNCT
brj-24331	93	73	kg/(m2·s2	kg/(m2·s2	ADV
brj-24331	93	74	)	)	PUNCT
brj-24331	93	75	)	)	PUNCT
brj-24331	93	76	.	.	PUNCT
brj-24331	94	1	additionally	additionally	ADV
brj-24331	94	2	,	,	PUNCT
brj-24331	94	3	i	i	PRON
brj-24331	94	4	and	and	CCONJ
brj-24331	94	5	τ	τ	PROPN
brj-24331	94	6	denote	denote	VERB
brj-24331	94	7	the	the	DET
brj-24331	94	8	identity	identity	NOUN
brj-24331	94	9	matrix	matrix	NOUN
brj-24331	94	10	and	and	CCONJ
brj-24331	94	11	the	the	DET
brj-24331	94	12	transpose	transpose	NOUN
brj-24331	94	13	operator	operator	NOUN
brj-24331	94	14	,	,	PUNCT
brj-24331	94	15	respectively	respectively	ADV
brj-24331	94	16	.	.	PUNCT
brj-24331	95	1	furthermore	furthermore	ADV
brj-24331	95	2	,	,	PUNCT
brj-24331	95	3	qm	qm	PROPN
brj-24331	95	4	is	be	AUX
brj-24331	95	5	the	the	DET
brj-24331	95	6	mass	mass	ADJ
brj-24331	95	7	source	source	NOUN
brj-24331	95	8	(	(	PUNCT
brj-24331	95	9	kg/(m3·s	kg/(m3·s	NOUN
brj-24331	95	10	)	)	PUNCT
brj-24331	95	11	.	.	PUNCT
brj-24331	96	1	equation	equation	NOUN
brj-24331	96	2	1	1	NUM
brj-24331	96	3	is	be	AUX
brj-24331	96	4	always	always	ADV
brj-24331	96	5	solved	solve	VERB
brj-24331	96	6	together	together	ADV
brj-24331	96	7	with	with	ADP
brj-24331	96	8	the	the	DET
brj-24331	96	9	continuity	continuity	NOUN
brj-24331	96	10	eq	eq	ADP
brj-24331	96	11	.	.	PROPN
brj-24331	96	12	2	2	NUM
brj-24331	96	13	.	.	X
brj-24331	97	1	𝜕(𝜀𝑝𝜌	𝜕(𝜀𝑝𝜌	NUM
brj-24331	97	2	)	)	PUNCT
brj-24331	98	1	𝜕𝑡	𝜕𝑡	PROPN
brj-24331	98	2	+	+	CCONJ
brj-24331	98	3	𝛻	𝛻	PROPN
brj-24331	98	4	·	·	PUNCT
brj-24331	98	5	(	(	PUNCT
brj-24331	98	6	𝜀𝑝𝜌𝑢	𝜀𝑝𝜌𝑢	PROPN
brj-24331	98	7	)	)	PUNCT
brj-24331	99	1	=	=	SYM
brj-24331	99	2	𝑄𝑚	𝑄𝑚	PROPN
brj-24331	99	3	(	(	PUNCT
brj-24331	99	4	2	2	NUM
brj-24331	99	5	)	)	PUNCT
brj-24331	99	6	there	there	PRON
brj-24331	99	7	is	be	VERB
brj-24331	99	8	no	no	DET
brj-24331	99	9	mass	mass	ADJ
brj-24331	99	10	source	source	NOUN
brj-24331	99	11	term	term	NOUN
brj-24331	99	12	,	,	PUNCT
brj-24331	99	13	as	as	ADP
brj-24331	99	14	(	(	PUNCT
brj-24331	99	15	qm=0	qm=0	CCONJ
brj-24331	99	16	)	)	PUNCT
brj-24331	99	17	.	.	PUNCT
brj-24331	100	1	in	in	ADP
brj-24331	100	2	porous	porous	ADJ
brj-24331	100	3	media	medium	NOUN
brj-24331	100	4	,	,	PUNCT
brj-24331	100	5	the	the	DET
brj-24331	100	6	κ	κ	NOUN
brj-24331	100	7	controls	control	VERB
brj-24331	100	8	the	the	DET
brj-24331	100	9	as	as	ADP
brj-24331	100	10	outlet	outlet	NOUN
brj-24331	100	11	crucible	crucible	NOUN
brj-24331	100	12	sample	sample	NOUN
brj-24331	100	13	(	(	PUNCT
brj-24331	100	14	biomass	biomass	NOUN
brj-24331	100	15	)	)	PUNCT
brj-24331	100	16	4	4	NUM
brj-24331	100	17	eating	eat	VERB
brj-24331	100	18	element	element	NOUN
brj-24331	100	19	sample	sample	NOUN
brj-24331	100	20	carrier	carrier	NOUN
brj-24331	100	21	carrier	carrier	NOUN
brj-24331	100	22	gas	gas	NOUN
brj-24331	100	23	inlet	inlet	VERB
brj-24331	100	24	4	4	NUM
brj-24331	100	25	peer	peer	NOUN
brj-24331	100	26	-	-	PUNCT
brj-24331	100	27	reviewed	review	VERB
brj-24331	100	28	article	article	NOUN
brj-24331	100	29	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	100	30	sangaré	sangaré	PROPN
brj-24331	100	31	et	et	PROPN
brj-24331	100	32	al	al	PROPN
brj-24331	100	33	.	.	PROPN
brj-24331	101	1	(	(	PUNCT
brj-24331	101	2	2025	2025	NUM
brj-24331	101	3	)	)	PUNCT
brj-24331	101	4	.	.	PUNCT
brj-24331	102	1	“	"	PUNCT
brj-24331	102	2	pyrogasification	pyrogasification	NOUN
brj-24331	102	3	of	of	ADP
brj-24331	102	4	biomass	biomass	NOUN
brj-24331	102	5	,	,	PUNCT
brj-24331	102	6	”	"	PUNCT
brj-24331	102	7	bioresources	bioresource	NOUN
brj-24331	102	8	20(2	20(2	NUM
brj-24331	102	9	)	)	PUNCT
brj-24331	102	10	,	,	PUNCT
brj-24331	102	11	2844	2844	NUM
brj-24331	102	12	-	-	SYM
brj-24331	102	13	2870	2870	NUM
brj-24331	102	14	.	.	PUNCT
brj-24331	102	15	2850	2850	NUM
brj-24331	102	16	directional	directional	ADJ
brj-24331	102	17	movement	movement	NOUN
brj-24331	102	18	of	of	ADP
brj-24331	102	19	flow	flow	NOUN
brj-24331	102	20	,	,	PUNCT
brj-24331	102	21	establishing	establish	VERB
brj-24331	102	22	a	a	DET
brj-24331	102	23	linear	linear	ADJ
brj-24331	102	24	relationship	relationship	NOUN
brj-24331	102	25	between	between	ADP
brj-24331	102	26	pressure	pressure	NOUN
brj-24331	102	27	drop	drop	NOUN
brj-24331	102	28	(	(	PUNCT
brj-24331	102	29	p	p	NOUN
brj-24331	102	30	)	)	PUNCT
brj-24331	102	31	and	and	CCONJ
brj-24331	102	32	the	the	DET
brj-24331	102	33	flow	flow	NOUN
brj-24331	102	34	velocity	velocity	NOUN
brj-24331	102	35	field	field	NOUN
brj-24331	102	36	(	(	PUNCT
brj-24331	102	37	u	u	NOUN
brj-24331	102	38	)	)	PUNCT
brj-24331	102	39	.	.	PUNCT
brj-24331	103	1	−𝛻𝑝	−𝛻𝑝	NOUN
brj-24331	104	1	=	=	PUNCT
brj-24331	104	2	𝜇	𝜇	SCONJ
brj-24331	104	3	𝒖	𝒖	X
brj-24331	104	4	𝑘	𝑘	X
brj-24331	104	5	(	(	PUNCT
brj-24331	104	6	3	3	NUM
brj-24331	104	7	)	)	PUNCT
brj-24331	104	8	darcy	darcy	NOUN
brj-24331	104	9	flow	flow	NOUN
brj-24331	104	10	can	can	AUX
brj-24331	104	11	be	be	AUX
brj-24331	104	12	characterized	characterize	VERB
brj-24331	104	13	by	by	ADP
brj-24331	104	14	kozeny	kozeny	NOUN
brj-24331	104	15	-	-	PUNCT
brj-24331	104	16	carman	carman	NOUN
brj-24331	104	17	equation	equation	NOUN
brj-24331	104	18	,	,	PUNCT
brj-24331	104	19	which	which	PRON
brj-24331	104	20	estimates	estimate	VERB
brj-24331	104	21	the	the	DET
brj-24331	104	22	permeability	permeability	NOUN
brj-24331	104	23	of	of	ADP
brj-24331	104	24	a	a	DET
brj-24331	104	25	porous	porous	ADJ
brj-24331	104	26	medium	medium	NOUN
brj-24331	104	27	based	base	VERB
brj-24331	104	28	on	on	ADP
brj-24331	104	29	the	the	DET
brj-24331	104	30	average	average	ADJ
brj-24331	104	31	particle	particle	NOUN
brj-24331	104	32	diameter	diameter	NOUN
brj-24331	104	33	(	(	PUNCT
brj-24331	104	34	dp	dp	NOUN
brj-24331	104	35	)	)	PUNCT
brj-24331	104	36	and	and	CCONJ
brj-24331	104	37	porosity	porosity	NOUN
brj-24331	104	38	(	(	PUNCT
brj-24331	104	39	εp	εp	NOUN
brj-24331	104	40	)	)	PUNCT
brj-24331	104	41	(	(	PUNCT
brj-24331	104	42	bear	bear	NOUN
brj-24331	104	43	and	and	CCONJ
brj-24331	104	44	braester	braest	ADJ
brj-24331	104	45	1972	1972	NUM
brj-24331	104	46	)	)	PUNCT
brj-24331	104	47	.	.	PUNCT
brj-24331	105	1	𝜅	𝜅	X
brj-24331	105	2	=	=	SYM
brj-24331	105	3	𝑑𝑝	𝑑𝑝	NUM
brj-24331	105	4	2	2	NUM
brj-24331	105	5	180	180	NUM
brj-24331	105	6	𝜀𝑝	𝜀𝑝	NOUN
brj-24331	105	7	3	3	NUM
brj-24331	105	8	(	(	PUNCT
brj-24331	105	9	1−𝜀𝑝)2	1−𝜀𝑝)2	NUM
brj-24331	105	10	(	(	PUNCT
brj-24331	105	11	4	4	NUM
brj-24331	105	12	)	)	PUNCT
brj-24331	105	13	the	the	DET
brj-24331	105	14	brinkman	brinkman	PROPN
brj-24331	105	15	equation	equation	NOUN
brj-24331	105	16	(	(	PUNCT
brj-24331	105	17	eq	eq	NOUN
brj-24331	105	18	.	.	PROPN
brj-24331	105	19	1	1	NUM
brj-24331	105	20	)	)	PUNCT
brj-24331	105	21	,	,	PUNCT
brj-24331	105	22	combined	combine	VERB
brj-24331	105	23	with	with	ADP
brj-24331	105	24	the	the	DET
brj-24331	105	25	continuity	continuity	NOUN
brj-24331	105	26	eq	eq	ADP
brj-24331	105	27	.	.	PROPN
brj-24331	105	28	2	2	NUM
brj-24331	105	29	and	and	CCONJ
brj-24331	105	30	the	the	DET
brj-24331	105	31	species	specie	NOUN
brj-24331	105	32	transport	transport	VERB
brj-24331	105	33	eq	eq	ADP
brj-24331	105	34	.	.	PROPN
brj-24331	105	35	5	5	NUM
brj-24331	105	36	in	in	ADP
brj-24331	105	37	porous	porous	ADJ
brj-24331	105	38	media	medium	NOUN
brj-24331	105	39	,	,	PUNCT
brj-24331	105	40	provides	provide	VERB
brj-24331	105	41	a	a	DET
brj-24331	105	42	comprehensive	comprehensive	ADJ
brj-24331	105	43	framework	framework	NOUN
brj-24331	105	44	for	for	ADP
brj-24331	105	45	modeling	model	VERB
brj-24331	105	46	biomass	biomass	NOUN
brj-24331	105	47	reactions	reaction	NOUN
brj-24331	105	48	,	,	PUNCT
brj-24331	105	49	𝜕(𝜙𝑖𝑐𝑖	𝜕(𝜙𝑖𝑐𝑖	NOUN
brj-24331	105	50	)	)	PUNCT
brj-24331	105	51	𝜕𝑡	𝜕𝑡	NOUN
brj-24331	105	52	+	+	NUM
brj-24331	105	53	𝜕(𝜌𝑐𝑝,𝑖	𝜕(𝜌𝑐𝑝,𝑖	NOUN
brj-24331	105	54	)	)	PUNCT
brj-24331	106	1	𝜕𝑡	𝜕𝑡	NOUN
brj-24331	106	2	+	+	CCONJ
brj-24331	106	3	𝑢	𝑢	X
brj-24331	106	4	·	·	PUNCT
brj-24331	106	5	𝛻𝑐𝑖	𝛻𝑐𝑖	PROPN
brj-24331	107	1	=	=	PUNCT
brj-24331	107	2	𝐷𝑒,𝑖	𝐷𝑒,𝑖	PROPN
brj-24331	107	3	·	·	PUNCT
brj-24331	107	4	𝛻2𝑐𝑖	𝛻2𝑐𝑖	PROPN
brj-24331	108	1	+	+	CCONJ
brj-24331	108	2	𝑅𝑖	𝑅𝑖	PROPN
brj-24331	108	3	(	(	PUNCT
brj-24331	108	4	5	5	NUM
brj-24331	108	5	)	)	PUNCT
brj-24331	108	6	where	where	SCONJ
brj-24331	108	7	ci	ci	NOUN
brj-24331	108	8	represents	represent	VERB
brj-24331	108	9	the	the	DET
brj-24331	108	10	concentration	concentration	NOUN
brj-24331	108	11	of	of	ADP
brj-24331	108	12	species	specie	NOUN
brj-24331	108	13	i	i	PRON
brj-24331	108	14	(	(	PUNCT
brj-24331	108	15	mol	mol	PROPN
brj-24331	108	16	/	/	SYM
brj-24331	108	17	m3	m3	PROPN
brj-24331	108	18	)	)	PUNCT
brj-24331	108	19	in	in	ADP
brj-24331	108	20	the	the	DET
brj-24331	108	21	fluid	fluid	ADJ
brj-24331	108	22	phase	phase	NOUN
brj-24331	108	23	,	,	PUNCT
brj-24331	108	24	t	t	PROPN
brj-24331	108	25	is	be	AUX
brj-24331	108	26	time	time	NOUN
brj-24331	108	27	(	(	PUNCT
brj-24331	108	28	s	s	NOUN
brj-24331	108	29	)	)	PUNCT
brj-24331	108	30	,	,	PUNCT
brj-24331	108	31	cp	cp	X
brj-24331	108	32	,	,	PUNCT
brj-24331	108	33	i	i	PRON
brj-24331	108	34	denotes	denote	VERB
brj-24331	108	35	the	the	DET
brj-24331	108	36	quantity	quantity	NOUN
brj-24331	108	37	adsorbed	adsorb	VERB
brj-24331	108	38	into	into	ADP
brj-24331	108	39	biomass	biomass	NOUN
brj-24331	108	40	bed	bed	NOUN
brj-24331	108	41	(	(	PUNCT
brj-24331	108	42	mol	mol	PROPN
brj-24331	108	43	/	/	SYM
brj-24331	108	44	kg	kg	NOUN
brj-24331	108	45	of	of	ADP
brj-24331	108	46	the	the	DET
brj-24331	108	47	solid	solid	NOUN
brj-24331	108	48	)	)	PUNCT
brj-24331	108	49	,	,	PUNCT
brj-24331	108	50	ϕi	ϕi	SCONJ
brj-24331	108	51	is	be	AUX
brj-24331	108	52	volume	volume	NOUN
brj-24331	108	53	fraction	fraction	NOUN
brj-24331	108	54	of	of	ADP
brj-24331	108	55	fluid	fluid	NOUN
brj-24331	108	56	(	(	PUNCT
brj-24331	108	57	-	-	PUNCT
brj-24331	108	58	)	)	PUNCT
brj-24331	108	59	,	,	PUNCT
brj-24331	108	60	ρ	ρ	PROPN
brj-24331	108	61	is	be	AUX
brj-24331	108	62	the	the	DET
brj-24331	108	63	liquid	liquid	NOUN
brj-24331	108	64	’s	’s	PART
brj-24331	108	65	bulk	bulk	ADJ
brj-24331	108	66	density	density	NOUN
brj-24331	108	67	(	(	PUNCT
brj-24331	108	68	kg	kg	NOUN
brj-24331	108	69	/	/	SYM
brj-24331	108	70	m3	m3	PROPN
brj-24331	108	71	)	)	PUNCT
brj-24331	108	72	,	,	PUNCT
brj-24331	108	73	de	de	X
brj-24331	108	74	,	,	PUNCT
brj-24331	108	75	i	i	PRON
brj-24331	108	76	is	be	AUX
brj-24331	108	77	the	the	DET
brj-24331	108	78	diffusion	diffusion	NOUN
brj-24331	108	79	coefficient	coefficient	NOUN
brj-24331	108	80	(	(	PUNCT
brj-24331	108	81	m2	m2	PROPN
brj-24331	108	82	/	/	SYM
brj-24331	108	83	s	s	PROPN
brj-24331	108	84	)	)	PUNCT
brj-24331	108	85	,	,	PUNCT
brj-24331	108	86	and	and	CCONJ
brj-24331	108	87	ri	ri	NOUN
brj-24331	108	88	describes	describe	VERB
brj-24331	108	89	the	the	DET
brj-24331	108	90	reaction	reaction	NOUN
brj-24331	108	91	rate	rate	NOUN
brj-24331	108	92	model	model	NOUN
brj-24331	108	93	(	(	PUNCT
brj-24331	108	94	mol	mol	PROPN
brj-24331	108	95	/	/	SYM
brj-24331	108	96	m3·s	m3·s	NOUN
brj-24331	108	97	)	)	PUNCT
brj-24331	108	98	.	.	PUNCT
brj-24331	109	1	the	the	DET
brj-24331	109	2	value	value	NOUN
brj-24331	109	3	of	of	ADP
brj-24331	109	4	ri	ri	PROPN
brj-24331	109	5	is	be	AUX
brj-24331	109	6	given	give	VERB
brj-24331	109	7	by	by	ADP
brj-24331	109	8	the	the	DET
brj-24331	109	9	following	follow	VERB
brj-24331	109	10	equation	equation	NOUN
brj-24331	109	11	,	,	PUNCT
brj-24331	110	1	𝑅𝑖	𝑅𝑖	PROPN
brj-24331	110	2	=	=	SYM
brj-24331	110	3	𝐶𝑖𝑘𝑖𝑒	𝐶𝑖𝑘𝑖𝑒	PROPN
brj-24331	110	4	−𝐸𝑖	−𝐸𝑖	VERB
brj-24331	110	5	𝑅𝑇	𝑅𝑇	PROPN
brj-24331	110	6	(	(	PUNCT
brj-24331	110	7	6	6	NUM
brj-24331	110	8	)	)	PUNCT
brj-24331	110	9	where	where	SCONJ
brj-24331	110	10	ki	ki	PROPN
brj-24331	110	11	is	be	AUX
brj-24331	110	12	the	the	DET
brj-24331	110	13	pre	pre	ADJ
brj-24331	110	14	-	-	ADJ
brj-24331	110	15	exponential	exponential	ADJ
brj-24331	110	16	factor	factor	NOUN
brj-24331	110	17	(	(	PUNCT
brj-24331	110	18	1	1	NUM
brj-24331	110	19	/	/	SYM
brj-24331	110	20	s	s	NOUN
brj-24331	110	21	)	)	PUNCT
brj-24331	110	22	,	,	PUNCT
brj-24331	110	23	ei	ei	X
brj-24331	110	24	is	be	AUX
brj-24331	110	25	the	the	DET
brj-24331	110	26	activation	activation	NOUN
brj-24331	110	27	energy	energy	NOUN
brj-24331	110	28	(	(	PUNCT
brj-24331	110	29	j	j	PROPN
brj-24331	110	30	/	/	SYM
brj-24331	110	31	mol	mol	PROPN
brj-24331	110	32	)	)	PUNCT
brj-24331	110	33	,	,	PUNCT
brj-24331	110	34	r	r	NOUN
brj-24331	110	35	is	be	AUX
brj-24331	110	36	the	the	DET
brj-24331	110	37	gas	gas	NOUN
brj-24331	110	38	constant	constant	ADJ
brj-24331	110	39	(	(	PUNCT
brj-24331	110	40	j	j	PROPN
brj-24331	110	41	/	/	SYM
brj-24331	110	42	mol	mol	PROPN
brj-24331	110	43	-	-	PUNCT
brj-24331	110	44	k	k	NOUN
brj-24331	110	45	)	)	PUNCT
brj-24331	110	46	,	,	PUNCT
brj-24331	110	47	and	and	CCONJ
brj-24331	110	48	t	t	PROPN
brj-24331	110	49	is	be	AUX
brj-24331	110	50	the	the	DET
brj-24331	110	51	temperature	temperature	NOUN
brj-24331	110	52	(	(	PUNCT
brj-24331	110	53	k	k	NOUN
brj-24331	110	54	)	)	PUNCT
brj-24331	110	55	.	.	PUNCT
brj-24331	111	1	the	the	DET
brj-24331	111	2	value	value	NOUN
brj-24331	111	3	of	of	ADP
brj-24331	111	4	de	de	X
brj-24331	111	5	,	,	PUNCT
brj-24331	111	6	i	i	PRON
brj-24331	111	7	was	be	AUX
brj-24331	111	8	obtained	obtain	VERB
brj-24331	111	9	from	from	ADP
brj-24331	111	10	literature	literature	NOUN
brj-24331	111	11	correlations	correlation	NOUN
brj-24331	111	12	(	(	PUNCT
brj-24331	111	13	guizani	guizani	NOUN
brj-24331	111	14	et	et	PROPN
brj-24331	111	15	al	al	PROPN
brj-24331	111	16	.	.	PROPN
brj-24331	111	17	2015	2015	NUM
brj-24331	111	18	;	;	PUNCT
brj-24331	111	19	mermoud	mermoud	PROPN
brj-24331	111	20	et	et	PROPN
brj-24331	111	21	al	al	PROPN
brj-24331	111	22	.	.	PROPN
brj-24331	111	23	2006	2006	NUM
brj-24331	111	24	)	)	PUNCT
brj-24331	111	25	,	,	PUNCT
brj-24331	111	26	and	and	CCONJ
brj-24331	111	27	it	it	PRON
brj-24331	111	28	is	be	AUX
brj-24331	111	29	expressed	express	VERB
brj-24331	111	30	as	as	SCONJ
brj-24331	111	31	follows	follow	VERB
brj-24331	111	32	,	,	PUNCT
brj-24331	111	33	𝐷𝑒,𝑖	𝐷𝑒,𝑖	PROPN
brj-24331	111	34	=	=	PRON
brj-24331	111	35	𝜀𝑝	𝜀𝑝	PROPN
brj-24331	111	36	𝛾	𝛾	SYM
brj-24331	111	37	1	1	NUM
brj-24331	111	38	(	(	PUNCT
brj-24331	111	39	1	1	NUM
brj-24331	111	40	𝐷𝐾𝑛𝑢𝑑𝑠𝑒𝑛,𝑖	𝐷𝐾𝑛𝑢𝑑𝑠𝑒𝑛,𝑖	NOUN
brj-24331	111	41	+	+	CCONJ
brj-24331	111	42	1	1	NUM
brj-24331	111	43	𝐷𝐴𝐵,𝑖	𝐷𝐴𝐵,𝑖	NOUN
brj-24331	111	44	)	)	PUNCT
brj-24331	111	45	(	(	PUNCT
brj-24331	111	46	7	7	X
brj-24331	111	47	)	)	PUNCT
brj-24331	111	48	𝐷𝐴𝐵,𝑖	𝐷𝐴𝐵,𝑖	NOUN
brj-24331	111	49	=	=	NOUN
brj-24331	111	50	1.67	1.67	NUM
brj-24331	111	51	×	×	NOUN
brj-24331	111	52	10−5	10−5	NUM
brj-24331	111	53	(	(	PUNCT
brj-24331	111	54	𝑇	𝑇	PROPN
brj-24331	111	55	298	298	NUM
brj-24331	111	56	)	)	PUNCT
brj-24331	111	57	1.75	1.75	NUM
brj-24331	111	58	(	(	PUNCT
brj-24331	111	59	8)	8)	NUM
brj-24331	111	60	𝐷𝐾𝑛𝑢𝑑𝑠𝑒𝑛,𝑖	𝐷𝐾𝑛𝑢𝑑𝑠𝑒𝑛,𝑖	NOUN
brj-24331	112	1	=	=	SYM
brj-24331	112	2	0.97	0.97	NUM
brj-24331	112	3	(	(	PUNCT
brj-24331	112	4	𝑑𝑝	𝑑𝑝	NUM
brj-24331	112	5	2	2	NUM
brj-24331	112	6	)	)	PUNCT
brj-24331	112	7	√	√	ADP
brj-24331	113	1	𝑇	𝑇	PROPN
brj-24331	113	2	𝑀𝑖	𝑀𝑖	PROPN
brj-24331	113	3	(	(	PUNCT
brj-24331	113	4	9	9	NUM
brj-24331	113	5	)	)	PUNCT
brj-24331	113	6	where	where	SCONJ
brj-24331	113	7	dab	dab	PROPN
brj-24331	113	8	,	,	PUNCT
brj-24331	113	9	i	i	PRON
brj-24331	113	10	represents	represent	VERB
brj-24331	113	11	the	the	DET
brj-24331	113	12	binary	binary	ADJ
brj-24331	113	13	diffusivity	diffusivity	NOUN
brj-24331	113	14	(	(	PUNCT
brj-24331	113	15	m2	m2	PROPN
brj-24331	113	16	/	/	SYM
brj-24331	113	17	s	s	PROPN
brj-24331	113	18	)	)	PUNCT
brj-24331	113	19	of	of	ADP
brj-24331	113	20	the	the	DET
brj-24331	113	21	single	single	ADJ
brj-24331	113	22	-	-	PUNCT
brj-24331	113	23	phase	phase	NOUN
brj-24331	113	24	diffusion	diffusion	NOUN
brj-24331	113	25	coefficient	coefficient	NOUN
brj-24331	113	26	for	for	ADP
brj-24331	113	27	species	specie	NOUN
brj-24331	113	28	a	a	DET
brj-24331	113	29	(	(	PUNCT
brj-24331	113	30	reactive	reactive	ADJ
brj-24331	113	31	gases	gas	NOUN
brj-24331	113	32	)	)	PUNCT
brj-24331	113	33	as	as	SCONJ
brj-24331	113	34	it	it	PRON
brj-24331	113	35	migrates	migrate	VERB
brj-24331	113	36	through	through	ADP
brj-24331	113	37	a	a	DET
brj-24331	113	38	carrier	carrier	NOUN
brj-24331	113	39	gas	gas	NOUN
brj-24331	113	40	b	b	PROPN
brj-24331	113	41	(	(	PUNCT
brj-24331	113	42	argon	argon	NOUN
brj-24331	113	43	)	)	PUNCT
brj-24331	113	44	.	.	PUNCT
brj-24331	114	1	the	the	DET
brj-24331	114	2	dknudsen	dknudsen	PROPN
brj-24331	114	3	,	,	PUNCT
brj-24331	114	4	i	i	PRON
brj-24331	114	5	represents	represent	VERB
brj-24331	114	6	the	the	DET
brj-24331	114	7	knudsen	knudsen	PROPN
brj-24331	114	8	diffusion	diffusion	PROPN
brj-24331	114	9	coefficient	coefficient	PROPN
brj-24331	114	10	,	,	PUNCT
brj-24331	114	11	which	which	PRON
brj-24331	114	12	accounts	account	VERB
brj-24331	114	13	for	for	ADP
brj-24331	114	14	molecular	molecular	ADJ
brj-24331	114	15	transport	transport	NOUN
brj-24331	114	16	in	in	ADP
brj-24331	114	17	porous	porous	ADJ
brj-24331	114	18	media	medium	NOUN
brj-24331	114	19	.	.	PUNCT
brj-24331	115	1	this	this	PRON
brj-24331	115	2	occurs	occur	VERB
brj-24331	115	3	when	when	SCONJ
brj-24331	115	4	the	the	DET
brj-24331	115	5	mean	mean	ADJ
brj-24331	115	6	free	free	ADJ
brj-24331	115	7	path	path	NOUN
brj-24331	115	8	of	of	ADP
brj-24331	115	9	gas	gas	NOUN
brj-24331	115	10	molecules	molecule	NOUN
brj-24331	115	11	is	be	AUX
brj-24331	115	12	comparable	comparable	ADJ
brj-24331	115	13	to	to	ADP
brj-24331	115	14	or	or	CCONJ
brj-24331	115	15	larger	large	ADJ
brj-24331	115	16	than	than	ADP
brj-24331	115	17	the	the	DET
brj-24331	115	18	pore	pore	ADJ
brj-24331	115	19	diameter	diameter	NOUN
brj-24331	115	20	,	,	PUNCT
brj-24331	115	21	leading	lead	VERB
brj-24331	115	22	to	to	ADP
brj-24331	115	23	more	more	ADV
brj-24331	115	24	frequent	frequent	ADJ
brj-24331	115	25	molecule	molecule	NOUN
brj-24331	115	26	-	-	PUNCT
brj-24331	115	27	wall	wall	NOUN
brj-24331	115	28	collisions	collision	NOUN
brj-24331	115	29	than	than	ADP
brj-24331	115	30	intermolecular	intermolecular	ADJ
brj-24331	115	31	collisions	collision	NOUN
brj-24331	115	32	(	(	PUNCT
brj-24331	115	33	guizani	guizani	NOUN
brj-24331	115	34	et	et	PROPN
brj-24331	115	35	al	al	PROPN
brj-24331	115	36	.	.	PROPN
brj-24331	115	37	2015	2015	NUM
brj-24331	115	38	)	)	PUNCT
brj-24331	115	39	.	.	PUNCT
brj-24331	116	1	mi	mi	PROPN
brj-24331	116	2	is	be	AUX
brj-24331	116	3	the	the	DET
brj-24331	116	4	molecular	molecular	ADJ
brj-24331	116	5	mass	mass	NOUN
brj-24331	116	6	(	(	PUNCT
brj-24331	116	7	g	g	NOUN
brj-24331	116	8	/	/	SYM
brj-24331	116	9	mol	mol	NOUN
brj-24331	116	10	)	)	PUNCT
brj-24331	116	11	.	.	PUNCT
brj-24331	117	1	the	the	DET
brj-24331	117	2	tortuosity	tortuosity	NOUN
brj-24331	117	3	factor	factor	NOUN
brj-24331	117	4	γ	γ	NOUN
brj-24331	117	5	accounts	account	VERB
brj-24331	117	6	for	for	ADP
brj-24331	117	7	the	the	DET
brj-24331	117	8	reduced	reduce	VERB
brj-24331	117	9	diffusivity	diffusivity	NOUN
brj-24331	117	10	resulting	result	VERB
brj-24331	117	11	from	from	ADP
brj-24331	117	12	the	the	DET
brj-24331	117	13	impediments	impediment	NOUN
brj-24331	117	14	caused	cause	VERB
brj-24331	117	15	by	by	ADP
brj-24331	117	16	particle	particle	NOUN
brj-24331	117	17	grains	grain	NOUN
brj-24331	117	18	,	,	PUNCT
brj-24331	117	19	which	which	PRON
brj-24331	117	20	hinder	hinder	VERB
brj-24331	117	21	brownian	brownian	ADJ
brj-24331	117	22	motion	motion	NOUN
brj-24331	117	23	.	.	PUNCT
brj-24331	118	1	for	for	ADP
brj-24331	118	2	saturated	saturated	ADJ
brj-24331	118	3	media	medium	NOUN
brj-24331	118	4	,	,	PUNCT
brj-24331	118	5	the	the	DET
brj-24331	118	6	effective	effective	ADJ
brj-24331	118	7	tortuosity	tortuosity	NOUN
brj-24331	118	8	can	can	AUX
brj-24331	118	9	be	be	AUX
brj-24331	118	10	determined	determine	VERB
brj-24331	118	11	using	use	VERB
brj-24331	118	12	the	the	DET
brj-24331	118	13	millington	millington	PROPN
brj-24331	118	14	and	and	CCONJ
brj-24331	118	15	quirk	quirk	PROPN
brj-24331	118	16	model	model	NOUN
brj-24331	118	17	(	(	PUNCT
brj-24331	118	18	1961	1961	NUM
brj-24331	118	19	)	)	PUNCT
brj-24331	118	20	,	,	PUNCT
brj-24331	118	21	𝛾	𝛾	PROPN
brj-24331	118	22	=	=	VERB
brj-24331	118	23	𝜀𝑝	𝜀𝑝	PROPN
brj-24331	118	24	−𝟏/𝟑	−𝟏/𝟑	PROPN
brj-24331	118	25	(	(	PUNCT
brj-24331	118	26	10	10	NUM
brj-24331	118	27	)	)	PUNCT
brj-24331	118	28	peer	peer	NOUN
brj-24331	118	29	-	-	PUNCT
brj-24331	118	30	reviewed	review	VERB
brj-24331	118	31	article	article	NOUN
brj-24331	118	32	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	118	33	sangaré	sangaré	PROPN
brj-24331	118	34	et	et	PROPN
brj-24331	118	35	al	al	PROPN
brj-24331	118	36	.	.	PROPN
brj-24331	119	1	(	(	PUNCT
brj-24331	119	2	2025	2025	NUM
brj-24331	119	3	)	)	PUNCT
brj-24331	119	4	.	.	PUNCT
brj-24331	120	1	“	"	PUNCT
brj-24331	120	2	pyrogasification	pyrogasification	NOUN
brj-24331	120	3	of	of	ADP
brj-24331	120	4	biomass	biomass	NOUN
brj-24331	120	5	,	,	PUNCT
brj-24331	120	6	”	"	PUNCT
brj-24331	120	7	bioresources	bioresource	NOUN
brj-24331	120	8	20(2	20(2	NUM
brj-24331	120	9	)	)	PUNCT
brj-24331	120	10	,	,	PUNCT
brj-24331	120	11	2844	2844	NUM
brj-24331	120	12	-	-	SYM
brj-24331	120	13	2870	2870	NUM
brj-24331	120	14	.	.	PUNCT
brj-24331	121	1	2851	2851	NUM
brj-24331	121	2	𝜀𝑝	𝜀𝑝	X
brj-24331	121	3	=	=	SYM
brj-24331	121	4	1	1	NUM
brj-24331	121	5	−	−	NOUN
brj-24331	121	6	𝜌𝑏	𝜌𝑏	X
brj-24331	121	7	𝜌𝑟	𝜌𝑟	X
brj-24331	121	8	(	(	PUNCT
brj-24331	121	9	11	11	NUM
brj-24331	121	10	)	)	PUNCT
brj-24331	121	11	the	the	DET
brj-24331	121	12	heat	heat	NOUN
brj-24331	121	13	transfer	transfer	NOUN
brj-24331	121	14	equation	equation	NOUN
brj-24331	121	15	is	be	AUX
brj-24331	121	16	given	give	VERB
brj-24331	121	17	as	as	SCONJ
brj-24331	121	18	follows	follow	VERB
brj-24331	121	19	,	,	PUNCT
brj-24331	121	20	𝜺𝒑𝜌𝐶𝑝,𝑓	𝜺𝒑𝜌𝐶𝑝,𝑓	VERB
brj-24331	121	21	𝜕𝑇	𝜕𝑇	PROPN
brj-24331	121	22	𝜕𝑡	𝜕𝑡	NOUN
brj-24331	121	23	+	+	CCONJ
brj-24331	121	24	𝜌𝐶𝑝,𝑓𝒖.	𝜌𝐶𝑝,𝑓𝒖.	PROPN
brj-24331	121	25	𝛻𝑇	𝛻𝑇	PROPN
brj-24331	121	26	+	+	CCONJ
brj-24331	121	27	𝛻	𝛻	PROPN
brj-24331	121	28	·	·	PUNCT
brj-24331	121	29	𝜺𝒑𝑘𝑓𝛻𝑇	𝜺𝒑𝑘𝑓𝛻𝑇	NOUN
brj-24331	121	30	=	=	SYM
brj-24331	121	31	𝑄	𝑄	PROPN
brj-24331	121	32	(	(	PUNCT
brj-24331	121	33	12	12	NUM
brj-24331	121	34	)	)	PUNCT
brj-24331	121	35	𝜙𝑠𝜌𝑠𝐶𝑝,𝑠	𝜙𝑠𝜌𝑠𝐶𝑝,𝑠	PROPN
brj-24331	121	36	𝜕𝑇	𝜕𝑇	PROPN
brj-24331	121	37	𝜕𝑡	𝜕𝑡	NOUN
brj-24331	121	38	−	−	PROPN
brj-24331	121	39	𝛻	𝛻	PROPN
brj-24331	121	40	·	·	PUNCT
brj-24331	121	41	𝜙𝑠𝑘𝑠𝛻𝑇	𝜙𝑠𝑘𝑠𝛻𝑇	PROPN
brj-24331	121	42	=	=	PUNCT
brj-24331	121	43	𝑄	𝑄	PROPN
brj-24331	121	44	(	(	PUNCT
brj-24331	121	45	13	13	NUM
brj-24331	121	46	)	)	PUNCT
brj-24331	121	47	where	where	SCONJ
brj-24331	121	48	cpf	cpf	PROPN
brj-24331	121	49	and	and	CCONJ
brj-24331	121	50	cps	cps	PROPN
brj-24331	121	51	,	,	PUNCT
brj-24331	121	52	represent	represent	VERB
brj-24331	121	53	the	the	DET
brj-24331	121	54	heat	heat	NOUN
brj-24331	121	55	capacities	capacity	NOUN
brj-24331	121	56	(	(	PUNCT
brj-24331	121	57	j	j	PROPN
brj-24331	121	58	/	/	SYM
brj-24331	121	59	kg	kg	PROPN
brj-24331	121	60	-	-	PUNCT
brj-24331	121	61	k	k	NOUN
brj-24331	121	62	)	)	PUNCT
brj-24331	121	63	of	of	ADP
brj-24331	121	64	fluid	fluid	NOUN
brj-24331	121	65	and	and	CCONJ
brj-24331	121	66	solid	solid	ADJ
brj-24331	121	67	,	,	PUNCT
brj-24331	121	68	respectively	respectively	ADV
brj-24331	121	69	,	,	PUNCT
brj-24331	121	70	kf	kf	PROPN
brj-24331	121	71	and	and	CCONJ
brj-24331	121	72	ks	ks	PROPN
brj-24331	121	73	are	be	AUX
brj-24331	121	74	the	the	DET
brj-24331	121	75	thermal	thermal	ADJ
brj-24331	121	76	conductivities	conductivity	NOUN
brj-24331	121	77	(	(	PUNCT
brj-24331	121	78	w	w	NOUN
brj-24331	121	79	/	/	SYM
brj-24331	121	80	m	m	NOUN
brj-24331	121	81	-	-	PUNCT
brj-24331	121	82	k	k	NOUN
brj-24331	121	83	)	)	PUNCT
brj-24331	121	84	of	of	ADP
brj-24331	121	85	fluid	fluid	NOUN
brj-24331	121	86	and	and	CCONJ
brj-24331	121	87	solid	solid	ADJ
brj-24331	121	88	,	,	PUNCT
brj-24331	121	89	and	and	CCONJ
brj-24331	121	90	q	q	PROPN
brj-24331	121	91	denotes	denote	VERB
brj-24331	121	92	an	an	DET
brj-24331	121	93	external	external	ADJ
brj-24331	121	94	heat	heat	NOUN
brj-24331	121	95	source	source	NOUN
brj-24331	121	96	(	(	PUNCT
brj-24331	121	97	w	w	NOUN
brj-24331	121	98	/	/	SYM
brj-24331	121	99	m3	m3	PROPN
brj-24331	121	100	)	)	PUNCT
brj-24331	121	101	.	.	PUNCT
brj-24331	122	1	this	this	DET
brj-24331	122	2	cfd	cfd	NOUN
brj-24331	122	3	modeling	modeling	NOUN
brj-24331	122	4	did	do	AUX
brj-24331	122	5	not	not	PART
brj-24331	122	6	include	include	VERB
brj-24331	122	7	heat	heat	NOUN
brj-24331	122	8	generated	generate	VERB
brj-24331	122	9	by	by	ADP
brj-24331	122	10	pressure	pressure	NOUN
brj-24331	122	11	changes	change	NOUN
brj-24331	122	12	due	due	ADJ
brj-24331	122	13	to	to	ADP
brj-24331	122	14	viscous	viscous	ADJ
brj-24331	122	15	dissipation	dissipation	NOUN
brj-24331	122	16	.	.	PUNCT
brj-24331	123	1	chemical	chemical	NOUN
brj-24331	123	2	kinetics	kinetic	NOUN
brj-24331	123	3	applied	apply	VERB
brj-24331	123	4	to	to	ADP
brj-24331	123	5	cfd	cfd	NOUN
brj-24331	123	6	modeling	modeling	NOUN
brj-24331	123	7	of	of	ADP
brj-24331	123	8	pyrolysis	pyrolysis	NOUN
brj-24331	123	9	the	the	DET
brj-24331	123	10	biomass	biomass	NOUN
brj-24331	123	11	pyrolysis	pyrolysis	NOUN
brj-24331	123	12	process	process	NOUN
brj-24331	123	13	begins	begin	VERB
brj-24331	123	14	with	with	ADP
brj-24331	123	15	moisture	moisture	NOUN
brj-24331	123	16	evaporation	evaporation	NOUN
brj-24331	123	17	during	during	ADP
brj-24331	123	18	drying	dry	VERB
brj-24331	123	19	,	,	PUNCT
brj-24331	123	20	followed	follow	VERB
brj-24331	123	21	by	by	ADP
brj-24331	123	22	devolatilization	devolatilization	NOUN
brj-24331	123	23	,	,	PUNCT
brj-24331	123	24	which	which	PRON
brj-24331	123	25	produces	produce	VERB
brj-24331	123	26	volatile	volatile	ADJ
brj-24331	123	27	products	product	NOUN
brj-24331	123	28	,	,	PUNCT
brj-24331	123	29	including	include	VERB
brj-24331	123	30	non	non	ADJ
brj-24331	123	31	-	-	ADJ
brj-24331	123	32	condensable	condensable	ADJ
brj-24331	123	33	and	and	CCONJ
brj-24331	123	34	condensable	condensable	ADJ
brj-24331	123	35	gases	gas	NOUN
brj-24331	123	36	,	,	PUNCT
brj-24331	123	37	bio	bio	NOUN
brj-24331	123	38	-	-	NOUN
brj-24331	123	39	oil	oil	NOUN
brj-24331	123	40	,	,	PUNCT
brj-24331	123	41	and	and	CCONJ
brj-24331	123	42	biochar	biochar	NOUN
brj-24331	123	43	containing	contain	VERB
brj-24331	123	44	fixed	fix	VERB
brj-24331	123	45	carbon	carbon	NOUN
brj-24331	123	46	solids	solid	NOUN
brj-24331	123	47	and	and	CCONJ
brj-24331	123	48	ash	ash	NOUN
brj-24331	123	49	.	.	PUNCT
brj-24331	124	1	secondary	secondary	ADJ
brj-24331	124	2	reactions	reaction	NOUN
brj-24331	124	3	,	,	PUNCT
brj-24331	124	4	such	such	ADJ
brj-24331	124	5	as	as	ADP
brj-24331	124	6	char	char	NOUN
brj-24331	124	7	and	and	CCONJ
brj-24331	124	8	tar	tar	NOUN
brj-24331	124	9	cracking	cracking	NOUN
brj-24331	124	10	,	,	PUNCT
brj-24331	124	11	follow	follow	VERB
brj-24331	124	12	.	.	PUNCT
brj-24331	125	1	the	the	DET
brj-24331	125	2	multi	multi	ADJ
brj-24331	125	3	-	-	ADJ
brj-24331	125	4	step	step	ADJ
brj-24331	125	5	kinetic	kinetic	ADJ
brj-24331	125	6	mechanism	mechanism	NOUN
brj-24331	125	7	scheme	scheme	NOUN
brj-24331	125	8	described	describe	VERB
brj-24331	125	9	in	in	ADP
brj-24331	125	10	a	a	DET
brj-24331	125	11	previous	previous	ADJ
brj-24331	125	12	study	study	NOUN
brj-24331	125	13	(	(	PUNCT
brj-24331	125	14	sangaré	sangaré	NOUN
brj-24331	125	15	et	et	PROPN
brj-24331	125	16	al	al	PROPN
brj-24331	125	17	.	.	PROPN
brj-24331	125	18	2024b	2024b	NUM
brj-24331	125	19	)	)	PUNCT
brj-24331	125	20	was	be	AUX
brj-24331	125	21	used	use	VERB
brj-24331	125	22	to	to	PART
brj-24331	125	23	model	model	VERB
brj-24331	125	24	this	this	DET
brj-24331	125	25	process	process	NOUN
brj-24331	125	26	.	.	PUNCT
brj-24331	126	1	reaction	reaction	NOUN
brj-24331	126	2	kinetics	kinetic	NOUN
brj-24331	126	3	of	of	ADP
brj-24331	126	4	char	char	NOUN
brj-24331	126	5	oxidations	oxidation	NOUN
brj-24331	126	6	after	after	SCONJ
brj-24331	126	7	the	the	DET
brj-24331	126	8	biomass	biomass	NOUN
brj-24331	126	9	was	be	AUX
brj-24331	126	10	pyrolyzed	pyrolyze	VERB
brj-24331	126	11	,	,	PUNCT
brj-24331	126	12	the	the	DET
brj-24331	126	13	resulting	result	VERB
brj-24331	126	14	char	char	NOUN
brj-24331	126	15	was	be	AUX
brj-24331	126	16	oxidized	oxidize	VERB
brj-24331	126	17	by	by	ADP
brj-24331	126	18	injecting	inject	VERB
brj-24331	126	19	a	a	DET
brj-24331	126	20	gasifying	gasifying	NOUN
brj-24331	126	21	agent	agent	NOUN
brj-24331	126	22	.	.	PUNCT
brj-24331	127	1	char	char	NOUN
brj-24331	127	2	oxidation	oxidation	NOUN
brj-24331	127	3	involves	involve	VERB
brj-24331	127	4	both	both	CCONJ
brj-24331	127	5	heterogeneous	heterogeneous	ADJ
brj-24331	127	6	and	and	CCONJ
brj-24331	127	7	homogeneous	homogeneous	ADJ
brj-24331	127	8	reactions	reaction	NOUN
brj-24331	127	9	.	.	PUNCT
brj-24331	128	1	the	the	DET
brj-24331	128	2	heterogeneous	heterogeneous	ADJ
brj-24331	128	3	reaction	reaction	NOUN
brj-24331	128	4	of	of	ADP
brj-24331	128	5	char	char	NOUN
brj-24331	128	6	with	with	ADP
brj-24331	128	7	the	the	DET
brj-24331	128	8	surrounding	surround	VERB
brj-24331	128	9	gaseous	gaseous	ADJ
brj-24331	128	10	species	specie	NOUN
brj-24331	128	11	such	such	ADJ
brj-24331	128	12	as	as	ADP
brj-24331	128	13	o₂	o₂	NOUN
brj-24331	128	14	,	,	PUNCT
brj-24331	128	15	co₂	co₂	NOUN
brj-24331	128	16	,	,	PUNCT
brj-24331	128	17	and	and	CCONJ
brj-24331	128	18	h₂o	h₂o	NOUN
brj-24331	128	19	is	be	AUX
brj-24331	128	20	a	a	DET
brj-24331	128	21	complex	complex	ADJ
brj-24331	128	22	process	process	NOUN
brj-24331	128	23	involving	involve	VERB
brj-24331	128	24	specific	specific	ADJ
brj-24331	128	25	interactions	interaction	NOUN
brj-24331	128	26	such	such	ADJ
brj-24331	128	27	as	as	ADP
brj-24331	128	28	char	char	NOUN
brj-24331	128	29	-	-	PUNCT
brj-24331	128	30	o₂	o₂	PROPN
brj-24331	128	31	,	,	PUNCT
brj-24331	128	32	char	char	NOUN
brj-24331	128	33	-	-	PUNCT
brj-24331	128	34	co₂	co₂	NOUN
brj-24331	128	35	,	,	PUNCT
brj-24331	128	36	and	and	CCONJ
brj-24331	128	37	char₂o	char₂o	ADJ
brj-24331	128	38	reactions	reaction	NOUN
brj-24331	128	39	(	(	PUNCT
brj-24331	128	40	nguyen	nguyen	NOUN
brj-24331	128	41	et	et	PROPN
brj-24331	128	42	al	al	PROPN
brj-24331	128	43	.	.	PROPN
brj-24331	128	44	2018	2018	NUM
brj-24331	128	45	;	;	PUNCT
brj-24331	128	46	fatehi	fatehi	PROPN
brj-24331	128	47	et	et	PROPN
brj-24331	128	48	al	al	PROPN
brj-24331	128	49	.	.	PROPN
brj-24331	128	50	2019	2019	NUM
brj-24331	128	51	;	;	PUNCT
brj-24331	128	52	yang	yang	PROPN
brj-24331	128	53	et	et	PROPN
brj-24331	128	54	al	al	PROPN
brj-24331	128	55	.	.	PROPN
brj-24331	128	56	2022	2022	NUM
brj-24331	128	57	)	)	PUNCT
brj-24331	128	58	.	.	PUNCT
brj-24331	129	1	the	the	DET
brj-24331	129	2	kinetic	kinetic	ADJ
brj-24331	129	3	details	detail	NOUN
brj-24331	129	4	are	be	AUX
brj-24331	129	5	summarized	summarize	VERB
brj-24331	129	6	in	in	ADP
brj-24331	129	7	table	table	NOUN
brj-24331	129	8	2	2	NUM
brj-24331	129	9	.	.	PUNCT
brj-24331	130	1	in	in	ADP
brj-24331	130	2	r1	r1	PROPN
brj-24331	130	3	,	,	PUNCT
brj-24331	130	4	the	the	DET
brj-24331	130	5	parameter	parameter	NOUN
brj-24331	130	6	z	z	PROPN
brj-24331	130	7	is	be	AUX
brj-24331	130	8	defined	define	VERB
brj-24331	130	9	from	from	ADP
brj-24331	130	10	eq	eq	NOUN
brj-24331	130	11	.	.	PROPN
brj-24331	130	12	14	14	NUM
brj-24331	130	13	.	.	PUNCT
brj-24331	131	1	z	z	X
brj-24331	132	1	=	=	SYM
brj-24331	132	2	cco	cco	PROPN
brj-24331	132	3	cco2	cco2	PROPN
brj-24331	132	4	=	=	SYM
brj-24331	132	5	2.5	2.5	NUM
brj-24331	132	6	×	×	NOUN
brj-24331	132	7	103e−	103e−	NUM
brj-24331	132	8	6249	6249	NUM
brj-24331	132	9	t	t	PROPN
brj-24331	132	10	(	(	PUNCT
brj-24331	132	11	14	14	NUM
brj-24331	132	12	)	)	PUNCT
brj-24331	132	13	process	process	NOUN
brj-24331	132	14	simulation	simulation	NOUN
brj-24331	132	15	strategy	strategy	NOUN
brj-24331	132	16	in	in	ADP
brj-24331	132	17	gasification	gasification	NOUN
brj-24331	132	18	modeling	modeling	NOUN
brj-24331	132	19	using	use	VERB
brj-24331	132	20	aspen	aspen	PROPN
brj-24331	132	21	plus	plus	CCONJ
brj-24331	132	22	®	®	NOUN
brj-24331	132	23	,	,	PUNCT
brj-24331	132	24	two	two	NUM
brj-24331	132	25	primary	primary	ADJ
brj-24331	132	26	approaches	approach	NOUN
brj-24331	132	27	can	can	AUX
brj-24331	132	28	be	be	AUX
brj-24331	132	29	applied	apply	VERB
brj-24331	132	30	:	:	PUNCT
brj-24331	132	31	one	one	NUM
brj-24331	132	32	that	that	PRON
brj-24331	132	33	assumes	assume	VERB
brj-24331	132	34	the	the	DET
brj-24331	132	35	complete	complete	ADJ
brj-24331	132	36	equilibrium	equilibrium	NOUN
brj-24331	132	37	of	of	ADP
brj-24331	132	38	the	the	DET
brj-24331	132	39	system	system	NOUN
brj-24331	132	40	and	and	CCONJ
brj-24331	132	41	another	another	PRON
brj-24331	132	42	that	that	PRON
brj-24331	132	43	applies	apply	VERB
brj-24331	132	44	a	a	DET
brj-24331	132	45	semi	semi	ADJ
brj-24331	132	46	-	-	ADJ
brj-24331	132	47	detailed	detailed	ADJ
brj-24331	132	48	kinetic	kinetic	ADJ
brj-24331	132	49	mechanism	mechanism	NOUN
brj-24331	132	50	(	(	PUNCT
brj-24331	132	51	beheshti	beheshti	VERB
brj-24331	132	52	et	et	PROPN
brj-24331	132	53	al	al	PROPN
brj-24331	132	54	.	.	PROPN
brj-24331	132	55	2015	2015	NUM
brj-24331	132	56	)	)	PUNCT
brj-24331	132	57	.	.	PUNCT
brj-24331	133	1	a	a	DET
brj-24331	133	2	semi	semi	ADJ
brj-24331	133	3	-	-	ADJ
brj-24331	133	4	detailed	detailed	ADJ
brj-24331	133	5	kinetic	kinetic	ADJ
brj-24331	133	6	method	method	NOUN
brj-24331	133	7	was	be	AUX
brj-24331	133	8	employed	employ	VERB
brj-24331	133	9	because	because	SCONJ
brj-24331	133	10	the	the	DET
brj-24331	133	11	system	system	NOUN
brj-24331	133	12	may	may	AUX
brj-24331	133	13	not	not	PART
brj-24331	133	14	strictly	strictly	ADV
brj-24331	133	15	achieve	achieve	VERB
brj-24331	133	16	equilibrium	equilibrium	NOUN
brj-24331	133	17	under	under	ADP
brj-24331	133	18	the	the	DET
brj-24331	133	19	simulation	simulation	NOUN
brj-24331	133	20	conditions	condition	NOUN
brj-24331	133	21	evaluated	evaluate	VERB
brj-24331	133	22	in	in	ADP
brj-24331	133	23	this	this	DET
brj-24331	133	24	study	study	NOUN
brj-24331	133	25	.	.	PUNCT
brj-24331	134	1	this	this	DET
brj-24331	134	2	approach	approach	NOUN
brj-24331	134	3	allows	allow	VERB
brj-24331	134	4	for	for	ADP
brj-24331	134	5	estimating	estimate	VERB
brj-24331	134	6	the	the	DET
brj-24331	134	7	product	product	NOUN
brj-24331	134	8	yield	yield	NOUN
brj-24331	134	9	and	and	CCONJ
brj-24331	134	10	gas	gas	NOUN
brj-24331	134	11	composition	composition	NOUN
brj-24331	134	12	during	during	ADP
brj-24331	134	13	the	the	DET
brj-24331	134	14	pyrolysis	pyrolysis	NOUN
brj-24331	134	15	stage	stage	NOUN
brj-24331	134	16	,	,	PUNCT
brj-24331	134	17	followed	follow	VERB
brj-24331	134	18	by	by	ADP
brj-24331	134	19	the	the	DET
brj-24331	134	20	different	different	ADJ
brj-24331	134	21	kinetics	kinetic	NOUN
brj-24331	134	22	of	of	ADP
brj-24331	134	23	oxidation	oxidation	NOUN
brj-24331	134	24	reactions	reaction	NOUN
brj-24331	134	25	.	.	PUNCT
brj-24331	135	1	thermodynamic	thermodynamic	ADJ
brj-24331	135	2	model	model	NOUN
brj-24331	135	3	and	and	CCONJ
brj-24331	135	4	physical	physical	ADJ
brj-24331	135	5	properties	property	NOUN
brj-24331	135	6	process	process	NOUN
brj-24331	135	7	simulations	simulation	NOUN
brj-24331	135	8	were	be	AUX
brj-24331	135	9	conducted	conduct	VERB
brj-24331	135	10	using	use	VERB
brj-24331	135	11	aspen	aspen	PROPN
brj-24331	135	12	plus	plus	CCONJ
brj-24331	135	13	®	®	NOUN
brj-24331	135	14	and	and	CCONJ
brj-24331	135	15	the	the	DET
brj-24331	135	16	redlich	redlich	NOUN
brj-24331	135	17	-	-	PUNCT
brj-24331	135	18	kwongsoave	kwongsoave	NOUN
brj-24331	135	19	(	(	PUNCT
brj-24331	135	20	rk	rk	NOUN
brj-24331	135	21	-	-	PUNCT
brj-24331	135	22	soave	soave	NOUN
brj-24331	135	23	)	)	PUNCT
brj-24331	135	24	thermodynamic	thermodynamic	ADJ
brj-24331	135	25	model	model	NOUN
brj-24331	135	26	to	to	PART
brj-24331	135	27	calculate	calculate	VERB
brj-24331	135	28	thermodynamic	thermodynamic	ADJ
brj-24331	135	29	properties	property	NOUN
brj-24331	135	30	.	.	PUNCT
brj-24331	136	1	the	the	DET
brj-24331	136	2	rk	rk	NOUN
brj-24331	136	3	-	-	PUNCT
brj-24331	136	4	soave	soave	PROPN
brj-24331	136	5	model	model	NOUN
brj-24331	136	6	is	be	AUX
brj-24331	136	7	recommended	recommend	VERB
brj-24331	136	8	for	for	ADP
brj-24331	136	9	mixtures	mixture	NOUN
brj-24331	136	10	containing	contain	VERB
brj-24331	136	11	hydrocarbons	hydrocarbon	NOUN
brj-24331	136	12	and	and	CCONJ
brj-24331	136	13	light	light	ADJ
brj-24331	136	14	gases	gas	NOUN
brj-24331	136	15	and	and	CCONJ
brj-24331	136	16	is	be	AUX
brj-24331	136	17	suitable	suitable	ADJ
brj-24331	136	18	for	for	ADP
brj-24331	136	19	estimating	estimate	VERB
brj-24331	136	20	the	the	DET
brj-24331	136	21	thermodynamic	thermodynamic	ADJ
brj-24331	136	22	properties	property	NOUN
brj-24331	136	23	of	of	ADP
brj-24331	136	24	certain	certain	ADJ
brj-24331	136	25	solids	solid	NOUN
brj-24331	136	26	,	,	PUNCT
brj-24331	136	27	including	include	VERB
brj-24331	136	28	carbon	carbon	NOUN
brj-24331	136	29	(	(	PUNCT
brj-24331	136	30	françois	françois	PROPN
brj-24331	136	31	et	et	PROPN
brj-24331	136	32	al	al	PROPN
brj-24331	136	33	.	.	PROPN
brj-24331	136	34	2013	2013	NUM
brj-24331	136	35	)	)	PUNCT
brj-24331	136	36	.	.	PUNCT
brj-24331	137	1	this	this	DET
brj-24331	137	2	model	model	NOUN
brj-24331	137	3	was	be	AUX
brj-24331	137	4	employed	employ	VERB
brj-24331	137	5	to	to	PART
brj-24331	137	6	predict	predict	VERB
brj-24331	137	7	the	the	DET
brj-24331	137	8	physical	physical	ADJ
brj-24331	137	9	properties	property	NOUN
brj-24331	137	10	peer	peer	NOUN
brj-24331	137	11	-	-	PUNCT
brj-24331	137	12	reviewed	review	VERB
brj-24331	137	13	article	article	NOUN
brj-24331	137	14	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	137	15	sangaré	sangaré	PROPN
brj-24331	137	16	et	et	PROPN
brj-24331	137	17	al	al	PROPN
brj-24331	137	18	.	.	PROPN
brj-24331	138	1	(	(	PUNCT
brj-24331	138	2	2025	2025	NUM
brj-24331	138	3	)	)	PUNCT
brj-24331	138	4	.	.	PUNCT
brj-24331	139	1	“	"	PUNCT
brj-24331	139	2	pyrogasification	pyrogasification	NOUN
brj-24331	139	3	of	of	ADP
brj-24331	139	4	biomass	biomass	NOUN
brj-24331	139	5	,	,	PUNCT
brj-24331	139	6	”	"	PUNCT
brj-24331	139	7	bioresources	bioresource	NOUN
brj-24331	139	8	20(2	20(2	NUM
brj-24331	139	9	)	)	PUNCT
brj-24331	139	10	,	,	PUNCT
brj-24331	139	11	2844	2844	NUM
brj-24331	139	12	-	-	SYM
brj-24331	139	13	2870	2870	NUM
brj-24331	139	14	.	.	PUNCT
brj-24331	140	1	2852	2852	NUM
brj-24331	140	2	of	of	ADP
brj-24331	140	3	both	both	CCONJ
brj-24331	140	4	conventional	conventional	ADJ
brj-24331	140	5	mixed	mixed	ADJ
brj-24331	140	6	and	and	CCONJ
brj-24331	140	7	non	non	ADJ
brj-24331	140	8	-	-	ADJ
brj-24331	140	9	conventional	conventional	ADJ
brj-24331	140	10	components	component	NOUN
brj-24331	140	11	.	.	PUNCT
brj-24331	141	1	for	for	ADP
brj-24331	141	2	non	non	ADJ
brj-24331	141	3	-	-	ADJ
brj-24331	141	4	conventional	conventional	ADJ
brj-24331	141	5	components	component	NOUN
brj-24331	141	6	,	,	PUNCT
brj-24331	141	7	such	such	ADJ
brj-24331	141	8	as	as	ADP
brj-24331	141	9	biomass	biomass	NOUN
brj-24331	141	10	,	,	PUNCT
brj-24331	141	11	char	char	NOUN
brj-24331	141	12	,	,	PUNCT
brj-24331	141	13	and	and	CCONJ
brj-24331	141	14	ash	ash	NOUN
brj-24331	141	15	,	,	PUNCT
brj-24331	141	16	the	the	DET
brj-24331	141	17	enthalpy	enthalpy	NOUN
brj-24331	141	18	and	and	CCONJ
brj-24331	141	19	density	density	NOUN
brj-24331	141	20	were	be	AUX
brj-24331	141	21	calculated	calculate	VERB
brj-24331	141	22	using	use	VERB
brj-24331	141	23	the	the	DET
brj-24331	141	24	hcoalgen	hcoalgen	NOUN
brj-24331	141	25	and	and	CCONJ
brj-24331	141	26	dcoaligt	dcoaligt	PROPN
brj-24331	141	27	models	model	NOUN
brj-24331	141	28	,	,	PUNCT
brj-24331	141	29	respectively	respectively	ADV
brj-24331	141	30	.	.	PUNCT
brj-24331	142	1	the	the	DET
brj-24331	142	2	hcoalgen	hcoalgen	PROPN
brj-24331	142	3	model	model	NOUN
brj-24331	142	4	in	in	ADP
brj-24331	142	5	aspen	aspen	PROPN
brj-24331	142	6	plus	plus	CCONJ
brj-24331	142	7	®	®	NOUN
brj-24331	142	8	requires	require	VERB
brj-24331	142	9	three	three	NUM
brj-24331	142	10	key	key	ADJ
brj-24331	142	11	attributes	attribute	NOUN
brj-24331	142	12	:	:	PUNCT
brj-24331	142	13	proximate	proximate	VERB
brj-24331	142	14	analysis	analysis	NOUN
brj-24331	142	15	(	(	PUNCT
brj-24331	142	16	proxanal	proxanal	ADJ
brj-24331	142	17	)	)	PUNCT
brj-24331	142	18	,	,	PUNCT
brj-24331	142	19	ultimate	ultimate	ADJ
brj-24331	142	20	analysis	analysis	NOUN
brj-24331	142	21	(	(	PUNCT
brj-24331	142	22	ultanal	ultanal	ADJ
brj-24331	142	23	)	)	PUNCT
brj-24331	142	24	,	,	PUNCT
brj-24331	142	25	and	and	CCONJ
brj-24331	142	26	sulfur	sulfur	NOUN
brj-24331	142	27	analysis	analysis	NOUN
brj-24331	142	28	(	(	PUNCT
brj-24331	142	29	sulfanal	sulfanal	ADJ
brj-24331	142	30	)	)	PUNCT
brj-24331	142	31	.	.	PUNCT
brj-24331	143	1	ultimate	ultimate	ADJ
brj-24331	143	2	analysis	analysis	NOUN
brj-24331	143	3	gives	give	VERB
brj-24331	143	4	biomass	biomass	NOUN
brj-24331	143	5	or	or	CCONJ
brj-24331	143	6	char	char	NOUN
brj-24331	143	7	mass	mass	NOUN
brj-24331	143	8	composition	composition	NOUN
brj-24331	143	9	in	in	ADP
brj-24331	143	10	c	c	PROPN
brj-24331	143	11	,	,	PUNCT
brj-24331	143	12	h	h	NOUN
brj-24331	143	13	,	,	PUNCT
brj-24331	143	14	n	n	CCONJ
brj-24331	143	15	,	,	PUNCT
brj-24331	143	16	s	s	X
brj-24331	143	17	,	,	PUNCT
brj-24331	143	18	o	o	NOUN
brj-24331	143	19	,	,	PUNCT
brj-24331	143	20	and	and	CCONJ
brj-24331	143	21	ash	ash	NOUN
brj-24331	143	22	.	.	PUNCT
brj-24331	144	1	proximate	proximate	VERB
brj-24331	144	2	analysis	analysis	NOUN
brj-24331	144	3	reports	report	VERB
brj-24331	144	4	the	the	DET
brj-24331	144	5	contents	content	NOUN
brj-24331	144	6	of	of	ADP
brj-24331	144	7	mc	mc	PROPN
brj-24331	144	8	,	,	PUNCT
brj-24331	144	9	fc	fc	PROPN
brj-24331	144	10	,	,	PUNCT
brj-24331	144	11	vm	vm	PROPN
brj-24331	144	12	,	,	PUNCT
brj-24331	144	13	and	and	CCONJ
brj-24331	144	14	ash	ash	NOUN
brj-24331	144	15	.	.	PUNCT
brj-24331	145	1	finally	finally	ADV
brj-24331	145	2	,	,	PUNCT
brj-24331	145	3	sulfur	sulfur	NOUN
brj-24331	145	4	analysis	analysis	NOUN
brj-24331	145	5	divides	divide	VERB
brj-24331	145	6	the	the	DET
brj-24331	145	7	sulfur	sulfur	NOUN
brj-24331	145	8	into	into	ADP
brj-24331	145	9	pyritic	pyritic	ADJ
brj-24331	145	10	and	and	CCONJ
brj-24331	145	11	sulfate	sulfate	NOUN
brj-24331	145	12	table	table	NOUN
brj-24331	145	13	2	2	NUM
brj-24331	145	14	.	.	PUNCT
brj-24331	145	15	reaction	reaction	NOUN
brj-24331	145	16	rates	rate	NOUN
brj-24331	145	17	for	for	ADP
brj-24331	145	18	homogeneous	homogeneous	ADJ
brj-24331	145	19	and	and	CCONJ
brj-24331	145	20	heterogeneous	heterogeneous	ADJ
brj-24331	145	21	reactions	reaction	NOUN
brj-24331	145	22	involved	involve	VERB
brj-24331	145	23	in	in	ADP
brj-24331	145	24	char	char	NOUN
brj-24331	145	25	oxidation	oxidation	NOUN
brj-24331	145	26	#	#	NOUN
brj-24331	145	27	gasification	gasification	NOUN
brj-24331	145	28	reaction	reaction	NOUN
brj-24331	145	29	reaction	reaction	NOUN
brj-24331	145	30	rate	rate	NOUN
brj-24331	145	31	(	(	PUNCT
brj-24331	145	32	mol	mol	NOUN
brj-24331	145	33	/	/	SYM
brj-24331	145	34	m3·s	m3·s	NOUN
brj-24331	145	35	)	)	PUNCT
brj-24331	145	36	)	)	PUNCT
brj-24331	145	37	reference	reference	NOUN
brj-24331	145	38	heterogeneous	heterogeneous	ADJ
brj-24331	145	39	reaction	reaction	NOUN
brj-24331	145	40	r1	r1	NOUN
brj-24331	145	41	c	c	PROPN
brj-24331	146	1	+	+	CCONJ
brj-24331	146	2	z	z	NOUN
brj-24331	147	1	+	+	CCONJ
brj-24331	147	2	2	2	NUM
brj-24331	147	3	2z	2z	NOUN
brj-24331	147	4	+	+	NUM
brj-24331	147	5	2	2	NUM
brj-24331	147	6	o2	o2	PROPN
brj-24331	147	7	→	→	SYM
brj-24331	147	8	z	z	NOUN
brj-24331	147	9	z	z	NOUN
brj-24331	148	1	+	+	CCONJ
brj-24331	148	2	1	1	NUM
brj-24331	148	3	co	co	NOUN
brj-24331	148	4	+	+	ADP
brj-24331	148	5	1	1	NUM
brj-24331	148	6	z	z	NOUN
brj-24331	148	7	+	+	NOUN
brj-24331	148	8	1	1	NUM
brj-24331	148	9	co2	co2	NOUN
brj-24331	148	10	po2	po2	NOUN
brj-24331	148	11	4.0	4.0	NUM
brj-24331	148	12	×	×	NOUN
brj-24331	148	13	105	105	NUM
brj-24331	148	14	(	(	PUNCT
brj-24331	148	15	1	1	NUM
brj-24331	148	16	+	+	SYM
brj-24331	148	17	1	1	NUM
brj-24331	148	18	εb	εb	ADP
brj-24331	148	19	2.5	2.5	NUM
brj-24331	148	20	(	(	PUNCT
brj-24331	148	21	1	1	NUM
brj-24331	148	22	y	y	NOUN
brj-24331	148	23	−	−	NOUN
brj-24331	148	24	1	1	NUM
brj-24331	148	25	)	)	PUNCT
brj-24331	148	26	)	)	PUNCT
brj-24331	149	1	dp	dp	PROPN
brj-24331	149	2	t0.75	t0.75	PROPN
brj-24331	149	3	(	(	PUNCT
brj-24331	149	4	al	al	PROPN
brj-24331	149	5	-	-	PROPN
brj-24331	149	6	zareer	zareer	PROPN
brj-24331	149	7	et	et	PROPN
brj-24331	149	8	al	al	PROPN
brj-24331	149	9	.	.	PROPN
brj-24331	149	10	2016	2016	NUM
brj-24331	149	11	;	;	PUNCT
brj-24331	149	12	he	he	PRON
brj-24331	149	13	et	et	PROPN
brj-24331	149	14	al	al	PROPN
brj-24331	149	15	.	.	PROPN
brj-24331	149	16	2013	2013	NUM
brj-24331	149	17	;	;	PUNCT
brj-24331	149	18	wen	wen	PROPN
brj-24331	149	19	and	and	CCONJ
brj-24331	149	20	chaung	chaung	VERB
brj-24331	149	21	1979	1979	NUM
brj-24331	149	22	)	)	PUNCT
brj-24331	149	23	r2	r2	PROPN
brj-24331	149	24	c	c	PROPN
brj-24331	149	25	+	+	CCONJ
brj-24331	149	26	h2o	h2o	PROPN
brj-24331	149	27	→	→	SYM
brj-24331	149	28	co	co	NOUN
brj-24331	149	29	+	+	PROPN
brj-24331	149	30	h2	h2	PROPN
brj-24331	149	31	930e−	930e−	PROPN
brj-24331	149	32	22647	22647	NUM
brj-24331	149	33	t	t	NOUN
brj-24331	150	1	[	[	X
brj-24331	150	2	𝑐𝐶	𝑐𝐶	ADV
brj-24331	150	3	×	×	NOUN
brj-24331	150	4	(	(	PUNCT
brj-24331	150	5	ph2o	ph2o	NOUN
brj-24331	150	6	−	−	X
brj-24331	150	7	(	(	PUNCT
brj-24331	150	8	3.23	3.23	NUM
brj-24331	150	9	×	×	NOUN
brj-24331	150	10	107	107	NUM
brj-24331	150	11	(	(	PUNCT
brj-24331	150	12	ph2	ph2	NOUN
brj-24331	150	13	·	·	PUNCT
brj-24331	150	14	pco	pco	NOUN
brj-24331	150	15	e−	e−	PROPN
brj-24331	150	16	16330	16330	NUM
brj-24331	150	17	t	t	NOUN
brj-24331	150	18	)	)	PUNCT
brj-24331	150	19	)	)	PUNCT
brj-24331	150	20	)	)	PUNCT
brj-24331	150	21	]	]	PUNCT
brj-24331	151	1	(	(	PUNCT
brj-24331	151	2	he	he	PRON
brj-24331	151	3	et	et	PROPN
brj-24331	151	4	al	al	PROPN
brj-24331	151	5	.	.	PROPN
brj-24331	151	6	2013	2013	NUM
brj-24331	151	7	;	;	PUNCT
brj-24331	151	8	wen	wen	PROPN
brj-24331	151	9	and	and	CCONJ
brj-24331	151	10	chaung	chaung	VERB
brj-24331	151	11	1979	1979	NUM
brj-24331	151	12	)	)	PUNCT
brj-24331	151	13	r3	r3	PROPN
brj-24331	151	14	c	c	NOUN
brj-24331	151	15	+	+	CCONJ
brj-24331	151	16	co2	co2	NOUN
brj-24331	151	17	→	→	SYM
brj-24331	151	18	2co	2co	ADJ
brj-24331	151	19	930e−	930e−	PROPN
brj-24331	151	20	22647	22647	NUM
brj-24331	151	21	t	t	NOUN
brj-24331	152	1	[	[	X
brj-24331	152	2	𝑐𝐶	𝑐𝐶	ADV
brj-24331	152	3	×	×	NOUN
brj-24331	152	4	(	(	PUNCT
brj-24331	152	5	pco2	pco2	NOUN
brj-24331	152	6	−	−	PROPN
brj-24331	152	7	(	(	PUNCT
brj-24331	152	8	1.22	1.22	NUM
brj-24331	152	9	×	×	NOUN
brj-24331	152	10	109	109	NUM
brj-24331	152	11	(	(	PUNCT
brj-24331	152	12	pco	pco	NOUN
brj-24331	152	13	2	2	NUM
brj-24331	152	14	e−	e−	PROPN
brj-24331	152	15	20280	20280	NUM
brj-24331	152	16	t	t	NOUN
brj-24331	152	17	)	)	PUNCT
brj-24331	152	18	)	)	PUNCT
brj-24331	152	19	)	)	PUNCT
brj-24331	152	20	]	]	PUNCT
brj-24331	153	1	(	(	PUNCT
brj-24331	153	2	he	he	PRON
brj-24331	153	3	et	et	PROPN
brj-24331	153	4	al	al	PROPN
brj-24331	153	5	.	.	PROPN
brj-24331	153	6	2013	2013	NUM
brj-24331	153	7	)	)	PUNCT
brj-24331	153	8	r4	r4	NOUN
brj-24331	153	9	c	c	NOUN
brj-24331	153	10	+	+	CCONJ
brj-24331	153	11	2h2	2h2	NUM
brj-24331	153	12	→	→	SYM
brj-24331	153	13	ch4	ch4	NOUN
brj-24331	153	14	8.35	8.35	NUM
brj-24331	153	15	×	×	NOUN
brj-24331	153	16	10−4e−	10−4e−	NUM
brj-24331	153	17	8078	8078	NUM
brj-24331	153	18	t	t	PROPN
brj-24331	154	1	[	[	X
brj-24331	154	2	𝑐𝐶	𝑐𝐶	ADV
brj-24331	154	3	×	×	NOUN
brj-24331	154	4	(	(	PUNCT
brj-24331	154	5	ph2	ph2	NOUN
brj-24331	154	6	−	−	PROPN
brj-24331	154	7	(	(	PUNCT
brj-24331	154	8	ph2	ph2	NOUN
brj-24331	154	9	∗	∗	NOUN
brj-24331	154	10	=	=	PUNCT
brj-24331	154	11	(	(	PUNCT
brj-24331	154	12	6.80	6.80	NUM
brj-24331	154	13	×	×	NOUN
brj-24331	154	14	105	105	NUM
brj-24331	154	15	pch4	pch4	NOUN
brj-24331	154	16	e−	e−	PROPN
brj-24331	154	17	10100	10100	NUM
brj-24331	154	18	t	t	NOUN
brj-24331	154	19	)	)	PUNCT
brj-24331	154	20	0.5	0.5	NUM
brj-24331	154	21	)	)	PUNCT
brj-24331	154	22	)	)	PUNCT
brj-24331	154	23	]	]	PUNCT
brj-24331	155	1	(	(	PUNCT
brj-24331	155	2	al	al	PROPN
brj-24331	155	3	-	-	PROPN
brj-24331	155	4	zareer	zareer	PROPN
brj-24331	155	5	et	et	PROPN
brj-24331	155	6	al	al	PROPN
brj-24331	155	7	.	.	PROPN
brj-24331	155	8	2016	2016	NUM
brj-24331	155	9	;	;	PUNCT
brj-24331	155	10	he	he	PRON
brj-24331	155	11	et	et	PROPN
brj-24331	155	12	al	al	PROPN
brj-24331	155	13	.	.	PROPN
brj-24331	155	14	2013	2013	NUM
brj-24331	155	15	)	)	PUNCT
brj-24331	155	16	homogeneous	homogeneous	ADJ
brj-24331	155	17	reaction	reaction	NOUN
brj-24331	155	18	r5	r5	PROPN
brj-24331	155	19	h2	h2	NOUN
brj-24331	156	1	+	+	CCONJ
brj-24331	156	2	0.502	0.502	NUM
brj-24331	156	3	→	→	SYM
brj-24331	156	4	h2o	h2o	PROPN
brj-24331	156	5	8.83	8.83	NUM
brj-24331	156	6	×	×	NOUN
brj-24331	156	7	105e−	105e−	NUM
brj-24331	156	8	11997	11997	NUM
brj-24331	156	9	t	t	NOUN
brj-24331	157	1	[	[	X
brj-24331	157	2	𝑐h2×𝑐o2	𝑐h2×𝑐o2	NOUN
brj-24331	157	3	]	]	X
brj-24331	157	4	(	(	PUNCT
brj-24331	157	5	al	al	PROPN
brj-24331	157	6	-	-	PROPN
brj-24331	157	7	zareer	zareer	PROPN
brj-24331	157	8	et	et	PROPN
brj-24331	157	9	al	al	PROPN
brj-24331	157	10	.	.	PROPN
brj-24331	157	11	2016	2016	NUM
brj-24331	157	12	)	)	PUNCT
brj-24331	157	13	peer	peer	NOUN
brj-24331	157	14	-	-	PUNCT
brj-24331	157	15	reviewed	review	VERB
brj-24331	157	16	article	article	NOUN
brj-24331	157	17	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	157	18	sangaré	sangaré	PROPN
brj-24331	157	19	et	et	PROPN
brj-24331	157	20	al	al	PROPN
brj-24331	157	21	.	.	PROPN
brj-24331	157	22	(	(	PUNCT
brj-24331	157	23	2025	2025	NUM
brj-24331	157	24	)	)	PUNCT
brj-24331	157	25	.	.	PUNCT
brj-24331	158	1	“	"	PUNCT
brj-24331	158	2	pyrogasification	pyrogasification	NOUN
brj-24331	158	3	of	of	ADP
brj-24331	158	4	biomass	biomass	NOUN
brj-24331	158	5	,	,	PUNCT
brj-24331	158	6	”	"	PUNCT
brj-24331	158	7	bioresources	bioresource	NOUN
brj-24331	158	8	20(2	20(2	NUM
brj-24331	158	9	)	)	PUNCT
brj-24331	158	10	,	,	PUNCT
brj-24331	158	11	2844	2844	NUM
brj-24331	158	12	-	-	SYM
brj-24331	158	13	2870	2870	NUM
brj-24331	158	14	.	.	PUNCT
brj-24331	158	15	2853	2853	NUM
brj-24331	158	16	r6	r6	NOUN
brj-24331	158	17	ch4	ch4	NOUN
brj-24331	159	1	+	+	CCONJ
brj-24331	159	2	2o2	2o2	NUM
brj-24331	159	3	→	→	SYM
brj-24331	159	4	co2	co2	NOUN
brj-24331	159	5	+	+	CCONJ
brj-24331	159	6	2h2o	2h2o	NUM
brj-24331	159	7	3.55	3.55	NUM
brj-24331	159	8	×	×	NOUN
brj-24331	159	9	1011e−	1011e−	NUM
brj-24331	159	10	11997	11997	NUM
brj-24331	159	11	t	t	NOUN
brj-24331	160	1	[	[	X
brj-24331	160	2	𝑐ch4	𝑐ch4	NOUN
brj-24331	160	3	×	×	NOUN
brj-24331	160	4	𝑐o2	𝑐o2	NOUN
brj-24331	160	5	]	]	PUNCT
brj-24331	160	6	(	(	PUNCT
brj-24331	160	7	al	al	PROPN
brj-24331	160	8	-	-	PROPN
brj-24331	160	9	zareer	zareer	PROPN
brj-24331	160	10	et	et	PROPN
brj-24331	160	11	al	al	PROPN
brj-24331	160	12	.	.	PROPN
brj-24331	160	13	2016	2016	NUM
brj-24331	160	14	;	;	PUNCT
brj-24331	160	15	xie	xie	PROPN
brj-24331	160	16	et	et	PROPN
brj-24331	160	17	al	al	PROPN
brj-24331	160	18	.	.	PROPN
brj-24331	160	19	2012	2012	NUM
brj-24331	160	20	)	)	PUNCT
brj-24331	160	21	r7	r7	NOUN
brj-24331	160	22	co	co	NOUN
brj-24331	160	23	+	+	PROPN
brj-24331	160	24	0.5o2	0.5o2	NUM
brj-24331	160	25	→	→	SYM
brj-24331	160	26	co2	co2	VERB
brj-24331	160	27	6.36	6.36	NUM
brj-24331	160	28	×	×	NOUN
brj-24331	160	29	103e−	103e−	NUM
brj-24331	160	30	11997	11997	NUM
brj-24331	160	31	t	t	PROPN
brj-24331	161	1	[	[	X
brj-24331	161	2	𝑐co2	𝑐co2	PROPN
brj-24331	161	3	×	×	PROPN
brj-24331	161	4	𝑐co	𝑐co	PROPN
brj-24331	161	5	]	]	PUNCT
brj-24331	161	6	(	(	PUNCT
brj-24331	161	7	al	al	PROPN
brj-24331	161	8	-	-	PROPN
brj-24331	161	9	zareer	zareer	PROPN
brj-24331	161	10	et	et	PROPN
brj-24331	161	11	al	al	PROPN
brj-24331	161	12	.	.	PROPN
brj-24331	161	13	2016	2016	NUM
brj-24331	161	14	)	)	PUNCT
brj-24331	161	15	r8	r8	NOUN
brj-24331	161	16	co	co	NOUN
brj-24331	161	17	+	+	PROPN
brj-24331	161	18	h2o	h2o	PROPN
brj-24331	161	19	↔	↔	PROPN
brj-24331	161	20	co2	co2	NOUN
brj-24331	161	21	+	+	CCONJ
brj-24331	161	22	h2	h2	NOUN
brj-24331	161	23	1	1	NUM
brj-24331	161	24	:	:	PUNCT
brj-24331	161	25	2.78	2.78	NUM
brj-24331	161	26	×	×	NOUN
brj-24331	161	27	103e−	103e−	NUM
brj-24331	161	28	1510	1510	NUM
brj-24331	161	29	t	t	PROPN
brj-24331	161	30	(	(	PUNCT
brj-24331	161	31	rabea	rabea	X
brj-24331	161	32	et	et	PROPN
brj-24331	161	33	al	al	PROPN
brj-24331	161	34	.	.	PROPN
brj-24331	161	35	2022	2022	NUM
brj-24331	161	36	)	)	PUNCT
brj-24331	161	37	2	2	NUM
brj-24331	161	38	:	:	PUNCT
brj-24331	161	39	9.59	9.59	NUM
brj-24331	161	40	×	×	NOUN
brj-24331	161	41	104e−	104e−	NUM
brj-24331	161	42	5609	5609	NUM
brj-24331	161	43	t	t	PROPN
brj-24331	161	44	r9	r9	VERB
brj-24331	161	45	ch4	ch4	PROPN
brj-24331	161	46	+	+	CCONJ
brj-24331	161	47	h2o	h2o	PROPN
brj-24331	161	48	↔	↔	PROPN
brj-24331	161	49	co	co	NOUN
brj-24331	161	50	+	+	NOUN
brj-24331	161	51	3h2	3h2	NUM
brj-24331	161	52	1	1	NUM
brj-24331	161	53	:	:	PUNCT
brj-24331	161	54	6.09	6.09	NUM
brj-24331	161	55	×	×	NOUN
brj-24331	161	56	1014e−	1014e−	NUM
brj-24331	161	57	30908	30908	NUM
brj-24331	161	58	𝑇	𝑇	PROPN
brj-24331	161	59	(	(	PUNCT
brj-24331	161	60	rabea	rabea	X
brj-24331	161	61	et	et	PROPN
brj-24331	161	62	al	al	PROPN
brj-24331	161	63	.	.	PROPN
brj-24331	161	64	2022	2022	NUM
brj-24331	161	65	)	)	PUNCT
brj-24331	161	66	2	2	NUM
brj-24331	161	67	:	:	PUNCT
brj-24331	161	68	3.12	3.12	NUM
brj-24331	161	69	×	×	NOUN
brj-24331	161	70	102e−	102e−	NUM
brj-24331	161	71	3608	3608	NUM
brj-24331	161	72	t	t	NOUN
brj-24331	161	73	where	where	SCONJ
brj-24331	161	74	cc	cc	NOUN
brj-24331	161	75	,	,	PUNCT
brj-24331	161	76	cch4	cch4	PROPN
brj-24331	161	77	and	and	CCONJ
brj-24331	161	78	ch2	ch2	PROPN
brj-24331	161	79	are	be	AUX
brj-24331	161	80	concentrations	concentration	NOUN
brj-24331	161	81	of	of	ADP
brj-24331	161	82	c	c	NOUN
brj-24331	161	83	,	,	PUNCT
brj-24331	161	84	ch4	ch4	PROPN
brj-24331	161	85	and	and	CCONJ
brj-24331	161	86	h2	h2	PROPN
brj-24331	161	87	.	.	PUNCT
brj-24331	162	1	ph2o	ph2o	NOUN
brj-24331	162	2	,	,	PUNCT
brj-24331	162	3	pco	pco	NOUN
brj-24331	162	4	,	,	PUNCT
brj-24331	162	5	pco2	pco2	NOUN
brj-24331	162	6	,	,	PUNCT
brj-24331	162	7	ph2	ph2	NOUN
brj-24331	162	8	and	and	CCONJ
brj-24331	162	9	pch4	pch4	NOUN
brj-24331	162	10	are	be	AUX
brj-24331	162	11	partial	partial	ADJ
brj-24331	162	12	pressure	pressure	NOUN
brj-24331	162	13	of	of	ADP
brj-24331	162	14	components	component	NOUN
brj-24331	162	15	(	(	PUNCT
brj-24331	162	16	atm	atm	NOUN
brj-24331	162	17	)	)	PUNCT
brj-24331	162	18	.	.	PUNCT
brj-24331	163	1	xco	xco	PROPN
brj-24331	163	2	,	,	PUNCT
brj-24331	163	3	xco2	xco2	PROPN
brj-24331	163	4	,	,	PUNCT
brj-24331	163	5	and	and	CCONJ
brj-24331	163	6	xh2	xh2	PROPN
brj-24331	163	7	are	be	AUX
brj-24331	163	8	mol	mol	ADP
brj-24331	163	9	fractions	fraction	NOUN
brj-24331	163	10	of	of	ADP
brj-24331	163	11	components	component	NOUN
brj-24331	163	12	.	.	PUNCT
brj-24331	164	1	reaction	reaction	NOUN
brj-24331	164	2	kinetic	kinetic	NOUN
brj-24331	164	3	of	of	ADP
brj-24331	164	4	pyrolysis	pyrolysis	NOUN
brj-24331	164	5	in	in	ADP
brj-24331	164	6	the	the	DET
brj-24331	164	7	process	process	NOUN
brj-24331	164	8	simulation	simulation	NOUN
brj-24331	164	9	the	the	DET
brj-24331	164	10	drying	drying	NOUN
brj-24331	164	11	and	and	CCONJ
brj-24331	164	12	devolatilization	devolatilization	NOUN
brj-24331	164	13	of	of	ADP
brj-24331	164	14	biomass	biomass	NOUN
brj-24331	164	15	in	in	ADP
brj-24331	164	16	the	the	DET
brj-24331	164	17	process	process	NOUN
brj-24331	164	18	simulation	simulation	NOUN
brj-24331	164	19	using	use	VERB
brj-24331	164	20	aspen	aspen	PROPN
brj-24331	164	21	plus	plus	CCONJ
brj-24331	164	22	®	®	NOUN
brj-24331	164	23	can	can	AUX
brj-24331	164	24	be	be	AUX
brj-24331	164	25	modeled	model	VERB
brj-24331	164	26	from	from	ADP
brj-24331	164	27	the	the	DET
brj-24331	164	28	pyrolysis	pyrolysis	NOUN
brj-24331	164	29	yields	yield	NOUN
brj-24331	164	30	(	(	PUNCT
brj-24331	164	31	beheshti	beheshti	VERB
brj-24331	164	32	et	et	PROPN
brj-24331	164	33	al	al	PROPN
brj-24331	164	34	.	.	PROPN
brj-24331	164	35	2015	2015	NUM
brj-24331	164	36	)	)	PUNCT
brj-24331	164	37	.	.	PUNCT
brj-24331	165	1	in	in	ADP
brj-24331	165	2	this	this	DET
brj-24331	165	3	approach	approach	NOUN
brj-24331	165	4	,	,	PUNCT
brj-24331	165	5	empirical	empirical	ADJ
brj-24331	165	6	correlations	correlation	NOUN
brj-24331	165	7	derived	derive	VERB
brj-24331	165	8	from	from	ADP
brj-24331	165	9	experimental	experimental	ADJ
brj-24331	165	10	data	datum	NOUN
brj-24331	165	11	are	be	AUX
brj-24331	165	12	used	use	VERB
brj-24331	165	13	.	.	PUNCT
brj-24331	166	1	the	the	DET
brj-24331	166	2	pyrolysis	pyrolysis	NOUN
brj-24331	166	3	reactions	reaction	NOUN
brj-24331	166	4	are	be	AUX
brj-24331	166	5	presented	present	VERB
brj-24331	166	6	below	below	ADP
brj-24331	166	7	:	:	PUNCT
brj-24331	166	8	𝐷𝑟𝑦	𝐷𝑟𝑦	PROPN
brj-24331	166	9	𝑏𝑖𝑜𝑚𝑎𝑠𝑠	𝑏𝑖𝑜𝑚𝑎𝑠𝑠	PROPN
brj-24331	166	10	→	→	PUNCT
brj-24331	166	11	𝑎𝐶ℎ𝑎𝑟	𝑎𝐶ℎ𝑎𝑟	NOUN
brj-24331	166	12	+	+	CCONJ
brj-24331	166	13	𝑏𝐻2	𝑏𝐻2	PROPN
brj-24331	166	14	+	+	CCONJ
brj-24331	166	15	𝑐𝐶𝑂	𝑐𝐶𝑂	ADJ
brj-24331	166	16	+	+	CCONJ
brj-24331	166	17	𝑑𝐶𝑂2	𝑑𝐶𝑂2	NOUN
brj-24331	166	18	+	+	CCONJ
brj-24331	166	19	𝑒𝐶𝐻4	𝑒𝐶𝐻4	ADJ
brj-24331	166	20	+	+	X
brj-24331	166	21	𝑓𝐻2𝑂(𝑔	𝑓𝐻2𝑂(𝑔	PROPN
brj-24331	166	22	)	)	PUNCT
brj-24331	167	1	+	+	CCONJ
brj-24331	167	2	𝑔𝐶𝑥𝐻𝑦𝑂𝑧	𝑔𝐶𝑥𝐻𝑦𝑂𝑧	PROPN
brj-24331	168	1	+	+	X
brj-24331	168	2	ℎ𝑁2	ℎ𝑁2	PROPN
brj-24331	168	3	(	(	PUNCT
brj-24331	168	4	15	15	NUM
brj-24331	168	5	)	)	PUNCT
brj-24331	168	6	the	the	DET
brj-24331	168	7	volatile	volatile	ADJ
brj-24331	168	8	matter	matter	NOUN
brj-24331	168	9	produced	produce	VERB
brj-24331	168	10	includes	include	VERB
brj-24331	168	11	co	co	NOUN
brj-24331	168	12	,	,	PUNCT
brj-24331	168	13	₂	₂	NUM
brj-24331	168	14	,	,	PUNCT
brj-24331	168	15	₂o	₂o	PROPN
brj-24331	168	16	,	,	PUNCT
brj-24331	168	17	co₂	co₂	PROPN
brj-24331	168	18	,	,	PUNCT
brj-24331	168	19	c	c	PROPN
brj-24331	168	20	₄	₄	NUM
brj-24331	168	21	,	,	PUNCT
brj-24331	168	22	n₂	n₂	NOUN
brj-24331	168	23	,	,	PUNCT
brj-24331	168	24	and	and	CCONJ
brj-24331	168	25	cₓ	cₓ	NOUN
brj-24331	168	26	ᵧo𝓏	ᵧo𝓏	PROPN
brj-24331	168	27	,	,	PUNCT
brj-24331	168	28	where	where	SCONJ
brj-24331	168	29	cₓ	cₓ	NOUN
brj-24331	168	30	ᵧo𝓏	ᵧo𝓏	NOUN
brj-24331	168	31	represents	represent	VERB
brj-24331	168	32	condensable	condensable	ADJ
brj-24331	168	33	gases	gas	NOUN
brj-24331	168	34	and	and	CCONJ
brj-24331	168	35	tar	tar	NOUN
brj-24331	168	36	as	as	ADP
brj-24331	168	37	an	an	DET
brj-24331	168	38	empirical	empirical	ADJ
brj-24331	168	39	chemical	chemical	NOUN
brj-24331	168	40	compound	compound	NOUN
brj-24331	168	41	.	.	PUNCT
brj-24331	169	1	two	two	NUM
brj-24331	169	2	main	main	ADJ
brj-24331	169	3	approaches	approach	NOUN
brj-24331	169	4	are	be	AUX
brj-24331	169	5	commonly	commonly	ADV
brj-24331	169	6	used	use	VERB
brj-24331	169	7	to	to	PART
brj-24331	169	8	characterize	characterize	VERB
brj-24331	169	9	pyrolysis	pyrolysis	NOUN
brj-24331	169	10	products	product	NOUN
brj-24331	169	11	:	:	PUNCT
brj-24331	169	12	experimental	experimental	ADJ
brj-24331	169	13	methods	method	NOUN
brj-24331	169	14	and	and	CCONJ
brj-24331	169	15	theoretical	theoretical	ADJ
brj-24331	169	16	models	model	NOUN
brj-24331	169	17	,	,	PUNCT
brj-24331	169	18	such	such	ADJ
brj-24331	169	19	as	as	ADP
brj-24331	169	20	functional	functional	ADJ
brj-24331	169	21	group	group	NOUN
brj-24331	169	22	models	model	NOUN
brj-24331	169	23	(	(	PUNCT
brj-24331	169	24	hobbs	hobbs	PROPN
brj-24331	169	25	et	et	PROPN
brj-24331	169	26	al	al	PROPN
brj-24331	169	27	.	.	PROPN
brj-24331	169	28	1992	1992	NUM
brj-24331	169	29	)	)	PUNCT
brj-24331	169	30	.	.	PUNCT
brj-24331	170	1	the	the	DET
brj-24331	170	2	experimental	experimental	ADJ
brj-24331	170	3	approach	approach	NOUN
brj-24331	170	4	was	be	AUX
brj-24331	170	5	used	use	VERB
brj-24331	170	6	in	in	ADP
brj-24331	170	7	this	this	DET
brj-24331	170	8	study	study	NOUN
brj-24331	170	9	due	due	ADP
brj-24331	170	10	to	to	ADP
brj-24331	170	11	its	its	PRON
brj-24331	170	12	simplicity	simplicity	NOUN
brj-24331	170	13	and	and	CCONJ
brj-24331	170	14	the	the	DET
brj-24331	170	15	availability	availability	NOUN
brj-24331	170	16	of	of	ADP
brj-24331	170	17	experimental	experimental	ADJ
brj-24331	170	18	data	datum	NOUN
brj-24331	170	19	.	.	PUNCT
brj-24331	171	1	the	the	DET
brj-24331	171	2	h2o	h2o	PROPN
brj-24331	171	3	production	production	NOUN
brj-24331	171	4	was	be	AUX
brj-24331	171	5	estimated	estimate	VERB
brj-24331	171	6	based	base	VERB
brj-24331	171	7	on	on	ADP
brj-24331	171	8	the	the	DET
brj-24331	171	9	cellulose	cellulose	NOUN
brj-24331	171	10	,	,	PUNCT
brj-24331	171	11	hemicellulose	hemicellulose	NOUN
brj-24331	171	12	,	,	PUNCT
brj-24331	171	13	and	and	CCONJ
brj-24331	171	14	lignin	lignin	NOUN
brj-24331	171	15	content	content	NOUN
brj-24331	171	16	,	,	PUNCT
brj-24331	171	17	as	as	SCONJ
brj-24331	171	18	analyzed	analyze	VERB
brj-24331	171	19	by	by	ADP
brj-24331	171	20	stefanidis	stefanidis	PROPN
brj-24331	171	21	et	et	PROPN
brj-24331	171	22	al	al	PROPN
brj-24331	171	23	.	.	PROPN
brj-24331	172	1	(	(	PUNCT
brj-24331	172	2	2014	2014	NUM
brj-24331	172	3	)	)	PUNCT
brj-24331	172	4	.	.	PUNCT
brj-24331	173	1	the	the	DET
brj-24331	173	2	experimental	experimental	ADJ
brj-24331	173	3	data	datum	NOUN
brj-24331	173	4	between	between	ADP
brj-24331	173	5	700	700	NUM
brj-24331	173	6	and	and	CCONJ
brj-24331	173	7	1000	1000	NUM
brj-24331	173	8	°	°	NOUN
brj-24331	173	9	c	c	NOUN
brj-24331	173	10	yields	yield	NOUN
brj-24331	173	11	were	be	AUX
brj-24331	173	12	used	use	VERB
brj-24331	173	13	to	to	PART
brj-24331	173	14	determine	determine	VERB
brj-24331	173	15	the	the	DET
brj-24331	173	16	coefficients	coefficient	NOUN
brj-24331	173	17	of	of	ADP
brj-24331	173	18	the	the	DET
brj-24331	173	19	eq	eq	NOUN
brj-24331	173	20	15	15	NUM
brj-24331	173	21	.	.	PUNCT
brj-24331	174	1	in	in	ADP
brj-24331	174	2	addition	addition	NOUN
brj-24331	174	3	,	,	PUNCT
brj-24331	174	4	the	the	DET
brj-24331	174	5	elemental	elemental	ADJ
brj-24331	174	6	compositions	composition	NOUN
brj-24331	174	7	(	(	PUNCT
brj-24331	174	8	carbon	carbon	NOUN
brj-24331	174	9	,	,	PUNCT
brj-24331	174	10	hydrogen	hydrogen	NOUN
brj-24331	174	11	,	,	PUNCT
brj-24331	174	12	and	and	CCONJ
brj-24331	174	13	oxygen	oxygen	NOUN
brj-24331	174	14	)	)	PUNCT
brj-24331	174	15	of	of	ADP
brj-24331	174	16	dry	dry	ADJ
brj-24331	174	17	biomass	biomass	NOUN
brj-24331	174	18	and	and	CCONJ
brj-24331	174	19	char	char	NOUN
brj-24331	174	20	under	under	ADP
brj-24331	174	21	these	these	DET
brj-24331	174	22	conditions	condition	NOUN
brj-24331	174	23	were	be	AUX
brj-24331	174	24	used	use	VERB
brj-24331	174	25	to	to	PART
brj-24331	174	26	balance	balance	VERB
brj-24331	174	27	the	the	DET
brj-24331	174	28	pyrolysis	pyrolysis	NOUN
brj-24331	174	29	equation	equation	NOUN
brj-24331	174	30	,	,	PUNCT
brj-24331	174	31	allowing	allow	VERB
brj-24331	174	32	the	the	DET
brj-24331	174	33	determination	determination	NOUN
brj-24331	174	34	of	of	ADP
brj-24331	174	35	the	the	DET
brj-24331	174	36	empirical	empirical	ADJ
brj-24331	174	37	formula	formula	NOUN
brj-24331	174	38	for	for	ADP
brj-24331	174	39	char	char	NOUN
brj-24331	174	40	and	and	CCONJ
brj-24331	174	41	cₓ	cₓ	NOUN
brj-24331	174	42	ᵧo𝓏	ᵧo𝓏	NOUN
brj-24331	174	43	values	value	NOUN
brj-24331	174	44	.	.	PUNCT
brj-24331	175	1	table	table	NOUN
brj-24331	175	2	3	3	NUM
brj-24331	175	3	presents	present	VERB
brj-24331	175	4	the	the	DET
brj-24331	175	5	product	product	NOUN
brj-24331	175	6	yield	yield	NOUN
brj-24331	175	7	balances	balance	NOUN
brj-24331	175	8	obtained	obtain	VERB
brj-24331	175	9	from	from	ADP
brj-24331	175	10	the	the	DET
brj-24331	175	11	pyrolysis	pyrolysis	NOUN
brj-24331	175	12	of	of	ADP
brj-24331	175	13	ab	ab	PROPN
brj-24331	175	14	at	at	ADP
brj-24331	175	15	different	different	ADJ
brj-24331	175	16	temperatures	temperature	NOUN
brj-24331	175	17	.	.	PUNCT
brj-24331	176	1	table	table	NOUN
brj-24331	176	2	3	3	NUM
brj-24331	176	3	.	.	PUNCT
brj-24331	176	4	product	product	NOUN
brj-24331	176	5	mass	mass	NOUN
brj-24331	176	6	yields	yield	NOUN
brj-24331	176	7	from	from	ADP
brj-24331	176	8	pyrolysis	pyrolysis	NOUN
brj-24331	176	9	of	of	ADP
brj-24331	176	10	ab	ab	PROPN
brj-24331	176	11	at	at	ADP
brj-24331	176	12	different	different	ADJ
brj-24331	176	13	temperatures	temperature	NOUN
brj-24331	176	14	component	component	NOUN
brj-24331	176	15	product	product	NOUN
brj-24331	176	16	mass	mass	NOUN
brj-24331	176	17	yield	yield	NOUN
brj-24331	176	18	(	(	PUNCT
brj-24331	176	19	wt%	wt%	PROPN
brj-24331	176	20	)	)	PUNCT
brj-24331	177	1	700	700	NUM
brj-24331	177	2	°	°	NOUN
brj-24331	177	3	c	c	NOUN
brj-24331	177	4	800	800	NUM
brj-24331	177	5	°	°	NOUN
brj-24331	177	6	c	c	PROPN
brj-24331	177	7	900	900	NUM
brj-24331	177	8	°	°	NOUN
brj-24331	177	9	c	c	PROPN
brj-24331	177	10	950	950	NUM
brj-24331	177	11	°	°	NOUN
brj-24331	177	12	c	c	PROPN
brj-24331	177	13	1000	1000	NUM
brj-24331	177	14	°	°	PROPN
brj-24331	177	15	c	c	NOUN
brj-24331	177	16	char	char	NOUN
brj-24331	177	17	26.59	26.59	NUM
brj-24331	177	18	26.11	26.11	NUM
brj-24331	177	19	24.02	24.02	NUM
brj-24331	177	20	23.34	23.34	NUM
brj-24331	177	21	23.38	23.38	NUM
brj-24331	177	22	co	co	NOUN
brj-24331	177	23	3.64	3.64	NUM
brj-24331	177	24	5.28	5.28	NUM
brj-24331	177	25	7.22	7.22	NUM
brj-24331	177	26	8.27	8.27	NUM
brj-24331	177	27	8.46	8.46	NUM
brj-24331	177	28	h2	h2	NOUN
brj-24331	177	29	0.35	0.35	NUM
brj-24331	177	30	0.31	0.31	NUM
brj-24331	177	31	0.66	0.66	NUM
brj-24331	177	32	0.64	0.64	NUM
brj-24331	177	33	0.75	0.75	NUM
brj-24331	177	34	co2	co2	VERB
brj-24331	177	35	8.21	8.21	NUM
brj-24331	177	36	9.45	9.45	NUM
brj-24331	177	37	11.10	11.10	NUM
brj-24331	177	38	11.14	11.14	NUM
brj-24331	177	39	11.96	11.96	NUM
brj-24331	177	40	h2o	h2o	PROPN
brj-24331	177	41	24.00	24.00	NUM
brj-24331	177	42	24.00	24.00	NUM
brj-24331	177	43	24.00	24.00	NUM
brj-24331	177	44	24.00	24.00	NUM
brj-24331	177	45	24.00	24.00	NUM
brj-24331	177	46	h2s	h2s	NOUN
brj-24331	177	47	0.00	0.00	NUM
brj-24331	177	48	0.00	0.00	NUM
brj-24331	177	49	0.00	0.00	NUM
brj-24331	177	50	0.00	0.00	NUM
brj-24331	177	51	0.00	0.00	NUM
brj-24331	177	52	n2	n2	NOUN
brj-24331	177	53	0.40	0.40	NUM
brj-24331	177	54	0.40	0.40	NUM
brj-24331	177	55	0.40	0.40	NUM
brj-24331	177	56	0.40	0.40	NUM
brj-24331	177	57	0.40	0.40	NUM
brj-24331	177	58	ch4	ch4	NOUN
brj-24331	177	59	0.88	0.88	NUM
brj-24331	177	60	1.03	1.03	NUM
brj-24331	177	61	1.03	1.03	NUM
brj-24331	177	62	0.98	0.98	NUM
brj-24331	177	63	0.98	0.98	NUM
brj-24331	177	64	cₓhᵧo𝓏	cₓhᵧo𝓏	VERB
brj-24331	177	65	35.94	35.94	NUM
brj-24331	177	66	33.42	33.42	NUM
brj-24331	177	67	31.57	31.57	NUM
brj-24331	177	68	31.19	31.19	NUM
brj-24331	177	69	30.07	30.07	NUM
brj-24331	177	70	peer	peer	NOUN
brj-24331	177	71	-	-	PUNCT
brj-24331	177	72	reviewed	review	VERB
brj-24331	177	73	article	article	NOUN
brj-24331	177	74	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	177	75	sangaré	sangaré	PROPN
brj-24331	177	76	et	et	PROPN
brj-24331	177	77	al	al	PROPN
brj-24331	177	78	.	.	PROPN
brj-24331	178	1	(	(	PUNCT
brj-24331	178	2	2025	2025	NUM
brj-24331	178	3	)	)	PUNCT
brj-24331	178	4	.	.	PUNCT
brj-24331	179	1	“	"	PUNCT
brj-24331	179	2	pyrogasification	pyrogasification	NOUN
brj-24331	179	3	of	of	ADP
brj-24331	179	4	biomass	biomass	NOUN
brj-24331	179	5	,	,	PUNCT
brj-24331	179	6	”	"	PUNCT
brj-24331	179	7	bioresources	bioresource	NOUN
brj-24331	179	8	20(2	20(2	NUM
brj-24331	179	9	)	)	PUNCT
brj-24331	179	10	,	,	PUNCT
brj-24331	179	11	2844	2844	NUM
brj-24331	179	12	-	-	SYM
brj-24331	179	13	2870	2870	NUM
brj-24331	179	14	.	.	PUNCT
brj-24331	179	15	2854	2854	NUM
brj-24331	179	16	process	process	NOUN
brj-24331	179	17	description	description	NOUN
brj-24331	179	18	and	and	CCONJ
brj-24331	179	19	assumptions	assumption	VERB
brj-24331	179	20	the	the	DET
brj-24331	179	21	pyro	pyro	NOUN
brj-24331	179	22	-	-	PUNCT
brj-24331	179	23	gasification	gasification	NOUN
brj-24331	179	24	process	process	NOUN
brj-24331	179	25	involves	involve	VERB
brj-24331	179	26	three	three	NUM
brj-24331	179	27	main	main	ADJ
brj-24331	179	28	stages	stage	NOUN
brj-24331	179	29	:	:	PUNCT
brj-24331	179	30	drying	dry	VERB
brj-24331	179	31	,	,	PUNCT
brj-24331	179	32	devolatilization	devolatilization	NOUN
brj-24331	179	33	(	(	PUNCT
brj-24331	179	34	pyrolysis	pyrolysis	NOUN
brj-24331	179	35	)	)	PUNCT
brj-24331	179	36	,	,	PUNCT
brj-24331	179	37	and	and	CCONJ
brj-24331	179	38	char	char	NOUN
brj-24331	179	39	oxidation	oxidation	NOUN
brj-24331	179	40	.	.	PUNCT
brj-24331	180	1	the	the	DET
brj-24331	180	2	stages	stage	NOUN
brj-24331	180	3	were	be	AUX
brj-24331	180	4	modeled	model	VERB
brj-24331	180	5	in	in	ADP
brj-24331	180	6	sequence	sequence	NOUN
brj-24331	180	7	.	.	PUNCT
brj-24331	181	1	the	the	DET
brj-24331	181	2	flowchart	flowchart	NOUN
brj-24331	181	3	modeled	model	VERB
brj-24331	181	4	in	in	ADP
brj-24331	181	5	aspen	aspen	PROPN
brj-24331	181	6	plus	plus	CCONJ
brj-24331	181	7	®	®	NOUN
brj-24331	181	8	is	be	AUX
brj-24331	181	9	shown	show	VERB
brj-24331	181	10	in	in	ADP
brj-24331	181	11	fig	fig	NOUN
brj-24331	181	12	.	.	PUNCT
brj-24331	182	1	2	2	X
brj-24331	182	2	.	.	X
brj-24331	182	3	briefly	briefly	NOUN
brj-24331	182	4	,	,	PUNCT
brj-24331	182	5	the	the	DET
brj-24331	182	6	pyrolysis	pyrolysis	NOUN
brj-24331	182	7	of	of	ADP
brj-24331	182	8	biomasses	biomass	NOUN
brj-24331	182	9	was	be	AUX
brj-24331	182	10	simulated	simulate	VERB
brj-24331	182	11	with	with	ADP
brj-24331	182	12	a	a	DET
brj-24331	182	13	ryield	ryield	NOUN
brj-24331	182	14	block	block	NOUN
brj-24331	182	15	(	(	PUNCT
brj-24331	182	16	pyrolys	pyrolys	NOUN
brj-24331	182	17	)	)	PUNCT
brj-24331	182	18	.	.	PUNCT
brj-24331	183	1	this	this	DET
brj-24331	183	2	block	block	NOUN
brj-24331	183	3	decomposes	decompose	VERB
brj-24331	183	4	the	the	DET
brj-24331	183	5	dry	dry	ADJ
brj-24331	183	6	biomass	biomass	NOUN
brj-24331	183	7	into	into	ADP
brj-24331	183	8	co	co	NOUN
brj-24331	183	9	,	,	PUNCT
brj-24331	183	10	₂	₂	NUM
brj-24331	183	11	,	,	PUNCT
brj-24331	183	12	co₂	co₂	NOUN
brj-24331	183	13	,	,	PUNCT
brj-24331	183	14	₂o	₂o	PROPN
brj-24331	183	15	,	,	PUNCT
brj-24331	183	16	n₂	n₂	NOUN
brj-24331	183	17	,	,	PUNCT
brj-24331	183	18	c	c	PROPN
brj-24331	183	19	₄	₄	NUM
brj-24331	183	20	,	,	PUNCT
brj-24331	183	21	cₓ	cₓ	NOUN
brj-24331	183	22	ᵧo𝓏	ᵧo𝓏	PROPN
brj-24331	183	23	,	,	PUNCT
brj-24331	183	24	and	and	CCONJ
brj-24331	183	25	char	char	NOUN
brj-24331	183	26	.	.	PUNCT
brj-24331	184	1	the	the	DET
brj-24331	184	2	yield	yield	NOUN
brj-24331	184	3	of	of	ADP
brj-24331	184	4	each	each	DET
brj-24331	184	5	component	component	NOUN
brj-24331	184	6	is	be	AUX
brj-24331	184	7	specified	specify	VERB
brj-24331	184	8	according	accord	VERB
brj-24331	184	9	to	to	ADP
brj-24331	184	10	the	the	DET
brj-24331	184	11	experimental	experimental	ADJ
brj-24331	184	12	data	datum	NOUN
brj-24331	184	13	.	.	PUNCT
brj-24331	185	1	after	after	ADP
brj-24331	185	2	pyrolysis	pyrolysis	NOUN
brj-24331	185	3	,	,	PUNCT
brj-24331	185	4	the	the	DET
brj-24331	185	5	products	product	NOUN
brj-24331	185	6	flow	flow	VERB
brj-24331	185	7	into	into	ADP
brj-24331	185	8	the	the	DET
brj-24331	185	9	sep-2	sep-2	PUNCT
brj-24331	185	10	block	block	NOUN
brj-24331	185	11	to	to	PART
brj-24331	185	12	separate	separate	VERB
brj-24331	185	13	the	the	DET
brj-24331	185	14	pyrolysis	pyrolysis	NOUN
brj-24331	185	15	gas	gas	NOUN
brj-24331	185	16	and	and	CCONJ
brj-24331	185	17	solid	solid	ADJ
brj-24331	185	18	(	(	PUNCT
brj-24331	185	19	char	char	NOUN
brj-24331	185	20	)	)	PUNCT
brj-24331	185	21	.	.	PUNCT
brj-24331	186	1	the	the	DET
brj-24331	186	2	separator	separator	NOUN
brj-24331	186	3	is	be	AUX
brj-24331	186	4	configured	configure	VERB
brj-24331	186	5	as	as	ADP
brj-24331	186	6	a	a	DET
brj-24331	186	7	split	split	ADJ
brj-24331	186	8	fraction	fraction	NOUN
brj-24331	186	9	separator	separator	NOUN
brj-24331	186	10	,	,	PUNCT
brj-24331	186	11	allowing	allow	VERB
brj-24331	186	12	the	the	DET
brj-24331	186	13	separation	separation	NOUN
brj-24331	186	14	of	of	ADP
brj-24331	186	15	gas	gas	NOUN
brj-24331	186	16	-	-	PUNCT
brj-24331	186	17	phase	phase	NOUN
brj-24331	186	18	and	and	CCONJ
brj-24331	186	19	solid	solid	ADJ
brj-24331	186	20	-	-	PUNCT
brj-24331	186	21	phase	phase	NOUN
brj-24331	186	22	products	product	NOUN
brj-24331	186	23	based	base	VERB
brj-24331	186	24	on	on	ADP
brj-24331	186	25	their	their	PRON
brj-24331	186	26	physical	physical	ADJ
brj-24331	186	27	state	state	NOUN
brj-24331	186	28	.	.	PUNCT
brj-24331	187	1	the	the	DET
brj-24331	187	2	gases	gas	NOUN
brj-24331	187	3	from	from	ADP
brj-24331	187	4	sep-2	sep-2	PUNCT
brj-24331	187	5	pass	pass	VERB
brj-24331	187	6	into	into	ADP
brj-24331	187	7	a	a	DET
brj-24331	187	8	gas	gas	NOUN
brj-24331	187	9	mixer	mixer	NOUN
brj-24331	187	10	(	(	PUNCT
brj-24331	187	11	m	m	NOUN
brj-24331	187	12	-	-	NOUN
brj-24331	187	13	gas	gas	NOUN
brj-24331	187	14	)	)	PUNCT
brj-24331	187	15	.	.	PUNCT
brj-24331	188	1	the	the	DET
brj-24331	188	2	char	char	NOUN
brj-24331	188	3	enters	enter	VERB
brj-24331	188	4	an	an	DET
brj-24331	188	5	rstoic	rstoic	ADJ
brj-24331	188	6	model	model	NOUN
brj-24331	188	7	(	(	PUNCT
brj-24331	188	8	char	char	NOUN
brj-24331	188	9	-	-	PUNCT
brj-24331	188	10	dec	dec	PROPN
brj-24331	188	11	)	)	PUNCT
brj-24331	188	12	to	to	PART
brj-24331	188	13	decompose	decompose	VERB
brj-24331	188	14	into	into	ADP
brj-24331	188	15	its	its	PRON
brj-24331	188	16	elemental	elemental	ADJ
brj-24331	188	17	components	component	NOUN
brj-24331	188	18	(	(	PUNCT
brj-24331	188	19	c	c	X
brj-24331	188	20	,	,	PUNCT
brj-24331	188	21	h	h	NOUN
brj-24331	188	22	,	,	PUNCT
brj-24331	188	23	o	o	NOUN
brj-24331	188	24	,	,	PUNCT
brj-24331	188	25	n	n	CCONJ
brj-24331	188	26	,	,	PUNCT
brj-24331	188	27	and	and	CCONJ
brj-24331	188	28	ash	ash	NOUN
brj-24331	188	29	)	)	PUNCT
brj-24331	188	30	,	,	PUNCT
brj-24331	188	31	according	accord	VERB
brj-24331	188	32	to	to	ADP
brj-24331	188	33	the	the	DET
brj-24331	188	34	ultimate	ultimate	ADJ
brj-24331	188	35	analysis	analysis	NOUN
brj-24331	188	36	of	of	ADP
brj-24331	188	37	the	the	DET
brj-24331	188	38	char	char	NOUN
brj-24331	188	39	.	.	PUNCT
brj-24331	189	1	for	for	ADP
brj-24331	189	2	non	non	ADJ
brj-24331	189	3	-	-	ADJ
brj-24331	189	4	isothermal	isothermal	ADJ
brj-24331	189	5	gasification	gasification	NOUN
brj-24331	189	6	,	,	PUNCT
brj-24331	189	7	these	these	DET
brj-24331	189	8	elemental	elemental	ADJ
brj-24331	189	9	compounds	compound	NOUN
brj-24331	189	10	pass	pass	VERB
brj-24331	189	11	through	through	ADP
brj-24331	189	12	a	a	DET
brj-24331	189	13	series	series	NOUN
brj-24331	189	14	of	of	ADP
brj-24331	189	15	plug	plug	NOUN
brj-24331	189	16	flow	flow	NOUN
brj-24331	189	17	reactor	reactor	NOUN
brj-24331	189	18	(	(	PUNCT
brj-24331	189	19	pfrs	pfrs	ADJ
brj-24331	189	20	)	)	PUNCT
brj-24331	189	21	gasifiers	gasifier	NOUN
brj-24331	189	22	operating	operate	VERB
brj-24331	189	23	at	at	ADP
brj-24331	189	24	different	different	ADJ
brj-24331	189	25	temperatures	temperature	NOUN
brj-24331	189	26	,	,	PUNCT
brj-24331	189	27	from	from	ADP
brj-24331	189	28	700	700	NUM
brj-24331	189	29	to	to	ADP
brj-24331	189	30	1000	1000	NUM
brj-24331	189	31	°	°	NOUN
brj-24331	189	32	c	c	NOUN
brj-24331	189	33	,	,	PUNCT
brj-24331	189	34	increasing	increase	VERB
brj-24331	189	35	in	in	ADP
brj-24331	189	36	50	50	NUM
brj-24331	189	37	°	°	NOUN
brj-24331	189	38	c	c	NOUN
brj-24331	189	39	for	for	ADP
brj-24331	189	40	each	each	DET
brj-24331	189	41	reactor	reactor	NOUN
brj-24331	189	42	(	(	PUNCT
brj-24331	189	43	rhete-1	rhete-1	NUM
brj-24331	189	44	to	to	ADP
brj-24331	189	45	rhete-7	rhete-7	NUM
brj-24331	189	46	)	)	PUNCT
brj-24331	189	47	for	for	ADP
brj-24331	189	48	heterogeneous	heterogeneous	ADJ
brj-24331	189	49	reactions	reaction	NOUN
brj-24331	189	50	and	and	CCONJ
brj-24331	189	51	(	(	PUNCT
brj-24331	189	52	rhomo-1	rhomo-1	NUM
brj-24331	189	53	to	to	PART
brj-24331	189	54	rhomo7	rhomo7	VERB
brj-24331	189	55	)	)	PUNCT
brj-24331	189	56	for	for	ADP
brj-24331	189	57	homogeneous	homogeneous	ADJ
brj-24331	189	58	reactions	reaction	NOUN
brj-24331	189	59	.	.	PUNCT
brj-24331	190	1	for	for	ADP
brj-24331	190	2	isothermal	isothermal	ADJ
brj-24331	190	3	gasification	gasification	NOUN
brj-24331	190	4	,	,	PUNCT
brj-24331	190	5	a	a	DET
brj-24331	190	6	stirred	stir	VERB
brj-24331	190	7	tank	tank	NOUN
brj-24331	190	8	reactor	reactor	NOUN
brj-24331	190	9	(	(	PUNCT
brj-24331	190	10	rcstr	rcstr	PROPN
brj-24331	190	11	)	)	PUNCT
brj-24331	190	12	was	be	AUX
brj-24331	190	13	used	use	VERB
brj-24331	190	14	,	,	PUNCT
brj-24331	190	15	with	with	ADP
brj-24331	190	16	a	a	DET
brj-24331	190	17	residence	residence	NOUN
brj-24331	190	18	time	time	NOUN
brj-24331	190	19	of	of	ADP
brj-24331	190	20	30	30	NUM
brj-24331	190	21	min	min	NOUN
brj-24331	190	22	.	.	PUNCT
brj-24331	191	1	this	this	DET
brj-24331	191	2	reactor	reactor	NOUN
brj-24331	191	3	replaced	replace	VERB
brj-24331	191	4	the	the	DET
brj-24331	191	5	series	series	NOUN
brj-24331	191	6	of	of	ADP
brj-24331	191	7	plug	plug	NOUN
brj-24331	191	8	flow	flow	NOUN
brj-24331	191	9	reactors	reactor	NOUN
brj-24331	191	10	(	(	PUNCT
brj-24331	191	11	pfrs	pfrs	ADJ
brj-24331	191	12	)	)	PUNCT
brj-24331	191	13	under	under	ADP
brj-24331	191	14	isothermal	isothermal	ADJ
brj-24331	191	15	conditions	condition	NOUN
brj-24331	191	16	,	,	PUNCT
brj-24331	191	17	ensuring	ensure	VERB
brj-24331	191	18	the	the	DET
brj-24331	191	19	implementation	implementation	NOUN
brj-24331	191	20	of	of	ADP
brj-24331	191	21	both	both	CCONJ
brj-24331	191	22	homogeneous	homogeneous	ADJ
brj-24331	191	23	and	and	CCONJ
brj-24331	191	24	heterogeneous	heterogeneous	ADJ
brj-24331	191	25	reactions	reaction	NOUN
brj-24331	191	26	,	,	PUNCT
brj-24331	191	27	as	as	SCONJ
brj-24331	191	28	originally	originally	ADV
brj-24331	191	29	considered	consider	VERB
brj-24331	191	30	in	in	ADP
brj-24331	191	31	the	the	DET
brj-24331	191	32	non	non	ADJ
brj-24331	191	33	-	-	ADJ
brj-24331	191	34	isothermal	isothermal	ADJ
brj-24331	191	35	configuration	configuration	NOUN
brj-24331	191	36	.	.	PUNCT
brj-24331	192	1	the	the	DET
brj-24331	192	2	details	detail	NOUN
brj-24331	192	3	of	of	ADP
brj-24331	192	4	each	each	DET
brj-24331	192	5	equipment	equipment	NOUN
brj-24331	192	6	are	be	AUX
brj-24331	192	7	presented	present	VERB
brj-24331	192	8	in	in	ADP
brj-24331	192	9	table	table	NOUN
brj-24331	192	10	4	4	NUM
brj-24331	192	11	.	.	PUNCT
brj-24331	192	12	table	table	NOUN
brj-24331	192	13	4	4	NUM
brj-24331	192	14	.	.	PUNCT
brj-24331	193	1	details	detail	NOUN
brj-24331	193	2	of	of	ADP
brj-24331	193	3	each	each	DET
brj-24331	193	4	block	block	NOUN
brj-24331	193	5	and	and	CCONJ
brj-24331	193	6	its	its	PRON
brj-24331	193	7	conditions	condition	NOUN
brj-24331	193	8	block	block	NOUN
brj-24331	193	9	model	model	NOUN
brj-24331	193	10	function	function	NOUN
brj-24331	193	11	and	and	CCONJ
brj-24331	193	12	conditions	condition	NOUN
brj-24331	193	13	drying	dry	VERB
brj-24331	193	14	ryield	ryield	NOUN
brj-24331	193	15	simulate	simulate	NOUN
brj-24331	193	16	biomass	biomass	NOUN
brj-24331	193	17	drying	drying	NOUN
brj-24331	193	18	based	base	VERB
brj-24331	193	19	on	on	ADP
brj-24331	193	20	the	the	DET
brj-24331	193	21	value	value	NOUN
brj-24331	193	22	of	of	ADP
brj-24331	193	23	the	the	DET
brj-24331	193	24	moisture	moisture	NOUN
brj-24331	193	25	content	content	NOUN
brj-24331	193	26	in	in	ADP
brj-24331	193	27	the	the	DET
brj-24331	193	28	proximate	proximate	NOUN
brj-24331	193	29	analysis	analysis	NOUN
brj-24331	193	30	of	of	ADP
brj-24331	193	31	biomass	biomass	NOUN
brj-24331	193	32	.	.	PUNCT
brj-24331	194	1	the	the	DET
brj-24331	194	2	biomass	biomass	NOUN
brj-24331	194	3	with	with	ADP
brj-24331	194	4	initial	initial	ADJ
brj-24331	194	5	mass	mass	ADJ
brj-24331	194	6	flow	flow	NOUN
brj-24331	194	7	of	of	ADP
brj-24331	194	8	1500	1500	NUM
brj-24331	194	9	kg	kg	NOUN
brj-24331	194	10	/	/	SYM
brj-24331	194	11	h.	h.	PROPN
brj-24331	194	12	pyrolys	pyrolys	PROPN
brj-24331	194	13	ryield	ryield	PROPN
brj-24331	194	14	simulate	simulate	NOUN
brj-24331	194	15	biomass	biomass	NOUN
brj-24331	194	16	pyrolysis	pyrolysis	NOUN
brj-24331	194	17	based	base	VERB
brj-24331	194	18	on	on	ADP
brj-24331	194	19	the	the	DET
brj-24331	194	20	results	result	NOUN
brj-24331	194	21	data	datum	NOUN
brj-24331	194	22	of	of	ADP
brj-24331	194	23	pyrolysis	pyrolysis	NOUN
brj-24331	194	24	experiment	experiment	NOUN
brj-24331	194	25	of	of	ADP
brj-24331	194	26	biomasses	biomass	NOUN
brj-24331	194	27	sep-1	sep-1	ADV
brj-24331	194	28	to	to	ADP
brj-24331	194	29	sep-3	sep-3	PUNCT
brj-24331	194	30	sep	sep	PROPN
brj-24331	194	31	the	the	DET
brj-24331	194	32	separator	separator	NOUN
brj-24331	194	33	is	be	AUX
brj-24331	194	34	configured	configure	VERB
brj-24331	194	35	as	as	ADP
brj-24331	194	36	a	a	DET
brj-24331	194	37	split	split	ADJ
brj-24331	194	38	fraction	fraction	NOUN
brj-24331	194	39	separator	separator	NOUN
brj-24331	194	40	,	,	PUNCT
brj-24331	194	41	allowing	allow	VERB
brj-24331	194	42	the	the	DET
brj-24331	194	43	separation	separation	NOUN
brj-24331	194	44	of	of	ADP
brj-24331	194	45	gas	gas	NOUN
brj-24331	194	46	-	-	PUNCT
brj-24331	194	47	phase	phase	NOUN
brj-24331	194	48	and	and	CCONJ
brj-24331	194	49	solid	solid	ADJ
brj-24331	194	50	-	-	PUNCT
brj-24331	194	51	phase	phase	NOUN
brj-24331	194	52	products	product	NOUN
brj-24331	194	53	based	base	VERB
brj-24331	194	54	on	on	ADP
brj-24331	194	55	their	their	PRON
brj-24331	194	56	physical	physical	ADJ
brj-24331	194	57	state	state	NOUN
brj-24331	194	58	.	.	PUNCT
brj-24331	195	1	char	char	PROPN
brj-24331	195	2	-	-	PUNCT
brj-24331	195	3	dec	dec	PROPN
brj-24331	195	4	rstoic	rstoic	PROPN
brj-24331	195	5	decompose	decompose	NOUN
brj-24331	195	6	char	char	NOUN
brj-24331	195	7	into	into	ADP
brj-24331	195	8	its	its	PRON
brj-24331	195	9	elemental	elemental	ADJ
brj-24331	195	10	components	component	NOUN
brj-24331	195	11	(	(	PUNCT
brj-24331	195	12	c	c	X
brj-24331	195	13	,	,	PUNCT
brj-24331	195	14	h	h	NOUN
brj-24331	195	15	,	,	PUNCT
brj-24331	195	16	o	o	NOUN
brj-24331	195	17	,	,	PUNCT
brj-24331	195	18	n	n	CCONJ
brj-24331	195	19	,	,	PUNCT
brj-24331	195	20	and	and	CCONJ
brj-24331	195	21	ash	ash	NOUN
brj-24331	195	22	)	)	PUNCT
brj-24331	195	23	,	,	PUNCT
brj-24331	195	24	according	accord	VERB
brj-24331	195	25	to	to	ADP
brj-24331	195	26	the	the	DET
brj-24331	195	27	ultimate	ultimate	ADJ
brj-24331	195	28	analysis	analysis	NOUN
brj-24331	195	29	air	air	NOUN
brj-24331	195	30	-	-	PUNCT
brj-24331	195	31	sep	sep	PROPN
brj-24331	195	32	fsplit	fsplit	PROPN
brj-24331	195	33	stream	stream	NOUN
brj-24331	195	34	splitter	splitter	NOUN
brj-24331	195	35	.	.	PUNCT
brj-24331	196	1	this	this	DET
brj-24331	196	2	separator	separator	NOUN
brj-24331	196	3	was	be	AUX
brj-24331	196	4	used	use	VERB
brj-24331	196	5	to	to	PART
brj-24331	196	6	distribute	distribute	VERB
brj-24331	196	7	the	the	DET
brj-24331	196	8	airflow	airflow	NOUN
brj-24331	196	9	equally	equally	ADV
brj-24331	196	10	to	to	ADP
brj-24331	196	11	each	each	DET
brj-24331	196	12	reactor	reactor	NOUN
brj-24331	196	13	due	due	ADP
brj-24331	196	14	to	to	ADP
brj-24331	196	15	the	the	DET
brj-24331	196	16	non	non	ADJ
brj-24331	196	17	-	-	ADJ
brj-24331	196	18	isothermal	isothermal	ADJ
brj-24331	196	19	condition	condition	NOUN
brj-24331	196	20	of	of	ADP
brj-24331	196	21	the	the	DET
brj-24331	196	22	process	process	NOUN
brj-24331	196	23	mix-1	mix-1	NOUN
brj-24331	196	24	to	to	ADP
brj-24331	196	25	mix7	mix7	PROPN
brj-24331	196	26	mixer	mixer	PROPN
brj-24331	196	27	this	this	DET
brj-24331	196	28	mixer	mixer	NOUN
brj-24331	196	29	combines	combine	VERB
brj-24331	196	30	the	the	DET
brj-24331	196	31	'	'	PUNCT
brj-24331	196	32	char	char	NOUN
brj-24331	196	33	'	'	PUNCT
brj-24331	196	34	from	from	ADP
brj-24331	196	35	the	the	DET
brj-24331	196	36	previous	previous	ADJ
brj-24331	196	37	reactor	reactor	NOUN
brj-24331	196	38	with	with	ADP
brj-24331	196	39	the	the	DET
brj-24331	196	40	airflow	airflow	NOUN
brj-24331	196	41	before	before	ADP
brj-24331	196	42	entering	enter	VERB
brj-24331	196	43	the	the	DET
brj-24331	196	44	next	next	ADJ
brj-24331	196	45	reactor	reactor	NOUN
brj-24331	196	46	.	.	PUNCT
brj-24331	197	1	it	it	PRON
brj-24331	197	2	operates	operate	VERB
brj-24331	197	3	under	under	ADP
brj-24331	197	4	the	the	DET
brj-24331	197	5	temperature	temperature	NOUN
brj-24331	197	6	and	and	CCONJ
brj-24331	197	7	pressure	pressure	NOUN
brj-24331	197	8	conditions	condition	NOUN
brj-24331	197	9	of	of	ADP
brj-24331	197	10	the	the	DET
brj-24331	197	11	next	next	ADJ
brj-24331	197	12	reactor	reactor	NOUN
brj-24331	197	13	.	.	PUNCT
brj-24331	198	1	rhete-1	rhete-1	NUM
brj-24331	198	2	to	to	ADP
brj-24331	198	3	rhete-7	rhete-7	NUM
brj-24331	198	4	rplug	rplug	NOUN
brj-24331	198	5	simulation	simulation	NOUN
brj-24331	198	6	of	of	ADP
brj-24331	198	7	heterogeneous	heterogeneous	ADJ
brj-24331	198	8	gasification	gasification	NOUN
brj-24331	198	9	reactions	reaction	NOUN
brj-24331	198	10	(	(	PUNCT
brj-24331	198	11	r1	r1	PROPN
brj-24331	198	12	to	to	PART
brj-24331	198	13	r4	r4	VERB
brj-24331	198	14	)	)	PUNCT
brj-24331	198	15	was	be	AUX
brj-24331	198	16	conducted	conduct	VERB
brj-24331	198	17	using	use	VERB
brj-24331	198	18	seven	seven	NUM
brj-24331	198	19	reactors	reactor	NOUN
brj-24331	198	20	,	,	PUNCT
brj-24331	198	21	each	each	PRON
brj-24331	198	22	operating	operate	VERB
brj-24331	198	23	at	at	ADP
brj-24331	198	24	a	a	DET
brj-24331	198	25	different	different	ADJ
brj-24331	198	26	temperature	temperature	NOUN
brj-24331	198	27	ranging	range	VERB
brj-24331	198	28	from	from	ADP
brj-24331	198	29	700	700	NUM
brj-24331	198	30	to	to	ADP
brj-24331	198	31	1000	1000	NUM
brj-24331	198	32	ºc	ºc	NOUN
brj-24331	198	33	,	,	PUNCT
brj-24331	198	34	with	with	ADP
brj-24331	198	35	increments	increment	NOUN
brj-24331	198	36	of	of	ADP
brj-24331	198	37	50	50	NUM
brj-24331	198	38	ºc	ºc	NOUN
brj-24331	198	39	per	per	ADP
brj-24331	198	40	reactor	reactor	NOUN
brj-24331	198	41	.	.	PUNCT
brj-24331	199	1	this	this	DET
brj-24331	199	2	approach	approach	NOUN
brj-24331	199	3	was	be	AUX
brj-24331	199	4	chosen	choose	VERB
brj-24331	199	5	to	to	PART
brj-24331	199	6	account	account	VERB
brj-24331	199	7	for	for	ADP
brj-24331	199	8	the	the	DET
brj-24331	199	9	non	non	ADJ
brj-24331	199	10	-	-	ADJ
brj-24331	199	11	isothermal	isothermal	ADJ
brj-24331	199	12	nature	nature	NOUN
brj-24331	199	13	of	of	ADP
brj-24331	199	14	the	the	DET
brj-24331	199	15	gasification	gasification	NOUN
brj-24331	199	16	process	process	NOUN
brj-24331	199	17	.	.	PUNCT
brj-24331	200	1	se-1	se-1	PUNCT
brj-24331	201	1	to	to	ADP
brj-24331	201	2	se-7	se-7	ADV
brj-24331	201	3	ssplit	ssplit	NOUN
brj-24331	201	4	substream	substream	NOUN
brj-24331	201	5	splitter	splitter	NOUN
brj-24331	201	6	(	(	PUNCT
brj-24331	201	7	cyclone	cyclone	NOUN
brj-24331	201	8	)	)	PUNCT
brj-24331	201	9	,	,	PUNCT
brj-24331	201	10	this	this	DET
brj-24331	201	11	system	system	NOUN
brj-24331	201	12	allows	allow	VERB
brj-24331	201	13	the	the	DET
brj-24331	201	14	separation	separation	NOUN
brj-24331	201	15	of	of	ADP
brj-24331	201	16	solids	solid	NOUN
brj-24331	201	17	,	,	PUNCT
brj-24331	201	18	specifically	specifically	ADV
brj-24331	201	19	char	char	NOUN
brj-24331	201	20	,	,	PUNCT
brj-24331	201	21	from	from	ADP
brj-24331	201	22	the	the	DET
brj-24331	201	23	reaction	reaction	NOUN
brj-24331	201	24	gases	gas	NOUN
brj-24331	201	25	.	.	PUNCT
brj-24331	202	1	rhomo-1	rhomo-1	NOUN
brj-24331	202	2	to	to	ADP
brj-24331	202	3	rhomo-7	rhomo-7	NUM
brj-24331	202	4	rplug	rplug	ADJ
brj-24331	202	5	simulation	simulation	NOUN
brj-24331	202	6	of	of	ADP
brj-24331	202	7	homogeneous	homogeneous	ADJ
brj-24331	202	8	gasification	gasification	NOUN
brj-24331	202	9	reactions	reaction	NOUN
brj-24331	202	10	(	(	PUNCT
brj-24331	202	11	r5	r5	PROPN
brj-24331	202	12	to	to	ADP
brj-24331	202	13	r9	r9	NOUN
brj-24331	202	14	)	)	PUNCT
brj-24331	202	15	was	be	AUX
brj-24331	202	16	conducted	conduct	VERB
brj-24331	202	17	under	under	ADP
brj-24331	202	18	the	the	DET
brj-24331	202	19	same	same	ADJ
brj-24331	202	20	conditions	condition	NOUN
brj-24331	202	21	as	as	ADP
brj-24331	202	22	the	the	DET
brj-24331	202	23	heterogeneous	heterogeneous	ADJ
brj-24331	202	24	gasification	gasification	NOUN
brj-24331	202	25	,	,	PUNCT
brj-24331	202	26	differing	differ	VERB
brj-24331	202	27	only	only	ADV
brj-24331	202	28	in	in	ADP
brj-24331	202	29	the	the	DET
brj-24331	202	30	reactions	reaction	NOUN
brj-24331	202	31	involved	involve	VERB
brj-24331	202	32	.	.	PUNCT
brj-24331	203	1	m	m	NOUN
brj-24331	203	2	-	-	PUNCT
brj-24331	203	3	gas	gas	NOUN
brj-24331	203	4	mixer	mixer	NOUN
brj-24331	203	5	mix	mix	VERB
brj-24331	203	6	the	the	DET
brj-24331	203	7	product	product	NOUN
brj-24331	203	8	gas	gas	NOUN
brj-24331	203	9	:	:	PUNCT
brj-24331	203	10	combines	combine	VERB
brj-24331	203	11	pyrolysis	pyrolysis	NOUN
brj-24331	203	12	and	and	CCONJ
brj-24331	203	13	gasification	gasification	NOUN
brj-24331	203	14	product	product	NOUN
brj-24331	203	15	gases	gas	NOUN
brj-24331	203	16	along	along	ADP
brj-24331	203	17	with	with	ADP
brj-24331	203	18	the	the	DET
brj-24331	203	19	water	water	NOUN
brj-24331	203	20	vapor	vapor	NOUN
brj-24331	203	21	generated	generate	VERB
brj-24331	203	22	during	during	ADP
brj-24331	203	23	drying	dry	VERB
brj-24331	203	24	.	.	PUNCT
brj-24331	204	1	peer	peer	NOUN
brj-24331	204	2	-	-	PUNCT
brj-24331	204	3	reviewed	review	VERB
brj-24331	204	4	article	article	NOUN
brj-24331	204	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	204	6	sangaré	sangaré	PROPN
brj-24331	204	7	et	et	PROPN
brj-24331	204	8	al	al	PROPN
brj-24331	204	9	.	.	PROPN
brj-24331	205	1	(	(	PUNCT
brj-24331	205	2	2025	2025	NUM
brj-24331	205	3	)	)	PUNCT
brj-24331	205	4	.	.	PUNCT
brj-24331	206	1	“	"	PUNCT
brj-24331	206	2	pyrogasification	pyrogasification	NOUN
brj-24331	206	3	of	of	ADP
brj-24331	206	4	biomass	biomass	NOUN
brj-24331	206	5	,	,	PUNCT
brj-24331	206	6	”	"	PUNCT
brj-24331	206	7	bioresources	bioresource	NOUN
brj-24331	206	8	20(2	20(2	NUM
brj-24331	206	9	)	)	PUNCT
brj-24331	206	10	,	,	PUNCT
brj-24331	206	11	2844	2844	NUM
brj-24331	206	12	-	-	SYM
brj-24331	206	13	2870	2870	NUM
brj-24331	206	14	.	.	PUNCT
brj-24331	206	15	2855	2855	NUM
brj-24331	206	16	in	in	ADP
brj-24331	206	17	process	process	NOUN
brj-24331	206	18	modeling	modeling	NOUN
brj-24331	206	19	,	,	PUNCT
brj-24331	206	20	several	several	ADJ
brj-24331	206	21	technical	technical	ADJ
brj-24331	206	22	assumptions	assumption	NOUN
brj-24331	206	23	were	be	AUX
brj-24331	206	24	considered	consider	VERB
brj-24331	206	25	:	:	PUNCT
brj-24331	206	26	•	•	SCONJ
brj-24331	206	27	the	the	DET
brj-24331	206	28	process	process	NOUN
brj-24331	206	29	operates	operate	VERB
brj-24331	206	30	in	in	ADP
brj-24331	206	31	a	a	DET
brj-24331	206	32	steady	steady	ADJ
brj-24331	206	33	state	state	NOUN
brj-24331	206	34	.	.	PUNCT
brj-24331	207	1	•	•	NUM
brj-24331	207	2	the	the	DET
brj-24331	207	3	reactor	reactor	NOUN
brj-24331	207	4	is	be	AUX
brj-24331	207	5	assumed	assume	VERB
brj-24331	207	6	to	to	PART
brj-24331	207	7	be	be	AUX
brj-24331	207	8	adiabatic	adiabatic	ADJ
brj-24331	207	9	.	.	PUNCT
brj-24331	208	1	•	•	NUM
brj-24331	208	2	non	non	ADJ
brj-24331	208	3	-	-	ADJ
brj-24331	208	4	condensable	condensable	ADJ
brj-24331	208	5	gases	gas	NOUN
brj-24331	208	6	are	be	AUX
brj-24331	208	7	limited	limit	VERB
brj-24331	208	8	to	to	ADP
brj-24331	208	9	₂	₂	NUM
brj-24331	208	10	,	,	PUNCT
brj-24331	208	11	c	c	NOUN
brj-24331	208	12	₄	₄	NUM
brj-24331	208	13	,	,	PUNCT
brj-24331	208	14	co	co	NOUN
brj-24331	208	15	,	,	PUNCT
brj-24331	208	16	and	and	CCONJ
brj-24331	208	17	co₂.	co₂.	ADJ
brj-24331	208	18	•	•	NOUN
brj-24331	208	19	char	char	NOUN
brj-24331	208	20	composition	composition	NOUN
brj-24331	208	21	is	be	AUX
brj-24331	208	22	modeled	model	VERB
brj-24331	208	23	based	base	VERB
brj-24331	208	24	on	on	ADP
brj-24331	208	25	its	its	PRON
brj-24331	208	26	ultimate	ultimate	ADJ
brj-24331	208	27	carbon	carbon	NOUN
brj-24331	208	28	,	,	PUNCT
brj-24331	208	29	hydrogen	hydrogen	NOUN
brj-24331	208	30	,	,	PUNCT
brj-24331	208	31	nitrogen	nitrogen	NOUN
brj-24331	208	32	,	,	PUNCT
brj-24331	208	33	oxygen	oxygen	NOUN
brj-24331	208	34	,	,	PUNCT
brj-24331	208	35	and	and	CCONJ
brj-24331	208	36	ash	ash	NOUN
brj-24331	208	37	content	content	NOUN
brj-24331	208	38	analysis	analysis	NOUN
brj-24331	208	39	.	.	PUNCT
brj-24331	209	1	•	•	NUM
brj-24331	209	2	the	the	DET
brj-24331	209	3	gasifier	gasifier	NOUN
brj-24331	209	4	system	system	NOUN
brj-24331	209	5	is	be	AUX
brj-24331	209	6	considered	consider	VERB
brj-24331	209	7	a	a	DET
brj-24331	209	8	perfectly	perfectly	ADV
brj-24331	209	9	mixed	mixed	ADJ
brj-24331	209	10	environment	environment	NOUN
brj-24331	209	11	.	.	PUNCT
brj-24331	210	1	•	•	NOUN
brj-24331	210	2	the	the	DET
brj-24331	210	3	operation	operation	NOUN
brj-24331	210	4	is	be	AUX
brj-24331	210	5	conducted	conduct	VERB
brj-24331	210	6	at	at	ADP
brj-24331	210	7	atmospheric	atmospheric	ADJ
brj-24331	210	8	pressure	pressure	NOUN
brj-24331	210	9	,	,	PUNCT
brj-24331	210	10	with	with	SCONJ
brj-24331	210	11	pressure	pressure	NOUN
brj-24331	210	12	drops	drop	NOUN
brj-24331	210	13	in	in	ADP
brj-24331	210	14	equipment	equipment	NOUN
brj-24331	210	15	neglected	neglect	VERB
brj-24331	210	16	.	.	PUNCT
brj-24331	211	1	•	•	NOUN
brj-24331	211	2	biomass	biomass	NOUN
brj-24331	211	3	drying	drying	NOUN
brj-24331	211	4	and	and	CCONJ
brj-24331	211	5	devolatilization	devolatilization	NOUN
brj-24331	211	6	(	(	PUNCT
brj-24331	211	7	pyrolysis	pyrolysis	NOUN
brj-24331	211	8	)	)	PUNCT
brj-24331	211	9	are	be	AUX
brj-24331	211	10	assumed	assume	VERB
brj-24331	211	11	to	to	PART
brj-24331	211	12	occur	occur	VERB
brj-24331	211	13	instantaneously	instantaneously	ADV
brj-24331	211	14	at	at	ADP
brj-24331	211	15	700	700	NUM
brj-24331	211	16	°	°	NOUN
brj-24331	211	17	c	c	NOUN
brj-24331	211	18	for	for	ADP
brj-24331	211	19	non	non	ADJ
brj-24331	211	20	-	-	ADJ
brj-24331	211	21	isothermal	isothermal	ADJ
brj-24331	211	22	gasification	gasification	NOUN
brj-24331	211	23	and	and	CCONJ
brj-24331	211	24	at	at	ADP
brj-24331	211	25	900	900	NUM
brj-24331	211	26	and	and	CCONJ
brj-24331	211	27	950	950	NUM
brj-24331	211	28	°	°	NOUN
brj-24331	211	29	c	c	NOUN
brj-24331	211	30	for	for	ADP
brj-24331	211	31	isothermal	isothermal	ADJ
brj-24331	211	32	gasification	gasification	NOUN
brj-24331	211	33	.	.	PUNCT
brj-24331	212	1	•	•	NUM
brj-24331	212	2	nox	nox	PROPN
brj-24331	212	3	,	,	PUNCT
brj-24331	212	4	cn	cn	PROPN
brj-24331	212	5	,	,	PUNCT
brj-24331	212	6	and	and	CCONJ
brj-24331	212	7	n	n	PRON
brj-24331	212	8	₃	₃	NUM
brj-24331	212	9	concentrations	concentration	NOUN
brj-24331	212	10	were	be	AUX
brj-24331	212	11	not	not	PART
brj-24331	212	12	taken	take	VERB
brj-24331	212	13	into	into	ADP
brj-24331	212	14	account	account	NOUN
brj-24331	212	15	;	;	PUNCT
brj-24331	212	16	all	all	DET
brj-24331	212	17	biomass	biomass	NOUN
brj-24331	212	18	nitrogen	nitrogen	NOUN
brj-24331	212	19	is	be	AUX
brj-24331	212	20	assumed	assume	VERB
brj-24331	212	21	to	to	PART
brj-24331	212	22	be	be	AUX
brj-24331	212	23	inert	inert	ADJ
brj-24331	212	24	(	(	PUNCT
brj-24331	212	25	n₂	n₂	NOUN
brj-24331	212	26	)	)	PUNCT
brj-24331	212	27	.	.	PUNCT
brj-24331	213	1	•	•	NOUN
brj-24331	213	2	pyrolysis	pyrolysis	NOUN
brj-24331	213	3	product	product	NOUN
brj-24331	213	4	yields	yield	NOUN
brj-24331	213	5	serve	serve	VERB
brj-24331	213	6	as	as	ADP
brj-24331	213	7	initial	initial	ADJ
brj-24331	213	8	conditions	condition	NOUN
brj-24331	213	9	in	in	ADP
brj-24331	213	10	the	the	DET
brj-24331	213	11	gasification	gasification	NOUN
brj-24331	213	12	step	step	NOUN
brj-24331	213	13	.	.	PUNCT
brj-24331	214	1	peer	peer	NOUN
brj-24331	214	2	-	-	PUNCT
brj-24331	214	3	reviewed	review	VERB
brj-24331	214	4	article	article	NOUN
brj-24331	214	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	214	6	sangaré	sangaré	PROPN
brj-24331	214	7	et	et	PROPN
brj-24331	214	8	al	al	PROPN
brj-24331	214	9	.	.	PROPN
brj-24331	215	1	(	(	PUNCT
brj-24331	215	2	2025	2025	NUM
brj-24331	215	3	)	)	PUNCT
brj-24331	215	4	.	.	PUNCT
brj-24331	216	1	“	"	PUNCT
brj-24331	216	2	pyrogasification	pyrogasification	NOUN
brj-24331	216	3	of	of	ADP
brj-24331	216	4	biomass	biomass	NOUN
brj-24331	216	5	,	,	PUNCT
brj-24331	216	6	”	"	PUNCT
brj-24331	216	7	bioresources	bioresource	NOUN
brj-24331	216	8	20(2	20(2	NUM
brj-24331	216	9	)	)	PUNCT
brj-24331	216	10	,	,	PUNCT
brj-24331	216	11	2844	2844	NUM
brj-24331	216	12	-	-	SYM
brj-24331	216	13	2870	2870	NUM
brj-24331	216	14	.	.	PUNCT
brj-24331	216	15	2856	2856	NUM
brj-24331	216	16	fig	fig	NOUN
brj-24331	216	17	.	.	PUNCT
brj-24331	217	1	2	2	X
brj-24331	217	2	.	.	X
brj-24331	217	3	simulation	simulation	NOUN
brj-24331	217	4	model	model	PROPN
brj-24331	217	5	flowchart	flowchart	PROPN
brj-24331	217	6	in	in	ADP
brj-24331	217	7	aspen	aspen	PROPN
brj-24331	217	8	plus	plus	CCONJ
brj-24331	217	9	®	®	NOUN
brj-24331	217	10	peer	peer	NOUN
brj-24331	217	11	-	-	PUNCT
brj-24331	217	12	reviewed	review	VERB
brj-24331	217	13	article	article	NOUN
brj-24331	217	14	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	217	15	sangaré	sangaré	PROPN
brj-24331	217	16	et	et	PROPN
brj-24331	217	17	al	al	PROPN
brj-24331	217	18	.	.	PROPN
brj-24331	218	1	(	(	PUNCT
brj-24331	218	2	2025	2025	NUM
brj-24331	218	3	)	)	PUNCT
brj-24331	218	4	.	.	PUNCT
brj-24331	219	1	“	"	PUNCT
brj-24331	219	2	pyrogasification	pyrogasification	NOUN
brj-24331	219	3	of	of	ADP
brj-24331	219	4	biomass	biomass	NOUN
brj-24331	219	5	,	,	PUNCT
brj-24331	219	6	”	"	PUNCT
brj-24331	219	7	bioresources	bioresource	NOUN
brj-24331	219	8	20(2	20(2	NUM
brj-24331	219	9	)	)	PUNCT
brj-24331	219	10	,	,	PUNCT
brj-24331	219	11	2844	2844	NUM
brj-24331	219	12	-	-	SYM
brj-24331	219	13	2870	2870	NUM
brj-24331	219	14	.	.	PUNCT
brj-24331	219	15	2857	2857	NUM
brj-24331	219	16	results	result	NOUN
brj-24331	219	17	and	and	CCONJ
brj-24331	219	18	discussion	discussion	NOUN
brj-24331	219	19	comparison	comparison	NOUN
brj-24331	219	20	of	of	ADP
brj-24331	219	21	cfd	cfd	NOUN
brj-24331	219	22	modeling	modeling	NOUN
brj-24331	219	23	and	and	CCONJ
brj-24331	219	24	process	process	NOUN
brj-24331	219	25	simulation	simulation	NOUN
brj-24331	219	26	with	with	ADP
brj-24331	219	27	experimental	experimental	ADJ
brj-24331	219	28	data	datum	NOUN
brj-24331	219	29	this	this	DET
brj-24331	219	30	section	section	NOUN
brj-24331	219	31	presents	present	VERB
brj-24331	219	32	a	a	DET
brj-24331	219	33	comparative	comparative	ADJ
brj-24331	219	34	analysis	analysis	NOUN
brj-24331	219	35	of	of	ADP
brj-24331	219	36	cfd	cfd	NOUN
brj-24331	219	37	modeling	modeling	NOUN
brj-24331	219	38	and	and	CCONJ
brj-24331	219	39	process	process	NOUN
brj-24331	219	40	simulation	simulation	NOUN
brj-24331	219	41	results	result	NOUN
brj-24331	219	42	with	with	ADP
brj-24331	219	43	experimental	experimental	ADJ
brj-24331	219	44	data	datum	NOUN
brj-24331	219	45	for	for	ADP
brj-24331	219	46	gasification	gasification	NOUN
brj-24331	219	47	processes	process	NOUN
brj-24331	219	48	.	.	PUNCT
brj-24331	220	1	the	the	DET
brj-24331	220	2	analysis	analysis	NOUN
brj-24331	220	3	begins	begin	VERB
brj-24331	220	4	with	with	ADP
brj-24331	220	5	nonisothermal	nonisothermal	ADJ
brj-24331	220	6	gasification	gasification	NOUN
brj-24331	220	7	outcomes	outcome	NOUN
brj-24331	220	8	,	,	PUNCT
brj-24331	220	9	followed	follow	VERB
brj-24331	220	10	by	by	ADP
brj-24331	220	11	an	an	DET
brj-24331	220	12	examination	examination	NOUN
brj-24331	220	13	of	of	ADP
brj-24331	220	14	isothermal	isothermal	ADJ
brj-24331	220	15	gasification	gasification	NOUN
brj-24331	220	16	results	result	NOUN
brj-24331	220	17	.	.	PUNCT
brj-24331	221	1	the	the	DET
brj-24331	221	2	experimental	experimental	ADJ
brj-24331	221	3	data	datum	NOUN
brj-24331	221	4	were	be	AUX
brj-24331	221	5	replicated	replicate	VERB
brj-24331	221	6	with	with	ADP
brj-24331	221	7	a	a	DET
brj-24331	221	8	maximum	maximum	ADJ
brj-24331	221	9	error	error	NOUN
brj-24331	221	10	of	of	ADP
brj-24331	221	11	7	7	NUM
brj-24331	221	12	%	%	NOUN
brj-24331	221	13	across	across	ADP
brj-24331	221	14	all	all	DET
brj-24331	221	15	cases	case	NOUN
brj-24331	221	16	.	.	PUNCT
brj-24331	222	1	non	non	ADJ
brj-24331	222	2	-	-	ADJ
brj-24331	222	3	isothermal	isothermal	ADJ
brj-24331	222	4	gasification	gasification	NOUN
brj-24331	222	5	results	result	VERB
brj-24331	222	6	the	the	DET
brj-24331	222	7	results	result	NOUN
brj-24331	222	8	of	of	ADP
brj-24331	222	9	non	non	ADJ
brj-24331	222	10	-	-	ADJ
brj-24331	222	11	isothermal	isothermal	ADJ
brj-24331	222	12	gasification	gasification	NOUN
brj-24331	222	13	,	,	PUNCT
brj-24331	222	14	derived	derive	VERB
brj-24331	222	15	from	from	ADP
brj-24331	222	16	experimental	experimental	ADJ
brj-24331	222	17	analysis	analysis	NOUN
brj-24331	222	18	using	use	VERB
brj-24331	222	19	tga	tga	NOUN
brj-24331	222	20	,	,	PUNCT
brj-24331	222	21	were	be	AUX
brj-24331	222	22	compared	compare	VERB
brj-24331	222	23	with	with	ADP
brj-24331	222	24	predictions	prediction	NOUN
brj-24331	222	25	from	from	ADP
brj-24331	222	26	cfd	cfd	NOUN
brj-24331	222	27	and	and	CCONJ
brj-24331	222	28	sim	sim	ADJ
brj-24331	222	29	simulations	simulation	NOUN
brj-24331	222	30	.	.	PUNCT
brj-24331	223	1	this	this	DET
brj-24331	223	2	comparative	comparative	ADJ
brj-24331	223	3	analysis	analysis	NOUN
brj-24331	223	4	aimed	aim	VERB
brj-24331	223	5	to	to	PART
brj-24331	223	6	assess	assess	VERB
brj-24331	223	7	the	the	DET
brj-24331	223	8	accuracy	accuracy	NOUN
brj-24331	223	9	and	and	CCONJ
brj-24331	223	10	predictive	predictive	ADJ
brj-24331	223	11	capabilities	capability	NOUN
brj-24331	223	12	of	of	ADP
brj-24331	223	13	the	the	DET
brj-24331	223	14	models	model	NOUN
brj-24331	223	15	across	across	ADP
brj-24331	223	16	a	a	DET
brj-24331	223	17	range	range	NOUN
brj-24331	223	18	of	of	ADP
brj-24331	223	19	abr	abr	NOUN
brj-24331	223	20	values	value	NOUN
brj-24331	223	21	(	(	PUNCT
brj-24331	223	22	0.187	0.187	NUM
brj-24331	223	23	to	to	PART
brj-24331	223	24	1	1	NUM
brj-24331	223	25	)	)	PUNCT
brj-24331	223	26	.	.	PUNCT
brj-24331	224	1	experimental	experimental	ADJ
brj-24331	224	2	data	datum	NOUN
brj-24331	224	3	served	serve	VERB
brj-24331	224	4	as	as	ADP
brj-24331	224	5	a	a	DET
brj-24331	224	6	reference	reference	NOUN
brj-24331	224	7	,	,	PUNCT
brj-24331	224	8	emphasizing	emphasize	VERB
brj-24331	224	9	the	the	DET
brj-24331	224	10	influence	influence	NOUN
brj-24331	224	11	of	of	ADP
brj-24331	224	12	abr	abr	NOUN
brj-24331	224	13	on	on	ADP
brj-24331	224	14	the	the	DET
brj-24331	224	15	yields	yield	NOUN
brj-24331	224	16	of	of	ADP
brj-24331	224	17	non	non	ADJ
brj-24331	224	18	-	-	ADJ
brj-24331	224	19	isothermal	isothermal	ADJ
brj-24331	224	20	gasification	gasification	NOUN
brj-24331	224	21	products	product	NOUN
brj-24331	224	22	,	,	PUNCT
brj-24331	224	23	including	include	VERB
brj-24331	224	24	biochar	biochar	NOUN
brj-24331	224	25	,	,	PUNCT
brj-24331	224	26	bio	bio	NOUN
brj-24331	224	27	-	-	NOUN
brj-24331	224	28	oil	oil	NOUN
brj-24331	224	29	,	,	PUNCT
brj-24331	224	30	and	and	CCONJ
brj-24331	224	31	non	non	ADJ
brj-24331	224	32	-	-	ADJ
brj-24331	224	33	condensable	condensable	ADJ
brj-24331	224	34	gases	gas	NOUN
brj-24331	224	35	(	(	PUNCT
brj-24331	224	36	ncg	ncg	NOUN
brj-24331	224	37	or	or	CCONJ
brj-24331	224	38	biogas	biogas	NOUN
brj-24331	224	39	)	)	PUNCT
brj-24331	224	40	,	,	PUNCT
brj-24331	224	41	within	within	ADP
brj-24331	224	42	the	the	DET
brj-24331	224	43	temperature	temperature	NOUN
brj-24331	224	44	range	range	NOUN
brj-24331	224	45	of	of	ADP
brj-24331	224	46	700	700	NUM
brj-24331	224	47	to	to	PART
brj-24331	224	48	1000	1000	NUM
brj-24331	224	49	°	°	SYM
brj-24331	224	50	c	c	NOUN
brj-24331	224	51	.	.	PUNCT
brj-24331	225	1	the	the	DET
brj-24331	225	2	abr	abr	NOUN
brj-24331	225	3	in	in	ADP
brj-24331	225	4	this	this	DET
brj-24331	225	5	study	study	NOUN
brj-24331	225	6	plays	play	VERB
brj-24331	225	7	a	a	DET
brj-24331	225	8	role	role	NOUN
brj-24331	225	9	analogous	analogous	ADJ
brj-24331	225	10	to	to	ADP
brj-24331	225	11	the	the	DET
brj-24331	225	12	equivalence	equivalence	NOUN
brj-24331	225	13	ratio	ratio	NOUN
brj-24331	225	14	(	(	PUNCT
brj-24331	225	15	er	er	INTJ
brj-24331	225	16	)	)	PUNCT
brj-24331	225	17	,	,	PUNCT
brj-24331	225	18	as	as	SCONJ
brj-24331	225	19	commonly	commonly	ADV
brj-24331	225	20	discussed	discuss	VERB
brj-24331	225	21	in	in	ADP
brj-24331	225	22	gasification	gasification	NOUN
brj-24331	225	23	studies	study	NOUN
brj-24331	225	24	(	(	PUNCT
brj-24331	225	25	beheshti	beheshti	VERB
brj-24331	225	26	et	et	PROPN
brj-24331	225	27	al	al	PROPN
brj-24331	225	28	.	.	PROPN
brj-24331	225	29	2015	2015	NUM
brj-24331	225	30	;	;	PUNCT
brj-24331	225	31	torres	torre	VERB
brj-24331	225	32	et	et	PROPN
brj-24331	225	33	al	al	PROPN
brj-24331	225	34	.	.	PROPN
brj-24331	225	35	2019	2019	NUM
brj-24331	225	36	)	)	PUNCT
brj-24331	225	37	,	,	PUNCT
brj-24331	225	38	governing	govern	VERB
brj-24331	225	39	the	the	DET
brj-24331	225	40	oxygen	oxygen	NOUN
brj-24331	225	41	availability	availability	NOUN
brj-24331	225	42	relative	relative	ADJ
brj-24331	225	43	to	to	ADP
brj-24331	225	44	biomass	biomass	NOUN
brj-24331	225	45	and	and	CCONJ
brj-24331	225	46	influencing	influence	VERB
brj-24331	225	47	the	the	DET
brj-24331	225	48	oxidation	oxidation	NOUN
brj-24331	225	49	-	-	PUNCT
brj-24331	225	50	reduction	reduction	NOUN
brj-24331	225	51	dynamics	dynamic	NOUN
brj-24331	225	52	of	of	ADP
brj-24331	225	53	the	the	DET
brj-24331	225	54	process	process	NOUN
brj-24331	225	55	.	.	PUNCT
brj-24331	226	1	figure	figure	NOUN
brj-24331	226	2	3	3	NUM
brj-24331	226	3	compares	compare	VERB
brj-24331	226	4	the	the	DET
brj-24331	226	5	overall	overall	ADJ
brj-24331	226	6	product	product	NOUN
brj-24331	226	7	yields	yield	NOUN
brj-24331	226	8	as	as	ADP
brj-24331	226	9	a	a	DET
brj-24331	226	10	function	function	NOUN
brj-24331	226	11	of	of	ADP
brj-24331	226	12	abr	abr	PROPN
brj-24331	226	13	variation	variation	NOUN
brj-24331	226	14	.	.	PUNCT
brj-24331	227	1	fig	fig	NOUN
brj-24331	227	2	.	.	PUNCT
brj-24331	228	1	3	3	X
brj-24331	228	2	.	.	X
brj-24331	228	3	comparison	comparison	NOUN
brj-24331	228	4	of	of	ADP
brj-24331	228	5	experimental	experimental	ADJ
brj-24331	228	6	and	and	CCONJ
brj-24331	228	7	simulation	simulation	NOUN
brj-24331	228	8	results	result	NOUN
brj-24331	228	9	for	for	ADP
brj-24331	228	10	the	the	DET
brj-24331	228	11	main	main	ADJ
brj-24331	228	12	products	product	NOUN
brj-24331	228	13	yields	yield	NOUN
brj-24331	228	14	of	of	ADP
brj-24331	228	15	non	non	ADJ
brj-24331	228	16	-	-	ADJ
brj-24331	228	17	isothermal	isothermal	ADJ
brj-24331	228	18	gasification	gasification	NOUN
brj-24331	228	19	at	at	ADP
brj-24331	228	20	abr	abr	PROPN
brj-24331	228	21	values	value	NOUN
brj-24331	228	22	:	:	PUNCT
brj-24331	228	23	a	a	X
brj-24331	228	24	)	)	PUNCT
brj-24331	228	25	biochar	biochar	NOUN
brj-24331	228	26	,	,	PUNCT
brj-24331	228	27	b	b	NOUN
brj-24331	228	28	)	)	PUNCT
brj-24331	228	29	ncg	ncg	PROPN
brj-24331	228	30	,	,	PUNCT
brj-24331	228	31	and	and	CCONJ
brj-24331	228	32	c	c	X
brj-24331	228	33	)	)	PUNCT
brj-24331	228	34	bio	bio	NOUN
brj-24331	228	35	-	-	ADJ
brj-24331	228	36	oil	oil	NOUN
brj-24331	228	37	both	both	CCONJ
brj-24331	228	38	cfd	cfd	NOUN
brj-24331	228	39	and	and	CCONJ
brj-24331	228	40	sim	sim	ADJ
brj-24331	228	41	exhibit	exhibit	NOUN
brj-24331	228	42	deviations	deviation	NOUN
brj-24331	228	43	from	from	ADP
brj-24331	228	44	experimental	experimental	ADJ
brj-24331	228	45	results	result	NOUN
brj-24331	228	46	,	,	PUNCT
brj-24331	228	47	with	with	ADP
brj-24331	228	48	the	the	DET
brj-24331	228	49	magnitude	magnitude	NOUN
brj-24331	228	50	of	of	ADP
brj-24331	228	51	these	these	DET
brj-24331	228	52	discrepancies	discrepancy	NOUN
brj-24331	228	53	varying	vary	VERB
brj-24331	228	54	based	base	VERB
brj-24331	228	55	on	on	ADP
brj-24331	228	56	the	the	DET
brj-24331	228	57	abr	abr	PROPN
brj-24331	228	58	.	.	PUNCT
brj-24331	229	1	figure	figure	PROPN
brj-24331	229	2	3a	3a	PROPN
brj-24331	229	3	shows	show	VERB
brj-24331	229	4	the	the	DET
brj-24331	229	5	comparison	comparison	NOUN
brj-24331	229	6	of	of	ADP
brj-24331	229	7	biochar	biochar	NOUN
brj-24331	229	8	yield	yield	NOUN
brj-24331	229	9	as	as	ADP
brj-24331	229	10	a	a	DET
brj-24331	229	11	function	function	NOUN
brj-24331	229	12	of	of	ADP
brj-24331	229	13	abr	abr	PROPN
brj-24331	229	14	.	.	PUNCT
brj-24331	230	1	at	at	ADP
brj-24331	230	2	low	low	ADJ
brj-24331	230	3	abr	abr	NOUN
brj-24331	230	4	values	value	NOUN
brj-24331	230	5	,	,	PUNCT
brj-24331	230	6	such	such	ADJ
brj-24331	230	7	as	as	ADP
brj-24331	230	8	0.187	0.187	NUM
brj-24331	230	9	,	,	PUNCT
brj-24331	230	10	the	the	DET
brj-24331	230	11	sim	sim	NOUN
brj-24331	230	12	aligns	align	VERB
brj-24331	230	13	closely	closely	ADV
brj-24331	230	14	with	with	ADP
brj-24331	230	15	the	the	DET
brj-24331	230	16	experimental	experimental	ADJ
brj-24331	230	17	results	result	NOUN
brj-24331	230	18	,	,	PUNCT
brj-24331	230	19	showing	show	VERB
brj-24331	230	20	a	a	DET
brj-24331	230	21	minimal	minimal	ADJ
brj-24331	230	22	error	error	NOUN
brj-24331	230	23	of	of	ADP
brj-24331	230	24	approximately	approximately	ADV
brj-24331	230	25	0.23	0.23	NUM
brj-24331	230	26	wt.%	wt.%	NOUN
brj-24331	230	27	,	,	PUNCT
brj-24331	230	28	whereas	whereas	SCONJ
brj-24331	230	29	cfd	cfd	NOUN
brj-24331	230	30	slightly	slightly	ADV
brj-24331	230	31	underestimates	underestimate	VERB
brj-24331	230	32	the	the	DET
brj-24331	230	33	biochar	biochar	NOUN
brj-24331	230	34	yield	yield	NOUN
brj-24331	230	35	.	.	PUNCT
brj-24331	231	1	however	however	ADV
brj-24331	231	2	,	,	PUNCT
brj-24331	231	3	as	as	ADP
brj-24331	231	4	abr	abr	NOUN
brj-24331	231	5	increases	increase	NOUN
brj-24331	231	6	,	,	PUNCT
brj-24331	231	7	sim	sim	NOUN
brj-24331	231	8	overestimates	overestimate	VERB
brj-24331	231	9	the	the	DET
brj-24331	231	10	biochar	biochar	NOUN
brj-24331	231	11	yield	yield	NOUN
brj-24331	231	12	,	,	PUNCT
brj-24331	231	13	particularly	particularly	ADV
brj-24331	231	14	at	at	ADP
brj-24331	231	15	abr	abr	NOUN
brj-24331	231	16	=	=	NOUN
brj-24331	231	17	0.375	0.375	NUM
brj-24331	231	18	,	,	PUNCT
brj-24331	231	19	where	where	SCONJ
brj-24331	231	20	the	the	DET
brj-24331	231	21	error	error	NOUN
brj-24331	231	22	reaches	reach	VERB
brj-24331	231	23	3.08	3.08	NUM
brj-24331	231	24	wt.%	wt.%	NOUN
brj-24331	231	25	.	.	PUNCT
brj-24331	232	1	in	in	ADP
brj-24331	232	2	contrast	contrast	NOUN
brj-24331	232	3	,	,	PUNCT
brj-24331	232	4	cfd	cfd	NOUN
brj-24331	232	5	consistently	consistently	ADV
brj-24331	232	6	underestimates	underestimate	VERB
brj-24331	232	7	biochar	biochar	NOUN
brj-24331	232	8	yield	yield	NOUN
brj-24331	232	9	across	across	ADP
brj-24331	232	10	the	the	DET
brj-24331	232	11	entire	entire	ADJ
brj-24331	232	12	abr	abr	NOUN
brj-24331	232	13	range	range	NOUN
brj-24331	232	14	,	,	PUNCT
brj-24331	232	15	with	with	ADP
brj-24331	232	16	the	the	DET
brj-24331	232	17	largest	large	ADJ
brj-24331	232	18	deviation	deviation	NOUN
brj-24331	232	19	observed	observe	VERB
brj-24331	232	20	at	at	ADP
brj-24331	232	21	abr	abr	PROPN
brj-24331	232	22	=	=	NOUN
brj-24331	232	23	0.375	0.375	NUM
brj-24331	232	24	,	,	PUNCT
brj-24331	232	25	reaching	reach	VERB
brj-24331	232	26	3.55	3.55	NUM
brj-24331	232	27	wt.%	wt.%	NOUN
brj-24331	232	28	.	.	PUNCT
brj-24331	233	1	both	both	CCONJ
brj-24331	233	2	experimental	experimental	ADJ
brj-24331	233	3	and	and	CCONJ
brj-24331	233	4	simulation	simulation	NOUN
brj-24331	233	5	results	result	NOUN
brj-24331	233	6	indicate	indicate	VERB
brj-24331	233	7	that	that	SCONJ
brj-24331	233	8	increasing	increase	VERB
brj-24331	233	9	abr	abr	NOUN
brj-24331	233	10	reduces	reduce	VERB
brj-24331	233	11	biochar	biochar	NOUN
brj-24331	233	12	content	content	NOUN
brj-24331	233	13	,	,	PUNCT
brj-24331	233	14	consistent	consistent	ADJ
brj-24331	233	15	with	with	ADP
brj-24331	233	16	findings	finding	NOUN
brj-24331	233	17	from	from	ADP
brj-24331	233	18	nonisothermal	nonisothermal	ADJ
brj-24331	233	19	gasification	gasification	NOUN
brj-24331	233	20	studies	study	NOUN
brj-24331	233	21	,	,	PUNCT
brj-24331	233	22	where	where	SCONJ
brj-24331	233	23	higher	high	ADJ
brj-24331	233	24	abr	abr	NOUN
brj-24331	233	25	values	value	NOUN
brj-24331	233	26	enhance	enhance	VERB
brj-24331	233	27	oxidation	oxidation	NOUN
brj-24331	233	28	intensity	intensity	NOUN
brj-24331	233	29	,	,	PUNCT
brj-24331	233	30	reducing	reduce	VERB
brj-24331	233	31	biochar	biochar	NOUN
brj-24331	233	32	yield	yield	NOUN
brj-24331	233	33	(	(	PUNCT
brj-24331	233	34	torres	torre	NOUN
brj-24331	233	35	et	et	PROPN
brj-24331	233	36	al	al	PROPN
brj-24331	233	37	.	.	PROPN
brj-24331	233	38	2019	2019	NUM
brj-24331	233	39	)	)	PUNCT
brj-24331	233	40	.	.	PUNCT
brj-24331	234	1	the	the	DET
brj-24331	234	2	comparison	comparison	NOUN
brj-24331	234	3	of	of	ADP
brj-24331	234	4	bio	bio	ADJ
brj-24331	234	5	-	-	ADJ
brj-24331	234	6	oil	oil	NOUN
brj-24331	234	7	yields	yield	NOUN
brj-24331	234	8	indicates	indicate	VERB
brj-24331	234	9	that	that	SCONJ
brj-24331	234	10	the	the	DET
brj-24331	234	11	cfd	cfd	NOUN
brj-24331	234	12	model	model	NOUN
brj-24331	234	13	generally	generally	ADV
brj-24331	234	14	underestimates	underestimate	VERB
brj-24331	234	15	bio	bio	ADJ
brj-24331	234	16	-	-	ADJ
brj-24331	234	17	oil	oil	NOUN
brj-24331	234	18	yield	yield	NOUN
brj-24331	234	19	at	at	ADP
brj-24331	234	20	lower	low	ADJ
brj-24331	234	21	abr	abr	NOUN
brj-24331	234	22	values	value	NOUN
brj-24331	234	23	but	but	CCONJ
brj-24331	234	24	aligns	align	VERB
brj-24331	234	25	more	more	ADV
brj-24331	234	26	closely	closely	ADV
brj-24331	234	27	with	with	ADP
brj-24331	234	28	experimental	experimental	ADJ
brj-24331	234	29	data	datum	NOUN
brj-24331	234	30	as	as	ADP
brj-24331	234	31	abr	abr	NOUN
brj-24331	234	32	increases	increase	NOUN
brj-24331	234	33	,	,	PUNCT
brj-24331	234	34	as	as	SCONJ
brj-24331	234	35	shown	show	VERB
brj-24331	234	36	in	in	ADP
brj-24331	234	37	fig	fig	NOUN
brj-24331	234	38	.	.	PUNCT
brj-24331	235	1	3b	3b	NUM
brj-24331	235	2	.	.	PUNCT
brj-24331	236	1	for	for	ADP
brj-24331	236	2	an	an	DET
brj-24331	236	3	abr	abr	NOUN
brj-24331	236	4	of	of	ADP
brj-24331	236	5	0.375	0.375	NUM
brj-24331	236	6	,	,	PUNCT
brj-24331	236	7	the	the	DET
brj-24331	236	8	prediction	prediction	NOUN
brj-24331	236	9	error	error	NOUN
brj-24331	236	10	of	of	ADP
brj-24331	236	11	the	the	DET
brj-24331	236	12	cfd	cfd	NOUN
brj-24331	236	13	model	model	NOUN
brj-24331	236	14	was	be	AUX
brj-24331	236	15	peer	peer	NOUN
brj-24331	236	16	-	-	PUNCT
brj-24331	236	17	reviewed	review	VERB
brj-24331	236	18	article	article	NOUN
brj-24331	236	19	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	236	20	sangaré	sangaré	PROPN
brj-24331	236	21	et	et	PROPN
brj-24331	236	22	al	al	PROPN
brj-24331	236	23	.	.	PROPN
brj-24331	237	1	(	(	PUNCT
brj-24331	237	2	2025	2025	NUM
brj-24331	237	3	)	)	PUNCT
brj-24331	237	4	.	.	PUNCT
brj-24331	238	1	“	"	PUNCT
brj-24331	238	2	pyrogasification	pyrogasification	NOUN
brj-24331	238	3	of	of	ADP
brj-24331	238	4	biomass	biomass	NOUN
brj-24331	238	5	,	,	PUNCT
brj-24331	238	6	”	"	PUNCT
brj-24331	238	7	bioresources	bioresource	NOUN
brj-24331	238	8	20(2	20(2	NUM
brj-24331	238	9	)	)	PUNCT
brj-24331	238	10	,	,	PUNCT
brj-24331	238	11	2844	2844	NUM
brj-24331	238	12	-	-	SYM
brj-24331	238	13	2870	2870	NUM
brj-24331	238	14	.	.	PUNCT
brj-24331	238	15	2858	2858	NUM
brj-24331	238	16	1.04	1.04	NUM
brj-24331	238	17	wt.%	wt.%	ADJ
brj-24331	238	18	,	,	PUNCT
brj-24331	238	19	representing	represent	VERB
brj-24331	238	20	a	a	DET
brj-24331	238	21	better	well	ADJ
brj-24331	238	22	prediction	prediction	NOUN
brj-24331	238	23	under	under	ADP
brj-24331	238	24	intermediate	intermediate	ADJ
brj-24331	238	25	conditions	condition	NOUN
brj-24331	238	26	.	.	PUNCT
brj-24331	239	1	in	in	ADP
brj-24331	239	2	contrast	contrast	NOUN
brj-24331	239	3	,	,	PUNCT
brj-24331	239	4	the	the	DET
brj-24331	239	5	sim	sim	ADJ
brj-24331	239	6	model	model	NOUN
brj-24331	239	7	tends	tend	VERB
brj-24331	239	8	to	to	PART
brj-24331	239	9	overestimate	overestimate	VERB
brj-24331	239	10	the	the	DET
brj-24331	239	11	bio	bio	ADJ
brj-24331	239	12	-	-	ADJ
brj-24331	239	13	oil	oil	NOUN
brj-24331	239	14	yield	yield	NOUN
brj-24331	239	15	at	at	ADP
brj-24331	239	16	higher	high	ADJ
brj-24331	239	17	abr	abr	NOUN
brj-24331	239	18	value	value	NOUN
brj-24331	239	19	,	,	PUNCT
brj-24331	239	20	with	with	ADP
brj-24331	239	21	a	a	DET
brj-24331	239	22	notable	notable	ADJ
brj-24331	239	23	maximum	maximum	ADJ
brj-24331	239	24	error	error	NOUN
brj-24331	239	25	of	of	ADP
brj-24331	239	26	5.87	5.87	NUM
brj-24331	239	27	wt.%	wt.%	NOUN
brj-24331	239	28	at	at	ADP
brj-24331	239	29	0.25	0.25	NUM
brj-24331	239	30	.	.	PUNCT
brj-24331	240	1	this	this	DET
brj-24331	240	2	disparity	disparity	NOUN
brj-24331	240	3	highlights	highlight	VERB
brj-24331	240	4	differences	difference	NOUN
brj-24331	240	5	in	in	ADP
brj-24331	240	6	how	how	SCONJ
brj-24331	240	7	the	the	DET
brj-24331	240	8	models	model	NOUN
brj-24331	240	9	capture	capture	VERB
brj-24331	240	10	secondary	secondary	ADJ
brj-24331	240	11	reactions	reaction	NOUN
brj-24331	240	12	and	and	CCONJ
brj-24331	240	13	product	product	NOUN
brj-24331	240	14	distributions	distribution	NOUN
brj-24331	240	15	.	.	PUNCT
brj-24331	241	1	the	the	DET
brj-24331	241	2	ncg	ncg	PROPN
brj-24331	241	3	yields	yields	PROPN
brj-24331	241	4	(	(	PUNCT
brj-24331	241	5	fig	fig	NOUN
brj-24331	241	6	.	.	PUNCT
brj-24331	242	1	3c	3c	NUM
brj-24331	242	2	)	)	PUNCT
brj-24331	242	3	reveal	reveal	VERB
brj-24331	242	4	distinct	distinct	ADJ
brj-24331	242	5	predictive	predictive	ADJ
brj-24331	242	6	behaviors	behavior	NOUN
brj-24331	242	7	for	for	ADP
brj-24331	242	8	the	the	DET
brj-24331	242	9	two	two	NUM
brj-24331	242	10	models	model	NOUN
brj-24331	242	11	across	across	ADP
brj-24331	242	12	varying	vary	VERB
brj-24331	242	13	abr	abr	NOUN
brj-24331	242	14	values	value	NOUN
brj-24331	242	15	.	.	PUNCT
brj-24331	243	1	at	at	ADP
brj-24331	243	2	low	low	ADJ
brj-24331	243	3	abr	abr	NOUN
brj-24331	243	4	(	(	PUNCT
brj-24331	243	5	e.g.	e.g.	ADV
brj-24331	243	6	,	,	PUNCT
brj-24331	243	7	0.187	0.187	NUM
brj-24331	243	8	)	)	PUNCT
brj-24331	243	9	,	,	PUNCT
brj-24331	243	10	the	the	DET
brj-24331	243	11	cfd	cfd	NOUN
brj-24331	243	12	model	model	NOUN
brj-24331	243	13	significantly	significantly	ADV
brj-24331	243	14	overestimates	overestimate	VERB
brj-24331	243	15	ncg	ncg	PROPN
brj-24331	243	16	yields	yield	NOUN
brj-24331	243	17	,	,	PUNCT
brj-24331	243	18	while	while	SCONJ
brj-24331	243	19	the	the	DET
brj-24331	243	20	sim	sim	ADJ
brj-24331	243	21	model	model	NOUN
brj-24331	243	22	underestimates	underestimate	VERB
brj-24331	243	23	them	they	PRON
brj-24331	243	24	.	.	PUNCT
brj-24331	244	1	this	this	DET
brj-24331	244	2	contrast	contrast	NOUN
brj-24331	244	3	reflects	reflect	VERB
brj-24331	244	4	differences	difference	NOUN
brj-24331	244	5	in	in	ADP
brj-24331	244	6	how	how	SCONJ
brj-24331	244	7	the	the	DET
brj-24331	244	8	models	model	NOUN
brj-24331	244	9	handle	handle	VERB
brj-24331	244	10	reaction	reaction	NOUN
brj-24331	244	11	dynamics	dynamic	NOUN
brj-24331	244	12	under	under	ADP
brj-24331	244	13	oxidation	oxidation	NOUN
brj-24331	244	14	conditions	condition	NOUN
brj-24331	244	15	.	.	PUNCT
brj-24331	245	1	as	as	ADP
brj-24331	245	2	abr	abr	NOUN
brj-24331	245	3	increases	increase	NOUN
brj-24331	245	4	,	,	PUNCT
brj-24331	245	5	both	both	DET
brj-24331	245	6	models	model	NOUN
brj-24331	245	7	improve	improve	VERB
brj-24331	245	8	their	their	PRON
brj-24331	245	9	agreement	agreement	NOUN
brj-24331	245	10	with	with	ADP
brj-24331	245	11	experimental	experimental	ADJ
brj-24331	245	12	results	result	NOUN
brj-24331	245	13	.	.	PUNCT
brj-24331	246	1	at	at	ADP
brj-24331	246	2	abr=0.375	abr=0.375	PROPN
brj-24331	246	3	,	,	PUNCT
brj-24331	246	4	the	the	DET
brj-24331	246	5	sim	sim	ADJ
brj-24331	246	6	model	model	NOUN
brj-24331	246	7	closely	closely	ADV
brj-24331	246	8	matches	match	VERB
brj-24331	246	9	the	the	DET
brj-24331	246	10	experimental	experimental	ADJ
brj-24331	246	11	data	datum	NOUN
brj-24331	246	12	,	,	PUNCT
brj-24331	246	13	with	with	ADP
brj-24331	246	14	an	an	DET
brj-24331	246	15	error	error	NOUN
brj-24331	246	16	of	of	ADP
brj-24331	246	17	1.44	1.44	NUM
brj-24331	246	18	wt.%	wt.%	NOUN
brj-24331	246	19	,	,	PUNCT
brj-24331	246	20	whereas	whereas	SCONJ
brj-24331	246	21	the	the	DET
brj-24331	246	22	cfd	cfd	NOUN
brj-24331	246	23	model	model	NOUN
brj-24331	246	24	slightly	slightly	ADV
brj-24331	246	25	overestimates	overestimate	VERB
brj-24331	246	26	yields	yield	NOUN
brj-24331	246	27	,	,	PUNCT
brj-24331	246	28	with	with	ADP
brj-24331	246	29	an	an	DET
brj-24331	246	30	error	error	NOUN
brj-24331	246	31	of	of	ADP
brj-24331	246	32	2.52	2.52	NUM
brj-24331	246	33	wt.%	wt.%	NOUN
brj-24331	246	34	.	.	PUNCT
brj-24331	247	1	at	at	ADP
brj-24331	247	2	the	the	DET
brj-24331	247	3	highest	high	ADJ
brj-24331	247	4	abr	abr	NOUN
brj-24331	247	5	(	(	PUNCT
brj-24331	247	6	e.g.	e.g.	ADV
brj-24331	247	7	,	,	PUNCT
brj-24331	247	8	1.0	1.0	NUM
brj-24331	247	9	)	)	PUNCT
brj-24331	247	10	,	,	PUNCT
brj-24331	247	11	the	the	DET
brj-24331	247	12	cfd	cfd	NOUN
brj-24331	247	13	model	model	NOUN
brj-24331	247	14	achieves	achieve	VERB
brj-24331	247	15	near	near	ADV
brj-24331	247	16	-	-	PUNCT
brj-24331	247	17	perfect	perfect	ADJ
brj-24331	247	18	accuracy	accuracy	NOUN
brj-24331	247	19	with	with	ADP
brj-24331	247	20	an	an	DET
brj-24331	247	21	error	error	NOUN
brj-24331	247	22	of	of	ADP
brj-24331	247	23	1.77	1.77	NUM
brj-24331	247	24	wt.%	wt.%	NOUN
brj-24331	247	25	,	,	PUNCT
brj-24331	247	26	while	while	SCONJ
brj-24331	247	27	the	the	DET
brj-24331	247	28	sim	sim	ADJ
brj-24331	247	29	model	model	NOUN
brj-24331	247	30	slightly	slightly	ADV
brj-24331	247	31	underestimates	underestimate	VERB
brj-24331	247	32	ncg	ncg	PROPN
brj-24331	247	33	yields	yield	NOUN
brj-24331	247	34	,	,	PUNCT
brj-24331	247	35	with	with	ADP
brj-24331	247	36	an	an	DET
brj-24331	247	37	error	error	NOUN
brj-24331	247	38	of	of	ADP
brj-24331	247	39	2.13	2.13	NUM
brj-24331	247	40	wt.%	wt.%	NOUN
brj-24331	247	41	.	.	PUNCT
brj-24331	248	1	the	the	DET
brj-24331	248	2	analysis	analysis	NOUN
brj-24331	248	3	of	of	ADP
brj-24331	248	4	individual	individual	ADJ
brj-24331	248	5	non	non	ADJ
brj-24331	248	6	-	-	ADJ
brj-24331	248	7	condensable	condensable	ADJ
brj-24331	248	8	gases	gas	NOUN
brj-24331	248	9	(	(	PUNCT
brj-24331	248	10	₂	₂	NUM
brj-24331	248	11	,	,	PUNCT
brj-24331	248	12	c	c	NOUN
brj-24331	248	13	₄	₄	NUM
brj-24331	248	14	,	,	PUNCT
brj-24331	248	15	co	co	NOUN
brj-24331	248	16	,	,	PUNCT
brj-24331	248	17	and	and	CCONJ
brj-24331	248	18	co₂	co₂	NOUN
brj-24331	248	19	)	)	PUNCT
brj-24331	248	20	shows	show	VERB
brj-24331	248	21	discrepancies	discrepancy	NOUN
brj-24331	248	22	between	between	ADP
brj-24331	248	23	experimental	experimental	ADJ
brj-24331	248	24	data	datum	NOUN
brj-24331	248	25	and	and	CCONJ
brj-24331	248	26	model	model	NOUN
brj-24331	248	27	predictions	prediction	NOUN
brj-24331	248	28	across	across	ADP
brj-24331	248	29	all	all	DET
brj-24331	248	30	abr	abr	NOUN
brj-24331	248	31	values	value	NOUN
brj-24331	248	32	,	,	PUNCT
brj-24331	248	33	as	as	SCONJ
brj-24331	248	34	shown	show	VERB
brj-24331	248	35	in	in	ADP
brj-24331	248	36	fig	fig	NOUN
brj-24331	248	37	.	.	PUNCT
brj-24331	249	1	4	4	X
brj-24331	249	2	.	.	X
brj-24331	249	3	fig	fig	NOUN
brj-24331	249	4	.	.	PUNCT
brj-24331	250	1	4	4	X
brj-24331	250	2	.	.	X
brj-24331	250	3	comparison	comparison	NOUN
brj-24331	250	4	of	of	ADP
brj-24331	250	5	experimental	experimental	ADJ
brj-24331	250	6	and	and	CCONJ
brj-24331	250	7	simulation	simulation	NOUN
brj-24331	250	8	results	result	NOUN
brj-24331	250	9	for	for	ADP
brj-24331	250	10	the	the	DET
brj-24331	250	11	ncg	ncg	PROPN
brj-24331	250	12	composition	composition	NOUN
brj-24331	250	13	of	of	ADP
brj-24331	250	14	non	non	ADJ
brj-24331	250	15	-	-	ADJ
brj-24331	250	16	isothermal	isothermal	ADJ
brj-24331	250	17	gasification	gasification	NOUN
brj-24331	250	18	at	at	ADP
brj-24331	250	19	low	low	ADJ
brj-24331	250	20	abr	abr	NOUN
brj-24331	250	21	(	(	PUNCT
brj-24331	250	22	e.g.	e.g.	ADV
brj-24331	250	23	,	,	PUNCT
brj-24331	250	24	0	0	NUM
brj-24331	250	25	.	.	NOUN
brj-24331	250	26	87	87	NUM
brj-24331	250	27	)	)	PUNCT
brj-24331	250	28	,	,	PUNCT
brj-24331	250	29	experimental	experimental	ADJ
brj-24331	250	30	results	result	NOUN
brj-24331	250	31	reveal	reveal	VERB
brj-24331	250	32	higher	high	ADJ
brj-24331	250	33	₂	₂	NUM
brj-24331	250	34	and	and	CCONJ
brj-24331	250	35	co	co	NOUN
brj-24331	250	36	ratios	ratio	NOUN
brj-24331	250	37	,	,	PUNCT
brj-24331	250	38	reflecting	reflect	VERB
brj-24331	250	39	the	the	DET
brj-24331	250	40	dominance	dominance	NOUN
brj-24331	250	41	of	of	ADP
brj-24331	250	42	partial	partial	ADJ
brj-24331	250	43	oxidation	oxidation	NOUN
brj-24331	250	44	and	and	CCONJ
brj-24331	250	45	water	water	NOUN
brj-24331	250	46	-	-	PUNCT
brj-24331	250	47	gas	gas	NOUN
brj-24331	250	48	reactions	reaction	NOUN
brj-24331	250	49	.	.	PUNCT
brj-24331	251	1	the	the	DET
brj-24331	251	2	cfd	cfd	NOUN
brj-24331	251	3	model	model	NOUN
brj-24331	251	4	accurately	accurately	ADV
brj-24331	251	5	captures	capture	VERB
brj-24331	251	6	these	these	DET
brj-24331	251	7	trends	trend	NOUN
brj-24331	251	8	,	,	PUNCT
brj-24331	251	9	with	with	ADP
brj-24331	251	10	an	an	DET
brj-24331	251	11	error	error	NOUN
brj-24331	251	12	of	of	ADP
brj-24331	251	13	.0	.0	NUM
brj-24331	251	14	wt.%	wt.%	NOUN
brj-24331	251	15	for	for	ADP
brj-24331	251	16	co	co	NOUN
brj-24331	251	17	,	,	PUNCT
brj-24331	251	18	but	but	CCONJ
brj-24331	251	19	underestimates	underestimate	VERB
brj-24331	251	20	c	c	NOUN
brj-24331	251	21	₄.	₄.	NOUN
brj-24331	251	22	in	in	ADP
brj-24331	251	23	contrast	contrast	NOUN
brj-24331	251	24	,	,	PUNCT
brj-24331	251	25	the	the	DET
brj-24331	251	26	sim	sim	ADJ
brj-24331	251	27	model	model	NOUN
brj-24331	251	28	exhibits	exhibit	VERB
brj-24331	251	29	larger	large	ADJ
brj-24331	251	30	deviations	deviation	NOUN
brj-24331	251	31	for	for	ADP
brj-24331	251	32	₂	₂	NUM
brj-24331	251	33	and	and	CCONJ
brj-24331	251	34	co	co	VERB
brj-24331	251	35	,	,	PUNCT
brj-24331	251	36	with	with	ADP
brj-24331	251	37	errors	error	NOUN
brj-24331	251	38	exceeding	exceed	VERB
brj-24331	251	39	7	7	NUM
brj-24331	251	40	.	.	NOUN
brj-24331	251	41	7	7	NUM
brj-24331	251	42	wt.%	wt.%	ADJ
brj-24331	251	43	in	in	ADP
brj-24331	251	44	some	some	DET
brj-24331	251	45	cases	case	NOUN
brj-24331	251	46	.	.	PUNCT
brj-24331	252	1	as	as	ADP
brj-24331	252	2	abr	abr	NOUN
brj-24331	252	3	increases	increase	NOUN
brj-24331	252	4	,	,	PUNCT
brj-24331	252	5	reaction	reaction	NOUN
brj-24331	252	6	pathways	pathway	NOUN
brj-24331	252	7	shift	shift	NOUN
brj-24331	252	8	,	,	PUNCT
brj-24331	252	9	resulting	result	VERB
brj-24331	252	10	in	in	ADP
brj-24331	252	11	higher	high	ADJ
brj-24331	252	12	co₂	co₂	NOUN
brj-24331	252	13	production	production	NOUN
brj-24331	252	14	and	and	CCONJ
brj-24331	252	15	reduced	reduce	VERB
brj-24331	252	16	co	co	NOUN
brj-24331	252	17	peer	peer	NOUN
brj-24331	252	18	-	-	PUNCT
brj-24331	252	19	reviewed	review	VERB
brj-24331	252	20	article	article	NOUN
brj-24331	252	21	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	252	22	sangaré	sangaré	PROPN
brj-24331	252	23	et	et	PROPN
brj-24331	252	24	al	al	PROPN
brj-24331	252	25	.	.	PROPN
brj-24331	253	1	(	(	PUNCT
brj-24331	253	2	2025	2025	NUM
brj-24331	253	3	)	)	PUNCT
brj-24331	253	4	.	.	PUNCT
brj-24331	254	1	“	"	PUNCT
brj-24331	254	2	pyrogasification	pyrogasification	NOUN
brj-24331	254	3	of	of	ADP
brj-24331	254	4	biomass	biomass	NOUN
brj-24331	254	5	,	,	PUNCT
brj-24331	254	6	”	"	PUNCT
brj-24331	254	7	bioresources	bioresource	NOUN
brj-24331	254	8	20(2	20(2	NUM
brj-24331	254	9	)	)	PUNCT
brj-24331	254	10	,	,	PUNCT
brj-24331	254	11	2844	2844	NUM
brj-24331	254	12	-	-	SYM
brj-24331	254	13	2870	2870	NUM
brj-24331	254	14	.	.	PUNCT
brj-24331	254	15	2859	2859	NUM
brj-24331	254	16	and	and	CCONJ
brj-24331	254	17	c	c	PROPN
brj-24331	254	18	₄	₄	NUM
brj-24331	254	19	ratios	ratio	NOUN
brj-24331	254	20	.	.	PUNCT
brj-24331	255	1	experimental	experimental	ADJ
brj-24331	255	2	data	datum	NOUN
brj-24331	255	3	at	at	ADP
brj-24331	255	4	abr=0	abr=0	NOUN
brj-24331	255	5	.	.	PUNCT
brj-24331	256	1	7	7	NUM
brj-24331	256	2	shows	show	VERB
brj-24331	256	3	a	a	DET
brj-24331	256	4	significant	significant	ADJ
brj-24331	256	5	increase	increase	NOUN
brj-24331	256	6	in	in	ADP
brj-24331	256	7	co₂	co₂	NOUN
brj-24331	256	8	,	,	PUNCT
brj-24331	256	9	which	which	PRON
brj-24331	256	10	the	the	DET
brj-24331	256	11	cfd	cfd	NOUN
brj-24331	256	12	model	model	NOUN
brj-24331	256	13	predicts	predict	VERB
brj-24331	256	14	well	well	ADV
brj-24331	256	15	,	,	PUNCT
brj-24331	256	16	with	with	ADP
brj-24331	256	17	errors	error	NOUN
brj-24331	256	18	below	below	ADP
brj-24331	256	19	3.62	3.62	NUM
brj-24331	256	20	wt.%	wt.%	NOUN
brj-24331	256	21	.	.	PUNCT
brj-24331	257	1	however	however	ADV
brj-24331	257	2	,	,	PUNCT
brj-24331	257	3	the	the	DET
brj-24331	257	4	sim	sim	ADJ
brj-24331	257	5	model	model	NOUN
brj-24331	257	6	underestimates	underestimate	VERB
brj-24331	257	7	co₂	co₂	NOUN
brj-24331	257	8	at	at	ADP
brj-24331	257	9	higher	high	ADJ
brj-24331	257	10	abr	abr	NOUN
brj-24331	257	11	values	value	NOUN
brj-24331	257	12	,	,	PUNCT
brj-24331	257	13	overestimates	overestimate	VERB
brj-24331	257	14	co	co	NOUN
brj-24331	257	15	,	,	PUNCT
brj-24331	257	16	and	and	CCONJ
brj-24331	257	17	consistently	consistently	ADV
brj-24331	257	18	underpredicts	underpredict	VERB
brj-24331	257	19	₂.	₂.	PUNCT
brj-24331	257	20	both	both	DET
brj-24331	257	21	models	model	NOUN
brj-24331	257	22	struggle	struggle	VERB
brj-24331	257	23	with	with	ADP
brj-24331	257	24	c	c	PROPN
brj-24331	257	25	₄	₄	NUM
brj-24331	257	26	predictions	prediction	NOUN
brj-24331	257	27	,	,	PUNCT
brj-24331	257	28	consistently	consistently	ADV
brj-24331	257	29	underestimating	underestimate	VERB
brj-24331	257	30	its	its	PRON
brj-24331	257	31	composition	composition	NOUN
brj-24331	257	32	,	,	PUNCT
brj-24331	257	33	though	though	SCONJ
brj-24331	257	34	the	the	DET
brj-24331	257	35	cfd	cfd	NOUN
brj-24331	257	36	model	model	NOUN
brj-24331	257	37	demonstrates	demonstrate	VERB
brj-24331	257	38	slightly	slightly	ADV
brj-24331	257	39	better	well	ADJ
brj-24331	257	40	alignment	alignment	NOUN
brj-24331	257	41	than	than	ADP
brj-24331	257	42	the	the	DET
brj-24331	257	43	sim	sim	ADJ
brj-24331	257	44	model	model	NOUN
brj-24331	257	45	.	.	PUNCT
brj-24331	258	1	under	under	ADP
brj-24331	258	2	non	non	ADJ
brj-24331	258	3	-	-	ADJ
brj-24331	258	4	isothermal	isothermal	ADJ
brj-24331	258	5	conditions	condition	NOUN
brj-24331	258	6	(	(	PUNCT
brj-24331	258	7	700	700	NUM
brj-24331	258	8	to	to	PART
brj-24331	258	9	1000	1000	NUM
brj-24331	258	10	°	°	NOUN
brj-24331	258	11	c	c	NOUN
brj-24331	258	12	)	)	PUNCT
brj-24331	258	13	and	and	CCONJ
brj-24331	258	14	varying	vary	VERB
brj-24331	258	15	abr	abr	NOUN
brj-24331	258	16	(	(	PUNCT
brj-24331	258	17	0.187	0.187	NUM
brj-24331	258	18	to	to	PART
brj-24331	258	19	1	1	NUM
brj-24331	258	20	)	)	PUNCT
brj-24331	258	21	,	,	PUNCT
brj-24331	258	22	both	both	DET
brj-24331	258	23	models	model	NOUN
brj-24331	258	24	demonstrate	demonstrate	VERB
brj-24331	258	25	significant	significant	ADJ
brj-24331	258	26	predictive	predictive	ADJ
brj-24331	258	27	capabilities	capability	NOUN
brj-24331	258	28	but	but	CCONJ
brj-24331	258	29	show	show	VERB
brj-24331	258	30	specific	specific	ADJ
brj-24331	258	31	limitations	limitation	NOUN
brj-24331	258	32	.	.	PUNCT
brj-24331	259	1	the	the	DET
brj-24331	259	2	sim	sim	ADJ
brj-24331	259	3	model	model	NOUN
brj-24331	259	4	exhibits	exhibit	VERB
brj-24331	259	5	greater	great	ADJ
brj-24331	259	6	accuracy	accuracy	NOUN
brj-24331	259	7	in	in	ADP
brj-24331	259	8	predicting	predict	VERB
brj-24331	259	9	global	global	ADJ
brj-24331	259	10	products	product	NOUN
brj-24331	259	11	,	,	PUNCT
brj-24331	259	12	such	such	ADJ
brj-24331	259	13	as	as	ADP
brj-24331	259	14	biochar	biochar	NOUN
brj-24331	259	15	,	,	PUNCT
brj-24331	259	16	bio	bio	NOUN
brj-24331	259	17	-	-	NOUN
brj-24331	259	18	oil	oil	NOUN
brj-24331	259	19	,	,	PUNCT
brj-24331	259	20	and	and	CCONJ
brj-24331	259	21	ncg	ncg	PROPN
brj-24331	259	22	(	(	PUNCT
brj-24331	259	23	gases	gas	NOUN
brj-24331	259	24	)	)	PUNCT
brj-24331	259	25	,	,	PUNCT
brj-24331	259	26	which	which	PRON
brj-24331	259	27	can	can	AUX
brj-24331	259	28	be	be	AUX
brj-24331	259	29	attributed	attribute	VERB
brj-24331	259	30	to	to	ADP
brj-24331	259	31	its	its	PRON
brj-24331	259	32	continuous	continuous	ADJ
brj-24331	259	33	-	-	PUNCT
brj-24331	259	34	system	system	NOUN
brj-24331	259	35	approach	approach	NOUN
brj-24331	259	36	and	and	CCONJ
brj-24331	259	37	ability	ability	NOUN
brj-24331	259	38	to	to	PART
brj-24331	259	39	capture	capture	VERB
brj-24331	259	40	general	general	ADJ
brj-24331	259	41	trends	trend	NOUN
brj-24331	259	42	.	.	PUNCT
brj-24331	260	1	however	however	ADV
brj-24331	260	2	,	,	PUNCT
brj-24331	260	3	certain	certain	ADJ
brj-24331	260	4	discrepancies	discrepancy	NOUN
brj-24331	260	5	in	in	ADP
brj-24331	260	6	the	the	DET
brj-24331	260	7	prediction	prediction	NOUN
brj-24331	260	8	of	of	ADP
brj-24331	260	9	non	non	ADJ
brj-24331	260	10	-	-	ADJ
brj-24331	260	11	condensable	condensable	ADJ
brj-24331	260	12	gas	gas	NOUN
brj-24331	260	13	compositions	composition	NOUN
brj-24331	260	14	,	,	PUNCT
brj-24331	260	15	such	such	ADJ
brj-24331	260	16	as	as	ADP
brj-24331	260	17	₂	₂	NUM
brj-24331	260	18	,	,	PUNCT
brj-24331	260	19	c	c	NOUN
brj-24331	260	20	₄	₄	NUM
brj-24331	260	21	,	,	PUNCT
brj-24331	260	22	co	co	NOUN
brj-24331	260	23	,	,	PUNCT
brj-24331	260	24	and	and	CCONJ
brj-24331	260	25	co₂	co₂	PROPN
brj-24331	260	26	,	,	PUNCT
brj-24331	260	27	indicate	indicate	VERB
brj-24331	260	28	that	that	SCONJ
brj-24331	260	29	the	the	DET
brj-24331	260	30	model	model	NOUN
brj-24331	260	31	would	would	AUX
brj-24331	260	32	require	require	VERB
brj-24331	260	33	refinements	refinement	NOUN
brj-24331	260	34	in	in	ADP
brj-24331	260	35	its	its	PRON
brj-24331	260	36	kinetic	kinetic	ADJ
brj-24331	260	37	description	description	NOUN
brj-24331	260	38	and	and	CCONJ
brj-24331	260	39	aspects	aspect	NOUN
brj-24331	260	40	of	of	ADP
brj-24331	260	41	thermodynamic	thermodynamic	ADJ
brj-24331	260	42	models	model	NOUN
brj-24331	260	43	to	to	PART
brj-24331	260	44	better	well	ADV
brj-24331	260	45	represent	represent	VERB
brj-24331	260	46	the	the	DET
brj-24331	260	47	phase	phase	NOUN
brj-24331	260	48	equilibria	equilibrium	NOUN
brj-24331	260	49	under	under	ADP
brj-24331	260	50	non	non	ADJ
brj-24331	260	51	-	-	ADJ
brj-24331	260	52	isothermal	isothermal	ADJ
brj-24331	260	53	conditions	condition	NOUN
brj-24331	260	54	studied	study	VERB
brj-24331	260	55	.	.	PUNCT
brj-24331	261	1	in	in	ADP
brj-24331	261	2	contrast	contrast	NOUN
brj-24331	261	3	,	,	PUNCT
brj-24331	261	4	the	the	DET
brj-24331	261	5	cfd	cfd	NOUN
brj-24331	261	6	model	model	NOUN
brj-24331	261	7	provides	provide	VERB
brj-24331	261	8	more	more	ADV
brj-24331	261	9	accurate	accurate	ADJ
brj-24331	261	10	predictions	prediction	NOUN
brj-24331	261	11	of	of	ADP
brj-24331	261	12	the	the	DET
brj-24331	261	13	non	non	ADJ
brj-24331	261	14	-	-	ADJ
brj-24331	261	15	condensable	condensable	ADJ
brj-24331	261	16	gas	gas	NOUN
brj-24331	261	17	composition	composition	NOUN
brj-24331	261	18	,	,	PUNCT
brj-24331	261	19	better	well	ADV
brj-24331	261	20	representing	represent	VERB
brj-24331	261	21	the	the	DET
brj-24331	261	22	thermochemical	thermochemical	ADJ
brj-24331	261	23	dynamics	dynamic	NOUN
brj-24331	261	24	of	of	ADP
brj-24331	261	25	the	the	DET
brj-24331	261	26	reactor	reactor	NOUN
brj-24331	261	27	,	,	PUNCT
brj-24331	261	28	including	include	VERB
brj-24331	261	29	reaction	reaction	NOUN
brj-24331	261	30	kinetics	kinetic	NOUN
brj-24331	261	31	and	and	CCONJ
brj-24331	261	32	heat	heat	NOUN
brj-24331	261	33	transfer	transfer	NOUN
brj-24331	261	34	phenomena	phenomenon	NOUN
brj-24331	261	35	.	.	PUNCT
brj-24331	262	1	however	however	ADV
brj-24331	262	2	,	,	PUNCT
brj-24331	262	3	discrepancies	discrepancy	NOUN
brj-24331	262	4	in	in	ADP
brj-24331	262	5	the	the	DET
brj-24331	262	6	overall	overall	ADJ
brj-24331	262	7	product	product	NOUN
brj-24331	262	8	yields	yield	NOUN
brj-24331	262	9	were	be	AUX
brj-24331	262	10	observed	observe	VERB
brj-24331	262	11	,	,	PUNCT
brj-24331	262	12	suggesting	suggest	VERB
brj-24331	262	13	the	the	DET
brj-24331	262	14	need	need	NOUN
brj-24331	262	15	for	for	ADP
brj-24331	262	16	further	further	ADJ
brj-24331	262	17	refinement	refinement	NOUN
brj-24331	262	18	in	in	ADP
brj-24331	262	19	modeling	modeling	NOUN
brj-24331	262	20	under	under	ADP
brj-24331	262	21	these	these	DET
brj-24331	262	22	conditions	condition	NOUN
brj-24331	262	23	.	.	PUNCT
brj-24331	263	1	the	the	DET
brj-24331	263	2	comparative	comparative	ADJ
brj-24331	263	3	analysis	analysis	NOUN
brj-24331	263	4	showed	show	VERB
brj-24331	263	5	the	the	DET
brj-24331	263	6	complementary	complementary	ADJ
brj-24331	263	7	strengths	strength	NOUN
brj-24331	263	8	of	of	ADP
brj-24331	263	9	both	both	DET
brj-24331	263	10	models	model	NOUN
brj-24331	263	11	.	.	PUNCT
brj-24331	264	1	while	while	SCONJ
brj-24331	264	2	the	the	DET
brj-24331	264	3	sim	sim	ADJ
brj-24331	264	4	model	model	NOUN
brj-24331	264	5	better	well	ADV
brj-24331	264	6	predicts	predict	VERB
brj-24331	264	7	overall	overall	ADJ
brj-24331	264	8	product	product	NOUN
brj-24331	264	9	trends	trend	NOUN
brj-24331	264	10	,	,	PUNCT
brj-24331	264	11	the	the	DET
brj-24331	264	12	cfd	cfd	NOUN
brj-24331	264	13	model	model	NOUN
brj-24331	264	14	better	well	ADV
brj-24331	264	15	predicts	predict	VERB
brj-24331	264	16	gas	gas	NOUN
brj-24331	264	17	composition	composition	NOUN
brj-24331	264	18	.	.	PUNCT
brj-24331	265	1	this	this	PRON
brj-24331	265	2	suggests	suggest	VERB
brj-24331	265	3	that	that	SCONJ
brj-24331	265	4	a	a	DET
brj-24331	265	5	hybrid	hybrid	ADJ
brj-24331	265	6	modeling	modeling	NOUN
brj-24331	265	7	approach	approach	NOUN
brj-24331	265	8	,	,	PUNCT
brj-24331	265	9	which	which	PRON
brj-24331	265	10	takes	take	VERB
brj-24331	265	11	advantage	advantage	NOUN
brj-24331	265	12	of	of	ADP
brj-24331	265	13	the	the	DET
brj-24331	265	14	strengths	strength	NOUN
brj-24331	265	15	of	of	ADP
brj-24331	265	16	both	both	DET
brj-24331	265	17	frameworks	framework	NOUN
brj-24331	265	18	,	,	PUNCT
brj-24331	265	19	could	could	AUX
brj-24331	265	20	significantly	significantly	ADV
brj-24331	265	21	improve	improve	VERB
brj-24331	265	22	the	the	DET
brj-24331	265	23	accuracy	accuracy	NOUN
brj-24331	265	24	of	of	ADP
brj-24331	265	25	predictions	prediction	NOUN
brj-24331	265	26	for	for	ADP
brj-24331	265	27	nonisothermal	nonisothermal	NOUN
brj-24331	265	28	gasification	gasification	NOUN
brj-24331	265	29	processes	process	NOUN
brj-24331	265	30	.	.	PUNCT
brj-24331	266	1	isothermal	isothermal	ADJ
brj-24331	266	2	gasification	gasification	NOUN
brj-24331	266	3	results	result	NOUN
brj-24331	266	4	figure	figure	VERB
brj-24331	266	5	5	5	NUM
brj-24331	266	6	presents	present	VERB
brj-24331	266	7	the	the	DET
brj-24331	266	8	comparison	comparison	NOUN
brj-24331	266	9	between	between	ADP
brj-24331	266	10	experimental	experimental	ADJ
brj-24331	266	11	data	datum	NOUN
brj-24331	266	12	and	and	CCONJ
brj-24331	266	13	predicted	predict	VERB
brj-24331	266	14	values	value	NOUN
brj-24331	266	15	.	.	PUNCT
brj-24331	267	1	the	the	DET
brj-24331	267	2	results	result	NOUN
brj-24331	267	3	reveal	reveal	VERB
brj-24331	267	4	that	that	SCONJ
brj-24331	267	5	both	both	DET
brj-24331	267	6	cfd	cfd	NOUN
brj-24331	267	7	and	and	CCONJ
brj-24331	267	8	sim	sim	ADJ
brj-24331	267	9	consistently	consistently	ADV
brj-24331	267	10	overestimate	overestimate	VERB
brj-24331	267	11	biochar	biochar	NOUN
brj-24331	267	12	yields	yield	NOUN
brj-24331	267	13	compared	compare	VERB
brj-24331	267	14	to	to	ADP
brj-24331	267	15	experimental	experimental	ADJ
brj-24331	267	16	data	datum	NOUN
brj-24331	267	17	.	.	PUNCT
brj-24331	268	1	at	at	ADP
brj-24331	268	2	900	900	NUM
brj-24331	268	3	°	°	NOUN
brj-24331	268	4	c	c	NOUN
brj-24331	268	5	,	,	PUNCT
brj-24331	268	6	the	the	DET
brj-24331	268	7	cfd	cfd	NOUN
brj-24331	268	8	model	model	NOUN
brj-24331	268	9	overpredicts	overpredict	NOUN
brj-24331	268	10	by	by	ADP
brj-24331	268	11	7.24	7.24	NUM
brj-24331	268	12	wt.%	wt.%	ADJ
brj-24331	268	13	,	,	PUNCT
brj-24331	268	14	decreasing	decrease	VERB
brj-24331	268	15	slightly	slightly	ADV
brj-24331	268	16	to	to	ADP
brj-24331	268	17	6.04	6.04	NUM
brj-24331	268	18	wt.%	wt.%	NOUN
brj-24331	268	19	at	at	ADP
brj-24331	268	20	950	950	NUM
brj-24331	268	21	°	°	NOUN
brj-24331	268	22	c	c	NOUN
brj-24331	268	23	.	.	PUNCT
brj-24331	269	1	conversely	conversely	ADV
brj-24331	269	2	,	,	PUNCT
brj-24331	269	3	sim	sim	ADJ
brj-24331	269	4	exhibits	exhibit	VERB
brj-24331	269	5	more	more	ADV
brj-24331	269	6	moderate	moderate	ADJ
brj-24331	269	7	overestimations	overestimation	NOUN
brj-24331	269	8	,	,	PUNCT
brj-24331	269	9	with	with	ADP
brj-24331	269	10	differences	difference	NOUN
brj-24331	269	11	of	of	ADP
brj-24331	269	12	3.6	3.6	NUM
brj-24331	269	13	w.%	w.%	NOUN
brj-24331	269	14	at	at	ADP
brj-24331	269	15	900	900	NUM
brj-24331	269	16	°	°	NOUN
brj-24331	269	17	c	c	NOUN
brj-24331	269	18	and	and	CCONJ
brj-24331	269	19	2.51	2.51	NUM
brj-24331	269	20	wt.%	wt.%	NOUN
brj-24331	269	21	at	at	ADP
brj-24331	269	22	950	950	NUM
brj-24331	269	23	°	°	NOUN
brj-24331	269	24	c	c	NOUN
brj-24331	269	25	.	.	PUNCT
brj-24331	270	1	fig	fig	NOUN
brj-24331	270	2	.	.	PUNCT
brj-24331	271	1	5	5	NUM
brj-24331	271	2	.	.	X
brj-24331	271	3	comparison	comparison	NOUN
brj-24331	271	4	of	of	ADP
brj-24331	271	5	experimental	experimental	ADJ
brj-24331	271	6	and	and	CCONJ
brj-24331	271	7	simulation	simulation	NOUN
brj-24331	271	8	results	result	NOUN
brj-24331	271	9	for	for	ADP
brj-24331	271	10	the	the	DET
brj-24331	271	11	main	main	ADJ
brj-24331	271	12	products	product	NOUN
brj-24331	271	13	yields	yield	NOUN
brj-24331	271	14	of	of	ADP
brj-24331	271	15	isothermal	isothermal	ADJ
brj-24331	271	16	gasification	gasification	NOUN
brj-24331	271	17	both	both	DET
brj-24331	271	18	models	model	NOUN
brj-24331	271	19	overestimate	overestimate	VERB
brj-24331	271	20	the	the	DET
brj-24331	271	21	experimental	experimental	ADJ
brj-24331	271	22	results	result	NOUN
brj-24331	271	23	for	for	ADP
brj-24331	271	24	bio	bio	NOUN
brj-24331	271	25	-	-	NOUN
brj-24331	271	26	oil	oil	NOUN
brj-24331	271	27	.	.	PUNCT
brj-24331	272	1	at	at	ADP
brj-24331	272	2	900	900	NUM
brj-24331	272	3	°	°	NOUN
brj-24331	272	4	c	c	NOUN
brj-24331	272	5	,	,	PUNCT
brj-24331	272	6	the	the	DET
brj-24331	272	7	cfd	cfd	NOUN
brj-24331	272	8	model	model	NOUN
brj-24331	272	9	predicts	predict	VERB
brj-24331	272	10	a	a	DET
brj-24331	272	11	yield	yield	NOUN
brj-24331	272	12	of	of	ADP
brj-24331	272	13	36.67	36.67	NUM
brj-24331	272	14	wt.%	wt.%	ADJ
brj-24331	272	15	,	,	PUNCT
brj-24331	272	16	exceeding	exceed	VERB
brj-24331	272	17	the	the	DET
brj-24331	272	18	experimental	experimental	ADJ
brj-24331	272	19	value	value	NOUN
brj-24331	272	20	by	by	ADP
brj-24331	272	21	10.09	10.09	NUM
brj-24331	272	22	wt.%	wt.%	NOUN
brj-24331	272	23	.	.	PUNCT
brj-24331	273	1	this	this	DET
brj-24331	273	2	discrepancy	discrepancy	NOUN
brj-24331	273	3	increases	increase	VERB
brj-24331	273	4	to	to	ADP
brj-24331	273	5	11.59	11.59	NUM
brj-24331	273	6	wt.%	wt.%	NOUN
brj-24331	273	7	at	at	ADP
brj-24331	273	8	950	950	NUM
brj-24331	273	9	°	°	NOUN
brj-24331	273	10	c	c	NOUN
brj-24331	273	11	.	.	PUNCT
brj-24331	274	1	in	in	ADP
brj-24331	274	2	contrast	contrast	NOUN
brj-24331	274	3	,	,	PUNCT
brj-24331	274	4	sim	sim	PROPN
brj-24331	274	5	achieves	achieve	VERB
brj-24331	274	6	better	well	ADJ
brj-24331	274	7	accuracy	accuracy	NOUN
brj-24331	274	8	with	with	ADP
brj-24331	274	9	deviations	deviation	NOUN
brj-24331	274	10	of	of	ADP
brj-24331	274	11	1.89	1.89	NUM
brj-24331	274	12	wt.%	wt.%	ADJ
brj-24331	274	13	and	and	CCONJ
brj-24331	274	14	1.72	1.72	NUM
brj-24331	274	15	wt.%	wt.%	NOUN
brj-24331	274	16	at	at	ADP
brj-24331	274	17	900	900	NUM
brj-24331	274	18	°	°	NOUN
brj-24331	274	19	c	c	NOUN
brj-24331	274	20	and	and	CCONJ
brj-24331	274	21	950	950	NUM
brj-24331	274	22	°	°	NOUN
brj-24331	274	23	c	c	NOUN
brj-24331	274	24	,	,	PUNCT
brj-24331	274	25	respectively	respectively	ADV
brj-24331	274	26	.	.	PUNCT
brj-24331	275	1	in	in	ADP
brj-24331	275	2	the	the	DET
brj-24331	275	3	case	case	NOUN
brj-24331	275	4	of	of	ADP
brj-24331	275	5	ncg	ncg	PROPN
brj-24331	275	6	,	,	PUNCT
brj-24331	275	7	both	both	DET
brj-24331	275	8	models	model	NOUN
brj-24331	275	9	underestimate	underestimate	VERB
brj-24331	275	10	experimental	experimental	ADJ
brj-24331	275	11	yields	yield	NOUN
brj-24331	275	12	.	.	PUNCT
brj-24331	276	1	the	the	DET
brj-24331	276	2	cfd	cfd	NOUN
brj-24331	276	3	peer	peer	NOUN
brj-24331	276	4	-	-	PUNCT
brj-24331	276	5	reviewed	review	VERB
brj-24331	276	6	article	article	NOUN
brj-24331	276	7	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	276	8	sangaré	sangaré	PROPN
brj-24331	276	9	et	et	PROPN
brj-24331	276	10	al	al	PROPN
brj-24331	276	11	.	.	PROPN
brj-24331	277	1	(	(	PUNCT
brj-24331	277	2	2025	2025	NUM
brj-24331	277	3	)	)	PUNCT
brj-24331	277	4	.	.	PUNCT
brj-24331	278	1	“	"	PUNCT
brj-24331	278	2	pyrogasification	pyrogasification	NOUN
brj-24331	278	3	of	of	ADP
brj-24331	278	4	biomass	biomass	NOUN
brj-24331	278	5	,	,	PUNCT
brj-24331	278	6	”	"	PUNCT
brj-24331	278	7	bioresources	bioresource	NOUN
brj-24331	278	8	20(2	20(2	NUM
brj-24331	278	9	)	)	PUNCT
brj-24331	278	10	,	,	PUNCT
brj-24331	278	11	2844	2844	NUM
brj-24331	278	12	-	-	SYM
brj-24331	278	13	2870	2870	NUM
brj-24331	278	14	.	.	PUNCT
brj-24331	278	15	2860	2860	NUM
brj-24331	278	16	significantly	significantly	ADV
brj-24331	278	17	underpredicts	underpredict	VERB
brj-24331	278	18	with	with	ADP
brj-24331	278	19	differences	difference	NOUN
brj-24331	278	20	exceeding	exceed	VERB
brj-24331	278	21	17	17	NUM
brj-24331	278	22	wt.%	wt.%	ADJ
brj-24331	278	23	for	for	ADP
brj-24331	278	24	both	both	DET
brj-24331	278	25	temperatures	temperature	NOUN
brj-24331	278	26	.	.	PUNCT
brj-24331	279	1	while	while	SCONJ
brj-24331	279	2	still	still	ADV
brj-24331	279	3	underestimating	underestimate	VERB
brj-24331	279	4	,	,	PUNCT
brj-24331	279	5	sim	sim	ADJ
brj-24331	279	6	exhibits	exhibit	VERB
brj-24331	279	7	smaller	small	ADJ
brj-24331	279	8	deviations	deviation	NOUN
brj-24331	279	9	of	of	ADP
brj-24331	279	10	5.49	5.49	NUM
brj-24331	279	11	wt.%	wt.%	NOUN
brj-24331	279	12	at	at	ADP
brj-24331	279	13	900	900	NUM
brj-24331	279	14	°	°	NOUN
brj-24331	279	15	c	c	NOUN
brj-24331	279	16	and	and	CCONJ
brj-24331	279	17	4.24	4.24	NUM
brj-24331	279	18	wt.%	wt.%	NOUN
brj-24331	279	19	at	at	ADP
brj-24331	279	20	950	950	NUM
brj-24331	279	21	°	°	NOUN
brj-24331	279	22	c	c	NOUN
brj-24331	279	23	.	.	PUNCT
brj-24331	280	1	overall	overall	ADV
brj-24331	280	2	,	,	PUNCT
brj-24331	280	3	the	the	DET
brj-24331	280	4	models	model	NOUN
brj-24331	280	5	overestimate	overestimate	VERB
brj-24331	280	6	biochar	biochar	NOUN
brj-24331	280	7	and	and	CCONJ
brj-24331	280	8	bio	bio	ADJ
brj-24331	280	9	-	-	ADJ
brj-24331	280	10	oil	oil	NOUN
brj-24331	280	11	yields	yield	NOUN
brj-24331	280	12	while	while	SCONJ
brj-24331	280	13	significantly	significantly	ADV
brj-24331	280	14	underestimating	underestimate	VERB
brj-24331	280	15	ncg	ncg	PROPN
brj-24331	280	16	.	.	PUNCT
brj-24331	281	1	sim	sim	PROPN
brj-24331	281	2	aligns	align	VERB
brj-24331	281	3	more	more	ADV
brj-24331	281	4	closely	closely	ADV
brj-24331	281	5	with	with	ADP
brj-24331	281	6	experimental	experimental	ADJ
brj-24331	281	7	data	datum	NOUN
brj-24331	281	8	across	across	ADP
brj-24331	281	9	all	all	DET
brj-24331	281	10	product	product	NOUN
brj-24331	281	11	types	type	NOUN
brj-24331	281	12	,	,	PUNCT
brj-24331	281	13	whereas	whereas	SCONJ
brj-24331	281	14	cfd	cfd	NOUN
brj-24331	281	15	exhibits	exhibit	VERB
brj-24331	281	16	more	more	ADV
brj-24331	281	17	significant	significant	ADJ
brj-24331	281	18	deviations	deviation	NOUN
brj-24331	281	19	,	,	PUNCT
brj-24331	281	20	particularly	particularly	ADV
brj-24331	281	21	in	in	ADP
brj-24331	281	22	gas	gas	NOUN
brj-24331	281	23	-	-	PUNCT
brj-24331	281	24	phase	phase	NOUN
brj-24331	281	25	reactions	reaction	NOUN
brj-24331	281	26	.	.	PUNCT
brj-24331	282	1	both	both	DET
brj-24331	282	2	models	model	NOUN
brj-24331	282	3	perform	perform	VERB
brj-24331	282	4	slightly	slightly	ADV
brj-24331	282	5	better	well	ADJ
brj-24331	282	6	at	at	ADP
brj-24331	282	7	higher	high	ADJ
brj-24331	282	8	temperatures	temperature	NOUN
brj-24331	282	9	(	(	PUNCT
brj-24331	282	10	950	950	NUM
brj-24331	282	11	°	°	NOUN
brj-24331	282	12	c	c	NOUN
brj-24331	282	13	)	)	PUNCT
brj-24331	282	14	but	but	CCONJ
brj-24331	282	15	require	require	VERB
brj-24331	282	16	further	further	ADJ
brj-24331	282	17	refinement	refinement	NOUN
brj-24331	282	18	for	for	ADP
brj-24331	282	19	improved	improved	ADJ
brj-24331	282	20	accuracy	accuracy	NOUN
brj-24331	282	21	.	.	PUNCT
brj-24331	283	1	figure	figure	NOUN
brj-24331	283	2	6	6	NUM
brj-24331	283	3	shows	show	VERB
brj-24331	283	4	that	that	SCONJ
brj-24331	283	5	the	the	DET
brj-24331	283	6	analysis	analysis	NOUN
brj-24331	283	7	of	of	ADP
brj-24331	283	8	gas	gas	NOUN
brj-24331	283	9	compositions	composition	NOUN
brj-24331	283	10	reveals	reveal	VERB
brj-24331	283	11	distinct	distinct	ADJ
brj-24331	283	12	differences	difference	NOUN
brj-24331	283	13	between	between	ADP
brj-24331	283	14	experimental	experimental	ADJ
brj-24331	283	15	data	datum	NOUN
brj-24331	283	16	and	and	CCONJ
brj-24331	283	17	the	the	DET
brj-24331	283	18	predictions	prediction	NOUN
brj-24331	283	19	of	of	ADP
brj-24331	283	20	cfd	cfd	NOUN
brj-24331	283	21	and	and	CCONJ
brj-24331	283	22	sim	sim	ADJ
brj-24331	283	23	models	model	NOUN
brj-24331	283	24	at	at	ADP
brj-24331	283	25	900	900	NUM
brj-24331	283	26	and	and	CCONJ
brj-24331	283	27	950	950	NUM
brj-24331	283	28	°	°	NOUN
brj-24331	283	29	c	c	NOUN
brj-24331	283	30	.	.	PUNCT
brj-24331	284	1	fig	fig	NOUN
brj-24331	284	2	.	.	PUNCT
brj-24331	285	1	6	6	NUM
brj-24331	285	2	.	.	X
brj-24331	285	3	comparison	comparison	NOUN
brj-24331	285	4	of	of	ADP
brj-24331	285	5	experimental	experimental	ADJ
brj-24331	285	6	and	and	CCONJ
brj-24331	285	7	simulation	simulation	NOUN
brj-24331	285	8	results	result	NOUN
brj-24331	285	9	for	for	ADP
brj-24331	285	10	ncg	ncg	PROPN
brj-24331	285	11	composition	composition	NOUN
brj-24331	285	12	of	of	ADP
brj-24331	285	13	isothermal	isothermal	ADJ
brj-24331	285	14	gasification	gasification	NOUN
brj-24331	285	15	at	at	ADP
brj-24331	285	16	900	900	NUM
brj-24331	285	17	°	°	NOUN
brj-24331	285	18	c	c	NOUN
brj-24331	285	19	,	,	PUNCT
brj-24331	285	20	both	both	DET
brj-24331	285	21	models	model	NOUN
brj-24331	285	22	follow	follow	VERB
brj-24331	285	23	similar	similar	ADJ
brj-24331	285	24	trends	trend	NOUN
brj-24331	285	25	,	,	PUNCT
brj-24331	285	26	slightly	slightly	ADV
brj-24331	285	27	overestimating	overestimate	VERB
brj-24331	285	28	₂	₂	NUM
brj-24331	285	29	,	,	PUNCT
brj-24331	285	30	c	c	NOUN
brj-24331	285	31	₄	₄	NUM
brj-24331	285	32	,	,	PUNCT
brj-24331	285	33	and	and	CCONJ
brj-24331	285	34	co	co	VERB
brj-24331	285	35	while	while	SCONJ
brj-24331	285	36	underestimating	underestimate	VERB
brj-24331	285	37	co₂.	co₂.	NOUN
brj-24331	285	38	for	for	ADP
brj-24331	285	39	₂	₂	NUM
brj-24331	285	40	,	,	PUNCT
brj-24331	285	41	the	the	DET
brj-24331	285	42	cfd	cfd	NOUN
brj-24331	285	43	model	model	NOUN
brj-24331	285	44	shows	show	VERB
brj-24331	285	45	a	a	DET
brj-24331	285	46	deviation	deviation	NOUN
brj-24331	285	47	of	of	ADP
brj-24331	285	48	3.71	3.71	NUM
brj-24331	285	49	vol.%	vol.%	NOUN
brj-24331	285	50	,	,	PUNCT
brj-24331	285	51	whereas	whereas	SCONJ
brj-24331	285	52	sim	sim	ADJ
brj-24331	285	53	demonstrates	demonstrate	VERB
brj-24331	285	54	more	more	ADV
brj-24331	285	55	accurate	accurate	ADJ
brj-24331	285	56	predictions	prediction	NOUN
brj-24331	285	57	with	with	ADP
brj-24331	285	58	a	a	DET
brj-24331	285	59	smaller	small	ADJ
brj-24331	285	60	difference	difference	NOUN
brj-24331	285	61	of	of	ADP
brj-24331	285	62	0.7	0.7	NUM
brj-24331	285	63	vol.%	vol.%	NOUN
brj-24331	285	64	.	.	PUNCT
brj-24331	286	1	both	both	DET
brj-24331	286	2	models	model	NOUN
brj-24331	286	3	demonstrated	demonstrate	VERB
brj-24331	286	4	minimal	minimal	ADJ
brj-24331	286	5	differences	difference	NOUN
brj-24331	286	6	for	for	ADP
brj-24331	286	7	ch4	ch4	NOUN
brj-24331	286	8	,	,	PUNCT
brj-24331	286	9	with	with	ADP
brj-24331	286	10	cfd	cfd	NOUN
brj-24331	286	11	deviating	deviate	VERB
brj-24331	286	12	by	by	ADP
brj-24331	286	13	0.66	0.66	NUM
brj-24331	286	14	vol.%	vol.%	NOUN
brj-24331	286	15	and	and	CCONJ
brj-24331	286	16	sim	sim	ADJ
brj-24331	286	17	by	by	ADP
brj-24331	286	18	0.32	0.32	NUM
brj-24331	286	19	vol.%	vol.%	NOUN
brj-24331	286	20	.	.	PUNCT
brj-24331	287	1	for	for	ADP
brj-24331	287	2	co	co	NOUN
brj-24331	287	3	,	,	PUNCT
brj-24331	287	4	cfd	cfd	NOUN
brj-24331	287	5	overestimates	overestimate	VERB
brj-24331	287	6	by	by	ADP
brj-24331	287	7	4.85	4.85	NUM
brj-24331	287	8	vol.%	vol.%	NOUN
brj-24331	287	9	,	,	PUNCT
brj-24331	287	10	while	while	SCONJ
brj-24331	287	11	sim	sim	ADJ
brj-24331	287	12	shows	show	VERB
brj-24331	287	13	a	a	DET
brj-24331	287	14	smaller	small	ADJ
brj-24331	287	15	difference	difference	NOUN
brj-24331	287	16	of	of	ADP
brj-24331	287	17	.	.	PUNCT
brj-24331	288	1	4	4	NUM
brj-24331	288	2	vol.%	vol.%	NOUN
brj-24331	288	3	.	.	PUNCT
brj-24331	289	1	for	for	ADP
brj-24331	289	2	co₂	co₂	NOUN
brj-24331	289	3	,	,	PUNCT
brj-24331	289	4	both	both	DET
brj-24331	289	5	models	model	NOUN
brj-24331	289	6	underestimate	underestimate	VERB
brj-24331	289	7	its	its	PRON
brj-24331	289	8	content	content	NOUN
brj-24331	289	9	,	,	PUNCT
brj-24331	289	10	with	with	ADP
brj-24331	289	11	cfd	cfd	NOUN
brj-24331	289	12	showing	show	VERB
brj-24331	289	13	a	a	DET
brj-24331	289	14	difference	difference	NOUN
brj-24331	289	15	of	of	ADP
brj-24331	289	16	9.22	9.22	NUM
brj-24331	289	17	vol.%	vol.%	NOUN
brj-24331	289	18	compared	compare	VERB
brj-24331	289	19	to	to	ADP
brj-24331	289	20	4.26	4.26	NUM
brj-24331	289	21	vol.%	vol.%	NOUN
brj-24331	289	22	for	for	ADP
brj-24331	289	23	sim	sim	NOUN
brj-24331	289	24	.	.	PUNCT
brj-24331	290	1	at	at	ADP
brj-24331	290	2	9	9	NUM
brj-24331	290	3	0	0	NUM
brj-24331	290	4	°	°	ADP
brj-24331	290	5	c	c	NOUN
brj-24331	290	6	,	,	PUNCT
brj-24331	290	7	the	the	DET
brj-24331	290	8	cfd	cfd	NOUN
brj-24331	290	9	model	model	NOUN
brj-24331	290	10	slightly	slightly	ADV
brj-24331	290	11	overestimates	overestimate	VERB
brj-24331	290	12	₂	₂	NUM
brj-24331	290	13	content	content	NOUN
brj-24331	290	14	,	,	PUNCT
brj-24331	290	15	with	with	ADP
brj-24331	290	16	a	a	DET
brj-24331	290	17	deviation	deviation	NOUN
brj-24331	290	18	of	of	ADP
brj-24331	290	19	.	.	PUNCT
brj-24331	291	1	vol.%	vol.%	PROPN
brj-24331	291	2	,	,	PUNCT
brj-24331	291	3	while	while	SCONJ
brj-24331	291	4	sim	sim	ADJ
brj-24331	291	5	achieves	achieve	VERB
brj-24331	291	6	greater	great	ADJ
brj-24331	291	7	accuracy	accuracy	NOUN
brj-24331	291	8	,	,	PUNCT
brj-24331	291	9	showing	show	VERB
brj-24331	291	10	a	a	DET
brj-24331	291	11	difference	difference	NOUN
brj-24331	291	12	of	of	ADP
brj-24331	291	13	only	only	ADV
brj-24331	291	14	0	0	NUM
brj-24331	291	15	.	.	PUNCT
brj-24331	292	1	vol.%	vol.%	PROPN
brj-24331	292	2	.	.	PUNCT
brj-24331	293	1	for	for	ADP
brj-24331	293	2	c	c	PROPN
brj-24331	293	3	₄	₄	NUM
brj-24331	293	4	,	,	PUNCT
brj-24331	293	5	both	both	DET
brj-24331	293	6	models	model	NOUN
brj-24331	293	7	agree	agree	VERB
brj-24331	293	8	better	well	ADV
brj-24331	293	9	with	with	ADP
brj-24331	293	10	the	the	DET
brj-24331	293	11	experimental	experimental	ADJ
brj-24331	293	12	data	datum	NOUN
brj-24331	293	13	,	,	PUNCT
brj-24331	293	14	with	with	ADP
brj-24331	293	15	differences	difference	NOUN
brj-24331	293	16	of	of	ADP
brj-24331	293	17	less	less	ADJ
brj-24331	293	18	than	than	ADP
brj-24331	293	19	0.8	0.8	NUM
brj-24331	293	20	vol.%	vol.%	NOUN
brj-24331	293	21	.	.	PUNCT
brj-24331	294	1	for	for	ADP
brj-24331	294	2	co	co	NOUN
brj-24331	294	3	,	,	PUNCT
brj-24331	294	4	cfd	cfd	NOUN
brj-24331	294	5	underestimates	underestimate	VERB
brj-24331	294	6	the	the	DET
brj-24331	294	7	content	content	NOUN
brj-24331	294	8	by	by	ADP
brj-24331	294	9	2.98	2.98	NUM
brj-24331	294	10	vol.%	vol.%	NOUN
brj-24331	294	11	,	,	PUNCT
brj-24331	294	12	whereas	whereas	SCONJ
brj-24331	294	13	sim	sim	ADJ
brj-24331	294	14	shows	show	VERB
brj-24331	294	15	a	a	DET
brj-24331	294	16	smaller	small	ADJ
brj-24331	294	17	difference	difference	NOUN
brj-24331	294	18	of	of	ADP
brj-24331	294	19	0.8	0.8	NUM
brj-24331	294	20	vol.%	vol.%	NOUN
brj-24331	294	21	.	.	PUNCT
brj-24331	295	1	finally	finally	ADV
brj-24331	295	2	,	,	PUNCT
brj-24331	295	3	for	for	ADP
brj-24331	295	4	co₂	co₂	NOUN
brj-24331	295	5	,	,	PUNCT
brj-24331	295	6	both	both	DET
brj-24331	295	7	models	model	NOUN
brj-24331	295	8	achieve	achieve	VERB
brj-24331	295	9	highly	highly	ADV
brj-24331	295	10	accurate	accurate	ADJ
brj-24331	295	11	predictions	prediction	NOUN
brj-24331	295	12	,	,	PUNCT
brj-24331	295	13	with	with	ADP
brj-24331	295	14	differences	difference	NOUN
brj-24331	295	15	below	below	ADP
brj-24331	295	16	0.5	0.5	NUM
brj-24331	295	17	vol.%	vol.%	NOUN
brj-24331	295	18	.	.	PUNCT
brj-24331	296	1	overall	overall	ADJ
brj-24331	296	2	,	,	PUNCT
brj-24331	296	3	sim	sim	ADJ
brj-24331	296	4	demonstrates	demonstrate	VERB
brj-24331	296	5	better	well	ADJ
brj-24331	296	6	alignment	alignment	NOUN
brj-24331	296	7	with	with	ADP
brj-24331	296	8	experimental	experimental	ADJ
brj-24331	296	9	data	datum	NOUN
brj-24331	296	10	,	,	PUNCT
brj-24331	296	11	particularly	particularly	ADV
brj-24331	296	12	for	for	ADP
brj-24331	296	13	₂	₂	NUM
brj-24331	296	14	and	and	CCONJ
brj-24331	296	15	co	co	NOUN
brj-24331	296	16	at	at	ADP
brj-24331	296	17	9	9	NUM
brj-24331	296	18	0	0	NUM
brj-24331	296	19	°	°	ADP
brj-24331	296	20	c	c	NOUN
brj-24331	296	21	,	,	PUNCT
brj-24331	296	22	while	while	SCONJ
brj-24331	296	23	cfd	cfd	NOUN
brj-24331	296	24	exhibits	exhibit	VERB
brj-24331	296	25	greater	great	ADJ
brj-24331	296	26	variability	variability	NOUN
brj-24331	296	27	,	,	PUNCT
brj-24331	296	28	especially	especially	ADV
brj-24331	296	29	at	at	ADP
brj-24331	296	30	900	900	NUM
brj-24331	296	31	°	°	NOUN
brj-24331	296	32	c	c	NOUN
brj-24331	296	33	,	,	PUNCT
brj-24331	296	34	where	where	SCONJ
brj-24331	296	35	it	it	PRON
brj-24331	296	36	overestimates	overestimate	VERB
brj-24331	296	37	₂	₂	NUM
brj-24331	296	38	and	and	CCONJ
brj-24331	296	39	co.	co.	VERB
brj-24331	296	40	both	both	DET
brj-24331	296	41	models	model	NOUN
brj-24331	296	42	'	'	PART
brj-24331	296	43	persistent	persistent	ADJ
brj-24331	296	44	underestimation	underestimation	NOUN
brj-24331	296	45	of	of	ADP
brj-24331	296	46	co₂	co₂	PROPN
brj-24331	296	47	suggests	suggest	VERB
brj-24331	296	48	a	a	DET
brj-24331	296	49	need	need	NOUN
brj-24331	296	50	for	for	ADP
brj-24331	296	51	refining	refine	VERB
brj-24331	296	52	the	the	DET
brj-24331	296	53	kinetic	kinetic	ADJ
brj-24331	296	54	dynamics	dynamic	NOUN
brj-24331	296	55	under	under	ADP
brj-24331	296	56	gasification	gasification	NOUN
brj-24331	296	57	conditions	condition	NOUN
brj-24331	296	58	.	.	PUNCT
brj-24331	297	1	peer	peer	NOUN
brj-24331	297	2	-	-	PUNCT
brj-24331	297	3	reviewed	review	VERB
brj-24331	297	4	article	article	NOUN
brj-24331	297	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	297	6	sangaré	sangaré	PROPN
brj-24331	297	7	et	et	PROPN
brj-24331	297	8	al	al	PROPN
brj-24331	297	9	.	.	PROPN
brj-24331	298	1	(	(	PUNCT
brj-24331	298	2	2025	2025	NUM
brj-24331	298	3	)	)	PUNCT
brj-24331	298	4	.	.	PUNCT
brj-24331	299	1	“	"	PUNCT
brj-24331	299	2	pyrogasification	pyrogasification	NOUN
brj-24331	299	3	of	of	ADP
brj-24331	299	4	biomass	biomass	NOUN
brj-24331	299	5	,	,	PUNCT
brj-24331	299	6	”	"	PUNCT
brj-24331	299	7	bioresources	bioresource	NOUN
brj-24331	299	8	20(2	20(2	NUM
brj-24331	299	9	)	)	PUNCT
brj-24331	299	10	,	,	PUNCT
brj-24331	299	11	2844	2844	NUM
brj-24331	299	12	-	-	SYM
brj-24331	299	13	2870	2870	NUM
brj-24331	299	14	.	.	PUNCT
brj-24331	300	1	2861	2861	NUM
brj-24331	300	2	although	although	SCONJ
brj-24331	300	3	both	both	DET
brj-24331	300	4	models	model	NOUN
brj-24331	300	5	underestimate	underestimate	VERB
brj-24331	300	6	certain	certain	ADJ
brj-24331	300	7	yields	yield	NOUN
brj-24331	300	8	(	(	PUNCT
brj-24331	300	9	biochar	biochar	NOUN
brj-24331	300	10	and	and	CCONJ
brj-24331	300	11	bio	bio	NOUN
brj-24331	300	12	-	-	NOUN
brj-24331	300	13	oil	oil	NOUN
brj-24331	300	14	)	)	PUNCT
brj-24331	300	15	under	under	ADP
brj-24331	300	16	nonisothermal	nonisothermal	NOUN
brj-24331	300	17	gasification	gasification	NOUN
brj-24331	300	18	conditions	condition	NOUN
brj-24331	300	19	,	,	PUNCT
brj-24331	300	20	sim	sim	ADJ
brj-24331	300	21	generally	generally	ADV
brj-24331	300	22	agrees	agree	VERB
brj-24331	300	23	better	well	ADV
brj-24331	300	24	with	with	ADP
brj-24331	300	25	experimental	experimental	ADJ
brj-24331	300	26	data	datum	NOUN
brj-24331	300	27	for	for	ADP
brj-24331	300	28	overall	overall	ADJ
brj-24331	300	29	product	product	NOUN
brj-24331	300	30	yields	yield	NOUN
brj-24331	300	31	.	.	PUNCT
brj-24331	301	1	however	however	ADV
brj-24331	301	2	,	,	PUNCT
brj-24331	301	3	the	the	DET
brj-24331	301	4	cfd	cfd	NOUN
brj-24331	301	5	model	model	NOUN
brj-24331	301	6	excels	excel	VERB
brj-24331	301	7	in	in	ADP
brj-24331	301	8	predicting	predict	VERB
brj-24331	301	9	gas	gas	NOUN
brj-24331	301	10	compositions	composition	NOUN
brj-24331	301	11	,	,	PUNCT
brj-24331	301	12	reflecting	reflect	VERB
brj-24331	301	13	its	its	PRON
brj-24331	301	14	ability	ability	NOUN
brj-24331	301	15	to	to	PART
brj-24331	301	16	capture	capture	VERB
brj-24331	301	17	the	the	DET
brj-24331	301	18	dynamics	dynamic	NOUN
brj-24331	301	19	of	of	ADP
brj-24331	301	20	specific	specific	ADJ
brj-24331	301	21	reactions	reaction	NOUN
brj-24331	301	22	,	,	PUNCT
brj-24331	301	23	particularly	particularly	ADV
brj-24331	301	24	under	under	ADP
brj-24331	301	25	nonequilibrium	nonequilibrium	NOUN
brj-24331	301	26	conditions	condition	NOUN
brj-24331	301	27	,	,	PUNCT
brj-24331	301	28	where	where	SCONJ
brj-24331	301	29	temperature	temperature	NOUN
brj-24331	301	30	gradients	gradient	NOUN
brj-24331	301	31	may	may	AUX
brj-24331	301	32	exist	exist	VERB
brj-24331	301	33	in	in	ADP
brj-24331	301	34	the	the	DET
brj-24331	301	35	reactor	reactor	NOUN
brj-24331	301	36	.	.	PUNCT
brj-24331	302	1	under	under	ADP
brj-24331	302	2	isothermal	isothermal	ADJ
brj-24331	302	3	gasification	gasification	NOUN
brj-24331	302	4	conditions	condition	NOUN
brj-24331	302	5	,	,	PUNCT
brj-24331	302	6	where	where	SCONJ
brj-24331	302	7	the	the	DET
brj-24331	302	8	system	system	NOUN
brj-24331	302	9	approaches	approach	VERB
brj-24331	302	10	thermal	thermal	ADJ
brj-24331	302	11	equilibrium	equilibrium	NOUN
brj-24331	302	12	,	,	PUNCT
brj-24331	302	13	the	the	DET
brj-24331	302	14	sim	sim	ADJ
brj-24331	302	15	model	model	NOUN
brj-24331	302	16	accurately	accurately	ADV
brj-24331	302	17	predicts	predict	VERB
brj-24331	302	18	overall	overall	ADJ
brj-24331	302	19	product	product	NOUN
brj-24331	302	20	yields	yield	NOUN
brj-24331	302	21	and	and	CCONJ
brj-24331	302	22	gas	gas	NOUN
brj-24331	302	23	compositions	composition	NOUN
brj-24331	302	24	,	,	PUNCT
brj-24331	302	25	consistent	consistent	ADJ
brj-24331	302	26	with	with	ADP
brj-24331	302	27	its	its	PRON
brj-24331	302	28	thermodynamic	thermodynamic	ADJ
brj-24331	302	29	equilibrium	equilibrium	NOUN
brj-24331	302	30	-	-	PUNCT
brj-24331	302	31	based	base	VERB
brj-24331	302	32	assumptions	assumption	NOUN
brj-24331	302	33	.	.	PUNCT
brj-24331	303	1	sensitivity	sensitivity	NOUN
brj-24331	303	2	analysis	analysis	NOUN
brj-24331	303	3	of	of	ADP
brj-24331	303	4	isothermal	isothermal	ADJ
brj-24331	303	5	gasification	gasification	NOUN
brj-24331	303	6	processes	process	VERB
brj-24331	303	7	the	the	DET
brj-24331	303	8	sensitivity	sensitivity	NOUN
brj-24331	303	9	analysis	analysis	NOUN
brj-24331	303	10	of	of	ADP
brj-24331	303	11	isothermal	isothermal	ADJ
brj-24331	303	12	gasification	gasification	NOUN
brj-24331	303	13	was	be	AUX
brj-24331	303	14	conducted	conduct	VERB
brj-24331	303	15	using	use	VERB
brj-24331	303	16	cfd	cfd	NOUN
brj-24331	303	17	modeling	modeling	NOUN
brj-24331	303	18	and	and	CCONJ
brj-24331	303	19	process	process	NOUN
brj-24331	303	20	simulations	simulation	NOUN
brj-24331	303	21	to	to	PART
brj-24331	303	22	evaluate	evaluate	VERB
brj-24331	303	23	the	the	DET
brj-24331	303	24	impact	impact	NOUN
brj-24331	303	25	of	of	ADP
brj-24331	303	26	the	the	DET
brj-24331	303	27	key	key	ADJ
brj-24331	303	28	parameters	parameter	NOUN
brj-24331	303	29	:	:	PUNCT
brj-24331	303	30	(	(	PUNCT
brj-24331	303	31	i	i	NOUN
brj-24331	303	32	)	)	PUNCT
brj-24331	303	33	the	the	DET
brj-24331	303	34	isothermal	isothermal	ADJ
brj-24331	303	35	gasification	gasification	NOUN
brj-24331	303	36	temperature	temperature	NOUN
brj-24331	303	37	,	,	PUNCT
brj-24331	303	38	from	from	ADP
brj-24331	303	39	700	700	NUM
brj-24331	303	40	to	to	ADP
brj-24331	303	41	1500	1500	NUM
brj-24331	303	42	°	°	SYM
brj-24331	303	43	c	c	NOUN
brj-24331	303	44	;	;	PUNCT
brj-24331	303	45	and	and	CCONJ
brj-24331	303	46	(	(	PUNCT
brj-24331	303	47	ii	ii	NOUN
brj-24331	303	48	)	)	PUNCT
brj-24331	303	49	the	the	DET
brj-24331	303	50	abr	abr	NOUN
brj-24331	303	51	values	value	NOUN
brj-24331	303	52	between	between	ADP
brj-24331	303	53	1	1	NUM
brj-24331	303	54	and	and	CCONJ
brj-24331	303	55	2.5	2.5	NUM
brj-24331	303	56	.	.	PUNCT
brj-24331	304	1	these	these	DET
brj-24331	304	2	factors	factor	NOUN
brj-24331	304	3	were	be	AUX
brj-24331	304	4	analyzed	analyze	VERB
brj-24331	304	5	to	to	PART
brj-24331	304	6	determine	determine	VERB
brj-24331	304	7	their	their	PRON
brj-24331	304	8	influence	influence	NOUN
brj-24331	304	9	on	on	ADP
brj-24331	304	10	the	the	DET
brj-24331	304	11	overall	overall	ADJ
brj-24331	304	12	products	product	NOUN
brj-24331	304	13	yields	yield	NOUN
brj-24331	304	14	in	in	ADP
brj-24331	304	15	the	the	DET
brj-24331	304	16	process	process	NOUN
brj-24331	304	17	and	and	CCONJ
brj-24331	304	18	the	the	DET
brj-24331	304	19	composition	composition	NOUN
brj-24331	304	20	of	of	ADP
brj-24331	304	21	the	the	DET
brj-24331	304	22	produced	produce	VERB
brj-24331	304	23	.	.	PUNCT
brj-24331	305	1	effect	effect	NOUN
brj-24331	305	2	of	of	ADP
brj-24331	305	3	abr	abr	NOUN
brj-24331	305	4	and	and	CCONJ
brj-24331	305	5	temperature	temperature	NOUN
brj-24331	305	6	on	on	ADP
brj-24331	305	7	overall	overall	ADJ
brj-24331	305	8	products	product	NOUN
brj-24331	305	9	yields	yield	VERB
brj-24331	305	10	the	the	DET
brj-24331	305	11	yields	yield	NOUN
brj-24331	305	12	of	of	ADP
brj-24331	305	13	the	the	DET
brj-24331	305	14	main	main	ADJ
brj-24331	305	15	products	product	NOUN
brj-24331	305	16	—	—	PUNCT
brj-24331	305	17	biochar	biochar	NOUN
brj-24331	305	18	,	,	PUNCT
brj-24331	305	19	bio	bio	NOUN
brj-24331	305	20	-	-	NOUN
brj-24331	305	21	oil	oil	NOUN
brj-24331	305	22	,	,	PUNCT
brj-24331	305	23	and	and	CCONJ
brj-24331	305	24	ncg	ncg	PROPN
brj-24331	305	25	—	—	PUNCT
brj-24331	305	26	are	be	AUX
brj-24331	305	27	significantly	significantly	ADV
brj-24331	305	28	influenced	influence	VERB
brj-24331	305	29	by	by	ADP
brj-24331	305	30	temperature	temperature	NOUN
brj-24331	305	31	and	and	CCONJ
brj-24331	305	32	abr	abr	VERB
brj-24331	305	33	,	,	PUNCT
brj-24331	305	34	as	as	SCONJ
brj-24331	305	35	illustrated	illustrate	VERB
brj-24331	305	36	in	in	ADP
brj-24331	305	37	figs	fig	NOUN
brj-24331	305	38	.	.	PUNCT
brj-24331	306	1	7	7	NUM
brj-24331	306	2	through	through	ADP
brj-24331	306	3	9	9	NUM
brj-24331	306	4	.	.	PUNCT
brj-24331	307	1	biochar	biochar	NOUN
brj-24331	307	2	,	,	PUNCT
brj-24331	307	3	as	as	SCONJ
brj-24331	307	4	shown	show	VERB
brj-24331	307	5	in	in	ADP
brj-24331	307	6	fig	fig	NOUN
brj-24331	307	7	.	.	PUNCT
brj-24331	308	1	7	7	NUM
brj-24331	308	2	,	,	PUNCT
brj-24331	308	3	decreases	decrease	VERB
brj-24331	308	4	progressively	progressively	ADV
brj-24331	308	5	with	with	ADP
brj-24331	308	6	increasing	increase	VERB
brj-24331	308	7	temperature	temperature	NOUN
brj-24331	308	8	.	.	PUNCT
brj-24331	309	1	this	this	DET
brj-24331	309	2	reduction	reduction	NOUN
brj-24331	309	3	is	be	AUX
brj-24331	309	4	attributed	attribute	VERB
brj-24331	309	5	to	to	ADP
brj-24331	309	6	the	the	DET
brj-24331	309	7	activation	activation	NOUN
brj-24331	309	8	of	of	ADP
brj-24331	309	9	heterogeneous	heterogeneous	ADJ
brj-24331	309	10	reactions	reaction	NOUN
brj-24331	309	11	in	in	ADP
brj-24331	309	12	the	the	DET
brj-24331	309	13	solid	solid	ADJ
brj-24331	309	14	phase	phase	NOUN
brj-24331	309	15	,	,	PUNCT
brj-24331	309	16	particularly	particularly	ADV
brj-24331	309	17	carbon	carbon	NOUN
brj-24331	309	18	oxidation	oxidation	NOUN
brj-24331	309	19	(	(	PUNCT
brj-24331	309	20	r1	r1	PROPN
brj-24331	309	21	)	)	PUNCT
brj-24331	309	22	(	(	PUNCT
brj-24331	309	23	al	al	PROPN
brj-24331	309	24	-	-	PROPN
brj-24331	309	25	zareer	zareer	PROPN
brj-24331	309	26	et	et	PROPN
brj-24331	309	27	al	al	PROPN
brj-24331	309	28	.	.	PROPN
brj-24331	309	29	2016	2016	NUM
brj-24331	309	30	;	;	PUNCT
brj-24331	310	1	he	he	PRON
brj-24331	310	2	et	et	PROPN
brj-24331	310	3	al	al	PROPN
brj-24331	310	4	.	.	PROPN
brj-24331	310	5	2013	2013	NUM
brj-24331	310	6	;	;	PUNCT
brj-24331	310	7	wen	wen	PROPN
brj-24331	310	8	and	and	CCONJ
brj-24331	310	9	chaung	chaung	VERB
brj-24331	310	10	1979	1979	NUM
brj-24331	310	11	)	)	PUNCT
brj-24331	310	12	and	and	CCONJ
brj-24331	310	13	the	the	DET
brj-24331	310	14	boudouard	boudouard	PROPN
brj-24331	310	15	reaction	reaction	NOUN
brj-24331	310	16	(	(	PUNCT
brj-24331	310	17	r	r	NOUN
brj-24331	310	18	3	3	NUM
brj-24331	310	19	)	)	PUNCT
brj-24331	310	20	(	(	PUNCT
brj-24331	310	21	he	he	PRON
brj-24331	310	22	et	et	PROPN
brj-24331	310	23	al	al	PROPN
brj-24331	310	24	.	.	PROPN
brj-24331	310	25	2013	2013	NUM
brj-24331	310	26	)	)	PUNCT
brj-24331	310	27	.	.	PUNCT
brj-24331	311	1	these	these	DET
brj-24331	311	2	endothermic	endothermic	ADJ
brj-24331	311	3	reactions	reaction	NOUN
brj-24331	311	4	are	be	AUX
brj-24331	311	5	favored	favor	VERB
brj-24331	311	6	at	at	ADP
brj-24331	311	7	higher	high	ADJ
brj-24331	311	8	temperatures	temperature	NOUN
brj-24331	311	9	.	.	PUNCT
brj-24331	312	1	incomplete	incomplete	ADJ
brj-24331	312	2	carbon	carbon	NOUN
brj-24331	312	3	conversion	conversion	NOUN
brj-24331	312	4	results	result	NOUN
brj-24331	312	5	in	in	ADP
brj-24331	312	6	higher	high	ADJ
brj-24331	312	7	biochar	biochar	NOUN
brj-24331	312	8	yields	yield	NOUN
brj-24331	312	9	at	at	ADP
brj-24331	312	10	lower	low	ADJ
brj-24331	312	11	temperatures	temperature	NOUN
brj-24331	312	12	and	and	CCONJ
brj-24331	312	13	abr	abr	VERB
brj-24331	312	14	values	value	NOUN
brj-24331	312	15	.	.	PUNCT
brj-24331	313	1	however	however	ADV
brj-24331	313	2	,	,	PUNCT
brj-24331	313	3	oxygen	oxygen	NOUN
brj-24331	313	4	availability	availability	NOUN
brj-24331	313	5	promotes	promote	VERB
brj-24331	313	6	oxidation	oxidation	NOUN
brj-24331	313	7	as	as	ADP
brj-24331	313	8	the	the	DET
brj-24331	313	9	abr	abr	NOUN
brj-24331	313	10	increases	increase	NOUN
brj-24331	313	11	,	,	PUNCT
brj-24331	313	12	accelerating	accelerate	VERB
brj-24331	313	13	biochar	biochar	NOUN
brj-24331	313	14	conversion	conversion	NOUN
brj-24331	313	15	into	into	ADP
brj-24331	313	16	gases	gas	NOUN
brj-24331	313	17	.	.	PUNCT
brj-24331	314	1	in	in	ADP
brj-24331	314	2	this	this	DET
brj-24331	314	3	context	context	NOUN
brj-24331	314	4	,	,	PUNCT
brj-24331	314	5	cfd	cfd	NOUN
brj-24331	314	6	and	and	CCONJ
brj-24331	314	7	sim	sim	ADJ
brj-24331	314	8	simulations	simulation	NOUN
brj-24331	314	9	exhibit	exhibit	VERB
brj-24331	314	10	similar	similar	ADJ
brj-24331	314	11	trends	trend	NOUN
brj-24331	314	12	,	,	PUNCT
brj-24331	314	13	though	though	SCONJ
brj-24331	314	14	cfd	cfd	NOUN
brj-24331	314	15	predicts	predict	VERB
brj-24331	314	16	higher	high	ADJ
brj-24331	314	17	biochar	biochar	NOUN
brj-24331	314	18	yields	yield	NOUN
brj-24331	314	19	and	and	CCONJ
brj-24331	314	20	a	a	DET
brj-24331	314	21	more	more	ADV
brj-24331	314	22	gradual	gradual	ADJ
brj-24331	314	23	decline	decline	NOUN
brj-24331	314	24	than	than	ADP
brj-24331	314	25	sim	sim	ADJ
brj-24331	314	26	.	.	PUNCT
brj-24331	315	1	this	this	PRON
brj-24331	315	2	emphasizes	emphasize	VERB
brj-24331	315	3	the	the	DET
brj-24331	315	4	influence	influence	NOUN
brj-24331	315	5	of	of	ADP
brj-24331	315	6	modeling	model	VERB
brj-24331	315	7	approaches	approach	NOUN
brj-24331	315	8	on	on	ADP
brj-24331	315	9	product	product	NOUN
brj-24331	315	10	distribution	distribution	NOUN
brj-24331	315	11	.	.	PUNCT
brj-24331	316	1	fig	fig	NOUN
brj-24331	316	2	.	.	PUNCT
brj-24331	317	1	7	7	X
brj-24331	317	2	.	.	X
brj-24331	317	3	effect	effect	NOUN
brj-24331	317	4	of	of	ADP
brj-24331	317	5	abr	abr	NOUN
brj-24331	317	6	and	and	CCONJ
brj-24331	317	7	temperature	temperature	NOUN
brj-24331	317	8	on	on	ADP
brj-24331	317	9	biochar	biochar	NOUN
brj-24331	317	10	yield	yield	NOUN
brj-24331	317	11	:	:	PUNCT
brj-24331	317	12	sim	sim	ADJ
brj-24331	317	13	and	and	CCONJ
brj-24331	317	14	cfd	cfd	NOUN
brj-24331	317	15	comparison	comparison	NOUN
brj-24331	317	16	peer	peer	NOUN
brj-24331	317	17	-	-	PUNCT
brj-24331	317	18	reviewed	review	VERB
brj-24331	317	19	article	article	NOUN
brj-24331	317	20	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	317	21	sangaré	sangaré	PROPN
brj-24331	317	22	et	et	PROPN
brj-24331	317	23	al	al	PROPN
brj-24331	317	24	.	.	PROPN
brj-24331	318	1	(	(	PUNCT
brj-24331	318	2	2025	2025	NUM
brj-24331	318	3	)	)	PUNCT
brj-24331	318	4	.	.	PUNCT
brj-24331	319	1	“	"	PUNCT
brj-24331	319	2	pyrogasification	pyrogasification	NOUN
brj-24331	319	3	of	of	ADP
brj-24331	319	4	biomass	biomass	NOUN
brj-24331	319	5	,	,	PUNCT
brj-24331	319	6	”	"	PUNCT
brj-24331	319	7	bioresources	bioresource	NOUN
brj-24331	319	8	20(2	20(2	NUM
brj-24331	319	9	)	)	PUNCT
brj-24331	319	10	,	,	PUNCT
brj-24331	319	11	2844	2844	NUM
brj-24331	319	12	-	-	SYM
brj-24331	319	13	2870	2870	NUM
brj-24331	319	14	.	.	PUNCT
brj-24331	319	15	2862	2862	NUM
brj-24331	319	16	fig	fig	NOUN
brj-24331	319	17	.	.	PUNCT
brj-24331	320	1	8	8	NUM
brj-24331	320	2	.	.	X
brj-24331	320	3	effect	effect	NOUN
brj-24331	320	4	of	of	ADP
brj-24331	320	5	abr	abr	NOUN
brj-24331	320	6	and	and	CCONJ
brj-24331	320	7	temperature	temperature	NOUN
brj-24331	320	8	on	on	ADP
brj-24331	320	9	bio	bio	ADJ
brj-24331	320	10	-	-	ADJ
brj-24331	320	11	oil	oil	NOUN
brj-24331	320	12	yield	yield	NOUN
brj-24331	320	13	:	:	PUNCT
brj-24331	320	14	sim	sim	ADJ
brj-24331	320	15	and	and	CCONJ
brj-24331	320	16	cfd	cfd	PROPN
brj-24331	320	17	comparison	comparison	NOUN
brj-24331	320	18	bio	bio	PROPN
brj-24331	320	19	-	-	NOUN
brj-24331	320	20	oil	oil	NOUN
brj-24331	320	21	,	,	PUNCT
brj-24331	320	22	primarily	primarily	ADV
brj-24331	320	23	comprising	comprise	VERB
brj-24331	320	24	condensable	condensable	ADJ
brj-24331	320	25	gas	gas	NOUN
brj-24331	320	26	products	product	NOUN
brj-24331	320	27	and	and	CCONJ
brj-24331	320	28	water	water	NOUN
brj-24331	320	29	vapor	vapor	NOUN
brj-24331	320	30	,	,	PUNCT
brj-24331	320	31	is	be	AUX
brj-24331	320	32	influenced	influence	VERB
brj-24331	320	33	by	by	ADP
brj-24331	320	34	temperature	temperature	NOUN
brj-24331	320	35	and	and	CCONJ
brj-24331	320	36	abr	abr	VERB
brj-24331	320	37	,	,	PUNCT
brj-24331	320	38	as	as	SCONJ
brj-24331	320	39	shown	show	VERB
brj-24331	320	40	in	in	ADP
brj-24331	320	41	fig	fig	NOUN
brj-24331	320	42	.	.	PUNCT
brj-24331	321	1	8	8	NUM
brj-24331	321	2	.	.	NOUN
brj-24331	322	1	during	during	ADP
brj-24331	322	2	pyrolysis	pyrolysis	NOUN
brj-24331	322	3	,	,	PUNCT
brj-24331	322	4	biomass	biomass	NOUN
brj-24331	322	5	undergoes	undergoe	NOUN
brj-24331	322	6	thermal	thermal	ADJ
brj-24331	322	7	decomposition	decomposition	NOUN
brj-24331	322	8	,	,	PUNCT
brj-24331	322	9	releasing	release	VERB
brj-24331	322	10	vapors	vapor	NOUN
brj-24331	322	11	that	that	DET
brj-24331	322	12	condense	condense	VERB
brj-24331	322	13	into	into	ADP
brj-24331	322	14	bio	bio	NOUN
brj-24331	322	15	-	-	NOUN
brj-24331	322	16	oil	oil	NOUN
brj-24331	322	17	.	.	PUNCT
brj-24331	323	1	as	as	ADP
brj-24331	323	2	the	the	DET
brj-24331	323	3	temperature	temperature	NOUN
brj-24331	323	4	increases	increase	NOUN
brj-24331	323	5	,	,	PUNCT
brj-24331	323	6	these	these	DET
brj-24331	323	7	vapors	vapor	NOUN
brj-24331	323	8	undergo	undergo	VERB
brj-24331	323	9	secondary	secondary	ADJ
brj-24331	323	10	reactions	reaction	NOUN
brj-24331	323	11	,	,	PUNCT
brj-24331	323	12	such	such	ADJ
brj-24331	323	13	as	as	ADP
brj-24331	323	14	steam	steam	NOUN
brj-24331	323	15	reforming	reform	VERB
brj-24331	323	16	and	and	CCONJ
brj-24331	323	17	thermal	thermal	ADJ
brj-24331	323	18	cracking	cracking	NOUN
brj-24331	323	19	,	,	PUNCT
brj-24331	323	20	promoting	promote	VERB
brj-24331	323	21	the	the	DET
brj-24331	323	22	formation	formation	NOUN
brj-24331	323	23	of	of	ADP
brj-24331	323	24	non	non	ADJ
brj-24331	323	25	-	-	ADJ
brj-24331	323	26	condensable	condensable	ADJ
brj-24331	323	27	gases	gas	NOUN
brj-24331	323	28	(	(	PUNCT
brj-24331	323	29	sangaré	sangaré	NOUN
brj-24331	323	30	et	et	PROPN
brj-24331	323	31	al	al	PROPN
brj-24331	323	32	.	.	PROPN
brj-24331	323	33	2024b	2024b	NUM
brj-24331	323	34	;	;	PUNCT
brj-24331	323	35	zhu	zhu	PROPN
brj-24331	323	36	et	et	PROPN
brj-24331	323	37	al	al	PROPN
brj-24331	323	38	.	.	PROPN
brj-24331	323	39	2018	2018	NUM
brj-24331	323	40	)	)	PUNCT
brj-24331	323	41	.	.	PUNCT
brj-24331	324	1	additionally	additionally	ADV
brj-24331	324	2	,	,	PUNCT
brj-24331	324	3	during	during	ADP
brj-24331	324	4	gasification	gasification	NOUN
brj-24331	324	5	,	,	PUNCT
brj-24331	324	6	increased	increase	VERB
brj-24331	324	7	abr	abr	NOUN
brj-24331	324	8	enhances	enhance	VERB
brj-24331	324	9	biochar	biochar	NOUN
brj-24331	324	10	oxidation	oxidation	NOUN
brj-24331	324	11	through	through	ADP
brj-24331	324	12	oxygen	oxygen	NOUN
brj-24331	324	13	supply	supply	NOUN
brj-24331	324	14	,	,	PUNCT
brj-24331	324	15	further	far	ADV
brj-24331	324	16	decreasing	decrease	VERB
brj-24331	324	17	bio	bio	ADJ
brj-24331	324	18	-	-	ADJ
brj-24331	324	19	oil	oil	NOUN
brj-24331	324	20	production	production	NOUN
brj-24331	324	21	.	.	PUNCT
brj-24331	325	1	the	the	DET
brj-24331	325	2	cfd	cfd	NOUN
brj-24331	325	3	and	and	CCONJ
brj-24331	325	4	sim	sim	NOUN
brj-24331	325	5	models	model	NOUN
brj-24331	325	6	exhibit	exhibit	VERB
brj-24331	325	7	similar	similar	ADJ
brj-24331	325	8	trends	trend	NOUN
brj-24331	325	9	,	,	PUNCT
brj-24331	325	10	but	but	CCONJ
brj-24331	325	11	cfd	cfd	NOUN
brj-24331	325	12	predicts	predict	VERB
brj-24331	325	13	a	a	DET
brj-24331	325	14	more	more	ADV
brj-24331	325	15	gradual	gradual	ADJ
brj-24331	325	16	decrease	decrease	NOUN
brj-24331	325	17	in	in	ADP
brj-24331	325	18	bio	bio	ADJ
brj-24331	325	19	-	-	ADJ
brj-24331	325	20	oil	oil	NOUN
brj-24331	325	21	yield	yield	NOUN
brj-24331	325	22	,	,	PUNCT
brj-24331	325	23	whereas	whereas	SCONJ
brj-24331	325	24	sim	sim	ADJ
brj-24331	325	25	shows	show	VERB
brj-24331	325	26	an	an	DET
brj-24331	325	27	abrupt	abrupt	ADJ
brj-24331	325	28	decline	decline	NOUN
brj-24331	325	29	,	,	PUNCT
brj-24331	325	30	indicating	indicate	VERB
brj-24331	325	31	distinct	distinct	ADJ
brj-24331	325	32	modeling	modeling	NOUN
brj-24331	325	33	behaviors	behavior	NOUN
brj-24331	325	34	under	under	ADP
brj-24331	325	35	similar	similar	ADJ
brj-24331	325	36	conditions	condition	NOUN
brj-24331	325	37	.	.	PUNCT
brj-24331	326	1	fig	fig	NOUN
brj-24331	326	2	.	.	PUNCT
brj-24331	327	1	9	9	X
brj-24331	327	2	.	.	X
brj-24331	327	3	effect	effect	NOUN
brj-24331	327	4	of	of	ADP
brj-24331	327	5	abr	abr	NOUN
brj-24331	327	6	and	and	CCONJ
brj-24331	327	7	temperature	temperature	NOUN
brj-24331	327	8	on	on	ADP
brj-24331	327	9	ncg	ncg	PROPN
brj-24331	327	10	yield	yield	NOUN
brj-24331	327	11	:	:	PUNCT
brj-24331	327	12	sim	sim	ADJ
brj-24331	327	13	and	and	CCONJ
brj-24331	327	14	cfd	cfd	NOUN
brj-24331	327	15	comparison	comparison	NOUN
brj-24331	327	16	peer	peer	NOUN
brj-24331	327	17	-	-	PUNCT
brj-24331	327	18	reviewed	review	VERB
brj-24331	327	19	article	article	NOUN
brj-24331	327	20	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	327	21	sangaré	sangaré	PROPN
brj-24331	327	22	et	et	PROPN
brj-24331	327	23	al	al	PROPN
brj-24331	327	24	.	.	PROPN
brj-24331	328	1	(	(	PUNCT
brj-24331	328	2	2025	2025	NUM
brj-24331	328	3	)	)	PUNCT
brj-24331	328	4	.	.	PUNCT
brj-24331	329	1	“	"	PUNCT
brj-24331	329	2	pyrogasification	pyrogasification	NOUN
brj-24331	329	3	of	of	ADP
brj-24331	329	4	biomass	biomass	NOUN
brj-24331	329	5	,	,	PUNCT
brj-24331	329	6	”	"	PUNCT
brj-24331	329	7	bioresources	bioresource	NOUN
brj-24331	329	8	20(2	20(2	NUM
brj-24331	329	9	)	)	PUNCT
brj-24331	329	10	,	,	PUNCT
brj-24331	329	11	2844	2844	NUM
brj-24331	329	12	-	-	SYM
brj-24331	329	13	2870	2870	NUM
brj-24331	329	14	.	.	PUNCT
brj-24331	329	15	2863	2863	NUM
brj-24331	330	1	the	the	DET
brj-24331	330	2	yields	yield	NOUN
brj-24331	330	3	of	of	ADP
brj-24331	330	4	nc	nc	PROPN
brj-24331	330	5	,	,	PUNCT
brj-24331	330	6	including	include	VERB
brj-24331	330	7	₂	₂	NUM
brj-24331	330	8	,	,	PUNCT
brj-24331	330	9	c	c	NOUN
brj-24331	330	10	₄	₄	NUM
brj-24331	330	11	,	,	PUNCT
brj-24331	330	12	co	co	NOUN
brj-24331	330	13	,	,	PUNCT
brj-24331	330	14	and	and	CCONJ
brj-24331	330	15	co₂	co₂	NOUN
brj-24331	330	16	,	,	PUNCT
brj-24331	330	17	increase	increase	VERB
brj-24331	330	18	significantly	significantly	ADV
brj-24331	330	19	with	with	ADP
brj-24331	330	20	the	the	DET
brj-24331	330	21	increasing	increase	VERB
brj-24331	330	22	temperature	temperature	NOUN
brj-24331	330	23	and	and	CCONJ
brj-24331	330	24	abr	abr	VERB
brj-24331	330	25	,	,	PUNCT
brj-24331	330	26	as	as	SCONJ
brj-24331	330	27	shown	show	VERB
brj-24331	330	28	in	in	ADP
brj-24331	330	29	fig	fig	NOUN
brj-24331	330	30	.	.	PUNCT
brj-24331	331	1	9	9	X
brj-24331	331	2	.	.	X
brj-24331	331	3	this	this	PRON
brj-24331	331	4	is	be	AUX
brj-24331	331	5	due	due	ADJ
brj-24331	331	6	to	to	ADP
brj-24331	331	7	the	the	DET
brj-24331	331	8	dominant	dominant	ADJ
brj-24331	331	9	role	role	NOUN
brj-24331	331	10	of	of	ADP
brj-24331	331	11	heterogeneous	heterogeneous	ADJ
brj-24331	331	12	reactions	reaction	NOUN
brj-24331	331	13	(	(	PUNCT
brj-24331	331	14	r1	r1	PROPN
brj-24331	331	15	to	to	PART
brj-24331	331	16	r4	r4	VERB
brj-24331	331	17	)	)	PUNCT
brj-24331	331	18	(	(	PUNCT
brj-24331	331	19	he	he	PRON
brj-24331	331	20	et	et	PROPN
brj-24331	331	21	al	al	PROPN
brj-24331	331	22	.	.	PROPN
brj-24331	331	23	2013	2013	NUM
brj-24331	331	24	;	;	PUNCT
brj-24331	331	25	al	al	PROPN
brj-24331	331	26	-	-	PROPN
brj-24331	331	27	zareer	zareer	PROPN
brj-24331	331	28	et	et	PROPN
brj-24331	331	29	al	al	PROPN
brj-24331	331	30	.	.	PROPN
brj-24331	331	31	2016	2016	NUM
brj-24331	331	32	)	)	PUNCT
brj-24331	331	33	.	.	PUNCT
brj-24331	332	1	at	at	ADP
brj-24331	332	2	low	low	ADJ
brj-24331	332	3	abr	abr	NOUN
brj-24331	332	4	values	value	NOUN
brj-24331	332	5	and	and	CCONJ
brj-24331	332	6	high	high	ADJ
brj-24331	332	7	temperatures	temperature	NOUN
brj-24331	332	8	,	,	PUNCT
brj-24331	332	9	limited	limited	ADJ
brj-24331	332	10	oxidation	oxidation	NOUN
brj-24331	332	11	favors	favor	VERB
brj-24331	332	12	the	the	DET
brj-24331	332	13	production	production	NOUN
brj-24331	332	14	of	of	ADP
brj-24331	332	15	combustible	combustible	ADJ
brj-24331	332	16	gases	gas	NOUN
brj-24331	332	17	such	such	ADJ
brj-24331	332	18	as	as	ADP
brj-24331	332	19	₂	₂	NUM
brj-24331	332	20	and	and	CCONJ
brj-24331	332	21	co.	co.	NOUN
brj-24331	332	22	owever	owever	NOUN
brj-24331	332	23	,	,	PUNCT
brj-24331	332	24	as	as	ADP
brj-24331	332	25	abr	abr	NOUN
brj-24331	332	26	increases	increase	NOUN
brj-24331	332	27	,	,	PUNCT
brj-24331	332	28	homogeneous	homogeneous	ADJ
brj-24331	332	29	oxidation	oxidation	NOUN
brj-24331	332	30	reactions	reaction	NOUN
brj-24331	332	31	become	become	VERB
brj-24331	332	32	more	more	ADV
brj-24331	332	33	prominent	prominent	ADJ
brj-24331	332	34	,	,	PUNCT
brj-24331	332	35	leading	lead	VERB
brj-24331	332	36	to	to	ADP
brj-24331	332	37	a	a	DET
brj-24331	332	38	higher	high	ADJ
brj-24331	332	39	proportion	proportion	NOUN
brj-24331	332	40	of	of	ADP
brj-24331	332	41	co₂	co₂	NOUN
brj-24331	332	42	(	(	PUNCT
brj-24331	332	43	jangsawang	jangsawang	PROPN
brj-24331	332	44	et	et	PROPN
brj-24331	332	45	al	al	PROPN
brj-24331	332	46	.	.	PROPN
brj-24331	332	47	2015	2015	NUM
brj-24331	332	48	)	)	PUNCT
brj-24331	332	49	,	,	PUNCT
brj-24331	332	50	increased	increase	VERB
brj-24331	332	51	overall	overall	ADJ
brj-24331	332	52	yields	yield	NOUN
brj-24331	332	53	,	,	PUNCT
brj-24331	332	54	and	and	CCONJ
brj-24331	332	55	reduced	reduced	ADJ
brj-24331	332	56	proportions	proportion	NOUN
brj-24331	332	57	of	of	ADP
brj-24331	332	58	combustible	combustible	ADJ
brj-24331	332	59	gases	gas	NOUN
brj-24331	332	60	.	.	PUNCT
brj-24331	333	1	the	the	DET
brj-24331	333	2	cfd	cfd	NOUN
brj-24331	333	3	and	and	CCONJ
brj-24331	333	4	sim	sim	NOUN
brj-24331	333	5	models	model	NOUN
brj-24331	333	6	exhibit	exhibit	VERB
brj-24331	333	7	similar	similar	ADJ
brj-24331	333	8	trends	trend	NOUN
brj-24331	333	9	,	,	PUNCT
brj-24331	333	10	but	but	CCONJ
brj-24331	333	11	their	their	PRON
brj-24331	333	12	distributions	distribution	NOUN
brj-24331	333	13	differ	differ	VERB
brj-24331	333	14	:	:	PUNCT
brj-24331	333	15	the	the	DET
brj-24331	333	16	sim	sim	ADJ
brj-24331	333	17	model	model	NOUN
brj-24331	333	18	predicts	predict	NOUN
brj-24331	333	19	higher	high	ADJ
brj-24331	333	20	and	and	CCONJ
brj-24331	333	21	more	more	ADJ
brj-24331	333	22	uniform	uniform	ADJ
brj-24331	333	23	ncg	ncg	PROPN
brj-24331	333	24	yields	yield	NOUN
brj-24331	333	25	with	with	ADP
brj-24331	333	26	increasing	increase	VERB
brj-24331	333	27	abr	abr	NOUN
brj-24331	333	28	,	,	PUNCT
brj-24331	333	29	while	while	SCONJ
brj-24331	333	30	the	the	DET
brj-24331	333	31	cfd	cfd	NOUN
brj-24331	333	32	model	model	NOUN
brj-24331	333	33	shows	show	VERB
brj-24331	333	34	lower	low	ADJ
brj-24331	333	35	yields	yield	NOUN
brj-24331	333	36	under	under	ADP
brj-24331	333	37	similar	similar	ADJ
brj-24331	333	38	conditions	condition	NOUN
brj-24331	333	39	.	.	PUNCT
brj-24331	334	1	overall	overall	ADV
brj-24331	334	2	,	,	PUNCT
brj-24331	334	3	the	the	DET
brj-24331	334	4	observed	observe	VERB
brj-24331	334	5	differences	difference	NOUN
brj-24331	334	6	between	between	ADP
brj-24331	334	7	cfd	cfd	NOUN
brj-24331	334	8	and	and	CCONJ
brj-24331	334	9	sim	sim	ADJ
brj-24331	334	10	predictions	prediction	NOUN
brj-24331	334	11	highlight	highlight	VERB
brj-24331	334	12	the	the	DET
brj-24331	334	13	influence	influence	NOUN
brj-24331	334	14	of	of	ADP
brj-24331	334	15	model	model	NOUN
brj-24331	334	16	assumptions	assumption	NOUN
brj-24331	334	17	on	on	ADP
brj-24331	334	18	phase	phase	NOUN
brj-24331	334	19	interactions	interaction	NOUN
brj-24331	334	20	and	and	CCONJ
brj-24331	334	21	reaction	reaction	NOUN
brj-24331	334	22	dynamics	dynamic	NOUN
brj-24331	334	23	.	.	PUNCT
brj-24331	335	1	cfd	cfd	NOUN
brj-24331	335	2	offers	offer	VERB
brj-24331	335	3	a	a	DET
brj-24331	335	4	detailed	detailed	ADJ
brj-24331	335	5	perspective	perspective	NOUN
brj-24331	335	6	by	by	ADP
brj-24331	335	7	explicitly	explicitly	ADV
brj-24331	335	8	accounting	account	VERB
brj-24331	335	9	for	for	ADP
brj-24331	335	10	heterogeneous	heterogeneous	ADJ
brj-24331	335	11	and	and	CCONJ
brj-24331	335	12	homogeneous	homogeneous	ADJ
brj-24331	335	13	phase	phase	NOUN
brj-24331	335	14	reactions	reaction	NOUN
brj-24331	335	15	,	,	PUNCT
brj-24331	335	16	while	while	SCONJ
brj-24331	335	17	the	the	DET
brj-24331	335	18	sim	sim	ADJ
brj-24331	335	19	equilibrium	equilibrium	NOUN
brj-24331	335	20	-	-	PUNCT
brj-24331	335	21	based	base	VERB
brj-24331	335	22	approach	approach	NOUN
brj-24331	335	23	results	result	VERB
brj-24331	335	24	in	in	ADP
brj-24331	335	25	a	a	DET
brj-24331	335	26	more	more	ADV
brj-24331	335	27	uniform	uniform	ADJ
brj-24331	335	28	phase	phase	NOUN
brj-24331	335	29	distribution	distribution	NOUN
brj-24331	335	30	.	.	PUNCT
brj-24331	336	1	effect	effect	NOUN
brj-24331	336	2	of	of	ADP
brj-24331	336	3	abr	abr	NOUN
brj-24331	336	4	and	and	CCONJ
brj-24331	336	5	temperature	temperature	NOUN
brj-24331	336	6	on	on	ADP
brj-24331	336	7	gas	gas	NOUN
brj-24331	336	8	composition	composition	NOUN
brj-24331	336	9	the	the	DET
brj-24331	336	10	effects	effect	NOUN
brj-24331	336	11	of	of	ADP
brj-24331	336	12	abr	abr	NOUN
brj-24331	336	13	and	and	CCONJ
brj-24331	336	14	temperature	temperature	NOUN
brj-24331	336	15	on	on	ADP
brj-24331	336	16	gas	gas	NOUN
brj-24331	336	17	composition	composition	NOUN
brj-24331	336	18	are	be	AUX
brj-24331	336	19	presented	present	VERB
brj-24331	336	20	in	in	ADP
brj-24331	336	21	figs	fig	NOUN
brj-24331	336	22	.	.	PUNCT
brj-24331	337	1	10	10	NUM
brj-24331	337	2	through	through	ADP
brj-24331	337	3	13	13	NUM
brj-24331	337	4	.	.	PUNCT
brj-24331	338	1	as	as	SCONJ
brj-24331	338	2	depicted	depict	VERB
brj-24331	338	3	in	in	ADP
brj-24331	338	4	fig	fig	NOUN
brj-24331	338	5	.	.	PUNCT
brj-24331	339	1	10	10	NUM
brj-24331	339	2	,	,	PUNCT
brj-24331	339	3	the	the	DET
brj-24331	339	4	volumetric	volumetric	ADJ
brj-24331	339	5	fraction	fraction	NOUN
brj-24331	339	6	of	of	ADP
brj-24331	339	7	₂	₂	NUM
brj-24331	339	8	consistently	consistently	ADV
brj-24331	339	9	increases	increase	VERB
brj-24331	339	10	with	with	ADP
brj-24331	339	11	temperature	temperature	NOUN
brj-24331	339	12	in	in	ADP
brj-24331	339	13	both	both	DET
brj-24331	339	14	models	model	NOUN
brj-24331	339	15	,	,	PUNCT
brj-24331	339	16	reflecting	reflect	VERB
brj-24331	339	17	the	the	DET
brj-24331	339	18	endothermic	endothermic	ADJ
brj-24331	339	19	nature	nature	NOUN
brj-24331	339	20	of	of	ADP
brj-24331	339	21	heterogeneous	heterogeneous	ADJ
brj-24331	339	22	gasification	gasification	NOUN
brj-24331	339	23	reaction	reaction	NOUN
brj-24331	339	24	(	(	PUNCT
brj-24331	339	25	r2	r2	PROPN
brj-24331	339	26	)	)	PUNCT
brj-24331	339	27	.	.	PUNCT
brj-24331	340	1	fig	fig	NOUN
brj-24331	340	2	.	.	PUNCT
brj-24331	341	1	10	10	NUM
brj-24331	341	2	.	.	PUNCT
brj-24331	342	1	effect	effect	NOUN
brj-24331	342	2	of	of	ADP
brj-24331	342	3	abr	abr	NOUN
brj-24331	342	4	and	and	CCONJ
brj-24331	342	5	temperature	temperature	NOUN
brj-24331	342	6	on	on	ADP
brj-24331	342	7	h2	h2	NOUN
brj-24331	342	8	composition	composition	NOUN
brj-24331	342	9	:	:	PUNCT
brj-24331	342	10	sim	sim	ADJ
brj-24331	342	11	and	and	CCONJ
brj-24331	342	12	cfd	cfd	NOUN
brj-24331	342	13	comparison	comparison	NOUN
brj-24331	342	14	this	this	DET
brj-24331	342	15	reaction	reaction	NOUN
brj-24331	342	16	predominantly	predominantly	ADV
brj-24331	342	17	occurs	occur	VERB
brj-24331	342	18	on	on	ADP
brj-24331	342	19	the	the	DET
brj-24331	342	20	solid	solid	ADJ
brj-24331	342	21	surface	surface	NOUN
brj-24331	342	22	and	and	CCONJ
brj-24331	342	23	is	be	AUX
brj-24331	342	24	facilitated	facilitate	VERB
brj-24331	342	25	by	by	ADP
brj-24331	342	26	increased	increase	VERB
brj-24331	342	27	thermal	thermal	ADJ
brj-24331	342	28	energy	energy	NOUN
brj-24331	342	29	,	,	PUNCT
brj-24331	342	30	resulting	result	VERB
brj-24331	342	31	in	in	ADP
brj-24331	342	32	greater	great	ADJ
brj-24331	342	33	₂	₂	NUM
brj-24331	342	34	production	production	NOUN
brj-24331	342	35	.	.	PUNCT
brj-24331	343	1	under	under	ADP
brj-24331	343	2	low	low	ADJ
brj-24331	343	3	abr	abr	NOUN
brj-24331	343	4	conditions	condition	NOUN
brj-24331	343	5	,	,	PUNCT
brj-24331	343	6	where	where	SCONJ
brj-24331	343	7	oxygen	oxygen	NOUN
brj-24331	343	8	availability	availability	NOUN
brj-24331	343	9	is	be	AUX
brj-24331	343	10	limited	limited	ADJ
brj-24331	343	11	,	,	PUNCT
brj-24331	343	12	₂	₂	NUM
brj-24331	343	13	reaches	reach	VERB
brj-24331	343	14	its	its	PRON
brj-24331	343	15	maximum	maximum	ADJ
brj-24331	343	16	concentration	concentration	NOUN
brj-24331	343	17	as	as	SCONJ
brj-24331	343	18	homogeneous	homogeneous	ADJ
brj-24331	343	19	oxidation	oxidation	NOUN
brj-24331	343	20	reactions	reaction	NOUN
brj-24331	343	21	,	,	PUNCT
brj-24331	343	22	such	such	ADJ
brj-24331	343	23	as	as	ADP
brj-24331	343	24	r5	r5	PROPN
brj-24331	343	25	,	,	PUNCT
brj-24331	343	26	are	be	AUX
brj-24331	343	27	constrained	constrain	VERB
brj-24331	343	28	.	.	PUNCT
brj-24331	344	1	conversely	conversely	ADV
brj-24331	344	2	,	,	PUNCT
brj-24331	344	3	at	at	ADP
brj-24331	344	4	higher	high	ADJ
brj-24331	344	5	abr	abr	NOUN
brj-24331	344	6	values	value	NOUN
brj-24331	344	7	,	,	PUNCT
brj-24331	344	8	₂	₂	NUM
brj-24331	344	9	is	be	AUX
brj-24331	344	10	consumed	consume	VERB
brj-24331	344	11	in	in	ADP
brj-24331	344	12	oxidation	oxidation	NOUN
brj-24331	344	13	reactions	reaction	NOUN
brj-24331	344	14	to	to	PART
brj-24331	344	15	produce	produce	VERB
brj-24331	344	16	water	water	NOUN
brj-24331	344	17	vapor	vapor	NOUN
brj-24331	344	18	,	,	PUNCT
brj-24331	344	19	reducing	reduce	VERB
brj-24331	344	20	its	its	PRON
brj-24331	344	21	concentration	concentration	NOUN
brj-24331	344	22	.	.	PUNCT
brj-24331	345	1	this	this	DET
brj-24331	345	2	phenomenon	phenomenon	NOUN
brj-24331	345	3	,	,	PUNCT
brj-24331	345	4	as	as	SCONJ
brj-24331	345	5	described	describe	VERB
brj-24331	345	6	by	by	ADP
brj-24331	345	7	kumar	kumar	PROPN
brj-24331	345	8	and	and	CCONJ
brj-24331	345	9	paul	paul	PROPN
brj-24331	345	10	(	(	PUNCT
brj-24331	345	11	2020	2020	NUM
brj-24331	345	12	)	)	PUNCT
brj-24331	345	13	,	,	PUNCT
brj-24331	345	14	underscores	underscore	VERB
brj-24331	345	15	the	the	DET
brj-24331	345	16	sensitivity	sensitivity	NOUN
brj-24331	345	17	of	of	ADP
brj-24331	345	18	these	these	DET
brj-24331	345	19	endothermic	endothermic	ADJ
brj-24331	345	20	reactions	reaction	NOUN
brj-24331	345	21	to	to	ADP
brj-24331	345	22	temperature	temperature	NOUN
brj-24331	345	23	changes	change	NOUN
brj-24331	345	24	and	and	CCONJ
brj-24331	345	25	their	their	PRON
brj-24331	345	26	influence	influence	NOUN
brj-24331	345	27	on	on	ADP
brj-24331	345	28	gas	gas	NOUN
brj-24331	345	29	composition	composition	NOUN
brj-24331	345	30	during	during	ADP
brj-24331	345	31	gasification	gasification	NOUN
brj-24331	345	32	process	process	NOUN
brj-24331	345	33	.	.	PUNCT
brj-24331	346	1	both	both	DET
brj-24331	346	2	heterogeneous	heterogeneous	ADJ
brj-24331	346	3	and	and	CCONJ
brj-24331	346	4	homogeneous	homogeneous	ADJ
brj-24331	346	5	reactions	reaction	NOUN
brj-24331	346	6	contribute	contribute	VERB
brj-24331	346	7	to	to	ADP
brj-24331	346	8	₂	₂	NUM
brj-24331	346	9	production	production	NOUN
brj-24331	346	10	,	,	PUNCT
brj-24331	346	11	yielding	yield	VERB
brj-24331	346	12	similar	similar	ADJ
brj-24331	346	13	trends	trend	NOUN
brj-24331	346	14	across	across	ADP
brj-24331	346	15	the	the	DET
brj-24331	346	16	two	two	NUM
brj-24331	346	17	models	model	NOUN
brj-24331	346	18	.	.	PUNCT
brj-24331	347	1	the	the	DET
brj-24331	347	2	evolution	evolution	NOUN
brj-24331	347	3	of	of	ADP
brj-24331	347	4	₂	₂	NUM
brj-24331	347	5	is	be	AUX
brj-24331	347	6	directly	directly	ADV
brj-24331	347	7	linked	link	VERB
brj-24331	347	8	to	to	ADP
brj-24331	347	9	the	the	DET
brj-24331	347	10	behavior	behavior	NOUN
brj-24331	347	11	of	of	ADP
brj-24331	347	12	c	c	PROPN
brj-24331	347	13	₄	₄	NUM
brj-24331	347	14	,	,	PUNCT
brj-24331	347	15	as	as	SCONJ
brj-24331	347	16	shown	show	VERB
brj-24331	347	17	in	in	ADP
brj-24331	347	18	fig	fig	NOUN
brj-24331	347	19	.	.	PUNCT
brj-24331	348	1	11	11	NUM
brj-24331	348	2	.	.	PUNCT
brj-24331	349	1	at	at	ADP
brj-24331	349	2	low	low	ADJ
brj-24331	349	3	temperatures	temperature	NOUN
brj-24331	349	4	,	,	PUNCT
brj-24331	349	5	c	c	PROPN
brj-24331	349	6	₄	₄	NUM
brj-24331	349	7	formation	formation	NOUN
brj-24331	349	8	is	be	AUX
brj-24331	349	9	dominated	dominate	VERB
brj-24331	349	10	by	by	ADP
brj-24331	349	11	the	the	DET
brj-24331	349	12	heterogeneous	heterogeneous	ADJ
brj-24331	349	13	methanation	methanation	NOUN
brj-24331	349	14	reaction	reaction	NOUN
brj-24331	349	15	(	(	PUNCT
brj-24331	349	16	r	r	NOUN
brj-24331	349	17	peer	peer	NOUN
brj-24331	349	18	-	-	PUNCT
brj-24331	349	19	reviewed	review	VERB
brj-24331	349	20	article	article	NOUN
brj-24331	349	21	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	349	22	sangaré	sangaré	PROPN
brj-24331	349	23	et	et	PROPN
brj-24331	349	24	al	al	PROPN
brj-24331	349	25	.	.	PROPN
brj-24331	350	1	(	(	PUNCT
brj-24331	350	2	2025	2025	NUM
brj-24331	350	3	)	)	PUNCT
brj-24331	350	4	.	.	PUNCT
brj-24331	351	1	“	"	PUNCT
brj-24331	351	2	pyrogasification	pyrogasification	NOUN
brj-24331	351	3	of	of	ADP
brj-24331	351	4	biomass	biomass	NOUN
brj-24331	351	5	,	,	PUNCT
brj-24331	351	6	”	"	PUNCT
brj-24331	351	7	bioresources	bioresource	NOUN
brj-24331	351	8	20(2	20(2	NUM
brj-24331	351	9	)	)	PUNCT
brj-24331	351	10	,	,	PUNCT
brj-24331	351	11	2844	2844	NUM
brj-24331	351	12	-	-	SYM
brj-24331	351	13	2870	2870	NUM
brj-24331	351	14	.	.	PUNCT
brj-24331	352	1	2864	2864	NUM
brj-24331	352	2	4	4	NUM
brj-24331	352	3	)	)	PUNCT
brj-24331	352	4	,	,	PUNCT
brj-24331	352	5	where	where	SCONJ
brj-24331	352	6	solid	solid	ADJ
brj-24331	352	7	carbon	carbon	NOUN
brj-24331	352	8	reacts	react	VERB
brj-24331	352	9	with	with	ADP
brj-24331	352	10	₂	₂	NUM
brj-24331	352	11	in	in	ADP
brj-24331	352	12	an	an	DET
brj-24331	352	13	exothermic	exothermic	NOUN
brj-24331	352	14	.	.	PUNCT
brj-24331	353	1	owever	owever	NOUN
brj-24331	353	2	,	,	PUNCT
brj-24331	353	3	as	as	ADP
brj-24331	353	4	the	the	DET
brj-24331	353	5	temperature	temperature	NOUN
brj-24331	353	6	increases	increase	NOUN
brj-24331	353	7	,	,	PUNCT
brj-24331	353	8	c	c	PROPN
brj-24331	353	9	₄	₄	NUM
brj-24331	353	10	undergoes	undergoe	NOUN
brj-24331	353	11	decomposition	decomposition	NOUN
brj-24331	353	12	via	via	ADP
brj-24331	353	13	steam	steam	NOUN
brj-24331	353	14	reforming	reforming	NOUN
brj-24331	353	15	(	(	PUNCT
brj-24331	353	16	r9	r9	NOUN
brj-24331	353	17	)	)	PUNCT
brj-24331	353	18	,	,	PUNCT
brj-24331	353	19	an	an	DET
brj-24331	353	20	endothermic	endothermic	ADJ
brj-24331	353	21	reaction	reaction	NOUN
brj-24331	353	22	that	that	PRON
brj-24331	353	23	generates	generate	VERB
brj-24331	353	24	₂	₂	NUM
brj-24331	353	25	and	and	CCONJ
brj-24331	353	26	co.	co.	PROPN
brj-24331	353	27	notably	notably	ADV
brj-24331	353	28	,	,	PUNCT
brj-24331	353	29	most	most	ADJ
brj-24331	353	30	of	of	ADP
brj-24331	353	31	the	the	DET
brj-24331	353	32	c	c	PROPN
brj-24331	353	33	₄	₄	NUM
brj-24331	353	34	in	in	ADP
brj-24331	353	35	the	the	DET
brj-24331	353	36	gas	gas	NOUN
brj-24331	353	37	mixture	mixture	NOUN
brj-24331	353	38	originates	originate	NOUN
brj-24331	353	39	from	from	ADP
brj-24331	353	40	pyrolysis	pyrolysis	NOUN
brj-24331	353	41	.	.	PUNCT
brj-24331	354	1	in	in	ADP
brj-24331	354	2	both	both	DET
brj-24331	354	3	models	model	NOUN
brj-24331	354	4	,	,	PUNCT
brj-24331	354	5	c	c	PROPN
brj-24331	354	6	₄	₄	NUM
brj-24331	354	7	concentrations	concentration	NOUN
brj-24331	354	8	decrease	decrease	VERB
brj-24331	354	9	with	with	ADP
brj-24331	354	10	increasing	increase	VERB
brj-24331	354	11	abr	abr	NOUN
brj-24331	354	12	,	,	PUNCT
brj-24331	354	13	as	as	SCONJ
brj-24331	354	14	oxygen	oxygen	NOUN
brj-24331	354	15	promotes	promote	VERB
brj-24331	354	16	oxidation	oxidation	NOUN
brj-24331	354	17	,	,	PUNCT
brj-24331	354	18	which	which	PRON
brj-24331	354	19	constrains	constrain	VERB
brj-24331	354	20	c	c	NOUN
brj-24331	354	21	₄	₄	NUM
brj-24331	354	22	formation	formation	NOUN
brj-24331	354	23	.	.	PUNCT
brj-24331	355	1	furthermore	furthermore	ADV
brj-24331	355	2	,	,	PUNCT
brj-24331	355	3	high	high	ADJ
brj-24331	355	4	temperatures	temperature	NOUN
brj-24331	355	5	lead	lead	VERB
brj-24331	355	6	to	to	ADP
brj-24331	355	7	a	a	DET
brj-24331	355	8	slight	slight	ADJ
brj-24331	355	9	reduction	reduction	NOUN
brj-24331	355	10	in	in	ADP
brj-24331	355	11	c	c	PROPN
brj-24331	355	12	₄	₄	NUM
brj-24331	355	13	,	,	PUNCT
brj-24331	355	14	particularly	particularly	ADV
brj-24331	355	15	in	in	ADP
brj-24331	355	16	the	the	DET
brj-24331	355	17	sim	sim	ADJ
brj-24331	355	18	results	result	NOUN
brj-24331	355	19	,	,	PUNCT
brj-24331	355	20	due	due	ADP
brj-24331	355	21	to	to	ADP
brj-24331	355	22	enhanced	enhance	VERB
brj-24331	355	23	gas	gas	NOUN
brj-24331	355	24	-	-	PUNCT
brj-24331	355	25	phase	phase	NOUN
brj-24331	355	26	reaction	reaction	NOUN
brj-24331	355	27	reforming	reform	VERB
brj-24331	355	28	reaction	reaction	NOUN
brj-24331	355	29	(	(	PUNCT
brj-24331	355	30	r	r	NOUN
brj-24331	355	31	9	9	NUM
brj-24331	355	32	)	)	PUNCT
brj-24331	355	33	.	.	PUNCT
brj-24331	356	1	however	however	ADV
brj-24331	356	2	,	,	PUNCT
brj-24331	356	3	the	the	DET
brj-24331	356	4	cfd	cfd	NOUN
brj-24331	356	5	model	model	NOUN
brj-24331	356	6	predicts	predict	VERB
brj-24331	356	7	higher	high	ADJ
brj-24331	356	8	c	c	NOUN
brj-24331	356	9	₄	₄	NUM
brj-24331	356	10	concentrations	concentration	NOUN
brj-24331	356	11	than	than	ADP
brj-24331	356	12	the	the	DET
brj-24331	356	13	sim	sim	ADJ
brj-24331	356	14	results	result	NOUN
brj-24331	356	15	,	,	PUNCT
brj-24331	356	16	especially	especially	ADV
brj-24331	356	17	at	at	ADP
brj-24331	356	18	high	high	ADJ
brj-24331	356	19	temperatures	temperature	NOUN
brj-24331	356	20	and	and	CCONJ
brj-24331	356	21	low	low	ADJ
brj-24331	356	22	abr	abr	NOUN
brj-24331	356	23	values	value	NOUN
brj-24331	356	24	.	.	PUNCT
brj-24331	357	1	fig	fig	NOUN
brj-24331	357	2	.	.	PUNCT
brj-24331	358	1	11	11	NUM
brj-24331	358	2	.	.	PUNCT
brj-24331	359	1	effect	effect	NOUN
brj-24331	359	2	of	of	ADP
brj-24331	359	3	abr	abr	NOUN
brj-24331	359	4	and	and	CCONJ
brj-24331	359	5	temperature	temperature	NOUN
brj-24331	359	6	on	on	ADP
brj-24331	359	7	ch4	ch4	NOUN
brj-24331	359	8	composition	composition	NOUN
brj-24331	359	9	:	:	PUNCT
brj-24331	359	10	sim	sim	ADJ
brj-24331	359	11	and	and	CCONJ
brj-24331	359	12	cfd	cfd	NOUN
brj-24331	359	13	comparison	comparison	NOUN
brj-24331	359	14	the	the	DET
brj-24331	359	15	behavior	behavior	NOUN
brj-24331	359	16	of	of	ADP
brj-24331	359	17	co	co	NOUN
brj-24331	359	18	,	,	PUNCT
brj-24331	359	19	shown	show	VERB
brj-24331	359	20	in	in	ADP
brj-24331	359	21	fig	fig	NOUN
brj-24331	359	22	.	.	PUNCT
brj-24331	360	1	12	12	NUM
brj-24331	360	2	,	,	PUNCT
brj-24331	360	3	highlights	highlight	VERB
brj-24331	360	4	the	the	DET
brj-24331	360	5	important	important	ADJ
brj-24331	360	6	role	role	NOUN
brj-24331	360	7	of	of	ADP
brj-24331	360	8	heterogeneous	heterogeneous	ADJ
brj-24331	360	9	reactions	reaction	NOUN
brj-24331	360	10	such	such	ADJ
brj-24331	360	11	as	as	ADP
brj-24331	360	12	the	the	DET
brj-24331	360	13	partial	partial	ADJ
brj-24331	360	14	oxidation	oxidation	NOUN
brj-24331	360	15	of	of	ADP
brj-24331	360	16	solid	solid	ADJ
brj-24331	360	17	carbon	carbon	NOUN
brj-24331	360	18	(	(	PUNCT
brj-24331	360	19	r1	r1	PROPN
brj-24331	360	20	)	)	PUNCT
brj-24331	360	21	,	,	PUNCT
brj-24331	360	22	which	which	PRON
brj-24331	360	23	produces	produce	VERB
brj-24331	360	24	co	co	NOUN
brj-24331	360	25	and	and	CCONJ
brj-24331	360	26	co₂.	co₂.	DET
brj-24331	360	27	the	the	DET
brj-24331	360	28	z	z	PROPN
brj-24331	360	29	coefficient	coefficient	NOUN
brj-24331	360	30	in	in	ADP
brj-24331	360	31	eq	eq	PROPN
brj-24331	360	32	.	.	PROPN
brj-24331	360	33	14	14	NUM
brj-24331	360	34	regulates	regulate	VERB
brj-24331	360	35	this	this	DET
brj-24331	360	36	reaction	reaction	NOUN
brj-24331	360	37	,	,	PUNCT
brj-24331	360	38	increasing	increase	VERB
brj-24331	360	39	with	with	ADP
brj-24331	360	40	temperature	temperature	NOUN
brj-24331	360	41	and	and	CCONJ
brj-24331	360	42	favoring	favor	VERB
brj-24331	360	43	co	co	NOUN
brj-24331	360	44	production	production	NOUN
brj-24331	360	45	at	at	ADP
brj-24331	360	46	low	low	ADJ
brj-24331	360	47	abr	abr	NOUN
brj-24331	360	48	values	value	NOUN
brj-24331	360	49	.	.	PUNCT
brj-24331	361	1	as	as	ADP
brj-24331	361	2	the	the	DET
brj-24331	361	3	temperature	temperature	NOUN
brj-24331	361	4	increases	increase	NOUN
brj-24331	361	5	,	,	PUNCT
brj-24331	361	6	the	the	DET
brj-24331	361	7	boudouard	boudouard	PROPN
brj-24331	361	8	reaction	reaction	NOUN
brj-24331	361	9	(	(	PUNCT
brj-24331	361	10	r3	r3	PROPN
brj-24331	361	11	)	)	PUNCT
brj-24331	361	12	and	and	CCONJ
brj-24331	361	13	the	the	DET
brj-24331	361	14	steam	steam	NOUN
brj-24331	361	15	reaction	reaction	NOUN
brj-24331	361	16	(	(	PUNCT
brj-24331	361	17	r2	r2	PROPN
brj-24331	361	18	)	)	PUNCT
brj-24331	361	19	dominate	dominate	VERB
brj-24331	361	20	,	,	PUNCT
brj-24331	361	21	converting	convert	VERB
brj-24331	361	22	co₂	co₂	NOUN
brj-24331	361	23	and	and	CCONJ
brj-24331	361	24	water	water	NOUN
brj-24331	361	25	vapor	vapor	NOUN
brj-24331	361	26	into	into	ADP
brj-24331	361	27	co	co	NOUN
brj-24331	361	28	and	and	CCONJ
brj-24331	361	29	₂.	₂.	VERB
brj-24331	361	30	these	these	DET
brj-24331	361	31	heterogeneous	heterogeneous	ADJ
brj-24331	361	32	reactions	reaction	NOUN
brj-24331	361	33	are	be	AUX
brj-24331	361	34	key	key	ADJ
brj-24331	361	35	drivers	driver	NOUN
brj-24331	361	36	of	of	ADP
brj-24331	361	37	co	co	NOUN
brj-24331	361	38	formation	formation	NOUN
brj-24331	361	39	(	(	PUNCT
brj-24331	361	40	kumar	kumar	PROPN
brj-24331	361	41	and	and	CCONJ
brj-24331	361	42	paul	paul	PROPN
brj-24331	361	43	2020	2020	NUM
brj-24331	361	44	)	)	PUNCT
brj-24331	361	45	.	.	PUNCT
brj-24331	362	1	however	however	ADV
brj-24331	362	2	,	,	PUNCT
brj-24331	362	3	at	at	ADP
brj-24331	362	4	high	high	ADJ
brj-24331	362	5	abr	abr	NOUN
brj-24331	362	6	values	value	NOUN
brj-24331	362	7	,	,	PUNCT
brj-24331	362	8	homogeneous	homogeneous	ADJ
brj-24331	362	9	oxidation	oxidation	NOUN
brj-24331	362	10	reactions	reaction	NOUN
brj-24331	362	11	(	(	PUNCT
brj-24331	362	12	r7	r7	PROPN
brj-24331	362	13	)	)	PUNCT
brj-24331	362	14	consume	consume	AUX
brj-24331	362	15	co	co	X
brj-24331	362	16	at	at	ADP
brj-24331	362	17	high	high	ADJ
brj-24331	362	18	abr	abr	NOUN
brj-24331	362	19	values	value	NOUN
brj-24331	362	20	,	,	PUNCT
brj-24331	362	21	reducing	reduce	VERB
brj-24331	362	22	its	its	PRON
brj-24331	362	23	concentration	concentration	NOUN
brj-24331	362	24	.	.	PUNCT
brj-24331	363	1	while	while	SCONJ
brj-24331	363	2	the	the	DET
brj-24331	363	3	cfd	cfd	NOUN
brj-24331	363	4	model	model	NOUN
brj-24331	363	5	better	well	ADJ
brj-24331	363	6	captures	capture	NOUN
brj-24331	363	7	localized	localize	VERB
brj-24331	363	8	surface	surface	NOUN
brj-24331	363	9	interactions	interaction	NOUN
brj-24331	363	10	,	,	PUNCT
brj-24331	363	11	the	the	DET
brj-24331	363	12	sim	sim	ADJ
brj-24331	363	13	results	result	NOUN
brj-24331	363	14	align	align	VERB
brj-24331	363	15	well	well	ADV
brj-24331	363	16	with	with	ADP
brj-24331	363	17	theoretical	theoretical	ADJ
brj-24331	363	18	expectations	expectation	NOUN
brj-24331	363	19	,	,	PUNCT
brj-24331	363	20	particularly	particularly	ADV
brj-24331	363	21	at	at	ADP
brj-24331	363	22	high	high	ADJ
brj-24331	363	23	temperatures	temperature	NOUN
brj-24331	363	24	and	and	CCONJ
brj-24331	363	25	abr	abr	VERB
brj-24331	363	26	values	value	NOUN
brj-24331	363	27	,	,	PUNCT
brj-24331	363	28	which	which	PRON
brj-24331	363	29	is	be	AUX
brj-24331	363	30	likely	likely	ADJ
brj-24331	363	31	due	due	ADP
brj-24331	363	32	to	to	ADP
brj-24331	363	33	its	its	PRON
brj-24331	363	34	representation	representation	NOUN
brj-24331	363	35	of	of	ADP
brj-24331	363	36	the	the	DET
brj-24331	363	37	homogeneous	homogeneous	ADJ
brj-24331	363	38	co	co	NOUN
brj-24331	363	39	oxidation	oxidation	NOUN
brj-24331	363	40	reaction	reaction	NOUN
brj-24331	363	41	(	(	PUNCT
brj-24331	363	42	r7	r7	PROPN
brj-24331	363	43	)	)	PUNCT
brj-24331	363	44	.	.	PUNCT
brj-24331	364	1	co	co	NOUN
brj-24331	364	2	formation	formation	NOUN
brj-24331	364	3	is	be	AUX
brj-24331	364	4	predominantly	predominantly	ADV
brj-24331	364	5	driven	drive	VERB
brj-24331	364	6	by	by	ADP
brj-24331	364	7	heterogeneous	heterogeneous	ADJ
brj-24331	364	8	reactions	reaction	NOUN
brj-24331	364	9	in	in	ADP
brj-24331	364	10	the	the	DET
brj-24331	364	11	solid	solid	ADJ
brj-24331	364	12	phase	phase	NOUN
brj-24331	364	13	,	,	PUNCT
brj-24331	364	14	whereas	whereas	SCONJ
brj-24331	364	15	co₂	co₂	NOUN
brj-24331	364	16	production	production	NOUN
brj-24331	364	17	is	be	AUX
brj-24331	364	18	mainly	mainly	ADV
brj-24331	364	19	associated	associate	VERB
brj-24331	364	20	with	with	ADP
brj-24331	364	21	homogeneous	homogeneous	ADJ
brj-24331	364	22	reactions	reaction	NOUN
brj-24331	364	23	,	,	PUNCT
brj-24331	364	24	such	such	ADJ
brj-24331	364	25	as	as	ADP
brj-24331	364	26	co	co	NOUN
brj-24331	364	27	oxidation	oxidation	NOUN
brj-24331	364	28	(	(	PUNCT
brj-24331	364	29	r7	r7	PROPN
brj-24331	364	30	)	)	PUNCT
brj-24331	364	31	,	,	PUNCT
brj-24331	364	32	c	c	PROPN
brj-24331	364	33	₄	₄	NUM
brj-24331	364	34	combustion	combustion	NOUN
brj-24331	364	35	(	(	PUNCT
brj-24331	364	36	r6	r6	NOUN
brj-24331	364	37	)	)	PUNCT
brj-24331	364	38	,	,	PUNCT
brj-24331	364	39	and	and	CCONJ
brj-24331	364	40	the	the	DET
brj-24331	364	41	water	water	NOUN
brj-24331	364	42	-	-	PUNCT
brj-24331	364	43	gas	gas	NOUN
brj-24331	364	44	shift	shift	NOUN
brj-24331	364	45	reaction	reaction	NOUN
brj-24331	364	46	(	(	PUNCT
brj-24331	364	47	r8	r8	NOUN
brj-24331	364	48	)	)	PUNCT
brj-24331	364	49	at	at	ADP
brj-24331	364	50	lower	low	ADJ
brj-24331	364	51	temperatures	temperature	NOUN
brj-24331	364	52	(	(	PUNCT
brj-24331	364	53	jangsawang	jangsawang	PROPN
brj-24331	364	54	et	et	PROPN
brj-24331	364	55	al	al	PROPN
brj-24331	364	56	.	.	PROPN
brj-24331	364	57	2015	2015	NUM
brj-24331	364	58	)	)	PUNCT
brj-24331	364	59	.	.	PUNCT
brj-24331	365	1	figure	figure	NOUN
brj-24331	365	2	13	13	NUM
brj-24331	365	3	illustrates	illustrate	VERB
brj-24331	365	4	the	the	DET
brj-24331	365	5	interactions	interaction	NOUN
brj-24331	365	6	of	of	ADP
brj-24331	365	7	abr	abr	NOUN
brj-24331	365	8	and	and	CCONJ
brj-24331	365	9	temperature	temperature	NOUN
brj-24331	365	10	on	on	ADP
brj-24331	365	11	co₂	co₂	PROPN
brj-24331	365	12	composition	composition	NOUN
brj-24331	365	13	.	.	PUNCT
brj-24331	366	1	peer	peer	NOUN
brj-24331	366	2	-	-	PUNCT
brj-24331	366	3	reviewed	review	VERB
brj-24331	366	4	article	article	NOUN
brj-24331	366	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	366	6	sangaré	sangaré	PROPN
brj-24331	366	7	et	et	PROPN
brj-24331	366	8	al	al	PROPN
brj-24331	366	9	.	.	PROPN
brj-24331	367	1	(	(	PUNCT
brj-24331	367	2	2025	2025	NUM
brj-24331	367	3	)	)	PUNCT
brj-24331	367	4	.	.	PUNCT
brj-24331	368	1	“	"	PUNCT
brj-24331	368	2	pyrogasification	pyrogasification	NOUN
brj-24331	368	3	of	of	ADP
brj-24331	368	4	biomass	biomass	NOUN
brj-24331	368	5	,	,	PUNCT
brj-24331	368	6	”	"	PUNCT
brj-24331	368	7	bioresources	bioresource	NOUN
brj-24331	368	8	20(2	20(2	NUM
brj-24331	368	9	)	)	PUNCT
brj-24331	368	10	,	,	PUNCT
brj-24331	368	11	2844	2844	NUM
brj-24331	368	12	-	-	SYM
brj-24331	368	13	2870	2870	NUM
brj-24331	368	14	.	.	PUNCT
brj-24331	368	15	2865	2865	NUM
brj-24331	368	16	fig	fig	NOUN
brj-24331	368	17	.	.	PUNCT
brj-24331	369	1	12	12	NUM
brj-24331	369	2	.	.	PUNCT
brj-24331	370	1	effect	effect	NOUN
brj-24331	370	2	of	of	ADP
brj-24331	370	3	abr	abr	NOUN
brj-24331	370	4	and	and	CCONJ
brj-24331	370	5	temperature	temperature	NOUN
brj-24331	370	6	on	on	ADP
brj-24331	370	7	co	co	NOUN
brj-24331	370	8	composition	composition	NOUN
brj-24331	370	9	:	:	PUNCT
brj-24331	370	10	sim	sim	ADJ
brj-24331	370	11	and	and	CCONJ
brj-24331	370	12	cfd	cfd	PROPN
brj-24331	370	13	comparison	comparison	NOUN
brj-24331	370	14	fig	fig	NOUN
brj-24331	370	15	.	.	PUNCT
brj-24331	371	1	13	13	NUM
brj-24331	371	2	.	.	X
brj-24331	371	3	effect	effect	NOUN
brj-24331	371	4	of	of	ADP
brj-24331	371	5	abr	abr	NOUN
brj-24331	371	6	and	and	CCONJ
brj-24331	371	7	temperature	temperature	NOUN
brj-24331	371	8	on	on	ADP
brj-24331	371	9	co2	co2	NOUN
brj-24331	371	10	composition	composition	NOUN
brj-24331	371	11	:	:	PUNCT
brj-24331	371	12	sim	sim	ADJ
brj-24331	371	13	and	and	CCONJ
brj-24331	371	14	cfd	cfd	NOUN
brj-24331	371	15	comparison	comparison	NOUN
brj-24331	371	16	theoretically	theoretically	ADV
brj-24331	371	17	,	,	PUNCT
brj-24331	371	18	co₂	co₂	NOUN
brj-24331	371	19	production	production	NOUN
brj-24331	371	20	is	be	AUX
brj-24331	371	21	favored	favor	VERB
brj-24331	371	22	at	at	ADP
brj-24331	371	23	low	low	ADJ
brj-24331	371	24	temperatures	temperature	NOUN
brj-24331	371	25	and	and	CCONJ
brj-24331	371	26	high	high	ADJ
brj-24331	371	27	abr	abr	NOUN
brj-24331	371	28	due	due	ADP
brj-24331	371	29	to	to	ADP
brj-24331	371	30	the	the	DET
brj-24331	371	31	increased	increase	VERB
brj-24331	371	32	availability	availability	NOUN
brj-24331	371	33	of	of	ADP
brj-24331	371	34	oxygen	oxygen	NOUN
brj-24331	371	35	,	,	PUNCT
brj-24331	371	36	promoting	promote	VERB
brj-24331	371	37	oxidation	oxidation	NOUN
brj-24331	371	38	reactions	reaction	NOUN
brj-24331	371	39	.	.	PUNCT
brj-24331	372	1	owever	owever	NOUN
brj-24331	372	2	,	,	PUNCT
brj-24331	372	3	co₂	co₂	PROPN
brj-24331	372	4	is	be	AUX
brj-24331	372	5	consumed	consume	VERB
brj-24331	372	6	at	at	ADP
brj-24331	372	7	higher	high	ADJ
brj-24331	372	8	temperatures	temperature	NOUN
brj-24331	372	9	via	via	ADP
brj-24331	372	10	the	the	DET
brj-24331	372	11	boudouard	boudouard	PROPN
brj-24331	372	12	reaction	reaction	NOUN
brj-24331	372	13	(	(	PUNCT
brj-24331	372	14	r3	r3	PROPN
brj-24331	372	15	)	)	PUNCT
brj-24331	372	16	,	,	PUNCT
brj-24331	372	17	resulting	result	VERB
brj-24331	372	18	in	in	ADP
brj-24331	372	19	its	its	PRON
brj-24331	372	20	progressive	progressive	ADJ
brj-24331	372	21	decrease	decrease	NOUN
brj-24331	372	22	in	in	ADP
brj-24331	372	23	high	high	ADJ
brj-24331	372	24	-	-	PUNCT
brj-24331	372	25	temperature	temperature	NOUN
brj-24331	372	26	,	,	PUNCT
brj-24331	372	27	low	low	ADJ
brj-24331	372	28	abr	abr	NOUN
brj-24331	372	29	conditions	condition	NOUN
brj-24331	372	30	.	.	PUNCT
brj-24331	373	1	figure	figure	NOUN
brj-24331	373	2	13	13	NUM
brj-24331	373	3	also	also	ADV
brj-24331	373	4	reveals	reveal	VERB
brj-24331	373	5	differences	difference	NOUN
brj-24331	373	6	between	between	ADP
brj-24331	373	7	cfd	cfd	NOUN
brj-24331	373	8	and	and	CCONJ
brj-24331	373	9	sim	sim	ADJ
brj-24331	373	10	predictions	prediction	NOUN
brj-24331	373	11	.	.	PUNCT
brj-24331	374	1	the	the	DET
brj-24331	374	2	cfd	cfd	NOUN
brj-24331	374	3	model	model	NOUN
brj-24331	374	4	shows	show	VERB
brj-24331	374	5	higher	high	ADJ
brj-24331	374	6	values	value	NOUN
brj-24331	374	7	for	for	ADP
brj-24331	374	8	co₂	co₂	NOUN
brj-24331	374	9	concentrations	concentration	NOUN
brj-24331	374	10	compared	compare	VERB
brj-24331	374	11	to	to	ADP
brj-24331	374	12	the	the	DET
brj-24331	374	13	sim	sim	ADJ
brj-24331	374	14	results	result	NOUN
brj-24331	374	15	,	,	PUNCT
brj-24331	374	16	particularly	particularly	ADV
brj-24331	374	17	at	at	ADP
brj-24331	374	18	higher	high	ADJ
brj-24331	374	19	abr	abr	NOUN
brj-24331	374	20	and	and	CCONJ
brj-24331	374	21	temperatures	temperature	NOUN
brj-24331	374	22	.	.	PUNCT
brj-24331	375	1	this	this	DET
brj-24331	375	2	discrepancy	discrepancy	NOUN
brj-24331	375	3	may	may	AUX
brj-24331	375	4	be	be	AUX
brj-24331	375	5	linked	link	VERB
brj-24331	375	6	to	to	ADP
brj-24331	375	7	homogeneous	homogeneous	ADJ
brj-24331	375	8	reactions	reaction	NOUN
brj-24331	375	9	.	.	PUNCT
brj-24331	376	1	ajorloo	ajorloo	PROPN
brj-24331	376	2	et	et	PROPN
brj-24331	376	3	al	al	PROPN
brj-24331	376	4	.	.	PROPN
brj-24331	377	1	(	(	PUNCT
brj-24331	377	2	2022	2022	NUM
brj-24331	377	3	)	)	PUNCT
brj-24331	377	4	emphasize	emphasize	VERB
brj-24331	377	5	the	the	DET
brj-24331	377	6	significance	significance	NOUN
brj-24331	377	7	of	of	ADP
brj-24331	377	8	homogeneous	homogeneous	ADJ
brj-24331	377	9	reactions	reaction	NOUN
brj-24331	377	10	in	in	ADP
brj-24331	377	11	determining	determine	VERB
brj-24331	377	12	co₂	co₂	NOUN
brj-24331	377	13	distribution	distribution	NOUN
brj-24331	377	14	.	.	PUNCT
brj-24331	378	1	the	the	DET
brj-24331	378	2	cfd	cfd	NOUN
brj-24331	378	3	model	model	NOUN
brj-24331	378	4	explicitly	explicitly	ADV
brj-24331	378	5	separates	separate	VERB
brj-24331	378	6	heterogeneous	heterogeneous	ADJ
brj-24331	378	7	reactions	reaction	NOUN
brj-24331	378	8	in	in	ADP
brj-24331	378	9	the	the	DET
brj-24331	378	10	solid	solid	ADJ
brj-24331	378	11	phase	phase	NOUN
brj-24331	378	12	from	from	ADP
brj-24331	378	13	homogeneous	homogeneous	ADJ
brj-24331	378	14	reactions	reaction	NOUN
brj-24331	378	15	in	in	ADP
brj-24331	378	16	the	the	DET
brj-24331	378	17	gas	gas	NOUN
brj-24331	378	18	phase	phase	NOUN
brj-24331	378	19	,	,	PUNCT
brj-24331	378	20	whereas	whereas	SCONJ
brj-24331	378	21	the	the	DET
brj-24331	378	22	sim	sim	ADJ
brj-24331	378	23	model	model	NOUN
brj-24331	378	24	assumes	assume	VERB
brj-24331	378	25	a	a	DET
brj-24331	378	26	uniform	uniform	ADJ
brj-24331	378	27	distribution	distribution	NOUN
brj-24331	378	28	of	of	ADP
brj-24331	378	29	solids	solid	NOUN
brj-24331	378	30	and	and	CCONJ
brj-24331	378	31	gases	gas	NOUN
brj-24331	378	32	throughout	throughout	ADP
brj-24331	378	33	the	the	DET
brj-24331	378	34	reactor	reactor	NOUN
brj-24331	378	35	.	.	PUNCT
brj-24331	379	1	these	these	DET
brj-24331	379	2	differences	difference	NOUN
brj-24331	379	3	in	in	ADP
brj-24331	379	4	phase	phase	NOUN
brj-24331	379	5	representation	representation	NOUN
brj-24331	379	6	may	may	AUX
brj-24331	379	7	lead	lead	VERB
brj-24331	379	8	to	to	ADP
brj-24331	379	9	variations	variation	NOUN
brj-24331	379	10	in	in	ADP
brj-24331	379	11	how	how	SCONJ
brj-24331	379	12	phase	phase	NOUN
brj-24331	379	13	interactions	interaction	NOUN
brj-24331	379	14	and	and	CCONJ
brj-24331	379	15	reaction	reaction	NOUN
brj-24331	379	16	dynamics	dynamic	NOUN
brj-24331	379	17	are	be	AUX
brj-24331	379	18	modeled	model	VERB
brj-24331	379	19	.	.	PUNCT
brj-24331	380	1	peer	peer	NOUN
brj-24331	380	2	-	-	PUNCT
brj-24331	380	3	reviewed	review	VERB
brj-24331	380	4	article	article	NOUN
brj-24331	380	5	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	380	6	sangaré	sangaré	PROPN
brj-24331	380	7	et	et	PROPN
brj-24331	380	8	al	al	PROPN
brj-24331	380	9	.	.	PROPN
brj-24331	381	1	(	(	PUNCT
brj-24331	381	2	2025	2025	NUM
brj-24331	381	3	)	)	PUNCT
brj-24331	381	4	.	.	PUNCT
brj-24331	382	1	“	"	PUNCT
brj-24331	382	2	pyrogasification	pyrogasification	NOUN
brj-24331	382	3	of	of	ADP
brj-24331	382	4	biomass	biomass	NOUN
brj-24331	382	5	,	,	PUNCT
brj-24331	382	6	”	"	PUNCT
brj-24331	382	7	bioresources	bioresource	NOUN
brj-24331	382	8	20(2	20(2	NUM
brj-24331	382	9	)	)	PUNCT
brj-24331	382	10	,	,	PUNCT
brj-24331	382	11	2844	2844	NUM
brj-24331	382	12	-	-	SYM
brj-24331	382	13	2870	2870	NUM
brj-24331	382	14	.	.	PUNCT
brj-24331	383	1	2866	2866	NUM
brj-24331	383	2	in	in	ADP
brj-24331	383	3	summary	summary	NOUN
brj-24331	383	4	,	,	PUNCT
brj-24331	383	5	the	the	DET
brj-24331	383	6	formation	formation	NOUN
brj-24331	383	7	of	of	ADP
brj-24331	383	8	₂	₂	NUM
brj-24331	383	9	and	and	CCONJ
brj-24331	383	10	c	c	NOUN
brj-24331	383	11	₄	₄	NUM
brj-24331	383	12	primarily	primarily	ADV
brj-24331	383	13	arises	arise	VERB
brj-24331	383	14	from	from	ADP
brj-24331	383	15	heterogeneous	heterogeneous	ADJ
brj-24331	383	16	reactions	reaction	NOUN
brj-24331	383	17	,	,	PUNCT
brj-24331	383	18	with	with	ADP
brj-24331	383	19	both	both	DET
brj-24331	383	20	models	model	NOUN
brj-24331	383	21	showing	show	VERB
brj-24331	383	22	similar	similar	ADJ
brj-24331	383	23	trends	trend	NOUN
brj-24331	383	24	.	.	PUNCT
brj-24331	384	1	in	in	ADP
brj-24331	384	2	contrast	contrast	NOUN
brj-24331	384	3	,	,	PUNCT
brj-24331	384	4	while	while	SCONJ
brj-24331	384	5	co	co	NOUN
brj-24331	384	6	is	be	AUX
brj-24331	384	7	mainly	mainly	ADV
brj-24331	384	8	generated	generate	VERB
brj-24331	384	9	through	through	ADP
brj-24331	384	10	heterogeneous	heterogeneous	ADJ
brj-24331	384	11	reactions	reaction	NOUN
brj-24331	384	12	,	,	PUNCT
brj-24331	384	13	it	it	PRON
brj-24331	384	14	is	be	AUX
brj-24331	384	15	subsequently	subsequently	ADV
brj-24331	384	16	consumed	consume	VERB
brj-24331	384	17	during	during	ADP
brj-24331	384	18	homogeneous	homogeneous	ADJ
brj-24331	384	19	reactions	reaction	NOUN
brj-24331	384	20	to	to	PART
brj-24331	384	21	form	form	VERB
brj-24331	384	22	co₂.	co₂.	NOUN
brj-24331	384	23	the	the	DET
brj-24331	384	24	discrepancies	discrepancy	NOUN
brj-24331	384	25	in	in	ADP
brj-24331	384	26	co	co	NOUN
brj-24331	384	27	and	and	CCONJ
brj-24331	384	28	co₂	co₂	NOUN
brj-24331	384	29	trends	trend	NOUN
brj-24331	384	30	between	between	ADP
brj-24331	384	31	the	the	DET
brj-24331	384	32	models	model	NOUN
brj-24331	384	33	likely	likely	ADV
brj-24331	384	34	stem	stem	VERB
brj-24331	384	35	from	from	ADP
brj-24331	384	36	differences	difference	NOUN
brj-24331	384	37	in	in	ADP
brj-24331	384	38	the	the	DET
brj-24331	384	39	treatment	treatment	NOUN
brj-24331	384	40	of	of	ADP
brj-24331	384	41	homogeneous	homogeneous	ADJ
brj-24331	384	42	reactions	reaction	NOUN
brj-24331	384	43	,	,	PUNCT
brj-24331	384	44	particularly	particularly	ADV
brj-24331	384	45	co	co	NOUN
brj-24331	384	46	oxidation	oxidation	NOUN
brj-24331	384	47	,	,	PUNCT
brj-24331	384	48	and	and	CCONJ
brj-24331	384	49	the	the	DET
brj-24331	384	50	representation	representation	NOUN
brj-24331	384	51	of	of	ADP
brj-24331	384	52	phase	phase	NOUN
brj-24331	384	53	interactions	interaction	NOUN
brj-24331	384	54	in	in	ADP
brj-24331	384	55	each	each	DET
brj-24331	384	56	modeling	modeling	NOUN
brj-24331	384	57	approach	approach	NOUN
brj-24331	384	58	.	.	PUNCT
brj-24331	385	1	conclusions	conclusion	NOUN
brj-24331	385	2	1	1	X
brj-24331	385	3	.	.	PUNCT
brj-24331	386	1	this	this	DET
brj-24331	386	2	study	study	NOUN
brj-24331	386	3	has	have	AUX
brj-24331	386	4	provided	provide	VERB
brj-24331	386	5	a	a	DET
brj-24331	386	6	detailed	detailed	ADJ
brj-24331	386	7	comparative	comparative	ADJ
brj-24331	386	8	analysis	analysis	NOUN
brj-24331	386	9	of	of	ADP
brj-24331	386	10	computational	computational	ADJ
brj-24331	386	11	fluid	fluid	ADJ
brj-24331	386	12	dynamics	dynamic	NOUN
brj-24331	386	13	(	(	PUNCT
brj-24331	386	14	cfd	cfd	NOUN
brj-24331	386	15	)	)	PUNCT
brj-24331	386	16	and	and	CCONJ
brj-24331	386	17	process	process	NOUN
brj-24331	386	18	simulation	simulation	NOUN
brj-24331	386	19	(	(	PUNCT
brj-24331	386	20	sim	sim	NOUN
brj-24331	386	21	)	)	PUNCT
brj-24331	386	22	approaches	approach	NOUN
brj-24331	386	23	for	for	ADP
brj-24331	386	24	modeling	model	VERB
brj-24331	386	25	biomass	biomass	NOUN
brj-24331	386	26	pyro	pyro	NOUN
brj-24331	386	27	-	-	PUNCT
brj-24331	386	28	gasification	gasification	NOUN
brj-24331	386	29	,	,	PUNCT
brj-24331	386	30	supported	support	VERB
brj-24331	386	31	by	by	ADP
brj-24331	386	32	experimental	experimental	ADJ
brj-24331	386	33	data	datum	NOUN
brj-24331	386	34	from	from	ADP
brj-24331	386	35	agave	agave	NOUN
brj-24331	386	36	bagasse	bagasse	NOUN
brj-24331	386	37	.	.	PUNCT
brj-24331	387	1	the	the	DET
brj-24331	387	2	findings	finding	NOUN
brj-24331	387	3	emphasize	emphasize	VERB
brj-24331	387	4	the	the	DET
brj-24331	387	5	complementary	complementary	ADJ
brj-24331	387	6	strengths	strength	NOUN
brj-24331	387	7	of	of	ADP
brj-24331	387	8	these	these	DET
brj-24331	387	9	methodologies	methodology	NOUN
brj-24331	387	10	.	.	PUNCT
brj-24331	388	1	indeed	indeed	ADV
brj-24331	388	2	,	,	PUNCT
brj-24331	388	3	concerning	concern	VERB
brj-24331	388	4	modeling	modeling	NOUN
brj-24331	388	5	performance	performance	NOUN
brj-24331	388	6	and	and	CCONJ
brj-24331	388	7	applicability	applicability	NOUN
brj-24331	388	8	,	,	PUNCT
brj-24331	388	9	cfd	cfd	NOUN
brj-24331	388	10	proved	prove	VERB
brj-24331	388	11	superior	superior	ADJ
brj-24331	388	12	for	for	ADP
brj-24331	388	13	non	non	ADJ
brj-24331	388	14	-	-	ADJ
brj-24331	388	15	isothermal	isothermal	ADJ
brj-24331	388	16	conditions	condition	NOUN
brj-24331	388	17	(	(	PUNCT
brj-24331	388	18	700	700	NUM
brj-24331	388	19	to	to	PART
brj-24331	388	20	1000	1000	NUM
brj-24331	388	21	°	°	NOUN
brj-24331	388	22	c	c	NOUN
brj-24331	388	23	)	)	PUNCT
brj-24331	388	24	,	,	PUNCT
brj-24331	388	25	accurately	accurately	ADV
brj-24331	388	26	capturing	capture	VERB
brj-24331	388	27	heat	heat	NOUN
brj-24331	388	28	and	and	CCONJ
brj-24331	388	29	mass	mass	NOUN
brj-24331	388	30	transfer	transfer	NOUN
brj-24331	388	31	dynamics	dynamic	NOUN
brj-24331	388	32	and	and	CCONJ
brj-24331	388	33	localized	localized	ADJ
brj-24331	388	34	reactions	reaction	NOUN
brj-24331	388	35	,	,	PUNCT
brj-24331	388	36	which	which	PRON
brj-24331	388	37	are	be	AUX
brj-24331	388	38	critical	critical	ADJ
brj-24331	388	39	for	for	ADP
brj-24331	388	40	understanding	understand	VERB
brj-24331	388	41	reactor	reactor	NOUN
brj-24331	388	42	behavior	behavior	NOUN
brj-24331	388	43	under	under	ADP
brj-24331	388	44	temperature	temperature	NOUN
brj-24331	388	45	gradients	gradient	NOUN
brj-24331	388	46	,	,	PUNCT
brj-24331	388	47	while	while	SCONJ
brj-24331	388	48	sim	sim	ADJ
brj-24331	388	49	demonstrated	demonstrate	VERB
brj-24331	388	50	better	well	ADJ
brj-24331	388	51	alignment	alignment	NOUN
brj-24331	388	52	with	with	ADP
brj-24331	388	53	experimental	experimental	ADJ
brj-24331	388	54	yields	yield	NOUN
brj-24331	388	55	under	under	ADP
brj-24331	388	56	isothermal	isothermal	ADJ
brj-24331	388	57	conditions	condition	NOUN
brj-24331	388	58	(	(	PUNCT
brj-24331	388	59	900	900	NUM
brj-24331	388	60	to	to	PART
brj-24331	388	61	950	950	NUM
brj-24331	388	62	°	°	NOUN
brj-24331	388	63	c	c	NOUN
brj-24331	388	64	)	)	PUNCT
brj-24331	388	65	,	,	PUNCT
brj-24331	388	66	where	where	SCONJ
brj-24331	388	67	equilibrium	equilibrium	NOUN
brj-24331	388	68	-	-	PUNCT
brj-24331	388	69	based	base	VERB
brj-24331	388	70	models	model	NOUN
brj-24331	388	71	provide	provide	VERB
brj-24331	388	72	reliable	reliable	ADJ
brj-24331	388	73	predictions	prediction	NOUN
brj-24331	388	74	.	.	PUNCT
brj-24331	389	1	2	2	X
brj-24331	389	2	.	.	X
brj-24331	389	3	sensitivity	sensitivity	NOUN
brj-24331	389	4	analysis	analysis	NOUN
brj-24331	389	5	showed	show	VERB
brj-24331	389	6	the	the	DET
brj-24331	389	7	influence	influence	NOUN
brj-24331	389	8	of	of	ADP
brj-24331	389	9	temperature	temperature	NOUN
brj-24331	389	10	and	and	CCONJ
brj-24331	389	11	abr	abr	VERB
brj-24331	389	12	on	on	ADP
brj-24331	389	13	overall	overall	ADJ
brj-24331	389	14	product	product	NOUN
brj-24331	389	15	yield	yield	NOUN
brj-24331	389	16	distributions	distribution	NOUN
brj-24331	389	17	and	and	CCONJ
brj-24331	389	18	non	non	ADJ
brj-24331	389	19	-	-	ADJ
brj-24331	389	20	condensable	condensable	ADJ
brj-24331	389	21	gas	gas	NOUN
brj-24331	389	22	compositions	composition	NOUN
brj-24331	389	23	,	,	PUNCT
brj-24331	389	24	demonstrating	demonstrate	VERB
brj-24331	389	25	how	how	SCONJ
brj-24331	389	26	these	these	DET
brj-24331	389	27	parameters	parameter	NOUN
brj-24331	389	28	can	can	AUX
brj-24331	389	29	be	be	AUX
brj-24331	389	30	used	use	VERB
brj-24331	389	31	to	to	PART
brj-24331	389	32	optimize	optimize	VERB
brj-24331	389	33	syngas	syngas	NOUN
brj-24331	389	34	production	production	NOUN
brj-24331	389	35	.	.	PUNCT
brj-24331	390	1	furthermore	furthermore	ADV
brj-24331	390	2	,	,	PUNCT
brj-24331	390	3	the	the	DET
brj-24331	390	4	results	result	NOUN
brj-24331	390	5	underline	underline	VERB
brj-24331	390	6	the	the	DET
brj-24331	390	7	importance	importance	NOUN
brj-24331	390	8	of	of	ADP
brj-24331	390	9	selecting	select	VERB
brj-24331	390	10	modeling	modeling	NOUN
brj-24331	390	11	methods	method	NOUN
brj-24331	390	12	based	base	VERB
brj-24331	390	13	on	on	ADP
brj-24331	390	14	process	process	NOUN
brj-24331	390	15	conditions	condition	NOUN
brj-24331	390	16	.	.	PUNCT
brj-24331	391	1	3	3	X
brj-24331	391	2	.	.	X
brj-24331	391	3	for	for	ADP
brj-24331	391	4	instance	instance	NOUN
brj-24331	391	5	,	,	PUNCT
brj-24331	391	6	cfd	cfd	NOUN
brj-24331	391	7	is	be	AUX
brj-24331	391	8	highly	highly	ADV
brj-24331	391	9	suitable	suitable	ADJ
brj-24331	391	10	for	for	ADP
brj-24331	391	11	reactors	reactor	NOUN
brj-24331	391	12	with	with	ADP
brj-24331	391	13	thermal	thermal	ADJ
brj-24331	391	14	gradients	gradient	NOUN
brj-24331	391	15	,	,	PUNCT
brj-24331	391	16	while	while	SCONJ
brj-24331	391	17	sim	sim	ADJ
brj-24331	391	18	offers	offer	VERB
brj-24331	391	19	reliable	reliable	ADJ
brj-24331	391	20	performance	performance	NOUN
brj-24331	391	21	in	in	ADP
brj-24331	391	22	systems	system	NOUN
brj-24331	391	23	operating	operate	VERB
brj-24331	391	24	at	at	ADP
brj-24331	391	25	near	near	ADP
brj-24331	391	26	-	-	PUNCT
brj-24331	391	27	equilibrium	equilibrium	NOUN
brj-24331	391	28	conditions	condition	NOUN
brj-24331	391	29	.	.	PUNCT
brj-24331	392	1	a	a	DET
brj-24331	392	2	hybrid	hybrid	ADJ
brj-24331	392	3	modeling	modeling	NOUN
brj-24331	392	4	approach	approach	NOUN
brj-24331	392	5	combining	combine	VERB
brj-24331	392	6	the	the	DET
brj-24331	392	7	detailed	detailed	ADJ
brj-24331	392	8	insights	insight	NOUN
brj-24331	392	9	of	of	ADP
brj-24331	392	10	cfd	cfd	NOUN
brj-24331	392	11	with	with	ADP
brj-24331	392	12	the	the	DET
brj-24331	392	13	scalability	scalability	NOUN
brj-24331	392	14	of	of	ADP
brj-24331	392	15	sim	sim	NOUN
brj-24331	392	16	could	could	AUX
brj-24331	392	17	facilitate	facilitate	VERB
brj-24331	392	18	the	the	DET
brj-24331	392	19	development	development	NOUN
brj-24331	392	20	of	of	ADP
brj-24331	392	21	more	more	ADV
brj-24331	392	22	efficient	efficient	ADJ
brj-24331	392	23	biomass	biomass	NOUN
brj-24331	392	24	conversion	conversion	NOUN
brj-24331	392	25	technologies	technology	NOUN
brj-24331	392	26	.	.	PUNCT
brj-24331	393	1	4	4	X
brj-24331	393	2	.	.	PUNCT
brj-24331	393	3	by	by	ADP
brj-24331	393	4	leveraging	leverage	VERB
brj-24331	393	5	the	the	DET
brj-24331	393	6	complementary	complementary	ADJ
brj-24331	393	7	capabilities	capability	NOUN
brj-24331	393	8	of	of	ADP
brj-24331	393	9	cfd	cfd	NOUN
brj-24331	393	10	and	and	CCONJ
brj-24331	393	11	sim	sim	NOUN
brj-24331	393	12	,	,	PUNCT
brj-24331	393	13	researchers	researcher	NOUN
brj-24331	393	14	and	and	CCONJ
brj-24331	393	15	industry	industry	NOUN
brj-24331	393	16	practitioners	practitioner	NOUN
brj-24331	393	17	can	can	AUX
brj-24331	393	18	address	address	VERB
brj-24331	393	19	critical	critical	ADJ
brj-24331	393	20	challenges	challenge	NOUN
brj-24331	393	21	in	in	ADP
brj-24331	393	22	biomass	biomass	NOUN
brj-24331	393	23	pyro	pyro	NOUN
brj-24331	393	24	-	-	PUNCT
brj-24331	393	25	gasification	gasification	NOUN
brj-24331	393	26	,	,	PUNCT
brj-24331	393	27	accelerating	accelerate	VERB
brj-24331	393	28	the	the	DET
brj-24331	393	29	development	development	NOUN
brj-24331	393	30	of	of	ADP
brj-24331	393	31	sustainable	sustainable	ADJ
brj-24331	393	32	and	and	CCONJ
brj-24331	393	33	efficient	efficient	ADJ
brj-24331	393	34	energy	energy	NOUN
brj-24331	393	35	solutions	solution	NOUN
brj-24331	393	36	.	.	PUNCT
brj-24331	394	1	acknowledgments	acknowledgment	NOUN
brj-24331	394	2	the	the	DET
brj-24331	394	3	authors	author	NOUN
brj-24331	394	4	express	express	VERB
brj-24331	394	5	their	their	PRON
brj-24331	394	6	gratitude	gratitude	NOUN
brj-24331	394	7	to	to	ADP
brj-24331	394	8	conacyt	conacyt	PROPN
brj-24331	394	9	(	(	PUNCT
brj-24331	394	10	consejo	consejo	PROPN
brj-24331	394	11	nacional	nacional	PROPN
brj-24331	394	12	de	de	ADP
brj-24331	394	13	ciencia	ciencia	PROPN
brj-24331	394	14	y	y	PROPN
brj-24331	394	15	tecnología	tecnología	PROPN
brj-24331	394	16	de	de	X
brj-24331	394	17	méxico	méxico	PROPN
brj-24331	394	18	)	)	PUNCT
brj-24331	394	19	for	for	ADP
brj-24331	394	20	awarding	award	VERB
brj-24331	394	21	scholarship	scholarship	NOUN
brj-24331	394	22	no	no	INTJ
brj-24331	394	23	.	.	PROPN
brj-24331	394	24	659624	659624	NUM
brj-24331	394	25	,	,	PUNCT
brj-24331	394	26	which	which	PRON
brj-24331	394	27	provided	provide	VERB
brj-24331	394	28	essential	essential	ADJ
brj-24331	394	29	support	support	NOUN
brj-24331	394	30	for	for	ADP
brj-24331	394	31	this	this	DET
brj-24331	394	32	research	research	NOUN
brj-24331	394	33	.	.	PUNCT
brj-24331	395	1	we	we	PRON
brj-24331	395	2	also	also	ADV
brj-24331	395	3	acknowledge	acknowledge	VERB
brj-24331	395	4	cirad	cirad	ADJ
brj-24331	395	5	-	-	PUNCT
brj-24331	395	6	biowooeb	biowooeb	PROPN
brj-24331	395	7	teams	team	NOUN
brj-24331	395	8	(	(	PUNCT
brj-24331	395	9	france	france	PROPN
brj-24331	395	10	)	)	PUNCT
brj-24331	395	11	for	for	ADP
brj-24331	395	12	their	their	PRON
brj-24331	395	13	technical	technical	ADJ
brj-24331	395	14	support	support	NOUN
brj-24331	395	15	and	and	CCONJ
brj-24331	395	16	the	the	DET
brj-24331	395	17	loan	loan	NOUN
brj-24331	395	18	of	of	ADP
brj-24331	395	19	equipment	equipment	NOUN
brj-24331	395	20	used	use	VERB
brj-24331	395	21	in	in	ADP
brj-24331	395	22	the	the	DET
brj-24331	395	23	analyses	analysis	NOUN
brj-24331	395	24	.	.	PUNCT
brj-24331	396	1	additionally	additionally	ADV
brj-24331	396	2	,	,	PUNCT
brj-24331	396	3	we	we	PRON
brj-24331	396	4	thank	thank	VERB
brj-24331	396	5	icare	icare	NOUN
brj-24331	396	6	-	-	PUNCT
brj-24331	396	7	cnrs	cnrs	NOUN
brj-24331	396	8	(	(	PUNCT
brj-24331	396	9	france	france	PROPN
brj-24331	396	10	)	)	PUNCT
brj-24331	396	11	for	for	ADP
brj-24331	396	12	providing	provide	VERB
brj-24331	396	13	laboratory	laboratory	NOUN
brj-24331	396	14	equipment	equipment	NOUN
brj-24331	396	15	and	and	CCONJ
brj-24331	396	16	technical	technical	ADJ
brj-24331	396	17	assistance	assistance	NOUN
brj-24331	396	18	,	,	PUNCT
brj-24331	396	19	as	as	ADV
brj-24331	396	20	well	well	ADV
brj-24331	396	21	as	as	ADP
brj-24331	396	22	the	the	DET
brj-24331	396	23	région	région	NOUN
brj-24331	396	24	centre	centre	NOUN
brj-24331	396	25	-	-	PUNCT
brj-24331	396	26	val	val	X
brj-24331	396	27	de	de	X
brj-24331	396	28	loire	loire	NOUN
brj-24331	396	29	for	for	ADP
brj-24331	396	30	financial	financial	ADJ
brj-24331	396	31	support	support	NOUN
brj-24331	396	32	through	through	ADP
brj-24331	396	33	the	the	DET
brj-24331	396	34	fite	fite	PROPN
brj-24331	396	35	federation	federation	PROPN
brj-24331	396	36	.	.	PUNCT
brj-24331	397	1	references	reference	NOUN
brj-24331	397	2	cited	cite	VERB
brj-24331	397	3	ajorloo	ajorloo	NOUN
brj-24331	397	4	,	,	PUNCT
brj-24331	397	5	m.	m.	NOUN
brj-24331	397	6	,	,	PUNCT
brj-24331	397	7	ghodrat	ghodrat	NOUN
brj-24331	397	8	,	,	PUNCT
brj-24331	397	9	m.	m.	NOUN
brj-24331	397	10	,	,	PUNCT
brj-24331	397	11	scott	scott	PROPN
brj-24331	397	12	,	,	PUNCT
brj-24331	397	13	j.	j.	PROPN
brj-24331	397	14	,	,	PUNCT
brj-24331	397	15	and	and	CCONJ
brj-24331	397	16	strezov	strezov	NOUN
brj-24331	397	17	,	,	PUNCT
brj-24331	397	18	v.	v.	CCONJ
brj-24331	397	19	(	(	PUNCT
brj-24331	397	20	0	0	NUM
brj-24331	397	21	)	)	PUNCT
brj-24331	397	22	.	.	PUNCT
brj-24331	398	1	“	"	PUNCT
brj-24331	398	2	recent	recent	ADJ
brj-24331	398	3	advances	advance	NOUN
brj-24331	398	4	in	in	ADP
brj-24331	398	5	thermodynamic	thermodynamic	ADJ
brj-24331	398	6	analysis	analysis	NOUN
brj-24331	398	7	of	of	ADP
brj-24331	398	8	biomass	biomass	NOUN
brj-24331	398	9	gasification	gasification	NOUN
brj-24331	398	10	:	:	PUNCT
brj-24331	398	11	a	a	DET
brj-24331	398	12	review	review	NOUN
brj-24331	398	13	on	on	ADP
brj-24331	398	14	numerical	numerical	ADJ
brj-24331	398	15	modelling	modelling	NOUN
brj-24331	398	16	and	and	CCONJ
brj-24331	398	17	simulation	simulation	NOUN
brj-24331	398	18	,	,	PUNCT
brj-24331	398	19	”	"	PUNCT
brj-24331	398	20	journal	journal	NOUN
brj-24331	398	21	of	of	ADP
brj-24331	398	22	the	the	DET
brj-24331	398	23	energy	energy	NOUN
brj-24331	398	24	institute	institute	NOUN
brj-24331	398	25	102	102	NUM
brj-24331	398	26	,	,	PUNCT
brj-24331	398	27	395	395	NUM
brj-24331	398	28	-	-	SYM
brj-24331	398	29	419	419	NUM
brj-24331	398	30	.	.	PUNCT
brj-24331	399	1	doi	doi	NOUN
brj-24331	399	2	:	:	PUNCT
brj-24331	399	3	10.1016	10.1016	NUM
brj-24331	399	4	/	/	SYM
brj-24331	399	5	j.joei.2022.05.003	j.joei.2022.05.003	PROPN
brj-24331	399	6	al	al	PROPN
brj-24331	399	7	-	-	PROPN
brj-24331	399	8	zareer	zareer	PROPN
brj-24331	399	9	,	,	PUNCT
brj-24331	399	10	m.	m.	NOUN
brj-24331	399	11	,	,	PUNCT
brj-24331	399	12	dincer	dincer	NOUN
brj-24331	399	13	,	,	PUNCT
brj-24331	399	14	i.	i.	NOUN
brj-24331	399	15	,	,	PUNCT
brj-24331	399	16	and	and	CCONJ
brj-24331	399	17	rosen	rosen	PROPN
brj-24331	399	18	,	,	PUNCT
brj-24331	399	19	m.	m.	NOUN
brj-24331	399	20	a.	a.	PROPN
brj-24331	400	1	(	(	PUNCT
brj-24331	400	2	0	0	NUM
brj-24331	400	3	)	)	PUNCT
brj-24331	400	4	.	.	PUNCT
brj-24331	401	1	“	"	PUNCT
brj-24331	401	2	effects	effect	NOUN
brj-24331	401	3	of	of	ADP
brj-24331	401	4	various	various	ADJ
brj-24331	401	5	gasification	gasification	NOUN
brj-24331	401	6	parameters	parameter	NOUN
brj-24331	401	7	and	and	CCONJ
brj-24331	401	8	operating	operating	NOUN
brj-24331	401	9	conditions	condition	NOUN
brj-24331	401	10	on	on	ADP
brj-24331	401	11	syngas	syngas	NOUN
brj-24331	401	12	and	and	CCONJ
brj-24331	401	13	hydrogen	hydrogen	NOUN
brj-24331	401	14	production	production	NOUN
brj-24331	401	15	,	,	PUNCT
brj-24331	401	16	”	"	PUNCT
brj-24331	401	17	chemical	chemical	ADJ
brj-24331	401	18	peer	peer	NOUN
brj-24331	401	19	-	-	PUNCT
brj-24331	401	20	reviewed	review	VERB
brj-24331	401	21	article	article	NOUN
brj-24331	401	22	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	401	23	sangaré	sangaré	PROPN
brj-24331	401	24	et	et	PROPN
brj-24331	401	25	al	al	PROPN
brj-24331	401	26	.	.	PROPN
brj-24331	402	1	(	(	PUNCT
brj-24331	402	2	2025	2025	NUM
brj-24331	402	3	)	)	PUNCT
brj-24331	402	4	.	.	PUNCT
brj-24331	403	1	“	"	PUNCT
brj-24331	403	2	pyrogasification	pyrogasification	NOUN
brj-24331	403	3	of	of	ADP
brj-24331	403	4	biomass	biomass	NOUN
brj-24331	403	5	,	,	PUNCT
brj-24331	403	6	”	"	PUNCT
brj-24331	403	7	bioresources	bioresource	NOUN
brj-24331	403	8	20(2	20(2	NUM
brj-24331	403	9	)	)	PUNCT
brj-24331	403	10	,	,	PUNCT
brj-24331	403	11	2844	2844	NUM
brj-24331	403	12	-	-	SYM
brj-24331	403	13	2870	2870	NUM
brj-24331	403	14	.	.	PUNCT
brj-24331	404	1	2867	2867	NUM
brj-24331	404	2	engineering	engineering	NOUN
brj-24331	404	3	research	research	NOUN
brj-24331	404	4	and	and	CCONJ
brj-24331	404	5	design	design	NOUN
brj-24331	404	6	115	115	NUM
brj-24331	404	7	,	,	PUNCT
brj-24331	404	8	1	1	NUM
brj-24331	404	9	-	-	SYM
brj-24331	404	10	18	18	NUM
brj-24331	404	11	.	.	PUNCT
brj-24331	404	12	doi	doi	NOUN
brj-24331	404	13	:	:	PUNCT
brj-24331	404	14	10.1016	10.1016	NUM
brj-24331	404	15	/	/	SYM
brj-24331	404	16	j.cherd.2016.09.009	j.cherd.2016.09.009	PROPN
brj-24331	404	17	ascher	ascher	PROPN
brj-24331	404	18	,	,	PUNCT
brj-24331	404	19	s.	s.	PROPN
brj-24331	404	20	,	,	PUNCT
brj-24331	404	21	watson	watson	PROPN
brj-24331	404	22	,	,	PUNCT
brj-24331	404	23	i.	i.	PROPN
brj-24331	404	24	,	,	PUNCT
brj-24331	404	25	and	and	CCONJ
brj-24331	404	26	you	you	PRON
brj-24331	404	27	,	,	PUNCT
brj-24331	404	28	s.	s.	PROPN
brj-24331	404	29	(	(	PUNCT
brj-24331	404	30	0	0	NUM
brj-24331	404	31	)	)	PUNCT
brj-24331	404	32	.	.	PUNCT
brj-24331	405	1	“	"	PUNCT
brj-24331	405	2	machine	machine	NOUN
brj-24331	405	3	learning	learning	NOUN
brj-24331	405	4	methods	method	NOUN
brj-24331	405	5	for	for	ADP
brj-24331	405	6	modelling	model	VERB
brj-24331	405	7	the	the	DET
brj-24331	405	8	gasification	gasification	NOUN
brj-24331	405	9	and	and	CCONJ
brj-24331	405	10	pyrolysis	pyrolysis	NOUN
brj-24331	405	11	of	of	ADP
brj-24331	405	12	biomass	biomass	NOUN
brj-24331	405	13	and	and	CCONJ
brj-24331	405	14	waste	waste	NOUN
brj-24331	405	15	,	,	PUNCT
brj-24331	405	16	”	"	PUNCT
brj-24331	405	17	renewable	renewable	ADJ
brj-24331	405	18	and	and	CCONJ
brj-24331	405	19	sustainable	sustainable	ADJ
brj-24331	405	20	energy	energy	NOUN
brj-24331	405	21	reviews	review	NOUN
brj-24331	405	22	155	155	NUM
brj-24331	405	23	,	,	PUNCT
brj-24331	405	24	article	article	NOUN
brj-24331	405	25	111902	111902	NUM
brj-24331	405	26	.	.	PUNCT
brj-24331	406	1	doi	doi	NOUN
brj-24331	406	2	:	:	PUNCT
brj-24331	406	3	10.1016	10.1016	NUM
brj-24331	406	4	/	/	SYM
brj-24331	406	5	j.rser.2021.111902	j.rser.2021.111902	PROPN
brj-24331	406	6	basu	basu	PROPN
brj-24331	406	7	,	,	PUNCT
brj-24331	406	8	p.	p.	NOUN
brj-24331	406	9	(	(	PUNCT
brj-24331	406	10	2018	2018	NUM
brj-24331	406	11	)	)	PUNCT
brj-24331	406	12	.	.	PUNCT
brj-24331	407	1	biomass	biomass	NOUN
brj-24331	407	2	gasification	gasification	NOUN
brj-24331	407	3	,	,	PUNCT
brj-24331	407	4	pyrolysis	pyrolysis	NOUN
brj-24331	407	5	and	and	CCONJ
brj-24331	407	6	torrefaction	torrefaction	NOUN
brj-24331	407	7	:	:	PUNCT
brj-24331	407	8	practical	practical	ADJ
brj-24331	407	9	design	design	NOUN
brj-24331	407	10	and	and	CCONJ
brj-24331	407	11	theory	theory	NOUN
brj-24331	407	12	,	,	PUNCT
brj-24331	407	13	academic	academic	ADJ
brj-24331	407	14	press	press	NOUN
brj-24331	407	15	,	,	PUNCT
brj-24331	407	16	cambridge	cambridge	PROPN
brj-24331	407	17	,	,	PUNCT
brj-24331	407	18	ma	ma	PROPN
brj-24331	407	19	,	,	PUNCT
brj-24331	407	20	usa	usa	PROPN
brj-24331	407	21	.	.	PROPN
brj-24331	407	22	bear	bear	PROPN
brj-24331	407	23	,	,	PUNCT
brj-24331	407	24	j.	j.	PROPN
brj-24331	407	25	,	,	PUNCT
brj-24331	407	26	and	and	CCONJ
brj-24331	407	27	braester	braester	ADV
brj-24331	407	28	,	,	PUNCT
brj-24331	407	29	c.	c.	PROPN
brj-24331	407	30	(	(	PUNCT
brj-24331	407	31	1972	1972	NUM
brj-24331	407	32	)	)	PUNCT
brj-24331	407	33	.	.	PUNCT
brj-24331	408	1	“	"	PUNCT
brj-24331	408	2	on	on	ADP
brj-24331	408	3	the	the	DET
brj-24331	408	4	flow	flow	NOUN
brj-24331	408	5	of	of	ADP
brj-24331	408	6	two	two	NUM
brj-24331	408	7	immscible	immscible	ADJ
brj-24331	408	8	fluids	fluid	NOUN
brj-24331	408	9	in	in	ADP
brj-24331	408	10	fractured	fractured	ADJ
brj-24331	408	11	porous	porous	ADJ
brj-24331	408	12	media	medium	NOUN
brj-24331	408	13	,	,	PUNCT
brj-24331	408	14	”	"	PUNCT
brj-24331	408	15	in	in	ADP
brj-24331	408	16	:	:	PUNCT
brj-24331	408	17	developments	development	NOUN
brj-24331	408	18	in	in	ADP
brj-24331	408	19	soil	soil	NOUN
brj-24331	408	20	science	science	NOUN
brj-24331	408	21	,	,	PUNCT
brj-24331	408	22	vol	vol	NOUN
brj-24331	408	23	.	.	PROPN
brj-24331	408	24	2	2	NUM
brj-24331	408	25	,	,	PUNCT
brj-24331	408	26	elsevier	elsevier	NOUN
brj-24331	408	27	,	,	PUNCT
brj-24331	408	28	pp	pp	ADJ
brj-24331	408	29	.	.	PUNCT
brj-24331	408	30	177	177	NUM
brj-24331	408	31	-	-	SYM
brj-24331	408	32	202	202	NUM
brj-24331	408	33	.	.	PUNCT
brj-24331	408	34	doi	doi	NOUN
brj-24331	408	35	:	:	PUNCT
brj-24331	408	36	10.1016	10.1016	NUM
brj-24331	408	37	/	/	SYM
brj-24331	408	38	s0166	s0166	PROPN
brj-24331	408	39	-	-	PUNCT
brj-24331	408	40	2481(08)70538	2481(08)70538	NUM
brj-24331	408	41	-	-	SYM
brj-24331	408	42	5	5	NUM
brj-24331	408	43	beheshti	beheshti	NOUN
brj-24331	408	44	,	,	PUNCT
brj-24331	408	45	s.	s.	PROPN
brj-24331	408	46	,	,	PUNCT
brj-24331	408	47	ghassemi	ghassemi	PROPN
brj-24331	408	48	,	,	PUNCT
brj-24331	408	49	h.	h.	PROPN
brj-24331	408	50	,	,	PUNCT
brj-24331	408	51	and	and	CCONJ
brj-24331	408	52	shahsavan	shahsavan	PROPN
brj-24331	408	53	-	-	PUNCT
brj-24331	408	54	markadeh	markadeh	PROPN
brj-24331	408	55	,	,	PUNCT
brj-24331	408	56	r.	r.	PROPN
brj-24331	408	57	(	(	PUNCT
brj-24331	408	58	0	0	NUM
brj-24331	408	59	)	)	PUNCT
brj-24331	408	60	.	.	PUNCT
brj-24331	409	1	“	"	PUNCT
brj-24331	409	2	process	process	NOUN
brj-24331	409	3	simulation	simulation	NOUN
brj-24331	409	4	of	of	ADP
brj-24331	409	5	biomass	biomass	NOUN
brj-24331	409	6	gasification	gasification	NOUN
brj-24331	409	7	in	in	ADP
brj-24331	409	8	a	a	DET
brj-24331	409	9	bubbling	bubble	VERB
brj-24331	409	10	fluidized	fluidize	VERB
brj-24331	409	11	bed	bed	NOUN
brj-24331	409	12	reactor	reactor	NOUN
brj-24331	409	13	,	,	PUNCT
brj-24331	409	14	”	"	PUNCT
brj-24331	409	15	energy	energy	NOUN
brj-24331	409	16	conversion	conversion	NOUN
brj-24331	409	17	and	and	CCONJ
brj-24331	409	18	management	management	NOUN
brj-24331	409	19	94	94	NUM
brj-24331	409	20	,	,	PUNCT
brj-24331	409	21	345	345	NUM
brj-24331	409	22	-	-	SYM
brj-24331	409	23	352	352	NUM
brj-24331	409	24	.	.	PUNCT
brj-24331	410	1	doi	doi	NOUN
brj-24331	410	2	:	:	PUNCT
brj-24331	410	3	10.1016	10.1016	NUM
brj-24331	410	4	/	/	SYM
brj-24331	410	5	j.enconman.2015.01.060	j.enconman.2015.01.060	NOUN
brj-24331	410	6	debiagi	debiagi	NOUN
brj-24331	410	7	,	,	PUNCT
brj-24331	410	8	p.	p.	PROPN
brj-24331	410	9	e.	e.	PROPN
brj-24331	410	10	a.	a.	PROPN
brj-24331	410	11	,	,	PUNCT
brj-24331	410	12	pecchi	pecchi	PROPN
brj-24331	410	13	,	,	PUNCT
brj-24331	410	14	c.	c.	NOUN
brj-24331	410	15	,	,	PUNCT
brj-24331	410	16	gentile	gentile	NOUN
brj-24331	410	17	,	,	PUNCT
brj-24331	410	18	g.	g.	PROPN
brj-24331	410	19	,	,	PUNCT
brj-24331	410	20	frassoldati	frassoldati	PROPN
brj-24331	410	21	,	,	PUNCT
brj-24331	410	22	a.	a.	NOUN
brj-24331	410	23	,	,	PUNCT
brj-24331	410	24	cuoci	cuoci	PROPN
brj-24331	410	25	,	,	PUNCT
brj-24331	410	26	a.	a.	NOUN
brj-24331	410	27	,	,	PUNCT
brj-24331	410	28	faravelli	faravelli	NOUN
brj-24331	410	29	,	,	PUNCT
brj-24331	410	30	t.	t.	PROPN
brj-24331	410	31	,	,	PUNCT
brj-24331	410	32	and	and	CCONJ
brj-24331	410	33	ranzi	ranzi	PROPN
brj-24331	410	34	,	,	PUNCT
brj-24331	410	35	e.	e.	PROPN
brj-24331	410	36	(	(	PUNCT
brj-24331	410	37	2015	2015	NUM
brj-24331	410	38	)	)	PUNCT
brj-24331	410	39	.	.	PUNCT
brj-24331	411	1	“	"	PUNCT
brj-24331	411	2	extractives	extractive	NOUN
brj-24331	411	3	extend	extend	VERB
brj-24331	411	4	the	the	DET
brj-24331	411	5	applicability	applicability	NOUN
brj-24331	411	6	of	of	ADP
brj-24331	411	7	multistep	multistep	ADJ
brj-24331	411	8	kinetic	kinetic	ADJ
brj-24331	411	9	scheme	scheme	NOUN
brj-24331	411	10	of	of	ADP
brj-24331	411	11	biomass	biomass	NOUN
brj-24331	411	12	pyrolysis	pyrolysis	NOUN
brj-24331	411	13	,	,	PUNCT
brj-24331	411	14	”	"	PUNCT
brj-24331	411	15	energy	energy	NOUN
brj-24331	411	16	&	&	CCONJ
brj-24331	411	17	fuels	fuel	NOUN
brj-24331	411	18	29(10	29(10	NUM
brj-24331	411	19	)	)	PUNCT
brj-24331	411	20	,	,	PUNCT
brj-24331	411	21	6544	6544	NUM
brj-24331	411	22	-	-	SYM
brj-24331	411	23	6555	6555	NUM
brj-24331	411	24	.	.	PUNCT
brj-24331	412	1	doi	doi	NOUN
brj-24331	412	2	:	:	PUNCT
brj-24331	412	3	10.1021	10.1021	NUM
brj-24331	412	4	/	/	SYM
brj-24331	412	5	acs.energyfuels.5b01753	acs.energyfuels.5b01753	PUNCT
brj-24331	412	6	devi	devi	PROPN
brj-24331	412	7	,	,	PUNCT
brj-24331	412	8	l.	l.	PROPN
brj-24331	412	9	,	,	PUNCT
brj-24331	412	10	ptasinski	ptasinski	PROPN
brj-24331	412	11	,	,	PUNCT
brj-24331	412	12	k.	k.	PROPN
brj-24331	412	13	j.	j.	PROPN
brj-24331	412	14	,	,	PUNCT
brj-24331	412	15	janssen	janssen	PROPN
brj-24331	412	16	,	,	PUNCT
brj-24331	412	17	f.	f.	PROPN
brj-24331	412	18	j.	j.	PROPN
brj-24331	412	19	,	,	PUNCT
brj-24331	412	20	van	van	PROPN
brj-24331	412	21	paasen	paasen	PROPN
brj-24331	412	22	,	,	PUNCT
brj-24331	412	23	s.	s.	PROPN
brj-24331	412	24	v.	v.	PROPN
brj-24331	412	25	,	,	PUNCT
brj-24331	412	26	bergman	bergman	PROPN
brj-24331	412	27	,	,	PUNCT
brj-24331	412	28	p.	p.	PROPN
brj-24331	412	29	c.	c.	PROPN
brj-24331	412	30	,	,	PUNCT
brj-24331	412	31	and	and	CCONJ
brj-24331	412	32	kiel	kiel	PROPN
brj-24331	412	33	,	,	PUNCT
brj-24331	412	34	j.	j.	PROPN
brj-24331	412	35	h.	h.	PROPN
brj-24331	412	36	(	(	PUNCT
brj-24331	412	37	2005	2005	NUM
brj-24331	412	38	)	)	PUNCT
brj-24331	412	39	.	.	PUNCT
brj-24331	413	1	“	"	PUNCT
brj-24331	413	2	catalytic	catalytic	ADJ
brj-24331	413	3	decomposition	decomposition	NOUN
brj-24331	413	4	of	of	ADP
brj-24331	413	5	biomass	biomass	NOUN
brj-24331	413	6	tars	tar	NOUN
brj-24331	413	7	:	:	PUNCT
brj-24331	413	8	use	use	NOUN
brj-24331	413	9	of	of	ADP
brj-24331	413	10	dolomite	dolomite	NOUN
brj-24331	413	11	and	and	CCONJ
brj-24331	413	12	untreated	untreated	ADJ
brj-24331	413	13	olivine	olivine	NOUN
brj-24331	413	14	,	,	PUNCT
brj-24331	413	15	”	"	PUNCT
brj-24331	413	16	renewable	renewable	ADJ
brj-24331	413	17	energy	energy	NOUN
brj-24331	413	18	30(4	30(4	NUM
brj-24331	413	19	)	)	PUNCT
brj-24331	413	20	,	,	PUNCT
brj-24331	413	21	565	565	NUM
brj-24331	413	22	-	-	SYM
brj-24331	413	23	587	587	NUM
brj-24331	413	24	.	.	PUNCT
brj-24331	414	1	doi	doi	NOUN
brj-24331	414	2	:	:	PUNCT
brj-24331	414	3	10.1016	10.1016	NUM
brj-24331	414	4	/	/	SYM
brj-24331	414	5	j.renene.2004.07.014	j.renene.2004.07.014	PROPN
brj-24331	414	6	elorf	elorf	PROPN
brj-24331	414	7	,	,	PUNCT
brj-24331	414	8	a.	a.	NOUN
brj-24331	414	9	,	,	PUNCT
brj-24331	414	10	kandasamy	kandasamy	NOUN
brj-24331	414	11	,	,	PUNCT
brj-24331	414	12	j.	j.	PROPN
brj-24331	414	13	,	,	PUNCT
brj-24331	414	14	belandria	belandria	PROPN
brj-24331	414	15	,	,	PUNCT
brj-24331	414	16	v.	v.	PROPN
brj-24331	414	17	,	,	PUNCT
brj-24331	414	18	bostyn	bostyn	PROPN
brj-24331	414	19	,	,	PUNCT
brj-24331	414	20	s.	s.	PROPN
brj-24331	414	21	,	,	PUNCT
brj-24331	414	22	sarh	sarh	PROPN
brj-24331	414	23	,	,	PUNCT
brj-24331	414	24	b.	b.	PROPN
brj-24331	414	25	,	,	PUNCT
brj-24331	414	26	and	and	CCONJ
brj-24331	414	27	gökalp	gökalp	NOUN
brj-24331	414	28	,	,	PUNCT
brj-24331	414	29	i.	i.	NOUN
brj-24331	414	30	(	(	PUNCT
brj-24331	414	31	0	0	NUM
brj-24331	414	32	9	9	NUM
brj-24331	414	33	)	)	PUNCT
brj-24331	414	34	.	.	PUNCT
brj-24331	415	1	“	"	PUNCT
brj-24331	415	2	heating	heating	NOUN
brj-24331	415	3	rate	rate	NOUN
brj-24331	415	4	effects	effect	NOUN
brj-24331	415	5	on	on	ADP
brj-24331	415	6	pyrolysis	pyrolysis	NOUN
brj-24331	415	7	,	,	PUNCT
brj-24331	415	8	gasification	gasification	NOUN
brj-24331	415	9	and	and	CCONJ
brj-24331	415	10	combustion	combustion	NOUN
brj-24331	415	11	of	of	ADP
brj-24331	415	12	olive	olive	ADJ
brj-24331	415	13	waste	waste	NOUN
brj-24331	415	14	,	,	PUNCT
brj-24331	415	15	”	"	PUNCT
brj-24331	415	16	biofuels	biofuel	NOUN
brj-24331	415	17	1	1	NUM
brj-24331	415	18	-	-	SYM
brj-24331	415	19	8	8	NUM
brj-24331	415	20	.	.	PUNCT
brj-24331	416	1	doi	doi	NOUN
brj-24331	416	2	:	:	PUNCT
brj-24331	416	3	10.1080/17597269.2019.1594598	10.1080/17597269.2019.1594598	NUM
brj-24331	416	4	fatehi	fatehi	NOUN
brj-24331	416	5	,	,	PUNCT
brj-24331	416	6	h.	h.	PROPN
brj-24331	416	7	,	,	PUNCT
brj-24331	416	8	weng	weng	PROPN
brj-24331	416	9	,	,	PUNCT
brj-24331	416	10	w.	w.	PROPN
brj-24331	416	11	,	,	PUNCT
brj-24331	416	12	costa	costa	PROPN
brj-24331	416	13	,	,	PUNCT
brj-24331	416	14	m.	m.	NOUN
brj-24331	416	15	,	,	PUNCT
brj-24331	416	16	li	li	PROPN
brj-24331	416	17	,	,	PUNCT
brj-24331	416	18	z.	z.	PROPN
brj-24331	416	19	,	,	PUNCT
brj-24331	416	20	rabaçal	rabaçal	NOUN
brj-24331	416	21	,	,	PUNCT
brj-24331	416	22	m.	m.	NOUN
brj-24331	416	23	,	,	PUNCT
brj-24331	416	24	aldén	aldén	PROPN
brj-24331	416	25	,	,	PUNCT
brj-24331	416	26	m.	m.	NOUN
brj-24331	416	27	,	,	PUNCT
brj-24331	416	28	and	and	CCONJ
brj-24331	416	29	bai	bai	PROPN
brj-24331	416	30	,	,	PUNCT
brj-24331	416	31	x.-s	x.-s	PROPN
brj-24331	416	32	.	.	PUNCT
brj-24331	417	1	(	(	PUNCT
brj-24331	417	2	2019	2019	NUM
brj-24331	417	3	)	)	PUNCT
brj-24331	417	4	.	.	PUNCT
brj-24331	418	1	“	"	PUNCT
brj-24331	418	2	numerical	numerical	ADJ
brj-24331	418	3	simulation	simulation	NOUN
brj-24331	418	4	of	of	ADP
brj-24331	418	5	ignition	ignition	NOUN
brj-24331	418	6	mode	mode	NOUN
brj-24331	418	7	and	and	CCONJ
brj-24331	418	8	ignition	ignition	NOUN
brj-24331	418	9	delay	delay	NOUN
brj-24331	418	10	time	time	NOUN
brj-24331	418	11	of	of	ADP
brj-24331	418	12	pulverized	pulverize	VERB
brj-24331	418	13	biomass	biomass	NOUN
brj-24331	418	14	particles	particle	NOUN
brj-24331	418	15	,	,	PUNCT
brj-24331	418	16	”	"	PUNCT
brj-24331	418	17	combustion	combustion	NOUN
brj-24331	418	18	and	and	CCONJ
brj-24331	418	19	flame	flame	NOUN
brj-24331	418	20	206	206	NUM
brj-24331	418	21	,	,	PUNCT
brj-24331	418	22	400	400	NUM
brj-24331	418	23	-	-	SYM
brj-24331	418	24	410	410	NUM
brj-24331	418	25	.	.	PUNCT
brj-24331	419	1	doi	doi	NOUN
brj-24331	419	2	:	:	PUNCT
brj-24331	419	3	10.1016	10.1016	NUM
brj-24331	419	4	/	/	SYM
brj-24331	419	5	j.combustflame.2019.05.020	j.combustflame.2019.05.020	PROPN
brj-24331	419	6	.	.	PUNCT
brj-24331	420	1	françois	françois	PROPN
brj-24331	420	2	,	,	PUNCT
brj-24331	420	3	j.	j.	PROPN
brj-24331	420	4	,	,	PUNCT
brj-24331	420	5	abdelouahed	abdelouahe	VERB
brj-24331	420	6	,	,	PUNCT
brj-24331	420	7	l.	l.	PROPN
brj-24331	420	8	,	,	PUNCT
brj-24331	420	9	mauviel	mauviel	PROPN
brj-24331	420	10	,	,	PUNCT
brj-24331	420	11	g.	g.	PROPN
brj-24331	420	12	,	,	PUNCT
brj-24331	420	13	patisson	patisson	PROPN
brj-24331	420	14	,	,	PUNCT
brj-24331	420	15	f.	f.	PROPN
brj-24331	420	16	,	,	PUNCT
brj-24331	420	17	mirgaux	mirgaux	PROPN
brj-24331	420	18	,	,	PUNCT
brj-24331	420	19	o.	o.	PROPN
brj-24331	420	20	,	,	PUNCT
brj-24331	420	21	rogaume	rogaume	PROPN
brj-24331	420	22	,	,	PUNCT
brj-24331	420	23	c.	c.	PROPN
brj-24331	420	24	,	,	PUNCT
brj-24331	420	25	rogaume	rogaume	NOUN
brj-24331	420	26	,	,	PUNCT
brj-24331	420	27	y.	y.	PROPN
brj-24331	420	28	,	,	PUNCT
brj-24331	420	29	feidt	feidt	VERB
brj-24331	420	30	,	,	PUNCT
brj-24331	420	31	m.	m.	NOUN
brj-24331	420	32	,	,	PUNCT
brj-24331	420	33	and	and	CCONJ
brj-24331	420	34	dufour	dufour	PROPN
brj-24331	420	35	,	,	PUNCT
brj-24331	420	36	a.	a.	PROPN
brj-24331	420	37	(	(	PUNCT
brj-24331	420	38	2013	2013	NUM
brj-24331	420	39	)	)	PUNCT
brj-24331	420	40	.	.	PUNCT
brj-24331	421	1	“	"	PUNCT
brj-24331	421	2	detailed	detailed	ADJ
brj-24331	421	3	process	process	NOUN
brj-24331	421	4	modeling	modeling	NOUN
brj-24331	421	5	of	of	ADP
brj-24331	421	6	a	a	DET
brj-24331	421	7	wood	wood	NOUN
brj-24331	421	8	gasification	gasification	NOUN
brj-24331	421	9	combined	combine	VERB
brj-24331	421	10	heat	heat	NOUN
brj-24331	421	11	and	and	CCONJ
brj-24331	421	12	power	power	NOUN
brj-24331	421	13	plant	plant	NOUN
brj-24331	421	14	,	,	PUNCT
brj-24331	421	15	”	"	PUNCT
brj-24331	421	16	biomass	biomass	NOUN
brj-24331	421	17	and	and	CCONJ
brj-24331	421	18	bioenergy	bioenergy	NOUN
brj-24331	421	19	51	51	NUM
brj-24331	421	20	,	,	PUNCT
brj-24331	421	21	68	68	NUM
brj-24331	421	22	-	-	SYM
brj-24331	421	23	82	82	NUM
brj-24331	421	24	.	.	PUNCT
brj-24331	422	1	doi	doi	NOUN
brj-24331	422	2	:	:	PUNCT
brj-24331	422	3	10.1016	10.1016	NUM
brj-24331	422	4	/	/	SYM
brj-24331	422	5	j.biombioe.2013.01.004	j.biombioe.2013.01.004	PROPN
brj-24331	422	6	gao	gao	PROPN
brj-24331	422	7	,	,	PUNCT
brj-24331	422	8	x.	x.	PROPN
brj-24331	422	9	,	,	PUNCT
brj-24331	422	10	zhang	zhang	PROPN
brj-24331	422	11	,	,	PUNCT
brj-24331	422	12	y.	y.	PROPN
brj-24331	422	13	,	,	PUNCT
brj-24331	422	14	li	li	PROPN
brj-24331	422	15	,	,	PUNCT
brj-24331	422	16	b.	b.	PROPN
brj-24331	422	17	,	,	PUNCT
brj-24331	422	18	and	and	CCONJ
brj-24331	422	19	yu	yu	PROPN
brj-24331	422	20	,	,	PUNCT
brj-24331	422	21	x.	x.	NOUN
brj-24331	422	22	(	(	PUNCT
brj-24331	422	23	2016a	2016a	NUM
brj-24331	422	24	)	)	PUNCT
brj-24331	422	25	.	.	PUNCT
brj-24331	423	1	“	"	PUNCT
brj-24331	423	2	model	model	NOUN
brj-24331	423	3	development	development	NOUN
brj-24331	423	4	for	for	ADP
brj-24331	423	5	biomass	biomass	NOUN
brj-24331	423	6	gasification	gasification	NOUN
brj-24331	423	7	in	in	ADP
brj-24331	423	8	an	an	DET
brj-24331	423	9	entrained	entrain	VERB
brj-24331	423	10	flow	flow	NOUN
brj-24331	423	11	gasifier	gasifier	NOUN
brj-24331	423	12	using	use	VERB
brj-24331	423	13	intrinsic	intrinsic	ADJ
brj-24331	423	14	reaction	reaction	NOUN
brj-24331	423	15	rate	rate	NOUN
brj-24331	423	16	submodel	submodel	PROPN
brj-24331	423	17	,	,	PUNCT
brj-24331	423	18	”	"	PUNCT
brj-24331	423	19	energy	energy	NOUN
brj-24331	423	20	conversion	conversion	NOUN
brj-24331	423	21	and	and	CCONJ
brj-24331	423	22	management	management	NOUN
brj-24331	423	23	108	108	NUM
brj-24331	423	24	,	,	PUNCT
brj-24331	423	25	120	120	NUM
brj-24331	423	26	-	-	SYM
brj-24331	423	27	131	131	NUM
brj-24331	423	28	.	.	PUNCT
brj-24331	424	1	doi	doi	NOUN
brj-24331	424	2	:	:	PUNCT
brj-24331	424	3	10.1016	10.1016	NUM
brj-24331	424	4	/	/	SYM
brj-24331	424	5	j.enconman.2015.10.070	j.enconman.2015.10.070	X
brj-24331	424	6	gao	gao	PROPN
brj-24331	424	7	,	,	PUNCT
brj-24331	424	8	x.	x.	PROPN
brj-24331	424	9	,	,	PUNCT
brj-24331	424	10	zhang	zhang	PROPN
brj-24331	424	11	,	,	PUNCT
brj-24331	424	12	y.	y.	PROPN
brj-24331	424	13	,	,	PUNCT
brj-24331	424	14	li	li	PROPN
brj-24331	424	15	,	,	PUNCT
brj-24331	424	16	b.	b.	PROPN
brj-24331	424	17	,	,	PUNCT
brj-24331	424	18	zhao	zhao	PROPN
brj-24331	424	19	,	,	PUNCT
brj-24331	424	20	y.	y.	PROPN
brj-24331	424	21	,	,	PUNCT
brj-24331	424	22	and	and	CCONJ
brj-24331	424	23	jiang	jiang	PROPN
brj-24331	424	24	,	,	PUNCT
brj-24331	424	25	b.	b.	PROPN
brj-24331	424	26	(	(	PUNCT
brj-24331	424	27	2016b	2016b	NUM
brj-24331	424	28	)	)	PUNCT
brj-24331	424	29	.	.	PUNCT
brj-24331	425	1	“	"	PUNCT
brj-24331	425	2	determination	determination	NOUN
brj-24331	425	3	of	of	ADP
brj-24331	425	4	the	the	DET
brj-24331	425	5	intrinsic	intrinsic	ADJ
brj-24331	425	6	reactivities	reactivity	NOUN
brj-24331	425	7	for	for	ADP
brj-24331	425	8	carbon	carbon	NOUN
brj-24331	425	9	dioxide	dioxide	NOUN
brj-24331	425	10	gasification	gasification	NOUN
brj-24331	425	11	of	of	ADP
brj-24331	425	12	rice	rice	NOUN
brj-24331	425	13	husk	husk	NOUN
brj-24331	425	14	chars	char	NOUN
brj-24331	425	15	through	through	ADP
brj-24331	425	16	using	use	VERB
brj-24331	425	17	random	random	ADJ
brj-24331	425	18	pore	pore	ADJ
brj-24331	425	19	model	model	NOUN
brj-24331	425	20	,	,	PUNCT
brj-24331	425	21	”	"	PUNCT
brj-24331	425	22	bioresource	bioresource	ADP
brj-24331	425	23	technology	technology	NOUN
brj-24331	425	24	218	218	NUM
brj-24331	425	25	,	,	PUNCT
brj-24331	425	26	1073	1073	NUM
brj-24331	425	27	-	-	SYM
brj-24331	425	28	1081	1081	NUM
brj-24331	425	29	.	.	PUNCT
brj-24331	426	1	doi	doi	NOUN
brj-24331	426	2	:	:	PUNCT
brj-24331	426	3	10.1016	10.1016	NUM
brj-24331	426	4	/	/	SYM
brj-24331	426	5	j.biortech.2016.07.057	j.biortech.2016.07.057	PROPN
brj-24331	426	6	gmehling	gmehling	NOUN
brj-24331	426	7	,	,	PUNCT
brj-24331	426	8	j.	j.	PROPN
brj-24331	426	9	,	,	PUNCT
brj-24331	426	10	kleiber	kleiber	PROPN
brj-24331	426	11	,	,	PUNCT
brj-24331	426	12	m.	m.	NOUN
brj-24331	426	13	,	,	PUNCT
brj-24331	426	14	kolbe	kolbe	PROPN
brj-24331	426	15	,	,	PUNCT
brj-24331	426	16	b.	b.	PROPN
brj-24331	426	17	,	,	PUNCT
brj-24331	426	18	and	and	CCONJ
brj-24331	426	19	rarey	rarey	PROPN
brj-24331	426	20	,	,	PUNCT
brj-24331	426	21	j.	j.	PROPN
brj-24331	426	22	(	(	PUNCT
brj-24331	426	23	2019	2019	NUM
brj-24331	426	24	)	)	PUNCT
brj-24331	426	25	.	.	PUNCT
brj-24331	427	1	chemical	chemical	NOUN
brj-24331	427	2	thermodynamics	thermodynamic	NOUN
brj-24331	427	3	for	for	ADP
brj-24331	427	4	process	process	NOUN
brj-24331	427	5	simulation	simulation	NOUN
brj-24331	427	6	,	,	PUNCT
brj-24331	427	7	wiley	wiley	PROPN
brj-24331	427	8	,	,	PUNCT
brj-24331	427	9	hoboken	hoboken	PROPN
brj-24331	427	10	,	,	PUNCT
brj-24331	427	11	nj	nj	PROPN
brj-24331	427	12	,	,	PUNCT
brj-24331	427	13	usa	usa	PROPN
brj-24331	427	14	.	.	PROPN
brj-24331	427	15	guizani	guizani	PROPN
brj-24331	427	16	,	,	PUNCT
brj-24331	427	17	c.	c.	NOUN
brj-24331	427	18	,	,	PUNCT
brj-24331	427	19	louisnard	louisnard	ADJ
brj-24331	427	20	,	,	PUNCT
brj-24331	427	21	o.	o.	PROPN
brj-24331	427	22	,	,	PUNCT
brj-24331	427	23	sanz	sanz	PROPN
brj-24331	427	24	,	,	PUNCT
brj-24331	427	25	f.e	f.e	PROPN
brj-24331	427	26	.	.	PROPN
brj-24331	427	27	,	,	PUNCT
brj-24331	427	28	and	and	CCONJ
brj-24331	427	29	salvador	salvador	PROPN
brj-24331	427	30	,	,	PUNCT
brj-24331	427	31	s.	s.	PROPN
brj-24331	427	32	(	(	PUNCT
brj-24331	427	33	0	0	NUM
brj-24331	427	34	)	)	PUNCT
brj-24331	427	35	.	.	PUNCT
brj-24331	428	1	“	"	PUNCT
brj-24331	428	2	gasification	gasification	NOUN
brj-24331	428	3	of	of	ADP
brj-24331	428	4	woody	woody	NOUN
brj-24331	428	5	biomass	biomass	NOUN
brj-24331	428	6	under	under	ADP
brj-24331	428	7	high	high	ADJ
brj-24331	428	8	heating	heating	NOUN
brj-24331	428	9	rate	rate	NOUN
brj-24331	428	10	conditions	condition	NOUN
brj-24331	428	11	in	in	ADP
brj-24331	428	12	pure	pure	ADJ
brj-24331	428	13	co2	co2	NOUN
brj-24331	428	14	:	:	PUNCT
brj-24331	428	15	experiments	experiment	NOUN
brj-24331	428	16	and	and	CCONJ
brj-24331	428	17	modelling	modelling	NOUN
brj-24331	428	18	,	,	PUNCT
brj-24331	428	19	”	"	PUNCT
brj-24331	428	20	biomass	biomass	NOUN
brj-24331	428	21	and	and	CCONJ
brj-24331	428	22	bioenergy	bioenergy	NOUN
brj-24331	428	23	83	83	NUM
brj-24331	428	24	,	,	PUNCT
brj-24331	428	25	169	169	NUM
brj-24331	428	26	-	-	SYM
brj-24331	428	27	182	182	NUM
brj-24331	428	28	.	.	PUNCT
brj-24331	429	1	doi	doi	NOUN
brj-24331	429	2	:	:	PUNCT
brj-24331	429	3	10.1016	10.1016	NUM
brj-24331	429	4	/	/	SYM
brj-24331	429	5	j.biombioe.2015.09.017	j.biombioe.2015.09.017	X
brj-24331	429	6	guo	guo	PROPN
brj-24331	429	7	,	,	PUNCT
brj-24331	429	8	l.	l.	PROPN
brj-24331	429	9	,	,	PUNCT
brj-24331	429	10	jin	jin	PROPN
brj-24331	429	11	,	,	PUNCT
brj-24331	429	12	h.	h.	PROPN
brj-24331	429	13	,	,	PUNCT
brj-24331	429	14	and	and	CCONJ
brj-24331	429	15	lu	lu	PROPN
brj-24331	429	16	,	,	PUNCT
brj-24331	429	17	y.	y.	PROPN
brj-24331	429	18	(	(	PUNCT
brj-24331	429	19	0	0	NUM
brj-24331	429	20	)	)	PUNCT
brj-24331	429	21	.	.	PUNCT
brj-24331	430	1	“	"	PUNCT
brj-24331	430	2	supercritical	supercritical	ADJ
brj-24331	430	3	water	water	NOUN
brj-24331	430	4	gasification	gasification	NOUN
brj-24331	430	5	research	research	NOUN
brj-24331	430	6	and	and	CCONJ
brj-24331	430	7	development	development	NOUN
brj-24331	430	8	in	in	ADP
brj-24331	430	9	china	china	PROPN
brj-24331	430	10	,	,	PUNCT
brj-24331	430	11	”	"	PUNCT
brj-24331	430	12	the	the	DET
brj-24331	430	13	journal	journal	NOUN
brj-24331	430	14	of	of	ADP
brj-24331	430	15	supercritical	supercritical	ADJ
brj-24331	430	16	fluids	fluid	NOUN
brj-24331	430	17	96	96	NUM
brj-24331	430	18	,	,	PUNCT
brj-24331	430	19	144	144	NUM
brj-24331	430	20	-	-	SYM
brj-24331	430	21	150	150	NUM
brj-24331	430	22	.	.	PUNCT
brj-24331	431	1	doi	doi	NOUN
brj-24331	431	2	:	:	PUNCT
brj-24331	431	3	10.1016	10.1016	NUM
brj-24331	431	4	/	/	SYM
brj-24331	431	5	j.supflu.2014.09.023	j.supflu.2014.09.023	PROPN
brj-24331	432	1	he	he	PRON
brj-24331	432	2	,	,	PUNCT
brj-24331	432	3	c.	c.	PROPN
brj-24331	432	4	,	,	PUNCT
brj-24331	432	5	feng	feng	PROPN
brj-24331	432	6	,	,	PUNCT
brj-24331	432	7	x.	x.	PROPN
brj-24331	432	8	,	,	PUNCT
brj-24331	432	9	and	and	CCONJ
brj-24331	432	10	chu	chu	PROPN
brj-24331	432	11	,	,	PUNCT
brj-24331	432	12	k.	k.	PROPN
brj-24331	432	13	h.	h.	PROPN
brj-24331	433	1	(	(	PUNCT
brj-24331	433	2	0	0	NUM
brj-24331	433	3	)	)	PUNCT
brj-24331	433	4	.	.	PUNCT
brj-24331	434	1	“	"	PUNCT
brj-24331	434	2	process	process	NOUN
brj-24331	434	3	modeling	modeling	NOUN
brj-24331	434	4	and	and	CCONJ
brj-24331	434	5	thermodynamic	thermodynamic	ADJ
brj-24331	434	6	analysis	analysis	NOUN
brj-24331	434	7	of	of	ADP
brj-24331	434	8	lurgi	lurgi	NOUN
brj-24331	434	9	fixed	fix	VERB
brj-24331	434	10	-	-	PUNCT
brj-24331	434	11	bed	bed	NOUN
brj-24331	434	12	coal	coal	NOUN
brj-24331	434	13	gasifier	gasifier	NOUN
brj-24331	434	14	in	in	ADP
brj-24331	434	15	an	an	DET
brj-24331	434	16	sng	sng	ADJ
brj-24331	434	17	plant	plant	NOUN
brj-24331	434	18	,	,	PUNCT
brj-24331	434	19	”	"	PUNCT
brj-24331	434	20	applied	apply	VERB
brj-24331	434	21	energy	energy	NOUN
brj-24331	434	22	111	111	NUM
brj-24331	434	23	,	,	PUNCT
brj-24331	434	24	742	742	NUM
brj-24331	434	25	-	-	SYM
brj-24331	434	26	757	757	NUM
brj-24331	434	27	.	.	PUNCT
brj-24331	435	1	doi	doi	NOUN
brj-24331	435	2	:	:	PUNCT
brj-24331	435	3	10.1016	10.1016	NUM
brj-24331	435	4	/	/	SYM
brj-24331	435	5	j.apenergy.2013.05.045	j.apenergy.2013.05.045	PROPN
brj-24331	435	6	hobbs	hobbs	PROPN
brj-24331	435	7	,	,	PUNCT
brj-24331	435	8	m.	m.	PROPN
brj-24331	435	9	l.	l.	PROPN
brj-24331	435	10	,	,	PUNCT
brj-24331	435	11	radulovic	radulovic	PROPN
brj-24331	435	12	,	,	PUNCT
brj-24331	435	13	p.	p.	NOUN
brj-24331	435	14	t.	t.	PROPN
brj-24331	435	15	,	,	PUNCT
brj-24331	435	16	and	and	CCONJ
brj-24331	435	17	smoot	smoot	PROPN
brj-24331	435	18	,	,	PUNCT
brj-24331	435	19	l.	l.	PROPN
brj-24331	435	20	d.	d.	PROPN
brj-24331	435	21	(	(	PUNCT
brj-24331	435	22	1992	1992	NUM
brj-24331	435	23	)	)	PUNCT
brj-24331	435	24	.	.	PUNCT
brj-24331	436	1	“	"	PUNCT
brj-24331	436	2	modeling	model	VERB
brj-24331	436	3	fixed‐bed	fixed‐be	VERB
brj-24331	436	4	coal	coal	NOUN
brj-24331	436	5	gasifiers	gasifier	NOUN
brj-24331	436	6	,	,	PUNCT
brj-24331	436	7	”	"	PUNCT
brj-24331	436	8	aiche	aiche	PROPN
brj-24331	436	9	journal	journal	PROPN
brj-24331	436	10	38(5	38(5	NUM
brj-24331	436	11	)	)	PUNCT
brj-24331	436	12	,	,	PUNCT
brj-24331	436	13	681	681	NUM
brj-24331	436	14	-	-	SYM
brj-24331	436	15	702	702	NUM
brj-24331	436	16	.	.	PUNCT
brj-24331	437	1	jangsawang	jangsawang	PROPN
brj-24331	437	2	,	,	PUNCT
brj-24331	437	3	w.	w.	PROPN
brj-24331	437	4	,	,	PUNCT
brj-24331	437	5	laohalidanond	laohalidanond	PROPN
brj-24331	437	6	,	,	PUNCT
brj-24331	437	7	k.	k.	PROPN
brj-24331	437	8	,	,	PUNCT
brj-24331	437	9	and	and	CCONJ
brj-24331	437	10	kerdsuwan	kerdsuwan	PROPN
brj-24331	437	11	,	,	PUNCT
brj-24331	437	12	s.	s.	PROPN
brj-24331	437	13	(	(	PUNCT
brj-24331	437	14	0	0	NUM
brj-24331	437	15	)	)	PUNCT
brj-24331	437	16	.	.	PUNCT
brj-24331	438	1	“	"	PUNCT
brj-24331	438	2	optimum	optimum	ADJ
brj-24331	438	3	equivalence	equivalence	NOUN
brj-24331	438	4	ratio	ratio	NOUN
brj-24331	438	5	of	of	ADP
brj-24331	438	6	biomass	biomass	NOUN
brj-24331	438	7	gasification	gasification	NOUN
brj-24331	438	8	process	process	NOUN
brj-24331	438	9	based	base	VERB
brj-24331	438	10	on	on	ADP
brj-24331	438	11	thermodynamic	thermodynamic	ADJ
brj-24331	438	12	equilibrium	equilibrium	NOUN
brj-24331	438	13	model	model	NOUN
brj-24331	438	14	,	,	PUNCT
brj-24331	438	15	”	"	PUNCT
brj-24331	438	16	energy	energy	NOUN
brj-24331	438	17	procedia	procedia	NOUN
brj-24331	438	18	79	79	NUM
brj-24331	438	19	,	,	PUNCT
brj-24331	438	20	520	520	NUM
brj-24331	438	21	-	-	SYM
brj-24331	438	22	527	527	NUM
brj-24331	438	23	.	.	PUNCT
brj-24331	439	1	doi	doi	NOUN
brj-24331	439	2	:	:	PUNCT
brj-24331	439	3	10.1016	10.1016	NUM
brj-24331	439	4	/	/	SYM
brj-24331	439	5	j.egypro.2015.11.528	j.egypro.2015.11.528	ADP
brj-24331	439	6	peer	peer	NOUN
brj-24331	439	7	-	-	PUNCT
brj-24331	439	8	reviewed	review	VERB
brj-24331	439	9	article	article	NOUN
brj-24331	439	10	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	439	11	sangaré	sangaré	PROPN
brj-24331	439	12	et	et	PROPN
brj-24331	439	13	al	al	PROPN
brj-24331	439	14	.	.	PROPN
brj-24331	439	15	(	(	PUNCT
brj-24331	439	16	2025	2025	NUM
brj-24331	439	17	)	)	PUNCT
brj-24331	439	18	.	.	PUNCT
brj-24331	440	1	“	"	PUNCT
brj-24331	440	2	pyrogasification	pyrogasification	NOUN
brj-24331	440	3	of	of	ADP
brj-24331	440	4	biomass	biomass	NOUN
brj-24331	440	5	,	,	PUNCT
brj-24331	440	6	”	"	PUNCT
brj-24331	440	7	bioresources	bioresource	NOUN
brj-24331	440	8	20(2	20(2	NUM
brj-24331	440	9	)	)	PUNCT
brj-24331	440	10	,	,	PUNCT
brj-24331	440	11	2844	2844	NUM
brj-24331	440	12	-	-	SYM
brj-24331	440	13	2870	2870	NUM
brj-24331	440	14	.	.	PUNCT
brj-24331	441	1	2868	2868	NUM
brj-24331	441	2	jayaraman	jayaraman	NOUN
brj-24331	441	3	,	,	PUNCT
brj-24331	441	4	k.	k.	PROPN
brj-24331	441	5	,	,	PUNCT
brj-24331	441	6	and	and	CCONJ
brj-24331	441	7	gökalp	gökalp	NOUN
brj-24331	441	8	,	,	PUNCT
brj-24331	441	9	i.	i.	NOUN
brj-24331	441	10	(	(	PUNCT
brj-24331	441	11	0	0	NUM
brj-24331	441	12	)	)	PUNCT
brj-24331	441	13	.	.	PUNCT
brj-24331	442	1	“	"	PUNCT
brj-24331	442	2	pyrolysis	pyrolysis	NOUN
brj-24331	442	3	,	,	PUNCT
brj-24331	442	4	combustion	combustion	NOUN
brj-24331	442	5	and	and	CCONJ
brj-24331	442	6	gasification	gasification	NOUN
brj-24331	442	7	characteristics	characteristic	NOUN
brj-24331	442	8	of	of	ADP
brj-24331	442	9	miscanthus	miscanthus	NOUN
brj-24331	442	10	and	and	CCONJ
brj-24331	442	11	sewage	sewage	NOUN
brj-24331	442	12	sludge	sludge	NOUN
brj-24331	442	13	,	,	PUNCT
brj-24331	442	14	”	"	PUNCT
brj-24331	442	15	energy	energy	NOUN
brj-24331	442	16	conversion	conversion	NOUN
brj-24331	442	17	and	and	CCONJ
brj-24331	442	18	management	management	NOUN
brj-24331	442	19	89	89	NUM
brj-24331	442	20	,	,	PUNCT
brj-24331	442	21	83	83	NUM
brj-24331	442	22	-	-	SYM
brj-24331	442	23	91	91	NUM
brj-24331	442	24	.	.	PUNCT
brj-24331	443	1	doi	doi	NOUN
brj-24331	443	2	:	:	PUNCT
brj-24331	443	3	10.1016	10.1016	NUM
brj-24331	443	4	/	/	SYM
brj-24331	443	5	j.enconman.2014.09.058	j.enconman.2014.09.058	X
brj-24331	443	6	kumar	kumar	PROPN
brj-24331	443	7	,	,	PUNCT
brj-24331	443	8	u.	u.	PROPN
brj-24331	443	9	,	,	PUNCT
brj-24331	443	10	and	and	CCONJ
brj-24331	443	11	paul	paul	PROPN
brj-24331	443	12	,	,	PUNCT
brj-24331	443	13	m.	m.	NOUN
brj-24331	443	14	c.	c.	PROPN
brj-24331	443	15	(	(	PUNCT
brj-24331	443	16	0	0	NUM
brj-24331	443	17	0	0	NUM
brj-24331	443	18	)	)	PUNCT
brj-24331	443	19	.	.	PUNCT
brj-24331	444	1	“	"	PUNCT
brj-24331	444	2	sensitivity	sensitivity	NOUN
brj-24331	444	3	analysis	analysis	NOUN
brj-24331	444	4	of	of	ADP
brj-24331	444	5	homogeneous	homogeneous	ADJ
brj-24331	444	6	reactions	reaction	NOUN
brj-24331	444	7	for	for	ADP
brj-24331	444	8	thermochemical	thermochemical	ADJ
brj-24331	444	9	conversion	conversion	NOUN
brj-24331	444	10	of	of	ADP
brj-24331	444	11	biomass	biomass	NOUN
brj-24331	444	12	in	in	ADP
brj-24331	444	13	a	a	DET
brj-24331	444	14	downdraft	downdraft	NOUN
brj-24331	444	15	gasifier	gasifier	NOUN
brj-24331	444	16	,	,	PUNCT
brj-24331	444	17	”	"	PUNCT
brj-24331	444	18	renewable	renewable	ADJ
brj-24331	444	19	energy	energy	NOUN
brj-24331	444	20	151	151	NUM
brj-24331	444	21	,	,	PUNCT
brj-24331	444	22	332	332	NUM
brj-24331	444	23	-	-	SYM
brj-24331	444	24	341	341	NUM
brj-24331	444	25	.	.	PUNCT
brj-24331	445	1	doi	doi	NOUN
brj-24331	445	2	:	:	PUNCT
brj-24331	445	3	10.1016	10.1016	NUM
brj-24331	445	4	/	/	SYM
brj-24331	445	5	j.renene.2019.11.025	j.renene.2019.11.025	NOUN
brj-24331	445	6	.	.	PUNCT
brj-24331	446	1	li	li	PROPN
brj-24331	446	2	,	,	PUNCT
brj-24331	446	3	c.	c.	PROPN
brj-24331	446	4	,	,	PUNCT
brj-24331	446	5	and	and	CCONJ
brj-24331	446	6	suzuki	suzuki	PROPN
brj-24331	446	7	,	,	PUNCT
brj-24331	446	8	k.	k.	PROPN
brj-24331	446	9	(	(	PUNCT
brj-24331	446	10	009	009	NUM
brj-24331	446	11	)	)	PUNCT
brj-24331	446	12	.	.	PUNCT
brj-24331	447	1	“	"	PUNCT
brj-24331	447	2	tar	tar	NOUN
brj-24331	447	3	property	property	NOUN
brj-24331	447	4	,	,	PUNCT
brj-24331	447	5	analysis	analysis	NOUN
brj-24331	447	6	,	,	PUNCT
brj-24331	447	7	reforming	reform	VERB
brj-24331	447	8	mechanism	mechanism	NOUN
brj-24331	447	9	and	and	CCONJ
brj-24331	447	10	model	model	NOUN
brj-24331	447	11	for	for	ADP
brj-24331	447	12	biomass	biomass	NOUN
brj-24331	447	13	gasification	gasification	NOUN
brj-24331	447	14	—	—	PUNCT
brj-24331	447	15	an	an	DET
brj-24331	447	16	overview	overview	NOUN
brj-24331	447	17	,	,	PUNCT
brj-24331	447	18	”	"	PUNCT
brj-24331	447	19	renewable	renewable	ADJ
brj-24331	447	20	and	and	CCONJ
brj-24331	447	21	sustainable	sustainable	ADJ
brj-24331	447	22	energy	energy	NOUN
brj-24331	447	23	reviews	review	NOUN
brj-24331	447	24	13(3	13(3	NUM
brj-24331	447	25	)	)	PUNCT
brj-24331	447	26	,	,	PUNCT
brj-24331	447	27	594	594	NUM
brj-24331	447	28	-	-	SYM
brj-24331	447	29	604	604	NUM
brj-24331	447	30	.	.	PUNCT
brj-24331	448	1	doi	doi	NOUN
brj-24331	448	2	:	:	PUNCT
brj-24331	448	3	10.1016	10.1016	NUM
brj-24331	448	4	/	/	SYM
brj-24331	448	5	j.rser.2008.01.009	j.rser.2008.01.009	PROPN
brj-24331	448	6	li	li	PROPN
brj-24331	448	7	,	,	PUNCT
brj-24331	448	8	s.	s.	PROPN
brj-24331	448	9	,	,	PUNCT
brj-24331	448	10	xu	xu	PROPN
brj-24331	448	11	,	,	PUNCT
brj-24331	448	12	s.	s.	PROPN
brj-24331	448	13	,	,	PUNCT
brj-24331	448	14	liu	liu	PROPN
brj-24331	448	15	,	,	PUNCT
brj-24331	448	16	s.	s.	PROPN
brj-24331	448	17	,	,	PUNCT
brj-24331	448	18	yang	yang	PROPN
brj-24331	448	19	,	,	PUNCT
brj-24331	448	20	c.	c.	PROPN
brj-24331	448	21	,	,	PUNCT
brj-24331	448	22	and	and	CCONJ
brj-24331	448	23	lu	lu	PROPN
brj-24331	448	24	,	,	PUNCT
brj-24331	448	25	q.	q.	PROPN
brj-24331	448	26	(	(	PUNCT
brj-24331	448	27	2004	2004	NUM
brj-24331	448	28	)	)	PUNCT
brj-24331	448	29	.	.	PUNCT
brj-24331	449	1	“	"	PUNCT
brj-24331	449	2	fast	fast	ADJ
brj-24331	449	3	pyrolysis	pyrolysis	NOUN
brj-24331	449	4	of	of	ADP
brj-24331	449	5	biomass	biomass	NOUN
brj-24331	449	6	in	in	ADP
brj-24331	449	7	free	free	ADJ
brj-24331	449	8	-	-	PUNCT
brj-24331	449	9	fall	fall	NOUN
brj-24331	449	10	reactor	reactor	NOUN
brj-24331	449	11	for	for	ADP
brj-24331	449	12	hydrogen	hydrogen	NOUN
brj-24331	449	13	-	-	PUNCT
brj-24331	449	14	rich	rich	ADJ
brj-24331	449	15	gas	gas	NOUN
brj-24331	449	16	,	,	PUNCT
brj-24331	449	17	”	"	PUNCT
brj-24331	449	18	fuel	fuel	NOUN
brj-24331	449	19	processing	processing	NOUN
brj-24331	449	20	technology	technology	NOUN
brj-24331	449	21	85(8	85(8	NOUN
brj-24331	449	22	-	-	SYM
brj-24331	449	23	10	10	NUM
brj-24331	449	24	)	)	PUNCT
brj-24331	449	25	,	,	PUNCT
brj-24331	449	26	1201	1201	NUM
brj-24331	449	27	-	-	SYM
brj-24331	449	28	1211	1211	NUM
brj-24331	449	29	.	.	PUNCT
brj-24331	450	1	doi	doi	NOUN
brj-24331	450	2	:	:	PUNCT
brj-24331	450	3	10.1016	10.1016	NUM
brj-24331	450	4	/	/	SYM
brj-24331	450	5	j.fuproc.2003.11.043	j.fuproc.2003.11.043	PROPN
brj-24331	450	6	.	.	PUNCT
brj-24331	451	1	lin	lin	PROPN
brj-24331	451	2	,	,	PUNCT
brj-24331	451	3	y.	y.	PROPN
brj-24331	451	4	,	,	PUNCT
brj-24331	451	5	yan	yan	PROPN
brj-24331	451	6	,	,	PUNCT
brj-24331	451	7	w.	w.	PROPN
brj-24331	451	8	,	,	PUNCT
brj-24331	451	9	and	and	CCONJ
brj-24331	451	10	sheng	sheng	PROPN
brj-24331	451	11	,	,	PUNCT
brj-24331	451	12	k.	k.	PROPN
brj-24331	451	13	(	(	PUNCT
brj-24331	451	14	0	0	NUM
brj-24331	451	15	)	)	PUNCT
brj-24331	451	16	.	.	PUNCT
brj-24331	452	1	“	"	PUNCT
brj-24331	452	2	effect	effect	NOUN
brj-24331	452	3	of	of	ADP
brj-24331	452	4	pyrolysis	pyrolysis	NOUN
brj-24331	452	5	conditions	condition	NOUN
brj-24331	452	6	on	on	ADP
brj-24331	452	7	the	the	DET
brj-24331	452	8	characteristics	characteristic	NOUN
brj-24331	452	9	of	of	ADP
brj-24331	452	10	biochar	biochar	NOUN
brj-24331	452	11	produced	produce	VERB
brj-24331	452	12	from	from	ADP
brj-24331	452	13	a	a	DET
brj-24331	452	14	tobacco	tobacco	NOUN
brj-24331	452	15	stem	stem	NOUN
brj-24331	452	16	,	,	PUNCT
brj-24331	452	17	”	"	PUNCT
brj-24331	452	18	waste	waste	NOUN
brj-24331	452	19	management	management	NOUN
brj-24331	452	20	&	&	CCONJ
brj-24331	452	21	research	research	PROPN
brj-24331	452	22	34(8	34(8	NUM
brj-24331	452	23	)	)	PUNCT
brj-24331	452	24	,	,	PUNCT
brj-24331	452	25	793801	793801	NUM
brj-24331	452	26	.	.	PUNCT
brj-24331	453	1	doi	doi	NOUN
brj-24331	453	2	:	:	PUNCT
brj-24331	453	3	10.1177/0734242x16654977	10.1177/0734242x16654977	PROPN
brj-24331	453	4	liu	liu	PROPN
brj-24331	453	5	,	,	PUNCT
brj-24331	453	6	q.	q.	PROPN
brj-24331	453	7	,	,	PUNCT
brj-24331	453	8	chmely	chmely	ADV
brj-24331	453	9	,	,	PUNCT
brj-24331	453	10	s.	s.	PROPN
brj-24331	453	11	c.	c.	PROPN
brj-24331	453	12	,	,	PUNCT
brj-24331	453	13	and	and	CCONJ
brj-24331	453	14	abdoulmoumine	abdoulmoumine	NOUN
brj-24331	453	15	,	,	PUNCT
brj-24331	453	16	n.	n.	PROPN
brj-24331	453	17	(	(	PUNCT
brj-24331	453	18	0	0	NUM
brj-24331	453	19	7	7	NUM
brj-24331	453	20	)	)	PUNCT
brj-24331	453	21	.	.	PUNCT
brj-24331	454	1	“	"	PUNCT
brj-24331	454	2	biomass	biomass	NOUN
brj-24331	454	3	treatment	treatment	NOUN
brj-24331	454	4	strategies	strategy	NOUN
brj-24331	454	5	for	for	ADP
brj-24331	454	6	thermochemical	thermochemical	ADJ
brj-24331	454	7	conversion	conversion	NOUN
brj-24331	454	8	,	,	PUNCT
brj-24331	454	9	”	"	PUNCT
brj-24331	454	10	energy	energy	NOUN
brj-24331	454	11	&	&	CCONJ
brj-24331	454	12	fuels	fuel	NOUN
brj-24331	454	13	31(4	31(4	NUM
brj-24331	454	14	)	)	PUNCT
brj-24331	454	15	,	,	PUNCT
brj-24331	454	16	3525	3525	NUM
brj-24331	454	17	-	-	SYM
brj-24331	454	18	3536	3536	NUM
brj-24331	454	19	.	.	PUNCT
brj-24331	455	1	doi	doi	NOUN
brj-24331	455	2	:	:	PUNCT
brj-24331	455	3	10.1021	10.1021	NUM
brj-24331	455	4	/	/	SYM
brj-24331	455	5	acs.energyfuels.7b00258	acs.energyfuels.7b00258	PROPN
brj-24331	455	6	mermoud	mermoud	PROPN
brj-24331	455	7	,	,	PUNCT
brj-24331	455	8	f.	f.	PROPN
brj-24331	455	9	,	,	PUNCT
brj-24331	455	10	golfier	golfier	PROPN
brj-24331	455	11	,	,	PUNCT
brj-24331	455	12	f.	f.	PROPN
brj-24331	455	13	,	,	PUNCT
brj-24331	455	14	salvador	salvador	PROPN
brj-24331	455	15	,	,	PUNCT
brj-24331	455	16	s.	s.	PROPN
brj-24331	455	17	,	,	PUNCT
brj-24331	455	18	van	van	PROPN
brj-24331	455	19	de	de	X
brj-24331	455	20	steene	steene	PROPN
brj-24331	455	21	,	,	PUNCT
brj-24331	455	22	l.	l.	PROPN
brj-24331	455	23	,	,	PUNCT
brj-24331	455	24	and	and	CCONJ
brj-24331	455	25	dirion	dirion	NOUN
brj-24331	455	26	,	,	PUNCT
brj-24331	455	27	j.-l	j.-l	ADJ
brj-24331	455	28	.	.	PUNCT
brj-24331	456	1	(	(	PUNCT
brj-24331	456	2	2006	2006	NUM
brj-24331	456	3	)	)	PUNCT
brj-24331	456	4	.	.	PUNCT
brj-24331	457	1	“	"	PUNCT
brj-24331	457	2	experimental	experimental	ADJ
brj-24331	457	3	and	and	CCONJ
brj-24331	457	4	numerical	numerical	ADJ
brj-24331	457	5	study	study	NOUN
brj-24331	457	6	of	of	ADP
brj-24331	457	7	steam	steam	NOUN
brj-24331	457	8	gasification	gasification	NOUN
brj-24331	457	9	of	of	ADP
brj-24331	457	10	a	a	DET
brj-24331	457	11	single	single	ADJ
brj-24331	457	12	charcoal	charcoal	NOUN
brj-24331	457	13	particle	particle	NOUN
brj-24331	457	14	,	,	PUNCT
brj-24331	457	15	”	"	PUNCT
brj-24331	457	16	combustion	combustion	NOUN
brj-24331	457	17	and	and	CCONJ
brj-24331	457	18	flame	flame	NOUN
brj-24331	457	19	145(1	145(1	NUM
brj-24331	457	20	-	-	SYM
brj-24331	457	21	2	2	NUM
brj-24331	457	22	)	)	PUNCT
brj-24331	457	23	,	,	PUNCT
brj-24331	457	24	59	59	NUM
brj-24331	457	25	-	-	SYM
brj-24331	457	26	79	79	NUM
brj-24331	457	27	.	.	PUNCT
brj-24331	458	1	doi	doi	NOUN
brj-24331	458	2	:	:	PUNCT
brj-24331	458	3	10.1016	10.1016	NUM
brj-24331	458	4	/	/	SYM
brj-24331	458	5	j.combustflame.2005.12.004	j.combustflame.2005.12.004	PROPN
brj-24331	458	6	.	.	PUNCT
brj-24331	458	7	millington	millington	PROPN
brj-24331	458	8	,	,	PUNCT
brj-24331	458	9	r.	r.	PROPN
brj-24331	458	10	,	,	PUNCT
brj-24331	458	11	and	and	CCONJ
brj-24331	458	12	quirk	quirk	NOUN
brj-24331	458	13	,	,	PUNCT
brj-24331	458	14	j.	j.	PROPN
brj-24331	458	15	(	(	PUNCT
brj-24331	458	16	1961	1961	NUM
brj-24331	458	17	)	)	PUNCT
brj-24331	458	18	.	.	PUNCT
brj-24331	459	1	“	"	PUNCT
brj-24331	459	2	permeability	permeability	NOUN
brj-24331	459	3	of	of	ADP
brj-24331	459	4	porous	porous	ADJ
brj-24331	459	5	solids	solid	NOUN
brj-24331	459	6	,	,	PUNCT
brj-24331	459	7	”	"	PUNCT
brj-24331	459	8	transactions	transaction	NOUN
brj-24331	459	9	of	of	ADP
brj-24331	459	10	the	the	DET
brj-24331	459	11	faraday	faraday	PROPN
brj-24331	459	12	society	society	PROPN
brj-24331	459	13	57	57	NUM
brj-24331	459	14	,	,	PUNCT
brj-24331	459	15	1200	1200	NUM
brj-24331	459	16	-	-	SYM
brj-24331	459	17	1207	1207	NUM
brj-24331	459	18	.	.	PUNCT
brj-24331	460	1	doi	doi	NOUN
brj-24331	460	2	:	:	PUNCT
brj-24331	460	3	10.1039	10.1039	NUM
brj-24331	460	4	/	/	SYM
brj-24331	460	5	tf9615701200	tf9615701200	PROPN
brj-24331	460	6	.	.	PUNCT
brj-24331	461	1	moghadam	moghadam	PROPN
brj-24331	461	2	,	,	PUNCT
brj-24331	461	3	r.	r.	PROPN
brj-24331	461	4	a.	a.	PROPN
brj-24331	461	5	,	,	PUNCT
brj-24331	461	6	yusup	yusup	PROPN
brj-24331	461	7	,	,	PUNCT
brj-24331	461	8	s.	s.	PROPN
brj-24331	461	9	,	,	PUNCT
brj-24331	461	10	azlina	azlina	PROPN
brj-24331	461	11	,	,	PUNCT
brj-24331	461	12	w.	w.	PROPN
brj-24331	461	13	,	,	PUNCT
brj-24331	461	14	nehzati	nehzati	PROPN
brj-24331	461	15	,	,	PUNCT
brj-24331	461	16	s.	s.	PROPN
brj-24331	461	17	,	,	PUNCT
brj-24331	461	18	and	and	CCONJ
brj-24331	461	19	tavasoli	tavasoli	NOUN
brj-24331	461	20	,	,	PUNCT
brj-24331	461	21	a.	a.	NOUN
brj-24331	461	22	(	(	PUNCT
brj-24331	461	23	0	0	NUM
brj-24331	461	24	4	4	NUM
brj-24331	461	25	)	)	PUNCT
brj-24331	461	26	.	.	PUNCT
brj-24331	462	1	“	"	PUNCT
brj-24331	462	2	investigation	investigation	NOUN
brj-24331	462	3	on	on	ADP
brj-24331	462	4	syngas	syngas	NOUN
brj-24331	462	5	production	production	NOUN
brj-24331	462	6	via	via	ADP
brj-24331	462	7	biomass	biomass	NOUN
brj-24331	462	8	conversion	conversion	NOUN
brj-24331	462	9	through	through	ADP
brj-24331	462	10	the	the	DET
brj-24331	462	11	integration	integration	NOUN
brj-24331	462	12	of	of	ADP
brj-24331	462	13	pyrolysis	pyrolysis	NOUN
brj-24331	462	14	and	and	CCONJ
brj-24331	462	15	air	air	NOUN
brj-24331	462	16	–	–	PUNCT
brj-24331	462	17	steam	steam	NOUN
brj-24331	462	18	gasification	gasification	NOUN
brj-24331	462	19	processes	process	NOUN
brj-24331	462	20	,	,	PUNCT
brj-24331	462	21	”	"	PUNCT
brj-24331	462	22	energy	energy	NOUN
brj-24331	462	23	conversion	conversion	NOUN
brj-24331	462	24	and	and	CCONJ
brj-24331	462	25	management	management	NOUN
brj-24331	462	26	87	87	NUM
brj-24331	462	27	,	,	PUNCT
brj-24331	462	28	670	670	NUM
brj-24331	462	29	-	-	SYM
brj-24331	462	30	675	675	NUM
brj-24331	462	31	.	.	PUNCT
brj-24331	463	1	doi	doi	NOUN
brj-24331	463	2	:	:	PUNCT
brj-24331	463	3	10.1016	10.1016	NUM
brj-24331	463	4	/	/	SYM
brj-24331	463	5	j.enconman.2014.07.065	j.enconman.2014.07.065	PROPN
brj-24331	463	6	nguyen	nguyen	NOUN
brj-24331	463	7	,	,	PUNCT
brj-24331	463	8	h.	h.	PROPN
brj-24331	463	9	n.	n.	PROPN
brj-24331	463	10	,	,	PUNCT
brj-24331	463	11	van	van	PROPN
brj-24331	463	12	de	de	X
brj-24331	463	13	steene	steene	PROPN
brj-24331	463	14	,	,	PUNCT
brj-24331	463	15	l.	l.	PROPN
brj-24331	463	16	,	,	PUNCT
brj-24331	463	17	and	and	CCONJ
brj-24331	463	18	le	le	X
brj-24331	463	19	,	,	PUNCT
brj-24331	463	20	d.	d.	PROPN
brj-24331	463	21	d.	d.	PROPN
brj-24331	463	22	(	(	PUNCT
brj-24331	463	23	0	0	NUM
brj-24331	463	24	8)	8)	NUM
brj-24331	463	25	.	.	PUNCT
brj-24331	464	1	“	"	PUNCT
brj-24331	464	2	kinetics	kinetic	NOUN
brj-24331	464	3	of	of	ADP
brj-24331	464	4	rice	rice	NOUN
brj-24331	464	5	husk	husk	NOUN
brj-24331	464	6	char	char	NOUN
brj-24331	464	7	gasification	gasification	NOUN
brj-24331	464	8	in	in	ADP
brj-24331	464	9	an	an	DET
brj-24331	464	10	h2o	h2o	NOUN
brj-24331	464	11	or	or	CCONJ
brj-24331	464	12	a	a	DET
brj-24331	464	13	co2	co2	NOUN
brj-24331	464	14	atmosphere	atmosphere	NOUN
brj-24331	464	15	,	,	PUNCT
brj-24331	464	16	”	"	PUNCT
brj-24331	464	17	energy	energy	NOUN
brj-24331	464	18	sources	source	NOUN
brj-24331	464	19	,	,	PUNCT
brj-24331	464	20	part	part	NOUN
brj-24331	464	21	a	a	DET
brj-24331	464	22	:	:	PUNCT
brj-24331	464	23	recovery	recovery	NOUN
brj-24331	464	24	,	,	PUNCT
brj-24331	464	25	utilization	utilization	NOUN
brj-24331	464	26	,	,	PUNCT
brj-24331	464	27	and	and	CCONJ
brj-24331	464	28	environmental	environmental	ADJ
brj-24331	464	29	effects	effect	NOUN
brj-24331	464	30	40(14	40(14	PROPN
brj-24331	464	31	)	)	PUNCT
brj-24331	464	32	,	,	PUNCT
brj-24331	464	33	1701	1701	NUM
brj-24331	464	34	-	-	SYM
brj-24331	464	35	1713	1713	NUM
brj-24331	464	36	.	.	PUNCT
brj-24331	465	1	doi	doi	NOUN
brj-24331	465	2	:	:	PUNCT
brj-24331	465	3	10.1080/15567036.2018.1486900	10.1080/15567036.2018.1486900	NUM
brj-24331	465	4	.	.	PUNCT
brj-24331	465	5	niu	niu	PROPN
brj-24331	465	6	,	,	PUNCT
brj-24331	465	7	m.	m.	NOUN
brj-24331	465	8	,	,	PUNCT
brj-24331	465	9	huang	huang	PROPN
brj-24331	465	10	,	,	PUNCT
brj-24331	465	11	y.	y.	PROPN
brj-24331	465	12	,	,	PUNCT
brj-24331	465	13	jin	jin	PROPN
brj-24331	465	14	,	,	PUNCT
brj-24331	465	15	b.	b.	PROPN
brj-24331	465	16	,	,	PUNCT
brj-24331	465	17	and	and	CCONJ
brj-24331	465	18	wang	wang	PROPN
brj-24331	465	19	,	,	PUNCT
brj-24331	465	20	x.	x.	NOUN
brj-24331	465	21	(	(	PUNCT
brj-24331	465	22	0	0	NUM
brj-24331	465	23	4	4	NUM
brj-24331	465	24	)	)	PUNCT
brj-24331	465	25	.	.	PUNCT
brj-24331	466	1	“	"	PUNCT
brj-24331	466	2	oxygen	oxygen	NOUN
brj-24331	466	3	gasification	gasification	NOUN
brj-24331	466	4	of	of	ADP
brj-24331	466	5	municipal	municipal	ADJ
brj-24331	466	6	solid	solid	ADJ
brj-24331	466	7	waste	waste	NOUN
brj-24331	466	8	in	in	ADP
brj-24331	466	9	a	a	DET
brj-24331	466	10	fixed	fix	VERB
brj-24331	466	11	-	-	PUNCT
brj-24331	466	12	bed	bed	NOUN
brj-24331	466	13	gasifier	gasifier	NOUN
brj-24331	466	14	,	,	PUNCT
brj-24331	466	15	”	"	PUNCT
brj-24331	466	16	chinese	chinese	ADJ
brj-24331	466	17	journal	journal	NOUN
brj-24331	466	18	of	of	ADP
brj-24331	466	19	chemical	chemical	PROPN
brj-24331	466	20	engineering	engineering	PROPN
brj-24331	466	21	22(9	22(9	NUM
brj-24331	466	22	)	)	PUNCT
brj-24331	466	23	,	,	PUNCT
brj-24331	466	24	10211026	10211026	NUM
brj-24331	466	25	.	.	PUNCT
brj-24331	467	1	doi	doi	NOUN
brj-24331	467	2	:	:	PUNCT
brj-24331	467	3	10.1016	10.1016	NUM
brj-24331	467	4	/	/	SYM
brj-24331	467	5	j.cjche.2014.06.026	j.cjche.2014.06.026	PROPN
brj-24331	467	6	nsaful	nsaful	PROPN
brj-24331	467	7	,	,	PUNCT
brj-24331	467	8	f.	f.	PROPN
brj-24331	467	9	,	,	PUNCT
brj-24331	467	10	görgens	görgen	NOUN
brj-24331	467	11	,	,	PUNCT
brj-24331	467	12	j.	j.	PROPN
brj-24331	467	13	,	,	PUNCT
brj-24331	467	14	and	and	CCONJ
brj-24331	467	15	knoetze	knoetze	PROPN
brj-24331	467	16	,	,	PUNCT
brj-24331	467	17	j.	j.	PROPN
brj-24331	467	18	(	(	PUNCT
brj-24331	467	19	0	0	NUM
brj-24331	467	20	)	)	PUNCT
brj-24331	467	21	.	.	PUNCT
brj-24331	468	1	“	"	PUNCT
brj-24331	468	2	comparison	comparison	NOUN
brj-24331	468	3	of	of	ADP
brj-24331	468	4	combustion	combustion	NOUN
brj-24331	468	5	and	and	CCONJ
brj-24331	468	6	pyrolysis	pyrolysis	NOUN
brj-24331	468	7	for	for	ADP
brj-24331	468	8	energy	energy	NOUN
brj-24331	468	9	generation	generation	NOUN
brj-24331	468	10	in	in	ADP
brj-24331	468	11	a	a	DET
brj-24331	468	12	sugarcane	sugarcane	NOUN
brj-24331	468	13	mill	mill	NOUN
brj-24331	468	14	,	,	PUNCT
brj-24331	468	15	”	"	PUNCT
brj-24331	468	16	energy	energy	NOUN
brj-24331	468	17	conversion	conversion	NOUN
brj-24331	468	18	and	and	CCONJ
brj-24331	468	19	management	management	NOUN
brj-24331	468	20	74	74	NUM
brj-24331	468	21	,	,	PUNCT
brj-24331	468	22	524	524	NUM
brj-24331	468	23	-	-	SYM
brj-24331	468	24	534	534	NUM
brj-24331	468	25	.	.	PUNCT
brj-24331	469	1	doi	doi	NOUN
brj-24331	469	2	:	:	PUNCT
brj-24331	469	3	10.1016	10.1016	NUM
brj-24331	469	4	/	/	SYM
brj-24331	469	5	j.enconman.2013.07.024	j.enconman.2013.07.024	PROPN
brj-24331	469	6	okoro	okoro	NOUN
brj-24331	469	7	,	,	PUNCT
brj-24331	469	8	n.	n.	NOUN
brj-24331	469	9	,	,	PUNCT
brj-24331	469	10	harding	harding	PROPN
brj-24331	469	11	,	,	PUNCT
brj-24331	469	12	k.	k.	PROPN
brj-24331	469	13	,	,	PUNCT
brj-24331	469	14	and	and	CCONJ
brj-24331	469	15	daramola	daramola	PROPN
brj-24331	469	16	,	,	PUNCT
brj-24331	469	17	m.	m.	NOUN
brj-24331	469	18	(	(	PUNCT
brj-24331	469	19	0	0	NUM
brj-24331	469	20	0	0	NUM
brj-24331	469	21	)	)	PUNCT
brj-24331	469	22	.	.	PUNCT
brj-24331	470	1	“	"	PUNCT
brj-24331	470	2	pyro	pyro	NOUN
brj-24331	470	3	-	-	PUNCT
brj-24331	470	4	gasification	gasification	NOUN
brj-24331	470	5	of	of	ADP
brj-24331	470	6	invasive	invasive	ADJ
brj-24331	470	7	plants	plant	NOUN
brj-24331	470	8	to	to	ADP
brj-24331	470	9	syngas	syngas	NOUN
brj-24331	470	10	,	,	PUNCT
brj-24331	470	11	”	"	PUNCT
brj-24331	470	12	in	in	ADP
brj-24331	470	13	:	:	PUNCT
brj-24331	470	14	valorization	valorization	NOUN
brj-24331	470	15	of	of	ADP
brj-24331	470	16	biomass	biomass	NOUN
brj-24331	470	17	to	to	ADP
brj-24331	470	18	value	value	NOUN
brj-24331	470	19	-	-	PUNCT
brj-24331	470	20	added	add	VERB
brj-24331	470	21	commodities	commodity	NOUN
brj-24331	470	22	,	,	PUNCT
brj-24331	470	23	springer	springer	NOUN
brj-24331	470	24	,	,	PUNCT
brj-24331	470	25	amsterdam	amsterdam	PROPN
brj-24331	470	26	,	,	PUNCT
brj-24331	470	27	pp	pp	ADJ
brj-24331	470	28	.	.	PUNCT
brj-24331	471	1	317	317	NUM
brj-24331	471	2	-	-	SYM
brj-24331	471	3	340	340	NUM
brj-24331	471	4	.	.	PUNCT
brj-24331	472	1	doi	doi	NOUN
brj-24331	472	2	:	:	PUNCT
brj-24331	472	3	10.1007/978	10.1007/978	NUM
brj-24331	472	4	-	-	SYM
brj-24331	472	5	3	3	NUM
brj-24331	472	6	-	-	PUNCT
brj-24331	472	7	030	030	NUM
brj-24331	472	8	-	-	PUNCT
brj-24331	472	9	38032	38032	NUM
brj-24331	472	10	-	-	PUNCT
brj-24331	472	11	8_16	8_16	NUM
brj-24331	472	12	okoro	okoro	NOUN
brj-24331	472	13	,	,	PUNCT
brj-24331	472	14	o.	o.	PROPN
brj-24331	472	15	v.	v.	PROPN
brj-24331	472	16	,	,	PUNCT
brj-24331	472	17	sun	sun	PROPN
brj-24331	472	18	,	,	PUNCT
brj-24331	472	19	z.	z.	PROPN
brj-24331	472	20	,	,	PUNCT
brj-24331	472	21	and	and	CCONJ
brj-24331	472	22	birch	birch	PROPN
brj-24331	472	23	,	,	PUNCT
brj-24331	472	24	j.	j.	PROPN
brj-24331	472	25	(	(	PUNCT
brj-24331	472	26	0	0	NUM
brj-24331	472	27	7	7	NUM
brj-24331	472	28	)	)	PUNCT
brj-24331	472	29	.	.	PUNCT
brj-24331	473	1	“	"	PUNCT
brj-24331	473	2	meat	meat	NOUN
brj-24331	473	3	processing	processing	NOUN
brj-24331	473	4	waste	waste	NOUN
brj-24331	473	5	as	as	ADP
brj-24331	473	6	a	a	DET
brj-24331	473	7	potential	potential	ADJ
brj-24331	473	8	feedstock	feedstock	NOUN
brj-24331	473	9	for	for	ADP
brj-24331	473	10	biochemicals	biochemical	NOUN
brj-24331	473	11	and	and	CCONJ
brj-24331	473	12	biofuels	biofuel	NOUN
brj-24331	473	13	–	–	PUNCT
brj-24331	473	14	a	a	DET
brj-24331	473	15	review	review	NOUN
brj-24331	473	16	of	of	ADP
brj-24331	473	17	possible	possible	ADJ
brj-24331	473	18	conversion	conversion	NOUN
brj-24331	473	19	technologies	technology	NOUN
brj-24331	473	20	,	,	PUNCT
brj-24331	473	21	”	"	PUNCT
brj-24331	473	22	journal	journal	NOUN
brj-24331	473	23	of	of	ADP
brj-24331	473	24	cleaner	clean	ADJ
brj-24331	473	25	production	production	NOUN
brj-24331	473	26	142	142	NUM
brj-24331	473	27	,	,	PUNCT
brj-24331	473	28	1583	1583	NUM
brj-24331	473	29	-	-	SYM
brj-24331	473	30	1608	1608	NUM
brj-24331	473	31	.	.	PUNCT
brj-24331	474	1	doi	doi	NOUN
brj-24331	474	2	:	:	PUNCT
brj-24331	474	3	10.1016	10.1016	NUM
brj-24331	474	4	/	/	SYM
brj-24331	474	5	j.jclepro.2016.11.141	j.jclepro.2016.11.141	PROPN
brj-24331	474	6	patra	patra	PROPN
brj-24331	474	7	,	,	PUNCT
brj-24331	474	8	t.	t.	PROPN
brj-24331	474	9	k.	k.	PROPN
brj-24331	474	10	,	,	PUNCT
brj-24331	474	11	and	and	CCONJ
brj-24331	474	12	sheth	sheth	PROPN
brj-24331	474	13	,	,	PUNCT
brj-24331	474	14	p.	p.	PROPN
brj-24331	474	15	n.	n.	PROPN
brj-24331	474	16	(	(	PUNCT
brj-24331	474	17	0	0	NUM
brj-24331	474	18	)	)	PUNCT
brj-24331	474	19	.	.	PUNCT
brj-24331	475	1	“	"	PUNCT
brj-24331	475	2	biomass	biomass	NOUN
brj-24331	475	3	gasification	gasification	NOUN
brj-24331	475	4	models	model	NOUN
brj-24331	475	5	for	for	ADP
brj-24331	475	6	downdraft	downdraft	NOUN
brj-24331	475	7	gasifier	gasifier	NOUN
brj-24331	475	8	:	:	PUNCT
brj-24331	475	9	a	a	DET
brj-24331	475	10	state	state	NOUN
brj-24331	475	11	-	-	PUNCT
brj-24331	475	12	of	of	ADP
brj-24331	475	13	-	-	PUNCT
brj-24331	475	14	the	the	DET
brj-24331	475	15	-	-	PUNCT
brj-24331	475	16	art	art	NOUN
brj-24331	475	17	review	review	NOUN
brj-24331	475	18	,	,	PUNCT
brj-24331	475	19	”	"	PUNCT
brj-24331	475	20	renewable	renewable	ADJ
brj-24331	475	21	and	and	CCONJ
brj-24331	475	22	sustainable	sustainable	ADJ
brj-24331	475	23	energy	energy	NOUN
brj-24331	475	24	reviews	review	NOUN
brj-24331	475	25	50	50	NUM
brj-24331	475	26	,	,	PUNCT
brj-24331	475	27	583	583	NUM
brj-24331	475	28	-	-	SYM
brj-24331	475	29	593	593	NUM
brj-24331	475	30	.	.	PUNCT
brj-24331	476	1	doi	doi	NOUN
brj-24331	476	2	:	:	PUNCT
brj-24331	476	3	10.1016	10.1016	NUM
brj-24331	476	4	/	/	SYM
brj-24331	476	5	j.rser.2015.05.012	j.rser.2015.05.012	PROPN
brj-24331	476	6	.	.	PUNCT
brj-24331	476	7	rabea	rabea	PROPN
brj-24331	476	8	,	,	PUNCT
brj-24331	476	9	k.	k.	PROPN
brj-24331	476	10	,	,	PUNCT
brj-24331	476	11	michailos	michailos	PROPN
brj-24331	476	12	,	,	PUNCT
brj-24331	476	13	s.	s.	PROPN
brj-24331	476	14	,	,	PUNCT
brj-24331	476	15	akram	akram	PROPN
brj-24331	476	16	,	,	PUNCT
brj-24331	476	17	m.	m.	NOUN
brj-24331	476	18	,	,	PUNCT
brj-24331	476	19	hughes	hughes	PROPN
brj-24331	476	20	,	,	PUNCT
brj-24331	476	21	k.j	k.j	PROPN
brj-24331	476	22	.	.	PROPN
brj-24331	476	23	,	,	PUNCT
brj-24331	476	24	ingham	ingham	PROPN
brj-24331	476	25	,	,	PUNCT
brj-24331	476	26	d.	d.	PROPN
brj-24331	476	27	,	,	PUNCT
brj-24331	476	28	and	and	CCONJ
brj-24331	476	29	pourkashanian	pourkashanian	NOUN
brj-24331	476	30	,	,	PUNCT
brj-24331	476	31	m.	m.	NOUN
brj-24331	476	32	(	(	PUNCT
brj-24331	476	33	0	0	NUM
brj-24331	476	34	)	)	PUNCT
brj-24331	476	35	.	.	PUNCT
brj-24331	477	1	“	"	PUNCT
brj-24331	477	2	an	an	DET
brj-24331	477	3	improved	improved	ADJ
brj-24331	477	4	kinetic	kinetic	NOUN
brj-24331	477	5	modelling	modelling	NOUN
brj-24331	477	6	of	of	ADP
brj-24331	477	7	woody	woody	NOUN
brj-24331	477	8	biomass	biomass	NOUN
brj-24331	477	9	gasification	gasification	NOUN
brj-24331	477	10	in	in	ADP
brj-24331	477	11	a	a	DET
brj-24331	477	12	downdraft	downdraft	NOUN
brj-24331	477	13	reactor	reactor	NOUN
brj-24331	477	14	based	base	VERB
brj-24331	477	15	on	on	ADP
brj-24331	477	16	the	the	DET
brj-24331	477	17	pyrolysis	pyrolysis	NOUN
brj-24331	477	18	gas	gas	NOUN
brj-24331	477	19	evolution	evolution	NOUN
brj-24331	477	20	,	,	PUNCT
brj-24331	477	21	”	"	PUNCT
brj-24331	477	22	energy	energy	NOUN
brj-24331	477	23	conversion	conversion	NOUN
brj-24331	477	24	and	and	CCONJ
brj-24331	477	25	management	management	NOUN
brj-24331	477	26	258	258	NUM
brj-24331	477	27	,	,	PUNCT
brj-24331	477	28	artcle	artcle	NOUN
brj-24331	477	29	115495	115495	NUM
brj-24331	477	30	.	.	PUNCT
brj-24331	478	1	doi	doi	NOUN
brj-24331	478	2	:	:	PUNCT
brj-24331	478	3	10.1016	10.1016	NUM
brj-24331	478	4	/	/	SYM
brj-24331	478	5	j.enconman.2022.115495	j.enconman.2022.115495	PROPN
brj-24331	478	6	.	.	PUNCT
brj-24331	479	1	safarian	safarian	PROPN
brj-24331	479	2	,	,	PUNCT
brj-24331	479	3	s.	s.	PROPN
brj-24331	479	4	,	,	PUNCT
brj-24331	479	5	unnþórsson	unnþórsson	PROPN
brj-24331	479	6	,	,	PUNCT
brj-24331	479	7	r.	r.	PROPN
brj-24331	479	8	,	,	PUNCT
brj-24331	479	9	and	and	CCONJ
brj-24331	479	10	richter	richter	PROPN
brj-24331	479	11	,	,	PUNCT
brj-24331	479	12	c.	c.	PROPN
brj-24331	479	13	(	(	PUNCT
brj-24331	479	14	0	0	NUM
brj-24331	479	15	9	9	NUM
brj-24331	479	16	)	)	PUNCT
brj-24331	479	17	.	.	PUNCT
brj-24331	480	1	“	"	PUNCT
brj-24331	480	2	a	a	DET
brj-24331	480	3	review	review	NOUN
brj-24331	480	4	of	of	ADP
brj-24331	480	5	biomass	biomass	NOUN
brj-24331	480	6	gasification	gasification	NOUN
brj-24331	480	7	peer	peer	NOUN
brj-24331	480	8	-	-	PUNCT
brj-24331	480	9	reviewed	review	VERB
brj-24331	480	10	article	article	NOUN
brj-24331	480	11	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	480	12	sangaré	sangaré	PROPN
brj-24331	480	13	et	et	PROPN
brj-24331	480	14	al	al	PROPN
brj-24331	480	15	.	.	PROPN
brj-24331	481	1	(	(	PUNCT
brj-24331	481	2	2025	2025	NUM
brj-24331	481	3	)	)	PUNCT
brj-24331	481	4	.	.	PUNCT
brj-24331	482	1	“	"	PUNCT
brj-24331	482	2	pyrogasification	pyrogasification	NOUN
brj-24331	482	3	of	of	ADP
brj-24331	482	4	biomass	biomass	NOUN
brj-24331	482	5	,	,	PUNCT
brj-24331	482	6	”	"	PUNCT
brj-24331	482	7	bioresources	bioresource	NOUN
brj-24331	482	8	20(2	20(2	NUM
brj-24331	482	9	)	)	PUNCT
brj-24331	482	10	,	,	PUNCT
brj-24331	482	11	2844	2844	NUM
brj-24331	482	12	-	-	SYM
brj-24331	482	13	2870	2870	NUM
brj-24331	482	14	.	.	PUNCT
brj-24331	483	1	2869	2869	NUM
brj-24331	483	2	modelling	modelling	NOUN
brj-24331	483	3	,	,	PUNCT
brj-24331	483	4	”	"	PUNCT
brj-24331	483	5	renewable	renewable	ADJ
brj-24331	483	6	and	and	CCONJ
brj-24331	483	7	sustainable	sustainable	ADJ
brj-24331	483	8	energy	energy	NOUN
brj-24331	483	9	reviews	review	NOUN
brj-24331	483	10	110	110	NUM
brj-24331	483	11	,	,	PUNCT
brj-24331	483	12	378	378	NUM
brj-24331	483	13	-	-	SYM
brj-24331	483	14	391	391	NUM
brj-24331	483	15	.	.	PUNCT
brj-24331	484	1	doi	doi	NOUN
brj-24331	484	2	:	:	PUNCT
brj-24331	484	3	10.1016	10.1016	NUM
brj-24331	484	4	/	/	SYM
brj-24331	484	5	j.rser.2019.05.003	j.rser.2019.05.003	PROPN
brj-24331	484	6	.	.	PROPN
brj-24331	484	7	sangaré	sangaré	PROPN
brj-24331	484	8	,	,	PUNCT
brj-24331	484	9	d.	d.	PROPN
brj-24331	484	10	,	,	PUNCT
brj-24331	484	11	belandria	belandria	PROPN
brj-24331	484	12	,	,	PUNCT
brj-24331	484	13	v.	v.	PROPN
brj-24331	484	14	,	,	PUNCT
brj-24331	484	15	bostyn	bostyn	PROPN
brj-24331	484	16	,	,	PUNCT
brj-24331	484	17	s.	s.	PROPN
brj-24331	484	18	,	,	PUNCT
brj-24331	484	19	moscosa	moscosa	PROPN
brj-24331	484	20	-	-	PUNCT
brj-24331	484	21	santillan	santillan	PROPN
brj-24331	484	22	,	,	PUNCT
brj-24331	484	23	m.	m.	NOUN
brj-24331	484	24	,	,	PUNCT
brj-24331	484	25	and	and	CCONJ
brj-24331	484	26	gökalp	gökalp	NOUN
brj-24331	484	27	,	,	PUNCT
brj-24331	484	28	i.	i.	NOUN
brj-24331	484	29	(	(	PUNCT
brj-24331	484	30	2024a	2024a	NUM
brj-24331	484	31	)	)	PUNCT
brj-24331	484	32	.	.	PUNCT
brj-24331	485	1	“	"	PUNCT
brj-24331	485	2	pyrogasification	pyrogasification	NOUN
brj-24331	485	3	of	of	ADP
brj-24331	485	4	lignocellulosic	lignocellulosic	ADJ
brj-24331	485	5	biomass	biomass	NOUN
brj-24331	485	6	:	:	PUNCT
brj-24331	485	7	online	online	ADJ
brj-24331	485	8	quantification	quantification	NOUN
brj-24331	485	9	of	of	ADP
brj-24331	485	10	gas	gas	NOUN
brj-24331	485	11	evolution	evolution	NOUN
brj-24331	485	12	with	with	ADP
brj-24331	485	13	temperature	temperature	NOUN
brj-24331	485	14	,	,	PUNCT
brj-24331	485	15	effects	effect	NOUN
brj-24331	485	16	of	of	ADP
brj-24331	485	17	heating	heating	NOUN
brj-24331	485	18	rate	rate	NOUN
brj-24331	485	19	,	,	PUNCT
brj-24331	485	20	and	and	CCONJ
brj-24331	485	21	stoichiometric	stoichiometric	ADJ
brj-24331	485	22	ratio	ratio	NOUN
brj-24331	485	23	,	,	PUNCT
brj-24331	485	24	”	"	PUNCT
brj-24331	485	25	biomass	biomass	NOUN
brj-24331	485	26	conversion	conversion	NOUN
brj-24331	485	27	and	and	CCONJ
brj-24331	485	28	biorefinery	biorefinery	NOUN
brj-24331	485	29	14(8	14(8	NUM
brj-24331	485	30	)	)	PUNCT
brj-24331	485	31	,	,	PUNCT
brj-24331	485	32	9763	9763	NUM
brj-24331	485	33	-	-	SYM
brj-24331	485	34	9775	9775	NUM
brj-24331	485	35	.	.	PUNCT
brj-24331	486	1	doi	doi	NOUN
brj-24331	486	2	:	:	PUNCT
brj-24331	486	3	10.1007	10.1007	NUM
brj-24331	486	4	/	/	SYM
brj-24331	486	5	s13399	s13399	NOUN
brj-24331	486	6	-	-	PUNCT
brj-24331	486	7	022	022	NUM
brj-24331	486	8	-	-	PUNCT
brj-24331	486	9	03103	03103	NUM
brj-24331	486	10	-	-	PUNCT
brj-24331	486	11	x	x	SYM
brj-24331	486	12	sangaré	sangaré	NOUN
brj-24331	486	13	,	,	PUNCT
brj-24331	486	14	d.	d.	PROPN
brj-24331	486	15	,	,	PUNCT
brj-24331	486	16	bostyn	bostyn	PROPN
brj-24331	486	17	,	,	PUNCT
brj-24331	486	18	s.	s.	PROPN
brj-24331	486	19	,	,	PUNCT
brj-24331	486	20	santillán	santillán	NOUN
brj-24331	486	21	,	,	PUNCT
brj-24331	486	22	m.	m.	NOUN
brj-24331	486	23	m.	m.	NOUN
brj-24331	486	24	,	,	PUNCT
brj-24331	486	25	garcía	garcía	NOUN
brj-24331	486	26	-	-	PUNCT
brj-24331	486	27	alamilla	alamilla	NOUN
brj-24331	486	28	,	,	PUNCT
brj-24331	486	29	p.	p.	PROPN
brj-24331	486	30	,	,	PUNCT
brj-24331	486	31	belandria	belandria	PROPN
brj-24331	486	32	,	,	PUNCT
brj-24331	486	33	v.	v.	ADV
brj-24331	486	34	,	,	PUNCT
brj-24331	486	35	and	and	CCONJ
brj-24331	486	36	gökalp	gökalp	NOUN
brj-24331	486	37	,	,	PUNCT
brj-24331	486	38	i.	i.	NOUN
brj-24331	486	39	(	(	PUNCT
brj-24331	486	40	0	0	NUM
brj-24331	486	41	)	)	PUNCT
brj-24331	486	42	.	.	PUNCT
brj-24331	487	1	“	"	PUNCT
brj-24331	487	2	comparative	comparative	ADJ
brj-24331	487	3	pyrolysis	pyrolysis	NOUN
brj-24331	487	4	studies	study	NOUN
brj-24331	487	5	of	of	ADP
brj-24331	487	6	lignocellulosic	lignocellulosic	ADJ
brj-24331	487	7	biomasses	biomass	NOUN
brj-24331	487	8	:	:	PUNCT
brj-24331	487	9	online	online	ADJ
brj-24331	487	10	gas	gas	NOUN
brj-24331	487	11	quantification	quantification	NOUN
brj-24331	487	12	,	,	PUNCT
brj-24331	487	13	kinetics	kinetic	NOUN
brj-24331	487	14	triplets	triplet	NOUN
brj-24331	487	15	,	,	PUNCT
brj-24331	487	16	and	and	CCONJ
brj-24331	487	17	thermodynamic	thermodynamic	ADJ
brj-24331	487	18	parameters	parameter	NOUN
brj-24331	487	19	of	of	ADP
brj-24331	487	20	the	the	DET
brj-24331	487	21	process	process	NOUN
brj-24331	487	22	,	,	PUNCT
brj-24331	487	23	”	"	PUNCT
brj-24331	487	24	bioresource	bioresource	ADP
brj-24331	487	25	technology	technology	NOUN
brj-24331	487	26	346	346	NUM
brj-24331	487	27	,	,	PUNCT
brj-24331	487	28	126598	126598	NUM
brj-24331	487	29	.	.	PUNCT
brj-24331	488	1	doi	doi	NOUN
brj-24331	488	2	:	:	PUNCT
brj-24331	488	3	10.1016	10.1016	NUM
brj-24331	488	4	/	/	SYM
brj-24331	488	5	j.biortech.2021.126598	j.biortech.2021.126598	PROPN
brj-24331	488	6	sangaré	sangaré	PROPN
brj-24331	488	7	,	,	PUNCT
brj-24331	488	8	d.	d.	PROPN
brj-24331	488	9	,	,	PUNCT
brj-24331	488	10	moscosa	moscosa	PROPN
brj-24331	488	11	-	-	PUNCT
brj-24331	488	12	santillan	santillan	PROPN
brj-24331	488	13	,	,	PUNCT
brj-24331	488	14	m.	m.	NOUN
brj-24331	488	15	,	,	PUNCT
brj-24331	488	16	bostyn	bostyn	PROPN
brj-24331	488	17	,	,	PUNCT
brj-24331	488	18	s.	s.	PROPN
brj-24331	488	19	,	,	PUNCT
brj-24331	488	20	belandria	belandria	PROPN
brj-24331	488	21	,	,	PUNCT
brj-24331	488	22	v.	v.	ADV
brj-24331	488	23	,	,	PUNCT
brj-24331	488	24	de	de	PROPN
brj-24331	488	25	la	la	PROPN
brj-24331	488	26	cruz	cruz	PROPN
brj-24331	488	27	martínez	martínez	PROPN
brj-24331	488	28	,	,	PUNCT
brj-24331	488	29	a.	a.	PROPN
brj-24331	488	30	,	,	PUNCT
brj-24331	488	31	van	van	PROPN
brj-24331	488	32	and	and	CCONJ
brj-24331	488	33	de	de	X
brj-24331	488	34	steene	steene	PROPN
brj-24331	488	35	,	,	PUNCT
brj-24331	488	36	l.	l.	PROPN
brj-24331	488	37	(	(	PUNCT
brj-24331	488	38	2024b	2024b	NUM
brj-24331	488	39	)	)	PUNCT
brj-24331	488	40	.	.	PUNCT
brj-24331	489	1	multi	multi	ADJ
brj-24331	489	2	-	-	ADJ
brj-24331	489	3	step	step	ADJ
brj-24331	489	4	kinetic	kinetic	ADJ
brj-24331	489	5	mechanism	mechanism	NOUN
brj-24331	489	6	coupled	couple	VERB
brj-24331	489	7	with	with	ADP
brj-24331	489	8	cfd	cfd	NOUN
brj-24331	489	9	modeling	modeling	NOUN
brj-24331	489	10	of	of	ADP
brj-24331	489	11	slow	slow	ADJ
brj-24331	489	12	pyrolysis	pyrolysis	NOUN
brj-24331	489	13	of	of	ADP
brj-24331	489	14	biomass	biomass	NOUN
brj-24331	489	15	at	at	ADP
brj-24331	489	16	different	different	ADJ
brj-24331	489	17	heating	heating	NOUN
brj-24331	489	18	rates	rate	NOUN
brj-24331	489	19	,	,	PUNCT
brj-24331	489	20	”	"	PUNCT
brj-24331	489	21	chemical	chemical	NOUN
brj-24331	489	22	engineering	engineering	NOUN
brj-24331	489	23	journal	journal	NOUN
brj-24331	489	24	479	479	NUM
brj-24331	489	25	,	,	PUNCT
brj-24331	489	26	147791	147791	NUM
brj-24331	489	27	.	.	PUNCT
brj-24331	490	1	doi	doi	NOUN
brj-24331	490	2	:	:	PUNCT
brj-24331	490	3	10.1016	10.1016	NUM
brj-24331	490	4	/	/	SYM
brj-24331	490	5	j.cej.2023.147791	j.cej.2023.147791	PROPN
brj-24331	490	6	shahbaz	shahbaz	PROPN
brj-24331	490	7	,	,	PUNCT
brj-24331	490	8	m.	m.	NOUN
brj-24331	490	9	,	,	PUNCT
brj-24331	490	10	yusup	yusup	PROPN
brj-24331	490	11	,	,	PUNCT
brj-24331	490	12	s.	s.	PROPN
brj-24331	490	13	,	,	PUNCT
brj-24331	490	14	inayat	inayat	PROPN
brj-24331	490	15	,	,	PUNCT
brj-24331	490	16	a.	a.	PROPN
brj-24331	490	17	,	,	PUNCT
brj-24331	490	18	ammar	ammar	PROPN
brj-24331	490	19	,	,	PUNCT
brj-24331	490	20	m.	m.	NOUN
brj-24331	490	21	,	,	PUNCT
brj-24331	490	22	patrick	patrick	PROPN
brj-24331	490	23	,	,	PUNCT
brj-24331	490	24	d.	d.	PROPN
brj-24331	490	25	o.	o.	PROPN
brj-24331	490	26	,	,	PUNCT
brj-24331	490	27	pratama	pratama	NOUN
brj-24331	490	28	,	,	PUNCT
brj-24331	490	29	a.	a.	NOUN
brj-24331	490	30	,	,	PUNCT
brj-24331	490	31	and	and	CCONJ
brj-24331	490	32	naqvi	naqvi	NOUN
brj-24331	490	33	,	,	PUNCT
brj-24331	490	34	s	s	PART
brj-24331	490	35	.r	.r	NOUN
brj-24331	490	36	.	.	PUNCT
brj-24331	491	1	(	(	PUNCT
brj-24331	491	2	0	0	NUM
brj-24331	491	3	7	7	NUM
brj-24331	491	4	)	)	PUNCT
brj-24331	491	5	.	.	PUNCT
brj-24331	492	1	“	"	PUNCT
brj-24331	492	2	syngas	syngas	NOUN
brj-24331	492	3	production	production	NOUN
brj-24331	492	4	from	from	ADP
brj-24331	492	5	steam	steam	NOUN
brj-24331	492	6	gasification	gasification	NOUN
brj-24331	492	7	of	of	ADP
brj-24331	492	8	palm	palm	NOUN
brj-24331	492	9	kernel	kernel	PROPN
brj-24331	492	10	shell	shell	VERB
brj-24331	492	11	with	with	ADP
brj-24331	492	12	subsequent	subsequent	ADJ
brj-24331	492	13	co2	co2	NOUN
brj-24331	492	14	capture	capture	NOUN
brj-24331	492	15	using	use	VERB
brj-24331	492	16	cao	cao	PROPN
brj-24331	492	17	sorbent	sorbent	NOUN
brj-24331	492	18	:	:	PUNCT
brj-24331	492	19	an	an	DET
brj-24331	492	20	aspen	aspen	NOUN
brj-24331	492	21	plus	plus	CCONJ
brj-24331	492	22	modeling	modeling	NOUN
brj-24331	492	23	,	,	PUNCT
brj-24331	492	24	”	"	PUNCT
brj-24331	492	25	energy	energy	NOUN
brj-24331	492	26	&	&	CCONJ
brj-24331	492	27	fuels	fuel	NOUN
brj-24331	492	28	31(11	31(11	NUM
brj-24331	492	29	)	)	PUNCT
brj-24331	492	30	,	,	PUNCT
brj-24331	492	31	12350	12350	NUM
brj-24331	492	32	-	-	SYM
brj-24331	492	33	12357	12357	NUM
brj-24331	492	34	.	.	PUNCT
brj-24331	493	1	doi	doi	NOUN
brj-24331	493	2	:	:	PUNCT
brj-24331	493	3	10.1021	10.1021	NUM
brj-24331	493	4	/	/	SYM
brj-24331	493	5	acs.energyfuels.7b02670	acs.energyfuels.7b02670	NOUN
brj-24331	493	6	stefanidis	stefanidis	PROPN
brj-24331	493	7	,	,	PUNCT
brj-24331	493	8	s.	s.	PROPN
brj-24331	493	9	d.	d.	PROPN
brj-24331	493	10	,	,	PUNCT
brj-24331	493	11	kalogiannis	kalogiannis	PROPN
brj-24331	493	12	,	,	PUNCT
brj-24331	493	13	k.	k.	PROPN
brj-24331	493	14	g.	g.	PROPN
brj-24331	493	15	,	,	PUNCT
brj-24331	493	16	iliopoulou	iliopoulou	PROPN
brj-24331	493	17	,	,	PUNCT
brj-24331	493	18	e.	e.	PROPN
brj-24331	493	19	f.	f.	PROPN
brj-24331	493	20	,	,	PUNCT
brj-24331	493	21	michailof	michailof	NOUN
brj-24331	493	22	,	,	PUNCT
brj-24331	493	23	c.	c.	PROPN
brj-24331	493	24	m.	m.	NOUN
brj-24331	493	25	,	,	PUNCT
brj-24331	493	26	pilavachi	pilavachi	NOUN
brj-24331	493	27	,	,	PUNCT
brj-24331	493	28	p.	p.	NOUN
brj-24331	493	29	a.	a.	NOUN
brj-24331	493	30	,	,	PUNCT
brj-24331	493	31	and	and	CCONJ
brj-24331	493	32	lappas	lappas	PROPN
brj-24331	493	33	,	,	PUNCT
brj-24331	493	34	a.	a.	NOUN
brj-24331	493	35	a.	a.	NOUN
brj-24331	493	36	(	(	PUNCT
brj-24331	493	37	0	0	NUM
brj-24331	493	38	4	4	NUM
brj-24331	493	39	)	)	PUNCT
brj-24331	493	40	.	.	PUNCT
brj-24331	494	1	“	"	PUNCT
brj-24331	494	2	a	a	DET
brj-24331	494	3	study	study	NOUN
brj-24331	494	4	of	of	ADP
brj-24331	494	5	lignocellulosic	lignocellulosic	ADJ
brj-24331	494	6	biomass	biomass	NOUN
brj-24331	494	7	pyrolysis	pyrolysis	NOUN
brj-24331	494	8	via	via	ADP
brj-24331	494	9	the	the	DET
brj-24331	494	10	pyrolysis	pyrolysis	NOUN
brj-24331	494	11	of	of	ADP
brj-24331	494	12	cellulose	cellulose	NOUN
brj-24331	494	13	,	,	PUNCT
brj-24331	494	14	hemicellulose	hemicellulose	NOUN
brj-24331	494	15	and	and	CCONJ
brj-24331	494	16	lignin	lignin	NOUN
brj-24331	494	17	,	,	PUNCT
brj-24331	494	18	”	"	PUNCT
brj-24331	494	19	journal	journal	NOUN
brj-24331	494	20	of	of	ADP
brj-24331	494	21	analytical	analytical	ADJ
brj-24331	494	22	and	and	CCONJ
brj-24331	494	23	applied	applied	ADJ
brj-24331	494	24	pyrolysis	pyrolysis	NOUN
brj-24331	494	25	105	105	NUM
brj-24331	494	26	,	,	PUNCT
brj-24331	494	27	143	143	NUM
brj-24331	494	28	-	-	SYM
brj-24331	494	29	150	150	NUM
brj-24331	494	30	.	.	PUNCT
brj-24331	495	1	doi	doi	NOUN
brj-24331	495	2	:	:	PUNCT
brj-24331	495	3	10.1016	10.1016	NUM
brj-24331	495	4	/	/	SYM
brj-24331	495	5	j.jaap.2013.10.013	j.jaap.2013.10.013	NOUN
brj-24331	495	6	torres	torre	NOUN
brj-24331	495	7	,	,	PUNCT
brj-24331	495	8	c.	c.	NOUN
brj-24331	495	9	,	,	PUNCT
brj-24331	495	10	urvina	urvina	PROPN
brj-24331	495	11	,	,	PUNCT
brj-24331	495	12	l.	l.	PROPN
brj-24331	495	13	,	,	PUNCT
brj-24331	495	14	and	and	CCONJ
brj-24331	495	15	de	de	PROPN
brj-24331	495	16	lasa	lasa	PROPN
brj-24331	495	17	,	,	PUNCT
brj-24331	495	18	h.	h.	PROPN
brj-24331	495	19	(	(	PUNCT
brj-24331	495	20	2019	2019	NUM
brj-24331	495	21	)	)	PUNCT
brj-24331	495	22	.	.	PUNCT
brj-24331	496	1	“	"	PUNCT
brj-24331	496	2	a	a	DET
brj-24331	496	3	chemical	chemical	ADJ
brj-24331	496	4	equilibrium	equilibrium	NOUN
brj-24331	496	5	model	model	NOUN
brj-24331	496	6	for	for	ADP
brj-24331	496	7	biomass	biomass	NOUN
brj-24331	496	8	gasification	gasification	NOUN
brj-24331	496	9	.	.	PUNCT
brj-24331	497	1	application	application	NOUN
brj-24331	497	2	to	to	ADP
brj-24331	497	3	costa	costa	ADJ
brj-24331	497	4	rican	rican	ADJ
brj-24331	497	5	coffee	coffee	NOUN
brj-24331	497	6	pulp	pulp	NOUN
brj-24331	497	7	transformation	transformation	NOUN
brj-24331	497	8	unit	unit	NOUN
brj-24331	497	9	,	,	PUNCT
brj-24331	497	10	”	"	PUNCT
brj-24331	497	11	biomass	biomass	NOUN
brj-24331	497	12	and	and	CCONJ
brj-24331	497	13	bioenergy	bioenergy	NOUN
brj-24331	497	14	123	123	NUM
brj-24331	497	15	,	,	PUNCT
brj-24331	497	16	89	89	NUM
brj-24331	497	17	-	-	SYM
brj-24331	497	18	103	103	NUM
brj-24331	497	19	.	.	PUNCT
brj-24331	498	1	doi	doi	NOUN
brj-24331	498	2	:	:	PUNCT
brj-24331	498	3	10.1016	10.1016	NUM
brj-24331	498	4	/	/	SYM
brj-24331	498	5	j.biombioe.2019.01.025	j.biombioe.2019.01.025	PROPN
brj-24331	498	6	upreti	upreti	PROPN
brj-24331	498	7	,	,	PUNCT
brj-24331	498	8	s.	s.	PROPN
brj-24331	498	9	r.	r.	PROPN
brj-24331	498	10	(	(	PUNCT
brj-24331	498	11	2017	2017	NUM
brj-24331	498	12	)	)	PUNCT
brj-24331	498	13	.	.	PUNCT
brj-24331	499	1	process	process	NOUN
brj-24331	499	2	modeling	modeling	NOUN
brj-24331	499	3	and	and	CCONJ
brj-24331	499	4	simulation	simulation	NOUN
brj-24331	499	5	for	for	ADP
brj-24331	499	6	chemical	chemical	NOUN
brj-24331	499	7	engineers	engineer	NOUN
brj-24331	499	8	:	:	PUNCT
brj-24331	499	9	theory	theory	NOUN
brj-24331	499	10	and	and	CCONJ
brj-24331	499	11	practice	practice	NOUN
brj-24331	499	12	,	,	PUNCT
brj-24331	499	13	john	john	PROPN
brj-24331	499	14	wiley	wiley	PROPN
brj-24331	499	15	&	&	CCONJ
brj-24331	499	16	sons	sons	PROPN
brj-24331	499	17	,	,	PUNCT
brj-24331	499	18	hoboken	hoboken	PROPN
brj-24331	499	19	,	,	PUNCT
brj-24331	499	20	nj	nj	PROPN
brj-24331	499	21	,	,	PUNCT
brj-24331	499	22	usa	usa	PROPN
brj-24331	499	23	.	.	PROPN
brj-24331	499	24	van	van	PROPN
brj-24331	499	25	oecke	oecke	PROPN
brj-24331	499	26	,	,	PUNCT
brj-24331	499	27	l.	l.	PROPN
brj-24331	499	28	,	,	PUNCT
brj-24331	499	29	boeye	boeye	NOUN
brj-24331	499	30	,	,	PUNCT
brj-24331	499	31	d.	d.	PROPN
brj-24331	499	32	,	,	PUNCT
brj-24331	499	33	onzalez‐quiroga	onzalez‐quiroga	PROPN
brj-24331	499	34	,	,	PUNCT
brj-24331	499	35	a.	a.	NOUN
brj-24331	499	36	,	,	PUNCT
brj-24331	499	37	patience	patience	NOUN
brj-24331	499	38	,	,	PUNCT
brj-24331	499	39	.	.	PUNCT
brj-24331	500	1	s.	s.	PROPN
brj-24331	500	2	,	,	PUNCT
brj-24331	500	3	and	and	CCONJ
brj-24331	500	4	perreault	perreault	NOUN
brj-24331	500	5	,	,	PUNCT
brj-24331	500	6	p.	p.	NOUN
brj-24331	500	7	(	(	PUNCT
brj-24331	500	8	2023	2023	NUM
brj-24331	500	9	)	)	PUNCT
brj-24331	500	10	.	.	PUNCT
brj-24331	501	1	“	"	PUNCT
brj-24331	501	2	experimental	experimental	ADJ
brj-24331	501	3	methods	method	NOUN
brj-24331	501	4	in	in	ADP
brj-24331	501	5	chemical	chemical	ADJ
brj-24331	501	6	engineering	engineering	NOUN
brj-24331	501	7	:	:	PUNCT
brj-24331	501	8	computational	computational	ADJ
brj-24331	501	9	fluid	fluid	ADJ
brj-24331	501	10	dynamics	dynamic	NOUN
brj-24331	501	11	/	/	SYM
brj-24331	501	12	finite	finite	NOUN
brj-24331	501	13	volume	volume	NOUN
brj-24331	501	14	method	method	NOUN
brj-24331	501	15	—	—	PUNCT
brj-24331	501	16	cfd	cfd	NOUN
brj-24331	501	17	/	/	SYM
brj-24331	501	18	fvm	fvm	NOUN
brj-24331	501	19	,	,	PUNCT
brj-24331	501	20	”	"	PUNCT
brj-24331	501	21	the	the	DET
brj-24331	501	22	canadian	canadian	ADJ
brj-24331	501	23	journal	journal	PROPN
brj-24331	501	24	of	of	ADP
brj-24331	501	25	chemical	chemical	PROPN
brj-24331	501	26	engineering	engineering	NOUN
brj-24331	501	27	101(2	101(2	NUM
brj-24331	501	28	)	)	PUNCT
brj-24331	501	29	,	,	PUNCT
brj-24331	501	30	545	545	NUM
brj-24331	501	31	-	-	SYM
brj-24331	501	32	561	561	NUM
brj-24331	501	33	.	.	PUNCT
brj-24331	502	1	doi	doi	NOUN
brj-24331	502	2	:	:	PUNCT
brj-24331	502	3	10.1002	10.1002	NUM
brj-24331	502	4	/	/	SYM
brj-24331	502	5	cjce.24571	cjce.24571	PROPN
brj-24331	502	6	vyazovkin	vyazovkin	ADV
brj-24331	502	7	,	,	PUNCT
brj-24331	502	8	s.	s.	PROPN
brj-24331	502	9	,	,	PUNCT
brj-24331	502	10	chrissafis	chrissafis	PROPN
brj-24331	502	11	,	,	PUNCT
brj-24331	502	12	k.	k.	PROPN
brj-24331	502	13	,	,	PUNCT
brj-24331	502	14	di	di	PROPN
brj-24331	502	15	lorenzo	lorenzo	PROPN
brj-24331	502	16	,	,	PUNCT
brj-24331	502	17	m.	m.	PROPN
brj-24331	502	18	l.	l.	PROPN
brj-24331	502	19	,	,	PUNCT
brj-24331	502	20	koga	koga	PROPN
brj-24331	502	21	,	,	PUNCT
brj-24331	502	22	n.	n.	NOUN
brj-24331	502	23	,	,	PUNCT
brj-24331	502	24	pijolat	pijolat	NOUN
brj-24331	502	25	,	,	PUNCT
brj-24331	502	26	m.	m.	NOUN
brj-24331	502	27	,	,	PUNCT
brj-24331	502	28	roduit	roduit	PROPN
brj-24331	502	29	,	,	PUNCT
brj-24331	502	30	b.	b.	PROPN
brj-24331	502	31	,	,	PUNCT
brj-24331	502	32	sbirrazzuoli	sbirrazzuoli	NOUN
brj-24331	502	33	,	,	PUNCT
brj-24331	502	34	n.	n.	NOUN
brj-24331	502	35	,	,	PUNCT
brj-24331	502	36	and	and	CCONJ
brj-24331	502	37	suñol	suñol	VERB
brj-24331	502	38	,	,	PUNCT
brj-24331	502	39	j.	j.	PROPN
brj-24331	502	40	j.	j.	PROPN
brj-24331	502	41	(	(	PUNCT
brj-24331	502	42	0	0	NUM
brj-24331	502	43	4	4	NUM
brj-24331	502	44	)	)	PUNCT
brj-24331	502	45	.	.	PUNCT
brj-24331	503	1	“	"	PUNCT
brj-24331	503	2	ictac	ictac	PROPN
brj-24331	503	3	kinetics	kinetic	NOUN
brj-24331	503	4	committee	committee	NOUN
brj-24331	503	5	recommendations	recommendation	NOUN
brj-24331	503	6	for	for	ADP
brj-24331	503	7	collecting	collect	VERB
brj-24331	503	8	experimental	experimental	ADJ
brj-24331	503	9	thermal	thermal	ADJ
brj-24331	503	10	analysis	analysis	NOUN
brj-24331	503	11	data	datum	NOUN
brj-24331	503	12	for	for	ADP
brj-24331	503	13	kinetic	kinetic	ADJ
brj-24331	503	14	computations	computation	NOUN
brj-24331	503	15	,	,	PUNCT
brj-24331	503	16	”	"	PUNCT
brj-24331	503	17	thermochimica	thermochimica	PROPN
brj-24331	503	18	acta	acta	PROPN
brj-24331	503	19	590	590	NUM
brj-24331	503	20	,	,	PUNCT
brj-24331	503	21	1	1	NUM
brj-24331	503	22	-	-	SYM
brj-24331	503	23	23	23	NUM
brj-24331	503	24	.	.	PUNCT
brj-24331	504	1	doi	doi	NOUN
brj-24331	504	2	:	:	PUNCT
brj-24331	504	3	10.1016	10.1016	NUM
brj-24331	504	4	/	/	SYM
brj-24331	504	5	j.tca.2014.05.036	j.tca.2014.05.036	PROPN
brj-24331	504	6	.	.	PUNCT
brj-24331	505	1	wang	wang	PROPN
brj-24331	505	2	,	,	PUNCT
brj-24331	505	3	l.	l.	PROPN
brj-24331	505	4	,	,	PUNCT
brj-24331	505	5	weller	weller	PROPN
brj-24331	505	6	,	,	PUNCT
brj-24331	505	7	c.	c.	PROPN
brj-24331	505	8	l.	l.	PROPN
brj-24331	505	9	,	,	PUNCT
brj-24331	505	10	jones	jones	PROPN
brj-24331	505	11	,	,	PUNCT
brj-24331	505	12	d.	d.	PROPN
brj-24331	505	13	d.	d.	PROPN
brj-24331	505	14	,	,	PUNCT
brj-24331	505	15	and	and	CCONJ
brj-24331	505	16	hanna	hanna	PROPN
brj-24331	505	17	,	,	PUNCT
brj-24331	505	18	m.	m.	NOUN
brj-24331	505	19	a.	a.	NOUN
brj-24331	505	20	(	(	PUNCT
brj-24331	505	21	2008	2008	NUM
brj-24331	505	22	)	)	PUNCT
brj-24331	505	23	.	.	PUNCT
brj-24331	506	1	“	"	PUNCT
brj-24331	506	2	contemporary	contemporary	ADJ
brj-24331	506	3	issues	issue	NOUN
brj-24331	506	4	in	in	ADP
brj-24331	506	5	thermal	thermal	ADJ
brj-24331	506	6	gasification	gasification	NOUN
brj-24331	506	7	of	of	ADP
brj-24331	506	8	biomass	biomass	NOUN
brj-24331	506	9	and	and	CCONJ
brj-24331	506	10	its	its	PRON
brj-24331	506	11	application	application	NOUN
brj-24331	506	12	to	to	ADP
brj-24331	506	13	electricity	electricity	NOUN
brj-24331	506	14	and	and	CCONJ
brj-24331	506	15	fuel	fuel	NOUN
brj-24331	506	16	production	production	NOUN
brj-24331	506	17	,	,	PUNCT
brj-24331	506	18	”	"	PUNCT
brj-24331	506	19	biomass	biomass	NOUN
brj-24331	506	20	and	and	CCONJ
brj-24331	506	21	bioenergy	bioenergy	NOUN
brj-24331	506	22	32(7	32(7	NOUN
brj-24331	506	23	)	)	PUNCT
brj-24331	506	24	,	,	PUNCT
brj-24331	506	25	573	573	NUM
brj-24331	506	26	-	-	SYM
brj-24331	506	27	581	581	NUM
brj-24331	506	28	.	.	PUNCT
brj-24331	507	1	doi	doi	NOUN
brj-24331	507	2	:	:	PUNCT
brj-24331	507	3	10.1016	10.1016	NUM
brj-24331	507	4	/	/	SYM
brj-24331	507	5	j.biombioe.2007.12.007	j.biombioe.2007.12.007	ADV
brj-24331	507	6	wen	wen	PROPN
brj-24331	507	7	,	,	PUNCT
brj-24331	507	8	c.	c.	PROPN
brj-24331	507	9	y.	y.	PROPN
brj-24331	507	10	,	,	PUNCT
brj-24331	507	11	and	and	CCONJ
brj-24331	507	12	chaung	chaung	NOUN
brj-24331	507	13	,	,	PUNCT
brj-24331	507	14	t.	t.	PROPN
brj-24331	507	15	(	(	PUNCT
brj-24331	507	16	1979	1979	NUM
brj-24331	507	17	)	)	PUNCT
brj-24331	507	18	.	.	PUNCT
brj-24331	508	1	“	"	PUNCT
brj-24331	508	2	entrainment	entrainment	NOUN
brj-24331	508	3	coal	coal	NOUN
brj-24331	508	4	gasification	gasification	NOUN
brj-24331	508	5	modeling	modeling	NOUN
brj-24331	508	6	,	,	PUNCT
brj-24331	508	7	”	"	PUNCT
brj-24331	508	8	industrial	industrial	PROPN
brj-24331	508	9	&	&	CCONJ
brj-24331	508	10	engineering	engineering	NOUN
brj-24331	508	11	chemistry	chemistry	NOUN
brj-24331	508	12	process	process	NOUN
brj-24331	508	13	design	design	NOUN
brj-24331	508	14	and	and	CCONJ
brj-24331	508	15	development	development	NOUN
brj-24331	508	16	18(4	18(4	NUM
brj-24331	508	17	)	)	PUNCT
brj-24331	508	18	,	,	PUNCT
brj-24331	508	19	684	684	NUM
brj-24331	508	20	-	-	SYM
brj-24331	508	21	695	695	NUM
brj-24331	508	22	.	.	PUNCT
brj-24331	509	1	doi	doi	NOUN
brj-24331	509	2	:	:	PUNCT
brj-24331	509	3	10.1021	10.1021	NUM
brj-24331	509	4	/	/	SYM
brj-24331	509	5	i260072a020	i260072a020	PROPN
brj-24331	509	6	.	.	PUNCT
brj-24331	510	1	xie	xie	PROPN
brj-24331	510	2	,	,	PUNCT
brj-24331	510	3	j.	j.	PROPN
brj-24331	510	4	,	,	PUNCT
brj-24331	510	5	zhong	zhong	PROPN
brj-24331	510	6	,	,	PUNCT
brj-24331	510	7	w.	w.	PROPN
brj-24331	510	8	,	,	PUNCT
brj-24331	510	9	jin	jin	PROPN
brj-24331	510	10	,	,	PUNCT
brj-24331	510	11	b.	b.	PROPN
brj-24331	510	12	,	,	PUNCT
brj-24331	510	13	shao	shao	PROPN
brj-24331	510	14	,	,	PUNCT
brj-24331	510	15	y.	y.	PROPN
brj-24331	510	16	,	,	PUNCT
brj-24331	510	17	and	and	CCONJ
brj-24331	510	18	liu	liu	PROPN
brj-24331	510	19	,	,	PUNCT
brj-24331	510	20	h.	h.	PROPN
brj-24331	510	21	(	(	PUNCT
brj-24331	510	22	2012	2012	NUM
brj-24331	510	23	)	)	PUNCT
brj-24331	510	24	.	.	PUNCT
brj-24331	511	1	“	"	PUNCT
brj-24331	511	2	simulation	simulation	NOUN
brj-24331	511	3	on	on	ADP
brj-24331	511	4	gasification	gasification	NOUN
brj-24331	511	5	of	of	ADP
brj-24331	511	6	forestry	forestry	NOUN
brj-24331	511	7	residues	residue	NOUN
brj-24331	511	8	in	in	ADP
brj-24331	511	9	fluidized	fluidize	VERB
brj-24331	511	10	beds	bed	NOUN
brj-24331	511	11	by	by	ADP
brj-24331	511	12	eulerian	eulerian	ADJ
brj-24331	511	13	–	–	PUNCT
brj-24331	511	14	lagrangian	lagrangian	ADJ
brj-24331	511	15	approach	approach	NOUN
brj-24331	511	16	,	,	PUNCT
brj-24331	511	17	”	"	PUNCT
brj-24331	511	18	bioresource	bioresource	ADP
brj-24331	511	19	technology	technology	NOUN
brj-24331	511	20	121	121	NUM
brj-24331	511	21	,	,	PUNCT
brj-24331	511	22	36	36	NUM
brj-24331	511	23	-	-	SYM
brj-24331	511	24	46	46	NUM
brj-24331	511	25	.	.	PUNCT
brj-24331	512	1	doi	doi	NOUN
brj-24331	512	2	:	:	PUNCT
brj-24331	512	3	10.1016	10.1016	NUM
brj-24331	512	4	/	/	SYM
brj-24331	512	5	j.biortech.2012.06.080	j.biortech.2012.06.080	PROPN
brj-24331	512	6	yan	yan	PROPN
brj-24331	512	7	,	,	PUNCT
brj-24331	512	8	b.-h	b.-h	PROPN
brj-24331	512	9	.	.	PUNCT
brj-24331	512	10	,	,	PUNCT
brj-24331	512	11	cao	cao	PROPN
brj-24331	512	12	,	,	PUNCT
brj-24331	512	13	c.-x	c.-x	PROPN
brj-24331	512	14	.	.	PUNCT
brj-24331	512	15	,	,	PUNCT
brj-24331	513	1	cheng	cheng	PROPN
brj-24331	513	2	,	,	PUNCT
brj-24331	513	3	y.	y.	PROPN
brj-24331	513	4	,	,	PUNCT
brj-24331	513	5	jin	jin	NOUN
brj-24331	513	6	,	,	PUNCT
brj-24331	513	7	y.	y.	PROPN
brj-24331	513	8	,	,	PUNCT
brj-24331	513	9	and	and	CCONJ
brj-24331	513	10	cheng	cheng	PROPN
brj-24331	513	11	,	,	PUNCT
brj-24331	513	12	y.	y.	PROPN
brj-24331	513	13	(	(	PUNCT
brj-24331	513	14	0	0	NUM
brj-24331	513	15	4	4	NUM
brj-24331	513	16	)	)	PUNCT
brj-24331	513	17	.	.	PUNCT
brj-24331	514	1	“	"	PUNCT
brj-24331	514	2	experimental	experimental	ADJ
brj-24331	514	3	investigation	investigation	NOUN
brj-24331	514	4	on	on	ADP
brj-24331	514	5	coal	coal	NOUN
brj-24331	514	6	devolatilization	devolatilization	NOUN
brj-24331	514	7	at	at	ADP
brj-24331	514	8	high	high	ADJ
brj-24331	514	9	temperatures	temperature	NOUN
brj-24331	514	10	with	with	ADP
brj-24331	514	11	different	different	ADJ
brj-24331	514	12	heating	heating	NOUN
brj-24331	514	13	rates	rate	NOUN
brj-24331	514	14	,	,	PUNCT
brj-24331	514	15	”	"	PUNCT
brj-24331	514	16	fuel	fuel	NOUN
brj-24331	514	17	117	117	NUM
brj-24331	514	18	,	,	PUNCT
brj-24331	514	19	1215	1215	NUM
brj-24331	514	20	-	-	SYM
brj-24331	514	21	1222	1222	NUM
brj-24331	514	22	.	.	PUNCT
brj-24331	515	1	doi	doi	NOUN
brj-24331	515	2	:	:	PUNCT
brj-24331	515	3	10.1016	10.1016	NUM
brj-24331	515	4	/	/	SYM
brj-24331	515	5	j.fuel.2013.08.016	j.fuel.2013.08.016	PROPN
brj-24331	515	6	yang	yang	PROPN
brj-24331	515	7	,	,	PUNCT
brj-24331	515	8	m.	m.	PROPN
brj-24331	515	9	,	,	PUNCT
brj-24331	515	10	zhang	zhang	PROPN
brj-24331	515	11	,	,	PUNCT
brj-24331	515	12	j.	j.	PROPN
brj-24331	515	13	,	,	PUNCT
brj-24331	515	14	zhong	zhong	PROPN
brj-24331	515	15	,	,	PUNCT
brj-24331	515	16	s.	s.	PROPN
brj-24331	515	17	,	,	PUNCT
brj-24331	515	18	li	li	PROPN
brj-24331	515	19	,	,	PUNCT
brj-24331	515	20	t.	t.	PROPN
brj-24331	515	21	,	,	PUNCT
brj-24331	515	22	løvås	løvås	PROPN
brj-24331	515	23	,	,	PUNCT
brj-24331	515	24	t.	t.	PROPN
brj-24331	515	25	,	,	PUNCT
brj-24331	515	26	fatehi	fatehi	PROPN
brj-24331	515	27	,	,	PUNCT
brj-24331	515	28	h.	h.	PROPN
brj-24331	515	29	,	,	PUNCT
brj-24331	515	30	and	and	CCONJ
brj-24331	515	31	bai	bai	PROPN
brj-24331	515	32	,	,	PUNCT
brj-24331	515	33	x.-s	x.-s	PROPN
brj-24331	515	34	.	.	PUNCT
brj-24331	516	1	(	(	PUNCT
brj-24331	516	2	0	0	NUM
brj-24331	516	3	)	)	PUNCT
brj-24331	516	4	.	.	PUNCT
brj-24331	517	1	“	"	PUNCT
brj-24331	517	2	cfd	cfd	NOUN
brj-24331	517	3	modeling	modeling	NOUN
brj-24331	517	4	of	of	ADP
brj-24331	517	5	biomass	biomass	NOUN
brj-24331	517	6	combustion	combustion	NOUN
brj-24331	517	7	and	and	CCONJ
brj-24331	517	8	gasification	gasification	NOUN
brj-24331	517	9	in	in	ADP
brj-24331	517	10	fluidized	fluidize	VERB
brj-24331	517	11	bed	bed	NOUN
brj-24331	517	12	reactors	reactor	NOUN
brj-24331	517	13	using	use	VERB
brj-24331	517	14	a	a	DET
brj-24331	517	15	distribution	distribution	NOUN
brj-24331	517	16	kernel	kernel	NOUN
brj-24331	517	17	method	method	NOUN
brj-24331	517	18	,	,	PUNCT
brj-24331	517	19	”	"	PUNCT
brj-24331	517	20	combustion	combustion	NOUN
brj-24331	517	21	and	and	CCONJ
brj-24331	517	22	flame	flame	NOUN
brj-24331	517	23	236	236	NUM
brj-24331	517	24	,	,	PUNCT
brj-24331	517	25	article	article	NOUN
brj-24331	517	26	111744	111744	NUM
brj-24331	517	27	.	.	PUNCT
brj-24331	518	1	doi	doi	NOUN
brj-24331	518	2	:	:	PUNCT
brj-24331	518	3	10.1016	10.1016	NUM
brj-24331	518	4	/	/	SYM
brj-24331	518	5	j.combustflame.2021.111744	j.combustflame.2021.111744	VERB
brj-24331	518	6	peer	peer	NOUN
brj-24331	518	7	-	-	PUNCT
brj-24331	518	8	reviewed	review	VERB
brj-24331	518	9	article	article	NOUN
brj-24331	518	10	bioresources.cnr.ncsu.edu	bioresources.cnr.ncsu.edu	ADP
brj-24331	518	11	sangaré	sangaré	PROPN
brj-24331	518	12	et	et	PROPN
brj-24331	518	13	al	al	PROPN
brj-24331	518	14	.	.	PROPN
brj-24331	518	15	(	(	PUNCT
brj-24331	518	16	2025	2025	NUM
brj-24331	518	17	)	)	PUNCT
brj-24331	518	18	.	.	PUNCT
brj-24331	519	1	“	"	PUNCT
brj-24331	519	2	pyrogasification	pyrogasification	NOUN
brj-24331	519	3	of	of	ADP
brj-24331	519	4	biomass	biomass	NOUN
brj-24331	519	5	,	,	PUNCT
brj-24331	519	6	”	"	PUNCT
brj-24331	519	7	bioresources	bioresource	NOUN
brj-24331	519	8	20(2	20(2	NUM
brj-24331	519	9	)	)	PUNCT
brj-24331	519	10	,	,	PUNCT
brj-24331	519	11	2844	2844	NUM
brj-24331	519	12	-	-	SYM
brj-24331	519	13	2870	2870	NUM
brj-24331	519	14	.	.	PUNCT
brj-24331	519	15	2870	2870	NUM
brj-24331	519	16	zeng	zeng	PROPN
brj-24331	519	17	,	,	PUNCT
brj-24331	519	18	x.	x.	PROPN
brj-24331	519	19	,	,	PUNCT
brj-24331	519	20	ueki	ueki	PROPN
brj-24331	519	21	,	,	PUNCT
brj-24331	519	22	y.	y.	PROPN
brj-24331	519	23	,	,	PUNCT
brj-24331	519	24	yoshiie	yoshiie	PROPN
brj-24331	519	25	,	,	PUNCT
brj-24331	519	26	r.	r.	PROPN
brj-24331	519	27	,	,	PUNCT
brj-24331	519	28	naruse	naruse	PROPN
brj-24331	519	29	,	,	PUNCT
brj-24331	519	30	i.	i.	PROPN
brj-24331	519	31	,	,	PUNCT
brj-24331	519	32	wang	wang	PROPN
brj-24331	519	33	,	,	PUNCT
brj-24331	519	34	f.	f.	PROPN
brj-24331	519	35	,	,	PUNCT
brj-24331	519	36	han	han	PROPN
brj-24331	519	37	,	,	PUNCT
brj-24331	519	38	z.	z.	PROPN
brj-24331	519	39	,	,	PUNCT
brj-24331	519	40	and	and	CCONJ
brj-24331	519	41	xu	xu	PROPN
brj-24331	519	42	,	,	PUNCT
brj-24331	519	43	g.	g.	PROPN
brj-24331	519	44	(	(	PUNCT
brj-24331	519	45	0	0	NUM
brj-24331	519	46	0	0	NUM
brj-24331	519	47	)	)	PUNCT
brj-24331	519	48	.	.	PUNCT
brj-24331	520	1	“	"	PUNCT
brj-24331	520	2	recent	recent	ADJ
brj-24331	520	3	progress	progress	NOUN
brj-24331	520	4	in	in	ADP
brj-24331	520	5	tar	tar	NOUN
brj-24331	520	6	removal	removal	NOUN
brj-24331	520	7	by	by	ADP
brj-24331	520	8	char	char	NOUN
brj-24331	520	9	and	and	CCONJ
brj-24331	520	10	the	the	DET
brj-24331	520	11	applications	application	NOUN
brj-24331	520	12	:	:	PUNCT
brj-24331	520	13	a	a	DET
brj-24331	520	14	comprehensive	comprehensive	ADJ
brj-24331	520	15	analysis	analysis	NOUN
brj-24331	520	16	,	,	PUNCT
brj-24331	520	17	”	"	PUNCT
brj-24331	520	18	carbon	carbon	NOUN
brj-24331	520	19	resources	resource	NOUN
brj-24331	520	20	conversion	conversion	NOUN
brj-24331	520	21	3	3	NUM
brj-24331	520	22	,	,	PUNCT
brj-24331	520	23	1	1	NUM
brj-24331	520	24	-	-	SYM
brj-24331	520	25	18	18	NUM
brj-24331	520	26	.	.	PUNCT
brj-24331	521	1	doi	doi	NOUN
brj-24331	521	2	:	:	PUNCT
brj-24331	521	3	10.1016	10.1016	NUM
brj-24331	521	4	/	/	SYM
brj-24331	521	5	j.crcon.2019.12.001	j.crcon.2019.12.001	PROPN
brj-24331	521	6	zhang	zhang	PROPN
brj-24331	521	7	,	,	PUNCT
brj-24331	521	8	y.	y.	PROPN
brj-24331	521	9	,	,	PUNCT
brj-24331	521	10	zhao	zhao	PROPN
brj-24331	521	11	,	,	PUNCT
brj-24331	521	12	y.	y.	PROPN
brj-24331	521	13	,	,	PUNCT
brj-24331	521	14	gao	gao	PROPN
brj-24331	521	15	,	,	PUNCT
brj-24331	521	16	x.	x.	PROPN
brj-24331	521	17	,	,	PUNCT
brj-24331	521	18	li	li	PROPN
brj-24331	521	19	,	,	PUNCT
brj-24331	521	20	b.	b.	PROPN
brj-24331	521	21	,	,	PUNCT
brj-24331	521	22	and	and	CCONJ
brj-24331	521	23	huang	huang	PROPN
brj-24331	521	24	,	,	PUNCT
brj-24331	521	25	j.	j.	PROPN
brj-24331	521	26	(	(	PUNCT
brj-24331	521	27	0	0	NUM
brj-24331	521	28	)	)	PUNCT
brj-24331	521	29	.	.	PUNCT
brj-24331	522	1	“	"	PUNCT
brj-24331	522	2	energy	energy	NOUN
brj-24331	522	3	and	and	CCONJ
brj-24331	522	4	exergy	exergy	NOUN
brj-24331	522	5	analyses	analysis	NOUN
brj-24331	522	6	of	of	ADP
brj-24331	522	7	syngas	syngas	NOUN
brj-24331	522	8	produced	produce	VERB
brj-24331	522	9	from	from	ADP
brj-24331	522	10	rice	rice	NOUN
brj-24331	522	11	husk	husk	NOUN
brj-24331	522	12	gasification	gasification	NOUN
brj-24331	522	13	in	in	ADP
brj-24331	522	14	an	an	DET
brj-24331	522	15	entrained	entrain	VERB
brj-24331	522	16	flow	flow	NOUN
brj-24331	522	17	reactor	reactor	NOUN
brj-24331	522	18	,	,	PUNCT
brj-24331	522	19	”	"	PUNCT
brj-24331	522	20	journal	journal	NOUN
brj-24331	522	21	of	of	ADP
brj-24331	522	22	cleaner	clean	ADJ
brj-24331	522	23	production	production	NOUN
brj-24331	522	24	95	95	NUM
brj-24331	522	25	,	,	PUNCT
brj-24331	522	26	273	273	NUM
brj-24331	522	27	-	-	SYM
brj-24331	522	28	280	280	NUM
brj-24331	522	29	.	.	PUNCT
brj-24331	523	1	doi	doi	NOUN
brj-24331	523	2	:	:	PUNCT
brj-24331	523	3	10.1016	10.1016	NUM
brj-24331	523	4	/	/	SYM
brj-24331	523	5	j.jclepro.2015.02.053	j.jclepro.2015.02.053	PROPN
brj-24331	523	6	zhang	zhang	PROPN
brj-24331	523	7	,	,	PUNCT
brj-24331	523	8	y.	y.	PROPN
brj-24331	523	9	,	,	PUNCT
brj-24331	523	10	zhao	zhao	PROPN
brj-24331	523	11	,	,	PUNCT
brj-24331	523	12	y.	y.	PROPN
brj-24331	523	13	,	,	PUNCT
brj-24331	523	14	li	li	PROPN
brj-24331	523	15	,	,	PUNCT
brj-24331	523	16	b.	b.	PROPN
brj-24331	523	17	,	,	PUNCT
brj-24331	523	18	gao	gao	PROPN
brj-24331	523	19	,	,	PUNCT
brj-24331	523	20	x.	x.	NOUN
brj-24331	523	21	,	,	PUNCT
brj-24331	523	22	and	and	CCONJ
brj-24331	523	23	jiang	jiang	PROPN
brj-24331	523	24	,	,	PUNCT
brj-24331	523	25	b.	b.	PROPN
brj-24331	523	26	(	(	PUNCT
brj-24331	523	27	0	0	NUM
brj-24331	523	28	7	7	NUM
brj-24331	523	29	)	)	PUNCT
brj-24331	523	30	.	.	PUNCT
brj-24331	524	1	“	"	PUNCT
brj-24331	524	2	energy	energy	NOUN
brj-24331	524	3	and	and	CCONJ
brj-24331	524	4	exergy	exergy	NOUN
brj-24331	524	5	characteristics	characteristic	NOUN
brj-24331	524	6	of	of	ADP
brj-24331	524	7	syngas	syngas	NOUN
brj-24331	524	8	produced	produce	VERB
brj-24331	524	9	from	from	ADP
brj-24331	524	10	air	air	NOUN
brj-24331	524	11	gasification	gasification	NOUN
brj-24331	524	12	of	of	ADP
brj-24331	524	13	walnut	walnut	NOUN
brj-24331	524	14	sawdust	sawdust	NOUN
brj-24331	524	15	in	in	ADP
brj-24331	524	16	an	an	DET
brj-24331	524	17	entrained	entrained	ADJ
brj-24331	524	18	flow	flow	NOUN
brj-24331	524	19	reactor	reactor	NOUN
brj-24331	524	20	,	,	PUNCT
brj-24331	524	21	”	"	PUNCT
brj-24331	524	22	international	international	ADJ
brj-24331	524	23	journal	journal	NOUN
brj-24331	524	24	of	of	ADP
brj-24331	524	25	exergy	exergy	NOUN
brj-24331	524	26	23(3	23(3	PROPN
brj-24331	524	27	)	)	PUNCT
brj-24331	524	28	,	,	PUNCT
brj-24331	524	29	244	244	NUM
brj-24331	524	30	-	-	SYM
brj-24331	524	31	262	262	NUM
brj-24331	524	32	.	.	PUNCT
brj-24331	525	1	doi	doi	NOUN
brj-24331	525	2	:	:	PUNCT
brj-24331	525	3	10.1504	10.1504	NUM
brj-24331	525	4	/	/	SYM
brj-24331	525	5	ijex.2017.085772	ijex.2017.085772	NOUN
brj-24331	525	6	zhu	zhu	PROPN
brj-24331	525	7	,	,	PUNCT
brj-24331	525	8	l.	l.	PROPN
brj-24331	525	9	,	,	PUNCT
brj-24331	525	10	zhang	zhang	PROPN
brj-24331	525	11	,	,	PUNCT
brj-24331	525	12	y.	y.	PROPN
brj-24331	525	13	,	,	PUNCT
brj-24331	525	14	lei	lei	PROPN
brj-24331	525	15	,	,	PUNCT
brj-24331	525	16	h.	h.	PROPN
brj-24331	525	17	,	,	PUNCT
brj-24331	525	18	zhang	zhang	PROPN
brj-24331	525	19	,	,	PUNCT
brj-24331	525	20	x.	x.	PROPN
brj-24331	525	21	,	,	PUNCT
brj-24331	525	22	wang	wang	PROPN
brj-24331	525	23	,	,	PUNCT
brj-24331	525	24	l.	l.	PROPN
brj-24331	525	25	,	,	PUNCT
brj-24331	525	26	bu	bu	PROPN
brj-24331	525	27	,	,	PUNCT
brj-24331	525	28	q.	q.	PROPN
brj-24331	525	29	,	,	PUNCT
brj-24331	525	30	and	and	CCONJ
brj-24331	525	31	wei	wei	PROPN
brj-24331	525	32	,	,	PUNCT
brj-24331	525	33	y.	y.	PROPN
brj-24331	525	34	(	(	PUNCT
brj-24331	525	35	0	0	NUM
brj-24331	525	36	8)	8)	NUM
brj-24331	525	37	.	.	PUNCT
brj-24331	526	1	“	"	PUNCT
brj-24331	526	2	production	production	NOUN
brj-24331	526	3	of	of	ADP
brj-24331	526	4	hydrocarbons	hydrocarbon	NOUN
brj-24331	526	5	from	from	ADP
brj-24331	526	6	biomass	biomass	NOUN
brj-24331	526	7	-	-	PUNCT
brj-24331	526	8	derived	derive	VERB
brj-24331	526	9	biochar	biochar	NOUN
brj-24331	526	10	assisted	assist	VERB
brj-24331	526	11	microwave	microwave	NOUN
brj-24331	526	12	catalytic	catalytic	ADJ
brj-24331	526	13	pyrolysis	pyrolysis	NOUN
brj-24331	526	14	,	,	PUNCT
brj-24331	526	15	”	"	PUNCT
brj-24331	526	16	sustainable	sustainable	ADJ
brj-24331	526	17	energy	energy	NOUN
brj-24331	526	18	&	&	CCONJ
brj-24331	526	19	fuels	fuel	NOUN
brj-24331	526	20	2(8	2(8	NUM
brj-24331	526	21	)	)	PUNCT
brj-24331	526	22	,	,	PUNCT
brj-24331	526	23	1781	1781	NUM
brj-24331	526	24	-	-	SYM
brj-24331	526	25	1790	1790	NUM
brj-24331	526	26	.	.	PUNCT
brj-24331	527	1	doi	doi	NOUN
brj-24331	527	2	:	:	PUNCT
brj-24331	527	3	10.1039	10.1039	NUM
brj-24331	527	4	/	/	SYM
brj-24331	527	5	c8se00096d	c8se00096d	PROPN
brj-24331	527	6	article	article	NOUN
brj-24331	527	7	submitted	submit	VERB
brj-24331	527	8	january	january	PROPN
brj-24331	527	9	4	4	NUM
brj-24331	527	10	,	,	PUNCT
brj-24331	527	11	2025	2025	NUM
brj-24331	527	12	;	;	PUNCT
brj-24331	527	13	peer	peer	NOUN
brj-24331	527	14	review	review	NOUN
brj-24331	527	15	completed	complete	VERB
brj-24331	527	16	:	:	PUNCT
brj-24331	527	17	february	february	PROPN
brj-24331	527	18	1	1	NUM
brj-24331	527	19	,	,	PUNCT
brj-24331	527	20	2025	2025	NUM
brj-24331	527	21	;	;	PUNCT
brj-24331	527	22	revised	revise	VERB
brj-24331	527	23	version	version	NOUN
brj-24331	527	24	received	receive	VERB
brj-24331	527	25	:	:	PUNCT
brj-24331	527	26	february	february	PROPN
brj-24331	527	27	7	7	NUM
brj-24331	527	28	,	,	PUNCT
brj-24331	527	29	2025	2025	NUM
brj-24331	527	30	;	;	PUNCT
brj-24331	527	31	accepted	accept	VERB
brj-24331	527	32	:	:	PUNCT
brj-24331	527	33	february	february	NOUN
brj-24331	527	34	9	9	NUM
brj-24331	527	35	,	,	PUNCT
brj-24331	527	36	2025	2025	NUM
brj-24331	527	37	;	;	PUNCT
brj-24331	527	38	published	publish	VERB
brj-24331	527	39	:	:	PUNCT
brj-24331	527	40	february	february	PROPN
brj-24331	527	41	21	21	NUM
brj-24331	527	42	,	,	PUNCT
brj-24331	527	43	2025	2025	NUM
brj-24331	527	44	.	.	PUNCT
brj-24331	528	1	doi	doi	NOUN
brj-24331	528	2	:	:	PUNCT
brj-24331	528	3	10.15376	10.15376	NUM
brj-24331	528	4	/	/	SYM
brj-24331	528	5	biores.20.2.2844	biores.20.2.2844	PROPN
brj-24331	528	6	-	-	PROPN
brj-24331	528	7	2870	2870	NUM
