id	sid	tid	token	lemma	pos
cet-10710	1	1	chemical	chemical	NOUN
cet-10710	1	2	engineering	engineering	NOUN
cet-10710	1	3	transactions	transaction	NOUN
cet-10710	1	4	vol	vol	NOUN
cet-10710	1	5	.	.	PROPN
cet-10710	1	6	78	78	NUM
cet-10710	1	7	,	,	PUNCT
cet-10710	1	8	2020	2020	NUM
cet-10710	1	9	a	a	DET
cet-10710	1	10	publication	publication	NOUN
cet-10710	1	11	of	of	ADP
cet-10710	1	12	the	the	DET
cet-10710	1	13	italian	italian	ADJ
cet-10710	1	14	association	association	NOUN
cet-10710	1	15	of	of	ADP
cet-10710	1	16	chemical	chemical	PROPN
cet-10710	1	17	engineering	engineering	NOUN
cet-10710	1	18	online	online	ADV
cet-10710	1	19	at	at	ADP
cet-10710	1	20	www.cetjournal.it	www.cetjournal.it	PROPN
cet-10710	1	21	guest	guest	NOUN
cet-10710	1	22	editors	editor	NOUN
cet-10710	1	23	:	:	PUNCT
cet-10710	1	24	jeng	jeng	PROPN
cet-10710	1	25	shiun	shiun	PROPN
cet-10710	1	26	lim	lim	PROPN
cet-10710	1	27	,	,	PUNCT
cet-10710	1	28	nor	nor	CCONJ
cet-10710	1	29	alafiza	alafiza	PROPN
cet-10710	1	30	yunus	yunus	PROPN
cet-10710	1	31	,	,	PUNCT
cet-10710	1	32	jiří	jiří	NOUN
cet-10710	1	33	jaromír	jaromír	PROPN
cet-10710	1	34	klemeš	klemeš	PROPN
cet-10710	1	35	copyright	copyright	PROPN
cet-10710	1	36	©	©	PROPN
cet-10710	1	37	2020	2020	NUM
cet-10710	1	38	,	,	PUNCT
cet-10710	1	39	aidic	aidic	ADJ
cet-10710	1	40	servizi	servizi	PROPN
cet-10710	1	41	s.r.l	s.r.l	PROPN
cet-10710	1	42	.	.	PUNCT
cet-10710	2	1	isbn	isbn	ADJ
cet-10710	2	2	978	978	NUM
cet-10710	2	3	-	-	SYM
cet-10710	2	4	88	88	NUM
cet-10710	2	5	-	-	PUNCT
cet-10710	2	6	95608	95608	NUM
cet-10710	2	7	-	-	PUNCT
cet-10710	2	8	76	76	NUM
cet-10710	2	9	-	-	SYM
cet-10710	2	10	1	1	NUM
cet-10710	2	11	;	;	PUNCT
cet-10710	2	12	issn	issn	PROPN
cet-10710	2	13	2283	2283	NUM
cet-10710	2	14	-	-	SYM
cet-10710	2	15	9216	9216	NUM
cet-10710	2	16	process	process	NOUN
cet-10710	2	17	modelling	modelling	NOUN
cet-10710	2	18	and	and	CCONJ
cet-10710	2	19	simulation	simulation	NOUN
cet-10710	2	20	of	of	ADP
cet-10710	2	21	fast	fast	ADJ
cet-10710	2	22	pyrolysis	pyrolysis	NOUN
cet-10710	2	23	plant	plant	NOUN
cet-10710	2	24	of	of	ADP
cet-10710	2	25	lignocellulosic	lignocellulosic	ADJ
cet-10710	2	26	biomass	biomass	NOUN
cet-10710	2	27	using	use	VERB
cet-10710	2	28	improved	improve	VERB
cet-10710	2	29	chemical	chemical	NOUN
cet-10710	2	30	kinetics	kinetic	NOUN
cet-10710	2	31	in	in	ADP
cet-10710	2	32	aspen	aspen	PROPN
cet-10710	2	33	plus	plus	CCONJ
cet-10710	2	34	®	®	NOUN
cet-10710	2	35	chawannat	chawannat	NOUN
cet-10710	2	36	jaroenkhasemmeesuka	jaroenkhasemmeesuka	PROPN
cet-10710	2	37	,	,	PUNCT
cet-10710	2	38	nakorn	nakorn	ADJ
cet-10710	2	39	tippayawongb	tippayawongb	ADJ
cet-10710	2	40	,	,	PUNCT
cet-10710	2	41	*	*	PROPN
cet-10710	2	42	,	,	PUNCT
cet-10710	2	43	derek	derek	PROPN
cet-10710	2	44	b.	b.	PROPN
cet-10710	2	45	inghamc	inghamc	PROPN
cet-10710	2	46	,	,	PUNCT
cet-10710	2	47	mohammed	mohammed	PROPN
cet-10710	2	48	pourkashanianc	pourkashanianc	PROPN
cet-10710	2	49	adepartment	adepartment	PROPN
cet-10710	2	50	of	of	ADP
cet-10710	2	51	mechanical	mechanical	ADJ
cet-10710	2	52	engineering	engineering	NOUN
cet-10710	2	53	,	,	PUNCT
cet-10710	2	54	mahidol	mahidol	PROPN
cet-10710	2	55	university	university	PROPN
cet-10710	2	56	,	,	PUNCT
cet-10710	2	57	nakorn	nakorn	ADJ
cet-10710	2	58	pathom	pathom	NOUN
cet-10710	2	59	73170	73170	NUM
cet-10710	2	60	,	,	PUNCT
cet-10710	2	61	thailand	thailand	PROPN
cet-10710	2	62	bdepartment	bdepartment	NOUN
cet-10710	2	63	of	of	ADP
cet-10710	2	64	mechanical	mechanical	ADJ
cet-10710	2	65	engineering	engineering	NOUN
cet-10710	2	66	,	,	PUNCT
cet-10710	2	67	chiang	chiang	PROPN
cet-10710	2	68	mai	mai	PROPN
cet-10710	2	69	university	university	PROPN
cet-10710	2	70	,	,	PUNCT
cet-10710	2	71	chiang	chiang	PROPN
cet-10710	2	72	mai	mai	PROPN
cet-10710	2	73	50200	50200	NUM
cet-10710	2	74	,	,	PUNCT
cet-10710	2	75	thailand	thailand	PROPN
cet-10710	2	76	cenergy2050	cenergy2050	PROPN
cet-10710	2	77	,	,	PUNCT
cet-10710	2	78	department	department	NOUN
cet-10710	2	79	of	of	ADP
cet-10710	2	80	mechanical	mechanical	ADJ
cet-10710	2	81	engineering	engineering	NOUN
cet-10710	2	82	,	,	PUNCT
cet-10710	2	83	university	university	PROPN
cet-10710	2	84	of	of	ADP
cet-10710	2	85	sheffield	sheffield	PROPN
cet-10710	2	86	,	,	PUNCT
cet-10710	2	87	sheffield	sheffield	PROPN
cet-10710	2	88	,	,	PUNCT
cet-10710	2	89	s10	s10	NOUN
cet-10710	2	90	2tn	2tn	NOUN
cet-10710	2	91	,	,	PUNCT
cet-10710	2	92	united	united	ADJ
cet-10710	2	93	kingdom	kingdom	PROPN
cet-10710	2	94	n.tippayawong@yahoo.com	n.tippayawong@yahoo.com	PUNCT
cet-10710	3	1	the	the	DET
cet-10710	3	2	successful	successful	ADJ
cet-10710	3	3	operation	operation	NOUN
cet-10710	3	4	of	of	ADP
cet-10710	3	5	biomass	biomass	NOUN
cet-10710	3	6	pyrolysis	pyrolysis	NOUN
cet-10710	3	7	plant	plant	NOUN
cet-10710	3	8	on	on	ADP
cet-10710	3	9	an	an	DET
cet-10710	3	10	industrial	industrial	ADJ
cet-10710	3	11	scale	scale	NOUN
cet-10710	3	12	would	would	AUX
cet-10710	3	13	showcase	showcase	VERB
cet-10710	3	14	and	and	CCONJ
cet-10710	3	15	promote	promote	VERB
cet-10710	3	16	the	the	DET
cet-10710	3	17	possibility	possibility	NOUN
cet-10710	3	18	of	of	ADP
cet-10710	3	19	practical	practical	ADJ
cet-10710	3	20	decarbonizing	decarbonizing	NOUN
cet-10710	3	21	energy	energy	NOUN
cet-10710	3	22	projects	project	NOUN
cet-10710	3	23	.	.	PUNCT
cet-10710	4	1	this	this	DET
cet-10710	4	2	work	work	NOUN
cet-10710	4	3	presents	present	VERB
cet-10710	4	4	a	a	DET
cet-10710	4	5	comprehensive	comprehensive	ADJ
cet-10710	4	6	aspen	aspen	NOUN
cet-10710	4	7	plus	plus	CCONJ
cet-10710	4	8	®	®	NOUN
cet-10710	4	9	modeling	modeling	NOUN
cet-10710	4	10	work	work	NOUN
cet-10710	4	11	of	of	ADP
cet-10710	4	12	fast	fast	ADJ
cet-10710	4	13	pyrolysis	pyrolysis	NOUN
cet-10710	4	14	processes	process	NOUN
cet-10710	4	15	for	for	ADP
cet-10710	4	16	lignocellulosic	lignocellulosic	ADJ
cet-10710	4	17	biomass	biomass	NOUN
cet-10710	4	18	based	base	VERB
cet-10710	4	19	on	on	ADP
cet-10710	4	20	kinetic	kinetic	ADJ
cet-10710	4	21	reaction	reaction	NOUN
cet-10710	4	22	mechanisms	mechanism	NOUN
cet-10710	4	23	.	.	PUNCT
cet-10710	5	1	the	the	DET
cet-10710	5	2	simulation	simulation	NOUN
cet-10710	5	3	uses	use	VERB
cet-10710	5	4	mass	mass	NOUN
cet-10710	5	5	and	and	CCONJ
cet-10710	5	6	energy	energy	NOUN
cet-10710	5	7	balance	balance	NOUN
cet-10710	5	8	calculations	calculation	NOUN
cet-10710	5	9	to	to	PART
cet-10710	5	10	forecast	forecast	VERB
cet-10710	5	11	the	the	DET
cet-10710	5	12	product	product	NOUN
cet-10710	5	13	yields	yield	NOUN
cet-10710	5	14	and	and	CCONJ
cet-10710	5	15	composition	composition	NOUN
cet-10710	5	16	depending	depend	VERB
cet-10710	5	17	on	on	ADP
cet-10710	5	18	different	different	ADJ
cet-10710	5	19	sets	set	NOUN
cet-10710	5	20	of	of	ADP
cet-10710	5	21	operating	operating	NOUN
cet-10710	5	22	conditions	condition	NOUN
cet-10710	5	23	(	(	PUNCT
cet-10710	5	24	temperature	temperature	NOUN
cet-10710	5	25	,	,	PUNCT
cet-10710	5	26	residence	residence	NOUN
cet-10710	5	27	time	time	NOUN
cet-10710	5	28	)	)	PUNCT
cet-10710	5	29	and	and	CCONJ
cet-10710	5	30	feedstock	feedstock	NOUN
cet-10710	5	31	composition	composition	NOUN
cet-10710	5	32	includes	include	VERB
cet-10710	5	33	conventional	conventional	ADJ
cet-10710	5	34	components	component	NOUN
cet-10710	5	35	,	,	PUNCT
cet-10710	5	36	nonconventional	nonconventional	ADJ
cet-10710	5	37	components	component	NOUN
cet-10710	5	38	,	,	PUNCT
cet-10710	5	39	and	and	CCONJ
cet-10710	5	40	solids	solid	NOUN
cet-10710	5	41	component	component	NOUN
cet-10710	5	42	of	of	ADP
cet-10710	5	43	lignocellulosic	lignocellulosic	ADJ
cet-10710	5	44	biomass	biomass	NOUN
cet-10710	5	45	.	.	PUNCT
cet-10710	6	1	the	the	DET
cet-10710	6	2	reaction	reaction	NOUN
cet-10710	6	3	kinetic	kinetic	NOUN
cet-10710	6	4	models	model	NOUN
cet-10710	6	5	are	be	AUX
cet-10710	6	6	developed	develop	VERB
cet-10710	6	7	from	from	ADP
cet-10710	6	8	the	the	DET
cet-10710	6	9	principle	principle	NOUN
cet-10710	6	10	of	of	ADP
cet-10710	6	11	biomass	biomass	NOUN
cet-10710	6	12	pyrolysis	pyrolysis	NOUN
cet-10710	6	13	using	use	VERB
cet-10710	6	14	data	datum	NOUN
cet-10710	6	15	available	available	ADJ
cet-10710	6	16	from	from	ADP
cet-10710	6	17	the	the	DET
cet-10710	6	18	literature	literature	NOUN
cet-10710	6	19	.	.	PUNCT
cet-10710	7	1	the	the	DET
cet-10710	7	2	product	product	NOUN
cet-10710	7	3	yield	yield	VERB
cet-10710	7	4	from	from	ADP
cet-10710	7	5	a	a	DET
cet-10710	7	6	biomass	biomass	NOUN
cet-10710	7	7	pyrolysis	pyrolysis	NOUN
cet-10710	7	8	pilot	pilot	NOUN
cet-10710	7	9	plant	plant	NOUN
cet-10710	7	10	is	be	AUX
cet-10710	7	11	used	use	VERB
cet-10710	7	12	to	to	PART
cet-10710	7	13	demonstrate	demonstrate	VERB
cet-10710	7	14	the	the	DET
cet-10710	7	15	validation	validation	NOUN
cet-10710	7	16	of	of	ADP
cet-10710	7	17	the	the	DET
cet-10710	7	18	model	model	NOUN
cet-10710	7	19	.	.	PUNCT
cet-10710	8	1	the	the	DET
cet-10710	8	2	results	result	NOUN
cet-10710	8	3	show	show	VERB
cet-10710	8	4	a	a	DET
cet-10710	8	5	high	high	ADJ
cet-10710	8	6	correlation	correlation	NOUN
cet-10710	8	7	of	of	ADP
cet-10710	8	8	the	the	DET
cet-10710	8	9	results	result	NOUN
cet-10710	8	10	for	for	ADP
cet-10710	8	11	both	both	CCONJ
cet-10710	8	12	slow	slow	ADJ
cet-10710	8	13	and	and	CCONJ
cet-10710	8	14	fast	fast	ADJ
cet-10710	8	15	pyrolysis	pyrolysis	NOUN
cet-10710	8	16	processes	process	NOUN
cet-10710	8	17	compared	compare	VERB
cet-10710	8	18	with	with	ADP
cet-10710	8	19	those	those	PRON
cet-10710	8	20	from	from	ADP
cet-10710	8	21	the	the	DET
cet-10710	8	22	pilot	pilot	NOUN
cet-10710	8	23	plant	plant	NOUN
cet-10710	8	24	and	and	CCONJ
cet-10710	8	25	the	the	DET
cet-10710	8	26	previous	previous	ADJ
cet-10710	8	27	works	work	NOUN
cet-10710	8	28	.	.	PUNCT
cet-10710	9	1	the	the	DET
cet-10710	9	2	simulation	simulation	NOUN
cet-10710	9	3	model	model	NOUN
cet-10710	9	4	is	be	AUX
cet-10710	9	5	found	find	VERB
cet-10710	9	6	to	to	PART
cet-10710	9	7	be	be	AUX
cet-10710	9	8	able	able	ADJ
cet-10710	9	9	to	to	PART
cet-10710	9	10	correctly	correctly	ADV
cet-10710	9	11	predict	predict	VERB
cet-10710	9	12	fast	fast	ADJ
cet-10710	9	13	pyrolysis	pyrolysis	NOUN
cet-10710	9	14	products	product	NOUN
cet-10710	9	15	’	'	PUNCT
cet-10710	9	16	yields	yield	NOUN
cet-10710	9	17	within	within	ADP
cet-10710	9	18	the	the	DET
cet-10710	9	19	typical	typical	ADJ
cet-10710	9	20	range	range	NOUN
cet-10710	9	21	of	of	ADP
cet-10710	9	22	operation	operation	NOUN
cet-10710	9	23	considered	consider	VERB
cet-10710	9	24	(	(	PUNCT
cet-10710	9	25	high	high	ADJ
cet-10710	9	26	reaction	reaction	NOUN
cet-10710	9	27	temperatures	temperature	NOUN
cet-10710	9	28	with	with	ADP
cet-10710	9	29	low	low	ADJ
cet-10710	9	30	residence	residence	NOUN
cet-10710	9	31	times	time	NOUN
cet-10710	9	32	)	)	PUNCT
cet-10710	9	33	.	.	PUNCT
cet-10710	10	1	in	in	ADP
cet-10710	10	2	conclusion	conclusion	NOUN
cet-10710	10	3	,	,	PUNCT
cet-10710	10	4	the	the	DET
cet-10710	10	5	model	model	NOUN
cet-10710	10	6	proved	prove	VERB
cet-10710	10	7	to	to	PART
cet-10710	10	8	be	be	AUX
cet-10710	10	9	suitable	suitable	ADJ
cet-10710	10	10	for	for	ADP
cet-10710	10	11	predicting	predict	VERB
cet-10710	10	12	fast	fast	ADJ
cet-10710	10	13	pyrolysis	pyrolysis	NOUN
cet-10710	10	14	reactions	reaction	NOUN
cet-10710	10	15	for	for	ADP
cet-10710	10	16	lignocellulosic	lignocellulosic	ADJ
cet-10710	10	17	biomass	biomass	NOUN
cet-10710	10	18	feedstock	feedstock	NOUN
cet-10710	10	19	and	and	CCONJ
cet-10710	10	20	can	can	AUX
cet-10710	10	21	be	be	AUX
cet-10710	10	22	used	use	VERB
cet-10710	10	23	for	for	ADP
cet-10710	10	24	estimating	estimate	VERB
cet-10710	10	25	the	the	DET
cet-10710	10	26	trend	trend	NOUN
cet-10710	10	27	of	of	ADP
cet-10710	10	28	pyrolysis	pyrolysis	NOUN
cet-10710	10	29	products	product	NOUN
cet-10710	10	30	without	without	ADP
cet-10710	10	31	the	the	DET
cet-10710	10	32	need	need	NOUN
cet-10710	10	33	for	for	ADP
cet-10710	10	34	experimental	experimental	ADJ
cet-10710	10	35	data	datum	NOUN
cet-10710	10	36	with	with	ADP
cet-10710	10	37	t	t	NOUN
cet-10710	10	38	-	-	PUNCT
cet-10710	10	39	test	test	NOUN
cet-10710	10	40	of	of	ADP
cet-10710	10	41	differential	differential	NOUN
cet-10710	10	42	of	of	ADP
cet-10710	10	43	product	product	NOUN
cet-10710	10	44	yield	yield	NOUN
cet-10710	10	45	’s	’s	PART
cet-10710	10	46	trend	trend	NOUN
cet-10710	10	47	at	at	ADP
cet-10710	10	48	95	95	NUM
cet-10710	10	49	%	%	NOUN
cet-10710	10	50	confidence	confidence	NOUN
cet-10710	10	51	interval	interval	NOUN
cet-10710	10	52	as	as	ADP
cet-10710	10	53	0.00327	0.00327	NUM
cet-10710	10	54	.	.	PUNCT
cet-10710	11	1	this	this	DET
cet-10710	11	2	fast	fast	ADJ
cet-10710	11	3	pyrolysis	pyrolysis	NOUN
cet-10710	11	4	model	model	NOUN
cet-10710	11	5	offers	offer	VERB
cet-10710	11	6	rapid	rapid	ADJ
cet-10710	11	7	assessment	assessment	NOUN
cet-10710	11	8	for	for	ADP
cet-10710	11	9	energy	energy	NOUN
cet-10710	11	10	projects	project	NOUN
cet-10710	11	11	associated	associate	VERB
cet-10710	11	12	with	with	ADP
cet-10710	11	13	the	the	DET
cet-10710	11	14	transition	transition	NOUN
cet-10710	11	15	towards	towards	ADP
cet-10710	11	16	low	low	ADJ
cet-10710	11	17	-	-	PUNCT
cet-10710	11	18	carbon	carbon	NOUN
cet-10710	11	19	development	development	NOUN
cet-10710	11	20	in	in	ADP
cet-10710	11	21	asia	asia	PROPN
cet-10710	11	22	.	.	PUNCT
cet-10710	12	1	1	1	X
cet-10710	12	2	.	.	X
cet-10710	12	3	introduction	introduction	NOUN
cet-10710	12	4	biomass	biomass	NOUN
cet-10710	12	5	is	be	AUX
cet-10710	12	6	an	an	DET
cet-10710	12	7	obvious	obvious	ADJ
cet-10710	12	8	renewable	renewable	ADJ
cet-10710	12	9	energy	energy	NOUN
cet-10710	12	10	resource	resource	NOUN
cet-10710	12	11	to	to	PART
cet-10710	12	12	sustain	sustain	VERB
cet-10710	12	13	national	national	ADJ
cet-10710	12	14	energy	energy	NOUN
cet-10710	12	15	needs	need	NOUN
cet-10710	12	16	.	.	PUNCT
cet-10710	13	1	in	in	ADP
cet-10710	13	2	many	many	ADJ
cet-10710	13	3	countries	country	NOUN
cet-10710	13	4	,	,	PUNCT
cet-10710	13	5	a	a	DET
cet-10710	13	6	large	large	ADJ
cet-10710	13	7	amount	amount	NOUN
cet-10710	13	8	of	of	ADP
cet-10710	13	9	agricultural	agricultural	ADJ
cet-10710	13	10	waste	waste	NOUN
cet-10710	13	11	after	after	SCONJ
cet-10710	13	12	harvesting	harvesting	NOUN
cet-10710	13	13	could	could	AUX
cet-10710	13	14	be	be	AUX
cet-10710	13	15	used	use	VERB
cet-10710	13	16	as	as	ADP
cet-10710	13	17	biomass	biomass	NOUN
cet-10710	13	18	energy	energy	NOUN
cet-10710	13	19	.	.	PUNCT
cet-10710	14	1	pyrolysis	pyrolysis	NOUN
cet-10710	14	2	process	process	NOUN
cet-10710	14	3	is	be	AUX
cet-10710	14	4	considered	consider	VERB
cet-10710	14	5	as	as	ADP
cet-10710	14	6	an	an	DET
cet-10710	14	7	effective	effective	ADJ
cet-10710	14	8	conversion	conversion	NOUN
cet-10710	14	9	technology	technology	NOUN
cet-10710	14	10	due	due	ADP
cet-10710	14	11	to	to	ADP
cet-10710	14	12	the	the	DET
cet-10710	14	13	products	product	NOUN
cet-10710	14	14	generated	generate	VERB
cet-10710	14	15	and	and	CCONJ
cet-10710	14	16	the	the	DET
cet-10710	14	17	energy	energy	NOUN
cet-10710	14	18	recovery	recovery	NOUN
cet-10710	14	19	(	(	PUNCT
cet-10710	14	20	oyedun	oyedun	PROPN
cet-10710	14	21	et	et	PROPN
cet-10710	14	22	al	al	PROPN
cet-10710	14	23	.	.	PROPN
cet-10710	14	24	,	,	PUNCT
cet-10710	14	25	2012	2012	NUM
cet-10710	14	26	)	)	PUNCT
cet-10710	14	27	,	,	PUNCT
cet-10710	14	28	which	which	PRON
cet-10710	14	29	is	be	AUX
cet-10710	14	30	carried	carry	VERB
cet-10710	14	31	out	out	ADP
cet-10710	14	32	in	in	ADP
cet-10710	14	33	the	the	DET
cet-10710	14	34	absence	absence	NOUN
cet-10710	14	35	of	of	ADP
cet-10710	14	36	oxygen	oxygen	NOUN
cet-10710	14	37	at	at	ADP
cet-10710	14	38	intermediate	intermediate	ADJ
cet-10710	14	39	to	to	ADP
cet-10710	14	40	high	high	ADJ
cet-10710	14	41	temperatures	temperature	NOUN
cet-10710	14	42	(	(	PUNCT
cet-10710	14	43	500–650	500–650	PROPN
cet-10710	14	44	°	°	PROPN
cet-10710	14	45	c	c	NOUN
cet-10710	14	46	)	)	PUNCT
cet-10710	14	47	,	,	PUNCT
cet-10710	14	48	low	low	ADJ
cet-10710	14	49	residence	residence	NOUN
cet-10710	14	50	times	time	NOUN
cet-10710	14	51	(	(	PUNCT
cet-10710	14	52	<	<	X
cet-10710	14	53	2–3	2–3	NUM
cet-10710	14	54	s	s	NOUN
cet-10710	14	55	)	)	PUNCT
cet-10710	14	56	and	and	CCONJ
cet-10710	14	57	high	high	ADJ
cet-10710	14	58	heating	heating	NOUN
cet-10710	14	59	rates	rate	NOUN
cet-10710	14	60	(	(	PUNCT
cet-10710	14	61	>	>	X
cet-10710	14	62	1,000	1,000	NUM
cet-10710	14	63	°	°	NOUN
cet-10710	14	64	c	c	PROPN
cet-10710	14	65	/	/	SYM
cet-10710	14	66	s	s	NOUN
cet-10710	14	67	)	)	PUNCT
cet-10710	14	68	(	(	PUNCT
cet-10710	14	69	bridgwater	bridgwater	NOUN
cet-10710	14	70	,	,	PUNCT
cet-10710	14	71	2012	2012	NUM
cet-10710	14	72	)	)	PUNCT
cet-10710	14	73	.	.	PUNCT
cet-10710	15	1	the	the	DET
cet-10710	15	2	successful	successful	ADJ
cet-10710	15	3	operation	operation	NOUN
cet-10710	15	4	of	of	ADP
cet-10710	15	5	biomass	biomass	NOUN
cet-10710	15	6	pyrolysis	pyrolysis	NOUN
cet-10710	15	7	plant	plant	NOUN
cet-10710	15	8	on	on	ADP
cet-10710	15	9	an	an	DET
cet-10710	15	10	industrial	industrial	ADJ
cet-10710	15	11	scale	scale	NOUN
cet-10710	15	12	would	would	AUX
cet-10710	15	13	promote	promote	VERB
cet-10710	15	14	the	the	DET
cet-10710	15	15	possibility	possibility	NOUN
cet-10710	15	16	of	of	ADP
cet-10710	15	17	practical	practical	ADJ
cet-10710	15	18	decarbonizing	decarbonizing	NOUN
cet-10710	15	19	energy	energy	NOUN
cet-10710	15	20	projects	project	NOUN
cet-10710	15	21	(	(	PUNCT
cet-10710	15	22	jaroenkhasemmeesuk	jaroenkhasemmeesuk	NOUN
cet-10710	15	23	et	et	PROPN
cet-10710	15	24	al	al	PROPN
cet-10710	15	25	.	.	PROPN
cet-10710	15	26	,	,	PUNCT
cet-10710	15	27	2018	2018	NUM
cet-10710	15	28	)	)	PUNCT
cet-10710	15	29	.	.	PUNCT
cet-10710	16	1	the	the	DET
cet-10710	16	2	drawback	drawback	NOUN
cet-10710	16	3	of	of	ADP
cet-10710	16	4	biomass	biomass	NOUN
cet-10710	16	5	promoted	promote	VERB
cet-10710	16	6	as	as	ADP
cet-10710	16	7	alternative	alternative	ADJ
cet-10710	16	8	energy	energy	NOUN
cet-10710	16	9	is	be	AUX
cet-10710	16	10	variety	variety	NOUN
cet-10710	16	11	and	and	CCONJ
cet-10710	16	12	differences	difference	NOUN
cet-10710	16	13	of	of	ADP
cet-10710	16	14	raw	raw	ADJ
cet-10710	16	15	materials	material	NOUN
cet-10710	16	16	in	in	ADP
cet-10710	16	17	pyrolysis	pyrolysis	NOUN
cet-10710	16	18	that	that	PRON
cet-10710	16	19	require	require	VERB
cet-10710	16	20	different	different	ADJ
cet-10710	16	21	controlled	control	VERB
cet-10710	16	22	operation	operation	NOUN
cet-10710	16	23	parameters	parameter	NOUN
cet-10710	16	24	;	;	PUNCT
cet-10710	16	25	material	material	NOUN
cet-10710	16	26	moisture	moisture	NOUN
cet-10710	16	27	,	,	PUNCT
cet-10710	16	28	temperature	temperature	NOUN
cet-10710	16	29	,	,	PUNCT
cet-10710	16	30	etc	etc	X
cet-10710	16	31	.	.	X
cet-10710	16	32	to	to	PART
cet-10710	16	33	reduce	reduce	VERB
cet-10710	16	34	the	the	DET
cet-10710	16	35	experimental	experimental	ADJ
cet-10710	16	36	cost	cost	NOUN
cet-10710	16	37	,	,	PUNCT
cet-10710	16	38	process	process	NOUN
cet-10710	16	39	modeling	modeling	NOUN
cet-10710	16	40	is	be	AUX
cet-10710	16	41	a	a	DET
cet-10710	16	42	significant	significant	ADJ
cet-10710	16	43	tool	tool	NOUN
cet-10710	16	44	for	for	ADP
cet-10710	16	45	investigating	investigate	VERB
cet-10710	16	46	process	process	NOUN
cet-10710	16	47	performance	performance	NOUN
cet-10710	16	48	and	and	CCONJ
cet-10710	16	49	analyzing	analyze	VERB
cet-10710	16	50	the	the	DET
cet-10710	16	51	impact	impact	NOUN
cet-10710	16	52	of	of	ADP
cet-10710	16	53	operation	operation	NOUN
cet-10710	16	54	parameters	parameter	NOUN
cet-10710	16	55	.	.	PUNCT
cet-10710	17	1	the	the	DET
cet-10710	17	2	simulation	simulation	NOUN
cet-10710	17	3	of	of	ADP
cet-10710	17	4	biomass	biomass	NOUN
cet-10710	17	5	pyrolysis	pyrolysis	NOUN
cet-10710	17	6	plant	plant	NOUN
cet-10710	17	7	has	have	AUX
cet-10710	17	8	been	be	AUX
cet-10710	17	9	developed	develop	VERB
cet-10710	17	10	for	for	ADP
cet-10710	17	11	many	many	ADJ
cet-10710	17	12	recent	recent	ADJ
cet-10710	17	13	years	year	NOUN
cet-10710	17	14	to	to	PART
cet-10710	17	15	reduce	reduce	VERB
cet-10710	17	16	the	the	DET
cet-10710	17	17	cost	cost	NOUN
cet-10710	17	18	of	of	ADP
cet-10710	17	19	the	the	DET
cet-10710	17	20	optimization	optimization	NOUN
cet-10710	17	21	process	process	NOUN
cet-10710	17	22	in	in	ADP
cet-10710	17	23	the	the	DET
cet-10710	17	24	actual	actual	ADJ
cet-10710	17	25	plant	plant	NOUN
cet-10710	17	26	.	.	PUNCT
cet-10710	18	1	simulation	simulation	NOUN
cet-10710	18	2	program	program	NOUN
cet-10710	18	3	from	from	ADP
cet-10710	18	4	aspen	aspen	PROPN
cet-10710	18	5	technology	technology	PROPN
cet-10710	18	6	inc	inc	PROPN
cet-10710	18	7	.	.	PROPN
cet-10710	18	8	is	be	AUX
cet-10710	18	9	the	the	DET
cet-10710	18	10	chemical	chemical	NOUN
cet-10710	18	11	process	process	NOUN
cet-10710	18	12	optimization	optimization	NOUN
cet-10710	18	13	software	software	NOUN
cet-10710	18	14	,	,	PUNCT
cet-10710	18	15	used	use	VERB
cet-10710	18	16	to	to	PART
cet-10710	18	17	design	design	VERB
cet-10710	18	18	,	,	PUNCT
cet-10710	18	19	simulate	simulate	NOUN
cet-10710	18	20	,	,	PUNCT
cet-10710	18	21	predict	predict	VERB
cet-10710	18	22	and	and	CCONJ
cet-10710	18	23	optimize	optimize	VERB
cet-10710	18	24	the	the	DET
cet-10710	18	25	performance	performance	NOUN
cet-10710	18	26	of	of	ADP
cet-10710	18	27	pyrolysis	pyrolysis	NOUN
cet-10710	18	28	plants	plant	NOUN
cet-10710	18	29	.	.	PUNCT
cet-10710	19	1	aspen	aspen	PROPN
cet-10710	19	2	plus	plus	CCONJ
cet-10710	19	3	®	®	NOUN
cet-10710	19	4	can	can	AUX
cet-10710	19	5	estimate	estimate	VERB
cet-10710	19	6	the	the	DET
cet-10710	19	7	yield	yield	NOUN
cet-10710	19	8	and	and	CCONJ
cet-10710	19	9	composition	composition	NOUN
cet-10710	19	10	of	of	ADP
cet-10710	19	11	the	the	DET
cet-10710	19	12	fast	fast	ADJ
cet-10710	19	13	pyrolysis	pyrolysis	NOUN
cet-10710	19	14	products	product	NOUN
cet-10710	19	15	depending	depend	VERB
cet-10710	19	16	on	on	ADP
cet-10710	19	17	reactor	reactor	NOUN
cet-10710	19	18	conditions	condition	NOUN
cet-10710	19	19	and	and	CCONJ
cet-10710	19	20	feedstock	feedstock	NOUN
cet-10710	19	21	composition	composition	NOUN
cet-10710	19	22	without	without	ADP
cet-10710	19	23	the	the	DET
cet-10710	19	24	need	need	NOUN
cet-10710	19	25	for	for	ADP
cet-10710	19	26	experimental	experimental	ADJ
cet-10710	19	27	data	datum	NOUN
cet-10710	19	28	as	as	ADP
cet-10710	19	29	input	input	NOUN
cet-10710	19	30	.	.	PUNCT
cet-10710	20	1	the	the	DET
cet-10710	20	2	heat	heat	NOUN
cet-10710	20	3	and	and	CCONJ
cet-10710	20	4	mass	mass	NOUN
cet-10710	20	5	balances	balance	NOUN
cet-10710	20	6	of	of	ADP
cet-10710	20	7	the	the	DET
cet-10710	20	8	process	process	NOUN
cet-10710	20	9	are	be	AUX
cet-10710	20	10	the	the	DET
cet-10710	20	11	main	main	ADJ
cet-10710	20	12	algorithm	algorithm	NOUN
cet-10710	20	13	in	in	ADP
cet-10710	20	14	aspen	aspen	PROPN
cet-10710	20	15	plus	plus	CCONJ
cet-10710	20	16	®	®	PROPN
cet-10710	20	17	.	.	PUNCT
cet-10710	21	1	doi	doi	PROPN
cet-10710	21	2	:	:	PUNCT
cet-10710	21	3	10.3303	10.3303	NUM
cet-10710	21	4	/	/	SYM
cet-10710	21	5	cet2078013	cet2078013	NOUN
cet-10710	21	6	paper	paper	NOUN
cet-10710	21	7	received	receive	VERB
cet-10710	21	8	:	:	PUNCT
cet-10710	21	9	11/04/2019	11/04/2019	NUM
cet-10710	21	10	;	;	PUNCT
cet-10710	21	11	revised	revise	VERB
cet-10710	21	12	:	:	PUNCT
cet-10710	21	13	08/08/2019	08/08/2019	NUM
cet-10710	21	14	;	;	PUNCT
cet-10710	21	15	accepted	accept	VERB
cet-10710	21	16	:	:	PUNCT
cet-10710	21	17	24/10/2019	24/10/2019	NUM
cet-10710	21	18	please	please	INTJ
cet-10710	21	19	cite	cite	VERB
cet-10710	21	20	this	this	DET
cet-10710	21	21	article	article	NOUN
cet-10710	21	22	as	as	ADP
cet-10710	21	23	:	:	PUNCT
cet-10710	21	24	jaroenkhasemmeesuk	jaroenkhasemmeesuk	PROPN
cet-10710	21	25	c.	c.	PROPN
cet-10710	21	26	,	,	PUNCT
cet-10710	21	27	tippayawong	tippayawong	PROPN
cet-10710	21	28	n.	n.	PROPN
cet-10710	21	29	,	,	PUNCT
cet-10710	21	30	ingham	ingham	PROPN
cet-10710	21	31	d.b	d.b	PROPN
cet-10710	21	32	.	.	PROPN
cet-10710	21	33	,	,	PUNCT
cet-10710	21	34	pourkashanian	pourkashanian	PROPN
cet-10710	21	35	m.	m.	NOUN
cet-10710	21	36	,	,	PUNCT
cet-10710	21	37	2020	2020	NUM
cet-10710	21	38	,	,	PUNCT
cet-10710	21	39	process	process	NOUN
cet-10710	21	40	modelling	modelling	NOUN
cet-10710	21	41	and	and	CCONJ
cet-10710	21	42	simulation	simulation	NOUN
cet-10710	21	43	of	of	ADP
cet-10710	21	44	fast	fast	ADJ
cet-10710	21	45	pyrolysis	pyrolysis	NOUN
cet-10710	21	46	plant	plant	NOUN
cet-10710	21	47	of	of	ADP
cet-10710	21	48	lignocellulosic	lignocellulosic	ADJ
cet-10710	21	49	biomass	biomass	NOUN
cet-10710	21	50	using	use	VERB
cet-10710	21	51	improved	improve	VERB
cet-10710	21	52	chemical	chemical	NOUN
cet-10710	21	53	kinetics	kinetic	NOUN
cet-10710	21	54	in	in	ADP
cet-10710	21	55	aspen	aspen	PROPN
cet-10710	21	56	plus	plus	CCONJ
cet-10710	21	57	®	®	NOUN
cet-10710	21	58	,	,	PUNCT
cet-10710	21	59	chemical	chemical	ADJ
cet-10710	21	60	engineering	engineering	NOUN
cet-10710	21	61	transactions	transaction	NOUN
cet-10710	21	62	,	,	PUNCT
cet-10710	21	63	78	78	NUM
cet-10710	21	64	,	,	PUNCT
cet-10710	21	65	73	73	NUM
cet-10710	21	66	-	-	SYM
cet-10710	21	67	78	78	NUM
cet-10710	21	68	doi:10.3303	doi:10.3303	NOUN
cet-10710	21	69	/	/	SYM
cet-10710	21	70	cet2078013	cet2078013	NOUN
cet-10710	21	71	73	73	NUM
cet-10710	21	72	most	most	ADJ
cet-10710	21	73	of	of	ADP
cet-10710	21	74	the	the	DET
cet-10710	21	75	modeling	modeling	NOUN
cet-10710	21	76	works	work	NOUN
cet-10710	21	77	have	have	AUX
cet-10710	21	78	focused	focus	VERB
cet-10710	21	79	on	on	ADP
cet-10710	21	80	the	the	DET
cet-10710	21	81	overall	overall	ADJ
cet-10710	21	82	efficiency	efficiency	NOUN
cet-10710	21	83	of	of	ADP
cet-10710	21	84	the	the	DET
cet-10710	21	85	pyrolysis	pyrolysis	NOUN
cet-10710	21	86	plant	plant	NOUN
cet-10710	21	87	,	,	PUNCT
cet-10710	21	88	with	with	ADP
cet-10710	21	89	a	a	DET
cet-10710	21	90	variety	variety	NOUN
cet-10710	21	91	of	of	ADP
cet-10710	21	92	reactor	reactor	NOUN
cet-10710	21	93	models	model	NOUN
cet-10710	21	94	.	.	PUNCT
cet-10710	22	1	a	a	DET
cet-10710	22	2	pyrolysis	pyrolysis	NOUN
cet-10710	22	3	reactor	reactor	NOUN
cet-10710	22	4	in	in	ADP
cet-10710	22	5	aspen	aspen	PROPN
cet-10710	22	6	plus	plus	CCONJ
cet-10710	22	7	®	®	NOUN
cet-10710	22	8	model	model	NOUN
cet-10710	22	9	in	in	ADP
cet-10710	22	10	previous	previous	ADJ
cet-10710	22	11	works	work	NOUN
cet-10710	22	12	can	can	AUX
cet-10710	22	13	be	be	AUX
cet-10710	22	14	categorized	categorize	VERB
cet-10710	22	15	into	into	ADP
cet-10710	22	16	two	two	NUM
cet-10710	22	17	types	type	NOUN
cet-10710	22	18	of	of	ADP
cet-10710	22	19	reactor	reactor	NOUN
cet-10710	22	20	models	model	NOUN
cet-10710	22	21	;	;	PUNCT
cet-10710	22	22	gibbs	gibbs	PROPN
cet-10710	22	23	reactor	reactor	NOUN
cet-10710	22	24	(	(	PUNCT
cet-10710	22	25	rgibbs	rgibb	NOUN
cet-10710	22	26	)	)	PUNCT
cet-10710	22	27	,	,	PUNCT
cet-10710	22	28	and	and	CCONJ
cet-10710	22	29	yield	yield	VERB
cet-10710	22	30	reactor	reactor	NOUN
cet-10710	22	31	(	(	PUNCT
cet-10710	22	32	ryield	ryield	NOUN
cet-10710	22	33	)	)	PUNCT
cet-10710	22	34	.	.	PUNCT
cet-10710	23	1	both	both	DET
cet-10710	23	2	rgibbs	rgibb	NOUN
cet-10710	23	3	and	and	CCONJ
cet-10710	23	4	ryield	ryield	NOUN
cet-10710	23	5	are	be	AUX
cet-10710	23	6	used	use	VERB
cet-10710	23	7	when	when	SCONJ
cet-10710	23	8	the	the	DET
cet-10710	23	9	reaction	reaction	NOUN
cet-10710	23	10	kinetics	kinetic	NOUN
cet-10710	23	11	and	and	CCONJ
cet-10710	23	12	stoichiometry	stoichiometry	NOUN
cet-10710	23	13	are	be	AUX
cet-10710	23	14	unknown	unknown	ADJ
cet-10710	23	15	(	(	PUNCT
cet-10710	23	16	aspen	aspen	PROPN
cet-10710	23	17	technology	technology	PROPN
cet-10710	23	18	inc	inc	PROPN
cet-10710	23	19	.	.	PROPN
cet-10710	23	20	,2013	,2013	PUNCT
cet-10710	23	21	)	)	PUNCT
cet-10710	23	22	.	.	PUNCT
cet-10710	24	1	rgibbs	rgibb	NOUN
cet-10710	24	2	solves	solve	VERB
cet-10710	24	3	its	its	PRON
cet-10710	24	4	model	model	NOUN
cet-10710	24	5	by	by	ADP
cet-10710	24	6	minimizing	minimize	VERB
cet-10710	24	7	gibbs	gibbs	PROPN
cet-10710	24	8	free	free	ADJ
cet-10710	24	9	,	,	PUNCT
cet-10710	24	10	while	while	SCONJ
cet-10710	24	11	ryield	ryield	NOUN
cet-10710	24	12	performs	perform	VERB
cet-10710	24	13	the	the	DET
cet-10710	24	14	calculations	calculation	NOUN
cet-10710	24	15	based	base	VERB
cet-10710	24	16	on	on	ADP
cet-10710	24	17	the	the	DET
cet-10710	24	18	yield	yield	NOUN
cet-10710	24	19	that	that	PRON
cet-10710	24	20	was	be	AUX
cet-10710	24	21	specified	specify	VERB
cet-10710	24	22	in	in	ADP
cet-10710	24	23	the	the	DET
cet-10710	24	24	model	model	NOUN
cet-10710	24	25	.	.	PUNCT
cet-10710	25	1	they	they	PRON
cet-10710	25	2	claimed	claim	VERB
cet-10710	25	3	that	that	SCONJ
cet-10710	25	4	this	this	DET
cet-10710	25	5	model	model	NOUN
cet-10710	25	6	used	use	VERB
cet-10710	25	7	more	more	ADJ
cet-10710	25	8	than	than	ADP
cet-10710	25	9	100	100	NUM
cet-10710	25	10	equations	equation	NOUN
cet-10710	25	11	to	to	PART
cet-10710	25	12	increase	increase	VERB
cet-10710	25	13	reliability	reliability	NOUN
cet-10710	25	14	.	.	PUNCT
cet-10710	26	1	onarheim	onarheim	PROPN
cet-10710	26	2	et	et	PROPN
cet-10710	26	3	al	al	PROPN
cet-10710	26	4	.	.	PROPN
cet-10710	27	1	(	(	PUNCT
cet-10710	27	2	2015	2015	NUM
cet-10710	27	3	)	)	PUNCT
cet-10710	27	4	used	use	VERB
cet-10710	27	5	an	an	DET
cet-10710	27	6	ryield	ryield	NOUN
cet-10710	27	7	reactor	reactor	NOUN
cet-10710	27	8	block	block	NOUN
cet-10710	27	9	for	for	ADP
cet-10710	27	10	simulating	simulate	VERB
cet-10710	27	11	the	the	DET
cet-10710	27	12	fast	fast	ADJ
cet-10710	27	13	pyrolysis	pyrolysis	NOUN
cet-10710	27	14	model	model	NOUN
cet-10710	27	15	claimed	claim	VERB
cet-10710	27	16	that	that	SCONJ
cet-10710	27	17	the	the	DET
cet-10710	27	18	reaction	reaction	NOUN
cet-10710	27	19	mechanisms	mechanism	NOUN
cet-10710	27	20	for	for	ADP
cet-10710	27	21	fast	fast	ADJ
cet-10710	27	22	pyrolysis	pyrolysis	NOUN
cet-10710	27	23	of	of	ADP
cet-10710	27	24	wood	wood	NOUN
cet-10710	27	25	are	be	AUX
cet-10710	27	26	poorly	poorly	ADV
cet-10710	27	27	understood	understand	VERB
cet-10710	27	28	.	.	PUNCT
cet-10710	28	1	the	the	DET
cet-10710	28	2	result	result	NOUN
cet-10710	28	3	showed	show	VERB
cet-10710	28	4	that	that	SCONJ
cet-10710	28	5	this	this	DET
cet-10710	28	6	model	model	NOUN
cet-10710	28	7	would	would	AUX
cet-10710	28	8	be	be	AUX
cet-10710	28	9	accompanied	accompany	VERB
cet-10710	28	10	by	by	ADP
cet-10710	28	11	a	a	DET
cet-10710	28	12	certain	certain	ADJ
cet-10710	28	13	degree	degree	NOUN
cet-10710	28	14	of	of	ADP
cet-10710	28	15	unreliability	unreliability	NOUN
cet-10710	28	16	.	.	PUNCT
cet-10710	29	1	the	the	DET
cet-10710	29	2	mentioned	mention	VERB
cet-10710	29	3	models	model	NOUN
cet-10710	29	4	are	be	AUX
cet-10710	29	5	based	base	VERB
cet-10710	29	6	on	on	ADP
cet-10710	29	7	a	a	DET
cet-10710	29	8	range	range	NOUN
cet-10710	29	9	of	of	ADP
cet-10710	29	10	sources	source	NOUN
cet-10710	29	11	accumulated	accumulate	VERB
cet-10710	29	12	into	into	ADP
cet-10710	29	13	one	one	NUM
cet-10710	29	14	composite	composite	ADJ
cet-10710	29	15	compilation	compilation	NOUN
cet-10710	29	16	.	.	PUNCT
cet-10710	30	1	various	various	ADJ
cet-10710	30	2	sources	source	NOUN
cet-10710	30	3	collection	collection	NOUN
cet-10710	30	4	leads	lead	VERB
cet-10710	30	5	to	to	ADP
cet-10710	30	6	a	a	DET
cet-10710	30	7	significant	significant	ADJ
cet-10710	30	8	risk	risk	NOUN
cet-10710	30	9	of	of	ADP
cet-10710	30	10	unrealistic	unrealistic	ADJ
cet-10710	30	11	model	model	NOUN
cet-10710	30	12	analysis	analysis	NOUN
cet-10710	30	13	because	because	SCONJ
cet-10710	30	14	the	the	DET
cet-10710	30	15	collected	collect	VERB
cet-10710	30	16	data	datum	NOUN
cet-10710	30	17	from	from	ADP
cet-10710	30	18	various	various	ADJ
cet-10710	30	19	process	process	NOUN
cet-10710	30	20	conditions	condition	NOUN
cet-10710	30	21	such	such	ADJ
cet-10710	30	22	as	as	ADP
cet-10710	30	23	feedstock	feedstock	NOUN
cet-10710	30	24	types	type	NOUN
cet-10710	30	25	may	may	AUX
cet-10710	30	26	diverge	diverge	VERB
cet-10710	30	27	.	.	PUNCT
cet-10710	31	1	small	small	ADJ
cet-10710	31	2	-	-	PUNCT
cet-10710	31	3	scale	scale	NOUN
cet-10710	31	4	modeling	modeling	NOUN
cet-10710	31	5	can	can	AUX
cet-10710	31	6	be	be	AUX
cet-10710	31	7	analysed	analyse	VERB
cet-10710	31	8	as	as	ADP
cet-10710	31	9	the	the	DET
cet-10710	31	10	mentioned	mention	VERB
cet-10710	31	11	model	model	NOUN
cet-10710	31	12	.	.	PUNCT
cet-10710	32	1	but	but	CCONJ
cet-10710	32	2	large	large	ADJ
cet-10710	32	3	-	-	PUNCT
cet-10710	32	4	scale	scale	NOUN
cet-10710	32	5	continuous	continuous	ADJ
cet-10710	32	6	units	unit	NOUN
cet-10710	32	7	may	may	AUX
cet-10710	32	8	require	require	VERB
cet-10710	32	9	a	a	DET
cet-10710	32	10	higher	high	ADJ
cet-10710	32	11	reliable	reliable	ADJ
cet-10710	32	12	validation	validation	NOUN
cet-10710	32	13	of	of	ADP
cet-10710	32	14	a	a	DET
cet-10710	32	15	simulation	simulation	NOUN
cet-10710	32	16	model	model	NOUN
cet-10710	32	17	,	,	PUNCT
cet-10710	32	18	as	as	SCONJ
cet-10710	32	19	these	these	PRON
cet-10710	32	20	generate	generate	VERB
cet-10710	32	21	more	more	ADV
cet-10710	32	22	reliable	reliable	ADJ
cet-10710	32	23	data	datum	NOUN
cet-10710	32	24	when	when	SCONJ
cet-10710	32	25	processes	process	NOUN
cet-10710	32	26	are	be	AUX
cet-10710	32	27	scaled	scale	VERB
cet-10710	32	28	up	up	ADP
cet-10710	32	29	to	to	ADP
cet-10710	32	30	demonstration	demonstration	NOUN
cet-10710	32	31	or	or	CCONJ
cet-10710	32	32	commercial	commercial	ADJ
cet-10710	32	33	size	size	NOUN
cet-10710	32	34	.	.	PUNCT
cet-10710	33	1	when	when	SCONJ
cet-10710	33	2	rigorous	rigorous	ADJ
cet-10710	33	3	simulation	simulation	NOUN
cet-10710	33	4	of	of	ADP
cet-10710	33	5	reactors	reactor	NOUN
cet-10710	33	6	is	be	AUX
cet-10710	33	7	needed	need	VERB
cet-10710	33	8	,	,	PUNCT
cet-10710	33	9	the	the	DET
cet-10710	33	10	rcstr	rcstr	NOUN
cet-10710	33	11	will	will	AUX
cet-10710	33	12	be	be	AUX
cet-10710	33	13	used	use	VERB
cet-10710	33	14	.	.	PUNCT
cet-10710	34	1	cstr	cstr	NOUN
cet-10710	34	2	reactor	reactor	NOUN
cet-10710	34	3	will	will	AUX
cet-10710	34	4	approach	approach	VERB
cet-10710	34	5	a	a	DET
cet-10710	34	6	more	more	ADV
cet-10710	34	7	realistic	realistic	ADJ
cet-10710	34	8	description	description	NOUN
cet-10710	34	9	of	of	ADP
cet-10710	34	10	the	the	DET
cet-10710	34	11	process	process	NOUN
cet-10710	34	12	.	.	PUNCT
cet-10710	35	1	peters	peters	PROPN
cet-10710	35	2	et	et	PROPN
cet-10710	35	3	al	al	PROPN
cet-10710	35	4	.	.	PROPN
cet-10710	35	5	(	(	PUNCT
cet-10710	35	6	2014a	2014a	NUM
cet-10710	35	7	)	)	PUNCT
cet-10710	35	8	used	use	VERB
cet-10710	35	9	rcstr	rcstr	NOUN
cet-10710	35	10	together	together	ADV
cet-10710	35	11	with	with	ADP
cet-10710	35	12	ryield	ryield	NOUN
cet-10710	35	13	to	to	PART
cet-10710	35	14	model	model	VERB
cet-10710	35	15	the	the	DET
cet-10710	35	16	fast	fast	ADJ
cet-10710	35	17	pyrolysis	pyrolysis	NOUN
cet-10710	35	18	plant	plant	NOUN
cet-10710	35	19	.	.	PUNCT
cet-10710	36	1	the	the	DET
cet-10710	36	2	result	result	NOUN
cet-10710	36	3	showed	show	VERB
cet-10710	36	4	higher	high	ADJ
cet-10710	36	5	reliability	reliability	NOUN
cet-10710	36	6	of	of	ADP
cet-10710	36	7	yield	yield	NOUN
cet-10710	36	8	than	than	ADP
cet-10710	36	9	other	other	ADJ
cet-10710	36	10	models	model	NOUN
cet-10710	36	11	and	and	CCONJ
cet-10710	36	12	be	be	AUX
cet-10710	36	13	able	able	ADJ
cet-10710	36	14	to	to	PART
cet-10710	36	15	significantly	significantly	ADV
cet-10710	36	16	improve	improve	VERB
cet-10710	36	17	the	the	DET
cet-10710	36	18	efficiency	efficiency	NOUN
cet-10710	36	19	of	of	ADP
cet-10710	36	20	the	the	DET
cet-10710	36	21	overall	overall	ADJ
cet-10710	36	22	plant	plant	NOUN
cet-10710	36	23	to	to	ADP
cet-10710	36	24	73.2	73.2	NUM
cet-10710	36	25	%	%	NOUN
cet-10710	36	26	.	.	PUNCT
cet-10710	37	1	this	this	DET
cet-10710	37	2	work	work	NOUN
cet-10710	37	3	aims	aim	VERB
cet-10710	37	4	to	to	PART
cet-10710	37	5	present	present	VERB
cet-10710	37	6	a	a	DET
cet-10710	37	7	comprehensive	comprehensive	ADJ
cet-10710	37	8	aspen	aspen	NOUN
cet-10710	37	9	plus	plus	CCONJ
cet-10710	37	10	®	®	NOUN
cet-10710	37	11	modeling	modeling	NOUN
cet-10710	37	12	work	work	NOUN
cet-10710	37	13	of	of	ADP
cet-10710	37	14	fast	fast	ADJ
cet-10710	37	15	pyrolysis	pyrolysis	NOUN
cet-10710	37	16	processes	process	NOUN
cet-10710	37	17	for	for	ADP
cet-10710	37	18	lignocellulosic	lignocellulosic	ADJ
cet-10710	37	19	biomass	biomass	NOUN
cet-10710	37	20	based	base	VERB
cet-10710	37	21	on	on	ADP
cet-10710	37	22	only	only	ADJ
cet-10710	37	23	main	main	ADJ
cet-10710	37	24	kinetic	kinetic	ADJ
cet-10710	37	25	reaction	reaction	NOUN
cet-10710	37	26	mechanisms	mechanism	NOUN
cet-10710	37	27	from	from	ADP
cet-10710	37	28	pelucchi	pelucchi	PROPN
cet-10710	37	29	et	et	PROPN
cet-10710	37	30	al	al	PROPN
cet-10710	37	31	.	.	PROPN
cet-10710	38	1	(	(	PUNCT
cet-10710	38	2	2018	2018	NUM
cet-10710	38	3	)	)	PUNCT
cet-10710	38	4	,	,	PUNCT
cet-10710	38	5	of	of	ADP
cet-10710	38	6	pyrolysis	pyrolysis	NOUN
cet-10710	38	7	process	process	NOUN
cet-10710	38	8	of	of	ADP
cet-10710	38	9	lignocellulosic	lignocellulosic	ADJ
cet-10710	38	10	biomass	biomass	NOUN
cet-10710	38	11	.	.	PUNCT
cet-10710	39	1	the	the	DET
cet-10710	39	2	expected	expect	VERB
cet-10710	39	3	result	result	NOUN
cet-10710	39	4	of	of	ADP
cet-10710	39	5	this	this	DET
cet-10710	39	6	work	work	NOUN
cet-10710	39	7	should	should	AUX
cet-10710	39	8	be	be	AUX
cet-10710	39	9	able	able	ADJ
cet-10710	39	10	to	to	PART
cet-10710	39	11	represent	represent	VERB
cet-10710	39	12	more	more	ADV
cet-10710	39	13	reliable	reliable	ADJ
cet-10710	39	14	of	of	ADP
cet-10710	39	15	pyrolysis	pyrolysis	NOUN
cet-10710	39	16	product	product	NOUN
cet-10710	39	17	yield	yield	NOUN
cet-10710	39	18	and	and	CCONJ
cet-10710	39	19	simpler	simple	ADJ
cet-10710	39	20	to	to	PART
cet-10710	39	21	operate	operate	VERB
cet-10710	39	22	or	or	CCONJ
cet-10710	39	23	to	to	PART
cet-10710	39	24	remodel	remodel	VERB
cet-10710	39	25	than	than	ADP
cet-10710	39	26	previous	previous	ADJ
cet-10710	39	27	works	work	NOUN
cet-10710	39	28	.	.	PUNCT
cet-10710	40	1	2	2	X
cet-10710	40	2	.	.	X
cet-10710	40	3	modeling	modeling	NOUN
cet-10710	40	4	of	of	ADP
cet-10710	40	5	lignocellulosic	lignocellulosic	ADJ
cet-10710	40	6	biomass	biomass	NOUN
cet-10710	40	7	pyrolysis	pyrolysis	NOUN
cet-10710	40	8	plant	plant	NOUN
cet-10710	40	9	aspen	aspen	PROPN
cet-10710	40	10	plus	plus	CCONJ
cet-10710	40	11	®	®	NOUN
cet-10710	40	12	can	can	AUX
cet-10710	40	13	be	be	AUX
cet-10710	40	14	used	use	VERB
cet-10710	40	15	to	to	ADP
cet-10710	40	16	model	model	NOUN
cet-10710	40	17	processes	process	NOUN
cet-10710	40	18	involving	involve	VERB
cet-10710	40	19	solids	solid	NOUN
cet-10710	40	20	and	and	CCONJ
cet-10710	40	21	can	can	AUX
cet-10710	40	22	complete	complete	VERB
cet-10710	40	23	integrated	integrate	VERB
cet-10710	40	24	solutions	solution	NOUN
cet-10710	40	25	for	for	ADP
cet-10710	40	26	process	process	NOUN
cet-10710	40	27	engineering	engineering	NOUN
cet-10710	40	28	including	include	VERB
cet-10710	40	29	reactor	reactor	NOUN
cet-10710	40	30	as	as	ADV
cet-10710	40	31	well	well	ADV
cet-10710	40	32	.	.	PUNCT
cet-10710	41	1	the	the	DET
cet-10710	41	2	heat	heat	NOUN
cet-10710	41	3	and	and	CCONJ
cet-10710	41	4	mass	mass	NOUN
cet-10710	41	5	balances	balance	NOUN
cet-10710	41	6	of	of	ADP
cet-10710	41	7	the	the	DET
cet-10710	41	8	process	process	NOUN
cet-10710	41	9	are	be	AUX
cet-10710	41	10	the	the	DET
cet-10710	41	11	main	main	ADJ
cet-10710	41	12	algorithm	algorithm	NOUN
cet-10710	41	13	in	in	ADP
cet-10710	41	14	aspen	aspen	PROPN
cet-10710	41	15	plus	plus	CCONJ
cet-10710	41	16	®	®	NOUN
cet-10710	41	17	.	.	PUNCT
cet-10710	42	1	moreover	moreover	ADV
cet-10710	42	2	,	,	PUNCT
cet-10710	42	3	rcstr	rcstr	PROPN
cet-10710	42	4	needs	need	VERB
cet-10710	42	5	more	more	ADV
cet-10710	42	6	technical	technical	ADJ
cet-10710	42	7	detail	detail	NOUN
cet-10710	42	8	in	in	ADP
cet-10710	42	9	design	design	NOUN
cet-10710	42	10	variables	variable	NOUN
cet-10710	42	11	(	(	PUNCT
cet-10710	42	12	pressure	pressure	NOUN
cet-10710	42	13	and	and	CCONJ
cet-10710	42	14	temperature	temperature	NOUN
cet-10710	42	15	or	or	CCONJ
cet-10710	42	16	heat	heat	NOUN
cet-10710	42	17	duty	duty	NOUN
cet-10710	42	18	)	)	PUNCT
cet-10710	42	19	,	,	PUNCT
cet-10710	42	20	specification	specification	NOUN
cet-10710	42	21	of	of	ADP
cet-10710	42	22	the	the	DET
cet-10710	42	23	valid	valid	ADJ
cet-10710	42	24	phases	phase	NOUN
cet-10710	42	25	,	,	PUNCT
cet-10710	42	26	and	and	CCONJ
cet-10710	42	27	a	a	DET
cet-10710	42	28	reactor	reactor	NOUN
cet-10710	42	29	specification	specification	NOUN
cet-10710	42	30	(	(	PUNCT
cet-10710	42	31	residence	residence	NOUN
cet-10710	42	32	time	time	NOUN
cet-10710	42	33	)	)	PUNCT
cet-10710	42	34	.	.	PUNCT
cet-10710	43	1	the	the	DET
cet-10710	43	2	results	result	NOUN
cet-10710	43	3	from	from	ADP
cet-10710	43	4	the	the	DET
cet-10710	43	5	simulation	simulation	NOUN
cet-10710	43	6	of	of	ADP
cet-10710	43	7	the	the	DET
cet-10710	43	8	gibbs	gibbs	PROPN
cet-10710	43	9	reactor	reactor	NOUN
cet-10710	43	10	is	be	AUX
cet-10710	43	11	based	base	VERB
cet-10710	43	12	on	on	ADP
cet-10710	43	13	calculations	calculation	NOUN
cet-10710	43	14	where	where	SCONJ
cet-10710	43	15	the	the	DET
cet-10710	43	16	reactions	reaction	NOUN
cet-10710	43	17	reach	reach	VERB
cet-10710	43	18	thermodynamically	thermodynamically	ADV
cet-10710	43	19	and	and	CCONJ
cet-10710	43	20	chemical	chemical	ADJ
cet-10710	43	21	equilibrium	equilibrium	NOUN
cet-10710	43	22	over	over	ADP
cet-10710	43	23	an	an	DET
cet-10710	43	24	infinity	infinity	NOUN
cet-10710	43	25	of	of	ADP
cet-10710	43	26	time	time	NOUN
cet-10710	43	27	(	(	PUNCT
cet-10710	43	28	aspen	aspen	PROPN
cet-10710	43	29	technology	technology	PROPN
cet-10710	43	30	inc	inc	PROPN
cet-10710	43	31	.	.	PROPN
cet-10710	43	32	,	,	PUNCT
cet-10710	43	33	2013	2013	NUM
cet-10710	43	34	)	)	PUNCT
cet-10710	43	35	.	.	PUNCT
cet-10710	44	1	in	in	ADP
cet-10710	44	2	a	a	DET
cet-10710	44	3	real	real	ADJ
cet-10710	44	4	pyrolysis	pyrolysis	NOUN
cet-10710	44	5	process	process	NOUN
cet-10710	44	6	,	,	PUNCT
cet-10710	44	7	the	the	DET
cet-10710	44	8	time	time	NOUN
cet-10710	44	9	of	of	ADP
cet-10710	44	10	reactions	reaction	NOUN
cet-10710	44	11	should	should	AUX
cet-10710	44	12	be	be	AUX
cet-10710	44	13	considered	consider	VERB
cet-10710	44	14	as	as	ADP
cet-10710	44	15	finite	finite	NOUN
cet-10710	44	16	,	,	PUNCT
cet-10710	44	17	and	and	CCONJ
cet-10710	44	18	the	the	DET
cet-10710	44	19	different	different	ADJ
cet-10710	44	20	reactions	reaction	NOUN
cet-10710	44	21	have	have	VERB
cet-10710	44	22	different	different	ADJ
cet-10710	44	23	reaction	reaction	NOUN
cet-10710	44	24	rates	rate	NOUN
cet-10710	44	25	.	.	PUNCT
cet-10710	45	1	2.1	2.1	NUM
cet-10710	45	2	feedstock	feedstock	NOUN
cet-10710	45	3	specification	specification	NOUN
cet-10710	45	4	in	in	ADP
cet-10710	45	5	this	this	DET
cet-10710	45	6	work	work	NOUN
cet-10710	45	7	,	,	PUNCT
cet-10710	45	8	three	three	NUM
cet-10710	45	9	types	type	NOUN
cet-10710	45	10	of	of	ADP
cet-10710	45	11	components	component	NOUN
cet-10710	45	12	were	be	AUX
cet-10710	45	13	used	use	VERB
cet-10710	45	14	includes	include	VERB
cet-10710	45	15	conventional	conventional	ADJ
cet-10710	45	16	components	component	NOUN
cet-10710	45	17	,	,	PUNCT
cet-10710	45	18	nonconventional	nonconventional	ADJ
cet-10710	45	19	components	component	NOUN
cet-10710	45	20	,	,	PUNCT
cet-10710	45	21	and	and	CCONJ
cet-10710	45	22	solids	solid	NOUN
cet-10710	45	23	component	component	NOUN
cet-10710	45	24	based	base	VERB
cet-10710	45	25	on	on	ADP
cet-10710	45	26	ultimate	ultimate	ADJ
cet-10710	45	27	and	and	CCONJ
cet-10710	45	28	proximate	proximate	VERB
cet-10710	45	29	analyses	analysis	NOUN
cet-10710	45	30	shown	show	VERB
cet-10710	45	31	in	in	ADP
cet-10710	45	32	table	table	NOUN
cet-10710	45	33	1	1	NUM
cet-10710	45	34	.	.	PUNCT
cet-10710	45	35	normal	normal	ADJ
cet-10710	45	36	components	component	NOUN
cet-10710	45	37	were	be	AUX
cet-10710	45	38	identified	identify	VERB
cet-10710	45	39	as	as	ADP
cet-10710	45	40	conventional	conventional	ADJ
cet-10710	45	41	components	component	NOUN
cet-10710	45	42	.	.	PUNCT
cet-10710	46	1	other	other	ADJ
cet-10710	46	2	solid	solid	ADJ
cet-10710	46	3	component	component	NOUN
cet-10710	46	4	includes	include	VERB
cet-10710	46	5	sawdust	sawdust	NOUN
cet-10710	46	6	component	component	NOUN
cet-10710	46	7	,	,	PUNCT
cet-10710	46	8	biochar	biochar	NOUN
cet-10710	46	9	,	,	PUNCT
cet-10710	46	10	and	and	CCONJ
cet-10710	46	11	ash	ash	NOUN
cet-10710	46	12	will	will	AUX
cet-10710	46	13	be	be	AUX
cet-10710	46	14	identified	identify	VERB
cet-10710	46	15	as	as	ADP
cet-10710	46	16	nonconventional	nonconventional	ADJ
cet-10710	46	17	and	and	CCONJ
cet-10710	46	18	solid	solid	ADJ
cet-10710	46	19	components	component	NOUN
cet-10710	46	20	.	.	PUNCT
cet-10710	47	1	sawdust	sawdust	NOUN
cet-10710	47	2	,	,	PUNCT
cet-10710	47	3	char	char	NOUN
cet-10710	47	4	,	,	PUNCT
cet-10710	47	5	and	and	CCONJ
cet-10710	47	6	sand	sand	NOUN
cet-10710	47	7	played	play	VERB
cet-10710	47	8	significant	significant	ADJ
cet-10710	47	9	roles	role	NOUN
cet-10710	47	10	in	in	ADP
cet-10710	47	11	the	the	DET
cet-10710	47	12	model	model	NOUN
cet-10710	47	13	as	as	ADP
cet-10710	47	14	a	a	DET
cet-10710	47	15	nonconventional	nonconventional	ADJ
cet-10710	47	16	solid	solid	ADJ
cet-10710	47	17	component	component	NOUN
cet-10710	47	18	table	table	NOUN
cet-10710	47	19	1	1	NUM
cet-10710	47	20	:	:	PUNCT
cet-10710	47	21	ultimate	ultimate	ADJ
cet-10710	47	22	and	and	CCONJ
cet-10710	47	23	proximate	proximate	VERB
cet-10710	47	24	analyses	analysis	NOUN
cet-10710	47	25	of	of	ADP
cet-10710	47	26	the	the	DET
cet-10710	47	27	feedstocks	feedstock	NOUN
cet-10710	47	28	reference	reference	NOUN
cet-10710	47	29	this	this	DET
cet-10710	47	30	work	work	NOUN
cet-10710	47	31	ward	ward	NOUN
cet-10710	47	32	et	et	PROPN
cet-10710	47	33	al	al	PROPN
cet-10710	47	34	.	.	PROPN
cet-10710	48	1	(	(	PUNCT
cet-10710	48	2	2014	2014	NUM
cet-10710	48	3	)	)	PUNCT
cet-10710	48	4	air	air	NOUN
cet-10710	48	5	-	-	PUNCT
cet-10710	48	6	dried	dry	VERB
cet-10710	48	7	moisture	moisture	NOUN
cet-10710	48	8	(	(	PUNCT
cet-10710	48	9	%	%	INTJ
cet-10710	48	10	)	)	PUNCT
cet-10710	48	11	7.68	7.68	NUM
cet-10710	48	12	6.1	6.1	NUM
cet-10710	48	13	ash	ash	NOUN
cet-10710	48	14	(	(	PUNCT
cet-10710	48	15	%	%	NOUN
cet-10710	48	16	)	)	PUNCT
cet-10710	48	17	2.5	2.5	NUM
cet-10710	48	18	1.0	1.0	NUM
cet-10710	48	19	volatile	volatile	ADJ
cet-10710	48	20	matter	matter	NOUN
cet-10710	48	21	(	(	PUNCT
cet-10710	48	22	%	%	INTJ
cet-10710	48	23	)	)	PUNCT
cet-10710	48	24	73.65	73.65	NUM
cet-10710	48	25	77.6	77.6	NUM
cet-10710	48	26	fixed	fix	VERB
cet-10710	48	27	carbon	carbon	NOUN
cet-10710	48	28	(	(	PUNCT
cet-10710	48	29	%	%	INTJ
cet-10710	48	30	)	)	PUNCT
cet-10710	48	31	16.18	16.18	NUM
cet-10710	48	32	15.3	15.3	NUM
cet-10710	48	33	gross	gross	ADJ
cet-10710	48	34	calorific	calorific	NOUN
cet-10710	48	35	value	value	NOUN
cet-10710	48	36	(	(	PUNCT
cet-10710	48	37	%	%	INTJ
cet-10710	48	38	)	)	PUNCT
cet-10710	48	39	18.12	18.12	NUM
cet-10710	48	40	carbon	carbon	NOUN
cet-10710	48	41	(	(	PUNCT
cet-10710	48	42	c	c	NOUN
cet-10710	48	43	)	)	PUNCT
cet-10710	48	44	(	(	PUNCT
cet-10710	48	45	wt%	wt%	X
cet-10710	48	46	)	)	PUNCT
cet-10710	48	47	45.0	45.0	NUM
cet-10710	48	48	47.2	47.2	NUM
cet-10710	48	49	hydrogen	hydrogen	NOUN
cet-10710	48	50	(	(	PUNCT
cet-10710	48	51	h	h	NOUN
cet-10710	48	52	)	)	PUNCT
cet-10710	48	53	(	(	PUNCT
cet-10710	48	54	wt%	wt%	X
cet-10710	48	55	)	)	PUNCT
cet-10710	48	56	6.71	6.71	NUM
cet-10710	48	57	5.66	5.66	NUM
cet-10710	48	58	oxygen	oxygen	NOUN
cet-10710	48	59	(	(	PUNCT
cet-10710	48	60	o	o	NOUN
cet-10710	48	61	)	)	PUNCT
cet-10710	48	62	(	(	PUNCT
cet-10710	48	63	wt%	wt%	X
cet-10710	48	64	)	)	PUNCT
cet-10710	48	65	24.23	24.23	NUM
cet-10710	48	66	45.91	45.91	NUM
cet-10710	48	67	nitrogen	nitrogen	NOUN
cet-10710	48	68	(	(	PUNCT
cet-10710	48	69	n	n	CCONJ
cet-10710	48	70	)	)	PUNCT
cet-10710	48	71	(	(	PUNCT
cet-10710	48	72	wt%	wt%	X
cet-10710	48	73	)	)	PUNCT
cet-10710	48	74	0.16	0.16	NUM
cet-10710	48	75	0.2	0.2	NUM
cet-10710	48	76	total	total	ADJ
cet-10710	48	77	sulphur	sulphur	NOUN
cet-10710	48	78	(	(	PUNCT
cet-10710	48	79	s	s	NOUN
cet-10710	48	80	)	)	PUNCT
cet-10710	48	81	(	(	PUNCT
cet-10710	48	82	w%	w%	NOUN
cet-10710	48	83	)	)	PUNCT
cet-10710	48	84	0.02	0.02	NUM
cet-10710	48	85	0.03	0.03	NUM
cet-10710	48	86	high	high	ADJ
cet-10710	48	87	heating	heating	NOUN
cet-10710	48	88	value	value	NOUN
cet-10710	48	89	(	(	PUNCT
cet-10710	48	90	hhv	hhv	NOUN
cet-10710	48	91	)	)	PUNCT
cet-10710	48	92	(	(	PUNCT
cet-10710	48	93	mj	mj	PROPN
cet-10710	48	94	/	/	SYM
cet-10710	48	95	kg	kg	PROPN
cet-10710	48	96	)	)	PUNCT
cet-10710	48	97	16.37	16.37	NUM
cet-10710	48	98	18.11	18.11	NUM
cet-10710	48	99	in	in	ADP
cet-10710	48	100	addition	addition	NOUN
cet-10710	48	101	to	to	ADP
cet-10710	48	102	specialized	specialized	ADJ
cet-10710	48	103	physical	physical	ADJ
cet-10710	48	104	property	property	NOUN
cet-10710	48	105	models	model	NOUN
cet-10710	48	106	for	for	ADP
cet-10710	48	107	solid	solid	ADJ
cet-10710	48	108	components	component	NOUN
cet-10710	48	109	,	,	PUNCT
cet-10710	48	110	accurate	accurate	ADJ
cet-10710	48	111	representation	representation	NOUN
cet-10710	48	112	of	of	ADP
cet-10710	48	113	the	the	DET
cet-10710	48	114	solids	solid	NOUN
cet-10710	48	115	particle	particle	NOUN
cet-10710	48	116	size	size	NOUN
cet-10710	48	117	distribution	distribution	NOUN
cet-10710	48	118	is	be	AUX
cet-10710	48	119	required	require	VERB
cet-10710	48	120	for	for	ADP
cet-10710	48	121	processes	process	NOUN
cet-10710	48	122	.	.	PUNCT
cet-10710	49	1	sawdust	sawdust	NOUN
cet-10710	49	2	as	as	SCONJ
cet-10710	49	3	the	the	DET
cet-10710	49	4	raw	raw	ADJ
cet-10710	49	5	material	material	NOUN
cet-10710	49	6	in	in	ADP
cet-10710	49	7	this	this	DET
cet-10710	49	8	work	work	NOUN
cet-10710	49	9	was	be	AUX
cet-10710	49	10	modelled	model	VERB
cet-10710	49	11	in	in	ADP
cet-10710	49	12	74	74	NUM
cet-10710	49	13	the	the	DET
cet-10710	49	14	simulation	simulation	NOUN
cet-10710	49	15	as	as	ADP
cet-10710	49	16	a	a	DET
cet-10710	49	17	nonconventional	nonconventional	ADJ
cet-10710	49	18	solid	solid	ADJ
cet-10710	49	19	component	component	NOUN
cet-10710	49	20	in	in	ADP
cet-10710	49	21	feedstock	feedstock	NOUN
cet-10710	49	22	using	use	VERB
cet-10710	49	23	the	the	DET
cet-10710	49	24	proximate	proximate	NOUN
cet-10710	49	25	and	and	CCONJ
cet-10710	49	26	ultimate	ultimate	ADJ
cet-10710	49	27	component	component	NOUN
cet-10710	49	28	attributes	attribute	VERB
cet-10710	49	29	.	.	PUNCT
cet-10710	50	1	2.2	2.2	NUM
cet-10710	50	2	chemical	chemical	NOUN
cet-10710	50	3	kinetics	kinetic	NOUN
cet-10710	50	4	of	of	ADP
cet-10710	50	5	pyrolysis	pyrolysis	NOUN
cet-10710	50	6	the	the	DET
cet-10710	50	7	reaction	reaction	NOUN
cet-10710	50	8	mechanism	mechanism	NOUN
cet-10710	50	9	is	be	AUX
cet-10710	50	10	based	base	VERB
cet-10710	50	11	primarily	primarily	ADV
cet-10710	50	12	on	on	ADP
cet-10710	50	13	the	the	DET
cet-10710	50	14	works	work	NOUN
cet-10710	50	15	of	of	ADP
cet-10710	50	16	corbetta	corbetta	NOUN
cet-10710	50	17	et	et	PROPN
cet-10710	50	18	al	al	PROPN
cet-10710	50	19	.	.	PROPN
cet-10710	51	1	(	(	PUNCT
cet-10710	51	2	2013	2013	NUM
cet-10710	51	3	)	)	PUNCT
cet-10710	51	4	,	,	PUNCT
cet-10710	51	5	and	and	CCONJ
cet-10710	51	6	calonaci	calonaci	PROPN
cet-10710	51	7	et	et	PROPN
cet-10710	51	8	al	al	PROPN
cet-10710	51	9	.	.	PROPN
cet-10710	52	1	(	(	PUNCT
cet-10710	52	2	2010	2010	NUM
cet-10710	52	3	)	)	PUNCT
cet-10710	52	4	,	,	PUNCT
cet-10710	52	5	together	together	ADV
cet-10710	52	6	with	with	ADP
cet-10710	52	7	the	the	DET
cet-10710	52	8	kinetic	kinetic	ADJ
cet-10710	52	9	mechanism	mechanism	NOUN
cet-10710	52	10	and	and	CCONJ
cet-10710	52	11	model	model	NOUN
cet-10710	52	12	validation	validation	NOUN
cet-10710	52	13	from	from	ADP
cet-10710	52	14	pelucchi	pelucchi	PROPN
cet-10710	52	15	(	(	PUNCT
cet-10710	52	16	2018	2018	NUM
cet-10710	52	17	)	)	PUNCT
cet-10710	52	18	.	.	PUNCT
cet-10710	53	1	a	a	DET
cet-10710	53	2	mechanistic	mechanistic	ADJ
cet-10710	53	3	kinetic	kinetic	ADJ
cet-10710	53	4	model	model	NOUN
cet-10710	53	5	of	of	ADP
cet-10710	53	6	biomass	biomass	NOUN
cet-10710	53	7	pyrolysis	pyrolysis	NOUN
cet-10710	53	8	was	be	AUX
cet-10710	53	9	developed	develop	VERB
cet-10710	53	10	at	at	ADP
cet-10710	53	11	the	the	DET
cet-10710	53	12	particle	particle	NOUN
cet-10710	53	13	scale	scale	NOUN
cet-10710	53	14	in	in	ADP
cet-10710	53	15	order	order	NOUN
cet-10710	53	16	to	to	PART
cet-10710	53	17	describe	describe	VERB
cet-10710	53	18	the	the	DET
cet-10710	53	19	relative	relative	ADJ
cet-10710	53	20	role	role	NOUN
cet-10710	53	21	of	of	ADP
cet-10710	53	22	reaction	reaction	NOUN
cet-10710	53	23	kinetics	kinetic	NOUN
cet-10710	53	24	and	and	CCONJ
cet-10710	53	25	transport	transport	NOUN
cet-10710	53	26	resistances	resistance	NOUN
cet-10710	53	27	.	.	PUNCT
cet-10710	54	1	kinetic	kinetic	ADJ
cet-10710	54	2	models	model	NOUN
cet-10710	54	3	of	of	ADP
cet-10710	54	4	the	the	DET
cet-10710	54	5	different	different	ADJ
cet-10710	54	6	steps	step	NOUN
cet-10710	54	7	of	of	ADP
cet-10710	54	8	solid	solid	ADJ
cet-10710	54	9	fuel	fuel	NOUN
cet-10710	54	10	volatilization	volatilization	NOUN
cet-10710	54	11	include	include	VERB
cet-10710	54	12	cell	cell	NOUN
cet-10710	54	13	,	,	PUNCT
cet-10710	54	14	hce	hce	PROPN
cet-10710	54	15	and	and	CCONJ
cet-10710	54	16	lig	lig	PROPN
cet-10710	54	17	were	be	AUX
cet-10710	54	18	developed	develop	VERB
cet-10710	54	19	and	and	CCONJ
cet-10710	54	20	validated	validate	VERB
cet-10710	54	21	together	together	ADV
cet-10710	54	22	with	with	ADP
cet-10710	54	23	secondary	secondary	ADJ
cet-10710	54	24	gas	gas	NOUN
cet-10710	54	25	-	-	PUNCT
cet-10710	54	26	phase	phase	NOUN
cet-10710	54	27	reactions	reaction	NOUN
cet-10710	54	28	through	through	ADP
cet-10710	54	29	then	then	ADV
cet-10710	54	30	compared	compare	VERB
cet-10710	54	31	with	with	ADP
cet-10710	54	32	experimental	experimental	ADJ
cet-10710	54	33	data	datum	NOUN
cet-10710	54	34	.	.	PUNCT
cet-10710	55	1	to	to	PART
cet-10710	55	2	promote	promote	VERB
cet-10710	55	3	the	the	DET
cet-10710	55	4	simple	simple	ADJ
cet-10710	55	5	expressions	expression	NOUN
cet-10710	55	6	,	,	PUNCT
cet-10710	55	7	these	these	DET
cet-10710	55	8	models	model	NOUN
cet-10710	55	9	allow	allow	VERB
cet-10710	55	10	the	the	DET
cet-10710	55	11	characterization	characterization	NOUN
cet-10710	55	12	of	of	ADP
cet-10710	55	13	the	the	DET
cet-10710	55	14	degradation	degradation	NOUN
cet-10710	55	15	steps	step	NOUN
cet-10710	55	16	,	,	PUNCT
cet-10710	55	17	their	their	PRON
cet-10710	55	18	characteristic	characteristic	ADJ
cet-10710	55	19	times	time	NOUN
cet-10710	55	20	,	,	PUNCT
cet-10710	55	21	and	and	CCONJ
cet-10710	55	22	the	the	DET
cet-10710	55	23	prediction	prediction	NOUN
cet-10710	55	24	of	of	ADP
cet-10710	55	25	product	product	NOUN
cet-10710	55	26	distributions	distribution	NOUN
cet-10710	55	27	,	,	PUNCT
cet-10710	55	28	as	as	SCONJ
cet-10710	55	29	shown	show	VERB
cet-10710	55	30	in	in	ADP
cet-10710	55	31	table	table	NOUN
cet-10710	55	32	2	2	NUM
cet-10710	55	33	.	.	PUNCT
cet-10710	56	1	it	it	PRON
cet-10710	56	2	implements	implement	VERB
cet-10710	56	3	15	15	NUM
cet-10710	56	4	individual	individual	ADJ
cet-10710	56	5	reactions	reaction	NOUN
cet-10710	56	6	,	,	PUNCT
cet-10710	56	7	including	include	VERB
cet-10710	56	8	primary	primary	ADJ
cet-10710	56	9	and	and	CCONJ
cet-10710	56	10	secondary	secondary	ADJ
cet-10710	56	11	decompositions	decomposition	NOUN
cet-10710	56	12	.	.	PUNCT
cet-10710	57	1	table	table	NOUN
cet-10710	57	2	2	2	NUM
cet-10710	57	3	:	:	PUNCT
cet-10710	57	4	developed	develop	VERB
cet-10710	57	5	pyrolysis	pyrolysis	NOUN
cet-10710	57	6	reactions	reaction	NOUN
cet-10710	57	7	reaction	reaction	NOUN
cet-10710	57	8	kinetic	kinetic	NOUN
cet-10710	57	9	constant	constant	ADJ
cet-10710	57	10	(	(	PUNCT
cet-10710	57	11	1	1	NUM
cet-10710	57	12	/	/	SYM
cet-10710	57	13	s	s	NOUN
cet-10710	57	14	)	)	PUNCT
cet-10710	57	15	activation	activation	NOUN
cet-10710	57	16	energies	energy	NOUN
cet-10710	57	17	(	(	PUNCT
cet-10710	57	18	kj	kj	PROPN
cet-10710	57	19	/	/	SYM
cet-10710	57	20	mol	mol	NOUN
cet-10710	57	21	)	)	PUNCT
cet-10710	57	22	cell	cell	NOUN
cet-10710	57	23	-	-	PUNCT
cet-10710	57	24	>	>	X
cet-10710	57	25	cella	cella	NOUN
cet-10710	58	1	8.00e+13	8.00e+13	NUM
cet-10710	58	2	192.5	192.5	NUM
cet-10710	58	3	cell	cell	NOUN
cet-10710	58	4	-	-	PUNCT
cet-10710	58	5	>	>	X
cet-10710	58	6	5h2o	5h2o	NUM
cet-10710	59	1	+	+	PUNCT
cet-10710	59	2	6char	6char	NUM
cet-10710	59	3	8.00e+07	8.00e+07	NUM
cet-10710	59	4	125.5	125.5	NUM
cet-10710	59	5	cella	cella	NOUN
cet-10710	59	6	-	-	PUNCT
cet-10710	59	7	>	>	X
cet-10710	59	8	lvg	lvg	PROPN
cet-10710	59	9	4	4	NUM
cet-10710	59	10	t	t	PROPN
cet-10710	59	11	41.8	41.8	NUM
cet-10710	59	12	cella	cella	NOUN
cet-10710	59	13	-	-	PUNCT
cet-10710	59	14	>	>	X
cet-10710	59	15	0.95haa	0.95haa	PROPN
cet-10710	60	1	+	+	NUM
cet-10710	60	2	0.25glyoxal	0.25glyoxal	NOUN
cet-10710	61	1	+	+	CCONJ
cet-10710	62	1	0.2aceta	0.2aceta	PUNCT
cet-10710	62	2	+0.25hmfu	+0.25hmfu	NOUN
cet-10710	63	1	+	+	CCONJ
cet-10710	63	2	0.2aceton	0.2aceton	NUM
cet-10710	63	3	+	+	CCONJ
cet-10710	63	4	0.16co2	0.16co2	NUM
cet-10710	63	5	1.00e+09	1.00e+09	NUM
cet-10710	63	6	133.9	133.9	NUM
cet-10710	63	7	hce	hce	NOUN
cet-10710	63	8	-	-	PROPN
cet-10710	63	9	>	>	X
cet-10710	63	10	0.4hce1	0.4hce1	NUM
cet-10710	64	1	+	+	CCONJ
cet-10710	64	2	0.6hce2	0.6hce2	NUM
cet-10710	64	3	1.00e+10	1.00e+10	NUM
cet-10710	64	4	129.7	129.7	NUM
cet-10710	64	5	hce1	hce1	NOUN
cet-10710	64	6	-	-	PUNCT
cet-10710	64	7	>	>	X
cet-10710	64	8	2.5h2	2.5h2	NUM
cet-10710	65	1	+	+	NUM
cet-10710	65	2	0.124h2o	0.124h2o	NOUN
cet-10710	65	3	+	+	CCONJ
cet-10710	65	4	co	co	NOUN
cet-10710	65	5	+	+	CCONJ
cet-10710	65	6	co2	co2	VERB
cet-10710	65	7	+	+	CCONJ
cet-10710	65	8	0.25methanol	0.25methanol	NOUN
cet-10710	65	9	+	+	CCONJ
cet-10710	65	10	0.5formaldehyde	0.5formaldehyde	NUM
cet-10710	65	11	+	+	CCONJ
cet-10710	65	12	0.125ethanol	0.125ethanol	NOUN
cet-10710	66	1	+2char	+2char	PROPN
cet-10710	66	2	3.00e+09	3.00e+09	NUM
cet-10710	66	3	113	113	NUM
cet-10710	66	4	hce1	hce1	NOUN
cet-10710	66	5	-	-	PUNCT
cet-10710	66	6	>	>	X
cet-10710	66	7	xylan	xylan	PROPN
cet-10710	66	8	3	3	NUM
cet-10710	66	9	t	t	NOUN
cet-10710	66	10	46	46	NUM
cet-10710	66	11	hce2	hce2	NOUN
cet-10710	66	12	-	-	PUNCT
cet-10710	66	13	>	>	X
cet-10710	66	14	co2	co2	NOUN
cet-10710	66	15	+	+	CCONJ
cet-10710	66	16	0.5	0.5	NUM
cet-10710	66	17	ch4	ch4	NOUN
cet-10710	66	18	+	+	CCONJ
cet-10710	66	19	0.25c2h4	0.25c2h4	NUM
cet-10710	66	20	+0.8co	+0.8co	NOUN
cet-10710	66	21	+	+	X
cet-10710	66	22	0.8h2	0.8h2	NUM
cet-10710	66	23	+0.7formaldehyde	+0.7formaldehyde	X
cet-10710	67	1	+	+	CCONJ
cet-10710	68	1	0.25methanol	0.25methanol	NOUN
cet-10710	68	2	+	+	CCONJ
cet-10710	68	3	0.125ethanol	0.125ethanol	NOUN
cet-10710	68	4	+0.125h2o	+0.125h2o	NUM
cet-10710	68	5	+	+	CCONJ
cet-10710	68	6	char	char	NOUN
cet-10710	68	7	1.00e+10	1.00e+10	NUM
cet-10710	68	8	138.1	138.1	NUM
cet-10710	68	9	lig	lig	PROPN
cet-10710	68	10	-	-	PUNCT
cet-10710	68	11	c	c	NOUN
cet-10710	68	12	-	-	PUNCT
cet-10710	68	13	>	>	PUNCT
cet-10710	68	14	0.35ligcc	0.35ligcc	NOUN
cet-10710	69	1	+	+	CCONJ
cet-10710	69	2	0.1pcoumaryl	0.1pcoumaryl	NUM
cet-10710	69	3	+0.08phenol	+0.08phenol	ADJ
cet-10710	69	4	+	+	CCONJ
cet-10710	69	5	0.41c2h4	0.41c2h4	NOUN
cet-10710	70	1	+	+	CCONJ
cet-10710	70	2	h2o	h2o	PROPN
cet-10710	70	3	+	+	CCONJ
cet-10710	70	4	0.495ch4	0.495ch4	NUM
cet-10710	70	5	4.00e+15	4.00e+15	NUM
cet-10710	70	6	202.9	202.9	NUM
cet-10710	70	7	lig	lig	PROPN
cet-10710	70	8	-	-	PUNCT
cet-10710	70	9	h	h	NOUN
cet-10710	70	10	-	-	PUNCT
cet-10710	70	11	>	>	X
cet-10710	70	12	ligoh	ligoh	PROPN
cet-10710	70	13	+	+	CCONJ
cet-10710	70	14	aceton	aceton	PROPN
cet-10710	70	15	2.00e+13	2.00e+13	NUM
cet-10710	70	16	156.9	156.9	NUM
cet-10710	70	17	lig	lig	PROPN
cet-10710	70	18	-	-	PROPN
cet-10710	70	19	o	o	NOUN
cet-10710	70	20	-	-	PUNCT
cet-10710	70	21	>	>	X
cet-10710	70	22	ligoh	ligoh	NOUN
cet-10710	70	23	+	+	CCONJ
cet-10710	70	24	co2	co2	VERB
cet-10710	70	25	1.00e+09	1.00e+09	NUM
cet-10710	70	26	106.7	106.7	NUM
cet-10710	70	27	ligcc	ligcc	NUM
cet-10710	70	28	-	-	PUNCT
cet-10710	70	29	>	>	X
cet-10710	70	30	0.3pcoumaryl	0.3pcoumaryl	PROPN
cet-10710	71	1	+	+	CCONJ
cet-10710	71	2	0.2phenol	0.2phenol	NOUN
cet-10710	72	1	+0.35acrylic	+0.35acrylic	ADJ
cet-10710	72	2	+	+	CCONJ
cet-10710	72	3	0.7h2o	0.7h2o	NUM
cet-10710	72	4	+	+	CCONJ
cet-10710	72	5	0.65ch4	0.65ch4	NUM
cet-10710	73	1	+	+	CCONJ
cet-10710	73	2	0.6c2h4	0.6c2h4	NUM
cet-10710	74	1	+	+	CCONJ
cet-10710	74	2	1.8co	1.8co	NUM
cet-10710	74	3	+	+	NUM
cet-10710	74	4	h2	h2	NOUN
cet-10710	74	5	+	+	CCONJ
cet-10710	74	6	6.4char	6.4char	NUM
cet-10710	74	7	5.00e+06	5.00e+06	NUM
cet-10710	74	8	131.8	131.8	NUM
cet-10710	74	9	ligoh	ligoh	NOUN
cet-10710	74	10	-	-	PUNCT
cet-10710	74	11	>	>	X
cet-10710	74	12	lig	lig	PROPN
cet-10710	74	13	+	+	CCONJ
cet-10710	74	14	h2o	h2o	PROPN
cet-10710	74	15	+	+	CCONJ
cet-10710	74	16	methanol	methanol	NOUN
cet-10710	74	17	+	+	CCONJ
cet-10710	74	18	0.45ch4	0.45ch4	PUNCT
cet-10710	75	1	+	+	NUM
cet-10710	75	2	0.2c2h4	0.2c2h4	NUM
cet-10710	76	1	+	+	CCONJ
cet-10710	77	1	2co	2co	ADJ
cet-10710	77	2	+	+	PUNCT
cet-10710	77	3	0.7h2	0.7h2	NUM
cet-10710	78	1	+	+	CCONJ
cet-10710	79	1	4.15char	4.15char	NUM
cet-10710	80	1	3.00e+08	3.00e+08	NUM
cet-10710	80	2	125.5	125.5	NUM
cet-10710	80	3	lig	lig	PROPN
cet-10710	80	4	-	-	PUNCT
cet-10710	80	5	>	>	X
cet-10710	80	6	lumped	lump	VERB
cet-10710	80	7	-	-	PUNCT
cet-10710	80	8	phenol	phenol	ADJ
cet-10710	80	9	8	8	NUM
cet-10710	80	10	t	t	NOUN
cet-10710	80	11	50.2	50.2	NUM
cet-10710	80	12	lig	lig	PROPN
cet-10710	80	13	-	-	PUNCT
cet-10710	80	14	>	>	X
cet-10710	80	15	h2o	h2o	PROPN
cet-10710	80	16	+	+	CCONJ
cet-10710	80	17	2co	2co	ADJ
cet-10710	80	18	+0.2aceton	+0.2aceton	PUNCT
cet-10710	81	1	+	+	PUNCT
cet-10710	81	2	0.4methanal	0.4methanal	ADJ
cet-10710	81	3	+	+	CCONJ
cet-10710	81	4	0.2aceta	0.2aceta	PUNCT
cet-10710	82	1	+	+	NUM
cet-10710	82	2	0.2formaldehyde	0.2formaldehyde	NUM
cet-10710	83	1	+	+	CCONJ
cet-10710	83	2	0.6ch4	0.6ch4	NUM
cet-10710	84	1	+	+	CCONJ
cet-10710	85	1	0.65c2h4	0.65c2h4	NUM
cet-10710	86	1	+	+	CCONJ
cet-10710	86	2	0.5h2	0.5h2	NUM
cet-10710	86	3	+	+	CCONJ
cet-10710	86	4	5.5char	5.5char	NUM
cet-10710	86	5	1.20e+09	1.20e+09	NUM
cet-10710	86	6	125.5	125.5	NUM
cet-10710	86	7	in	in	ADP
cet-10710	86	8	this	this	DET
cet-10710	86	9	model	model	NOUN
cet-10710	86	10	,	,	PUNCT
cet-10710	86	11	char	char	PROPN
cet-10710	86	12	was	be	AUX
cet-10710	86	13	assumed	assume	VERB
cet-10710	86	14	as	as	ADP
cet-10710	86	15	consisting	consist	VERB
cet-10710	86	16	of	of	ADP
cet-10710	86	17	100	100	NUM
cet-10710	86	18	%	%	NOUN
cet-10710	86	19	carbon	carbon	NOUN
cet-10710	86	20	to	to	PART
cet-10710	86	21	make	make	VERB
cet-10710	86	22	chemical	chemical	ADJ
cet-10710	86	23	kinetics	kinetic	NOUN
cet-10710	86	24	of	of	ADP
cet-10710	86	25	fast	fast	ADJ
cet-10710	86	26	pyrolysis	pyrolysis	NOUN
cet-10710	86	27	elemental	elemental	ADJ
cet-10710	86	28	equilibrium	equilibrium	NOUN
cet-10710	86	29	.	.	PUNCT
cet-10710	87	1	in	in	ADP
cet-10710	87	2	previous	previous	ADJ
cet-10710	87	3	work	work	NOUN
cet-10710	87	4	such	such	ADJ
cet-10710	87	5	as	as	ADP
cet-10710	87	6	jindo	jindo	PROPN
cet-10710	87	7	et	et	PROPN
cet-10710	87	8	al	al	PROPN
cet-10710	87	9	.	.	PROPN
cet-10710	88	1	(	(	PUNCT
cet-10710	88	2	2014	2014	NUM
cet-10710	88	3	)	)	PUNCT
cet-10710	88	4	,	,	PUNCT
cet-10710	88	5	biochar	biochar	NOUN
cet-10710	88	6	from	from	ADP
cet-10710	88	7	wood	wood	NOUN
cet-10710	88	8	-	-	PUNCT
cet-10710	88	9	based	base	VERB
cet-10710	88	10	fast	fast	ADJ
cet-10710	88	11	pyrolysis	pyrolysis	NOUN
cet-10710	88	12	consisted	consist	VERB
cet-10710	88	13	of	of	ADP
cet-10710	88	14	77.5	77.5	NUM
cet-10710	88	15	-	-	SYM
cet-10710	88	16	84.8	84.8	NUM
cet-10710	88	17	%	%	NOUN
cet-10710	88	18	carbon	carbon	NOUN
cet-10710	88	19	.	.	PUNCT
cet-10710	89	1	in	in	ADP
cet-10710	89	2	the	the	DET
cet-10710	89	3	future	future	NOUN
cet-10710	89	4	,	,	PUNCT
cet-10710	89	5	to	to	PART
cet-10710	89	6	adjust	adjust	VERB
cet-10710	89	7	the	the	DET
cet-10710	89	8	accuracy	accuracy	NOUN
cet-10710	89	9	of	of	ADP
cet-10710	89	10	compositions	composition	NOUN
cet-10710	89	11	of	of	ADP
cet-10710	89	12	biochar	biochar	NOUN
cet-10710	89	13	,	,	PUNCT
cet-10710	89	14	ryield	ryield	NOUN
cet-10710	89	15	may	may	AUX
cet-10710	89	16	be	be	AUX
cet-10710	89	17	provided	provide	VERB
cet-10710	89	18	to	to	PART
cet-10710	89	19	change	change	VERB
cet-10710	89	20	carbon	carbon	NOUN
cet-10710	89	21	composition	composition	NOUN
cet-10710	89	22	in	in	ADP
cet-10710	89	23	this	this	DET
cet-10710	89	24	model	model	NOUN
cet-10710	89	25	to	to	ADP
cet-10710	89	26	oxygen	oxygen	NOUN
cet-10710	89	27	,	,	PUNCT
cet-10710	89	28	hydrogen	hydrogen	NOUN
cet-10710	89	29	and	and	CCONJ
cet-10710	89	30	nitrogen	nitrogen	PROPN
cet-10710	89	31	.	.	PUNCT
cet-10710	90	1	calonaci	calonaci	PROPN
cet-10710	90	2	et	et	PROPN
cet-10710	90	3	al	al	PROPN
cet-10710	90	4	.	.	PROPN
cet-10710	91	1	(	(	PUNCT
cet-10710	91	2	2010	2010	NUM
cet-10710	91	3	)	)	PUNCT
cet-10710	91	4	used	use	VERB
cet-10710	91	5	a	a	DET
cet-10710	91	6	comprehensive	comprehensive	ADJ
cet-10710	91	7	kinetic	kinetic	ADJ
cet-10710	91	8	model	model	NOUN
cet-10710	91	9	of	of	ADP
cet-10710	91	10	biomass	biomass	NOUN
cet-10710	91	11	pyrolysis	pyrolysis	NOUN
cet-10710	91	12	in	in	ADP
cet-10710	91	13	the	the	DET
cet-10710	91	14	fast	fast	ADJ
cet-10710	91	15	pyrolysis	pyrolysis	NOUN
cet-10710	91	16	model	model	NOUN
cet-10710	91	17	.	.	PUNCT
cet-10710	92	1	the	the	DET
cet-10710	92	2	results	result	NOUN
cet-10710	92	3	clearly	clearly	ADV
cet-10710	92	4	showed	show	VERB
cet-10710	92	5	and	and	CCONJ
cet-10710	92	6	quantified	quantify	VERB
cet-10710	92	7	the	the	DET
cet-10710	92	8	critical	critical	ADJ
cet-10710	92	9	role	role	NOUN
cet-10710	92	10	of	of	ADP
cet-10710	92	11	heat	heat	NOUN
cet-10710	92	12	-	-	PUNCT
cet-10710	92	13	transfer	transfer	NOUN
cet-10710	92	14	and	and	CCONJ
cet-10710	92	15	secondary	secondary	ADJ
cet-10710	92	16	pyrolysis	pyrolysis	NOUN
cet-10710	92	17	reactions	reaction	NOUN
cet-10710	92	18	in	in	ADP
cet-10710	92	19	bio	bio	ADJ
cet-10710	92	20	-	-	ADJ
cet-10710	92	21	oil	oil	NOUN
cet-10710	92	22	yields	yield	NOUN
cet-10710	92	23	from	from	ADP
cet-10710	92	24	fast	fast	ADJ
cet-10710	92	25	pyrolysis	pyrolysis	NOUN
cet-10710	92	26	of	of	ADP
cet-10710	92	27	biomass	biomass	NOUN
cet-10710	92	28	.	.	PUNCT
cet-10710	93	1	the	the	DET
cet-10710	93	2	comprehensive	comprehensive	ADJ
cet-10710	93	3	kinetic	kinetic	ADJ
cet-10710	93	4	model	model	NOUN
cet-10710	93	5	correctly	correctly	ADV
cet-10710	93	6	predicted	predict	VERB
cet-10710	93	7	the	the	DET
cet-10710	93	8	relative	relative	ADJ
cet-10710	93	9	amount	amount	NOUN
cet-10710	93	10	of	of	ADP
cet-10710	93	11	char	char	NOUN
cet-10710	93	12	,	,	PUNCT
cet-10710	93	13	liquid	liquid	NOUN
cet-10710	93	14	,	,	PUNCT
cet-10710	93	15	and	and	CCONJ
cet-10710	93	16	gas	gas	NOUN
cet-10710	93	17	fractions	fraction	NOUN
cet-10710	93	18	and	and	CCONJ
cet-10710	93	19	also	also	ADV
cet-10710	93	20	gave	give	VERB
cet-10710	93	21	useful	useful	ADJ
cet-10710	93	22	design	design	NOUN
cet-10710	93	23	and	and	CCONJ
cet-10710	93	24	optimization	optimization	NOUN
cet-10710	93	25	-	-	PUNCT
cet-10710	93	26	related	relate	VERB
cet-10710	93	27	information	information	NOUN
cet-10710	93	28	.	.	PUNCT
cet-10710	94	1	the	the	DET
cet-10710	94	2	char	char	NOUN
cet-10710	94	3	fraction	fraction	NOUN
cet-10710	94	4	was	be	AUX
cet-10710	94	5	modelled	model	VERB
cet-10710	94	6	by	by	ADP
cet-10710	94	7	balancing	balance	VERB
cet-10710	94	8	the	the	DET
cet-10710	94	9	chemical	chemical	ADJ
cet-10710	94	10	kinetics	kinetic	NOUN
cet-10710	94	11	of	of	ADP
cet-10710	94	12	pyrolysis	pyrolysis	NOUN
cet-10710	94	13	.	.	PUNCT
cet-10710	95	1	in	in	ADP
cet-10710	95	2	this	this	DET
cet-10710	95	3	lignocellulosic	lignocellulosic	ADJ
cet-10710	95	4	biomass	biomass	NOUN
cet-10710	95	5	pyrolysis	pyrolysis	NOUN
cet-10710	95	6	,	,	PUNCT
cet-10710	95	7	the	the	DET
cet-10710	95	8	kinetics	kinetic	NOUN
cet-10710	95	9	model	model	NOUN
cet-10710	95	10	adopted	adopt	VERB
cet-10710	95	11	100	100	NUM
cet-10710	95	12	%	%	NOUN
cet-10710	95	13	carbon	carbon	NOUN
cet-10710	95	14	.	.	PUNCT
cet-10710	96	1	the	the	DET
cet-10710	96	2	pyrolysis	pyrolysis	NOUN
cet-10710	96	3	reactor	reactor	NOUN
cet-10710	96	4	requires	require	VERB
cet-10710	96	5	a	a	DET
cet-10710	96	6	certain	certain	ADJ
cet-10710	96	7	amount	amount	NOUN
cet-10710	96	8	of	of	ADP
cet-10710	96	9	heat	heat	NOUN
cet-10710	96	10	provided	provide	VERB
cet-10710	96	11	by	by	ADP
cet-10710	96	12	sand	sand	NOUN
cet-10710	96	13	circulating	circulate	VERB
cet-10710	96	14	in	in	ADP
cet-10710	96	15	combustor	combustor	NOUN
cet-10710	96	16	which	which	PRON
cet-10710	96	17	burns	burn	VERB
cet-10710	96	18	the	the	DET
cet-10710	96	19	pyrolysis	pyrolysis	NOUN
cet-10710	96	20	gases	gas	NOUN
cet-10710	96	21	and	and	CCONJ
cet-10710	96	22	part	part	NOUN
cet-10710	96	23	of	of	ADP
cet-10710	96	24	the	the	DET
cet-10710	96	25	char	char	NOUN
cet-10710	96	26	.	.	PUNCT
cet-10710	97	1	in	in	ADP
cet-10710	97	2	previous	previous	ADJ
cet-10710	97	3	work	work	NOUN
cet-10710	97	4	of	of	ADP
cet-10710	97	5	peters	peters	PROPN
cet-10710	97	6	et	et	PROPN
cet-10710	97	7	al	al	PROPN
cet-10710	97	8	.	.	PROPN
cet-10710	97	9	(	(	PUNCT
cet-10710	97	10	2014b	2014b	NUM
cet-10710	97	11	)	)	PUNCT
cet-10710	97	12	hot	hot	ADJ
cet-10710	97	13	sand	sand	NOUN
cet-10710	97	14	was	be	AUX
cet-10710	97	15	not	not	PART
cet-10710	97	16	circulated	circulate	VERB
cet-10710	97	17	through	through	ADP
cet-10710	97	18	between	between	ADP
cet-10710	97	19	the	the	DET
cet-10710	97	20	combustor	combustor	NOUN
cet-10710	97	21	and	and	CCONJ
cet-10710	97	22	the	the	DET
cet-10710	97	23	pyrolysis	pyrolysis	NOUN
cet-10710	97	24	reactor	reactor	NOUN
cet-10710	97	25	but	but	CCONJ
cet-10710	97	26	circulated	circulate	VERB
cet-10710	97	27	and	and	CCONJ
cet-10710	97	28	heat	heat	NOUN
cet-10710	97	29	transferred	transfer	VERB
cet-10710	97	30	.	.	PUNCT
cet-10710	98	1	char	char	NOUN
cet-10710	98	2	and	and	CCONJ
cet-10710	98	3	noncondensable	noncondensable	ADJ
cet-10710	98	4	gases	gas	NOUN
cet-10710	98	5	which	which	PRON
cet-10710	98	6	separated	separate	VERB
cet-10710	98	7	from	from	ADP
cet-10710	98	8	the	the	DET
cet-10710	98	9	pyrolysis	pyrolysis	NOUN
cet-10710	98	10	reactor	reactor	NOUN
cet-10710	98	11	will	will	AUX
cet-10710	98	12	move	move	VERB
cet-10710	98	13	to	to	ADP
cet-10710	98	14	the	the	DET
cet-10710	98	15	followed	follow	VERB
cet-10710	98	16	combustor	combustor	NOUN
cet-10710	98	17	to	to	PART
cet-10710	98	18	generate	generate	VERB
cet-10710	98	19	the	the	DET
cet-10710	98	20	simple	simple	ADJ
cet-10710	98	21	combustion	combustion	NOUN
cet-10710	98	22	reactions	reaction	NOUN
cet-10710	98	23	using	use	VERB
cet-10710	98	24	an	an	DET
cet-10710	98	25	rstoic	rstoic	ADJ
cet-10710	98	26	reactor	reactor	NOUN
cet-10710	98	27	.	.	PUNCT
cet-10710	99	1	the	the	DET
cet-10710	99	2	heat	heat	NOUN
cet-10710	99	3	generated	generate	VERB
cet-10710	99	4	in	in	ADP
cet-10710	99	5	this	this	DET
cet-10710	99	6	combustion	combustion	NOUN
cet-10710	99	7	was	be	AUX
cet-10710	99	8	also	also	ADV
cet-10710	99	9	considered	consider	VERB
cet-10710	99	10	to	to	PART
cet-10710	99	11	be	be	AUX
cet-10710	99	12	used	use	VERB
cet-10710	99	13	as	as	ADP
cet-10710	99	14	a	a	DET
cet-10710	99	15	heat	heat	NOUN
cet-10710	99	16	source	source	NOUN
cet-10710	99	17	in	in	ADP
cet-10710	99	18	the	the	DET
cet-10710	99	19	dryer	dryer	NOUN
cet-10710	99	20	process	process	NOUN
cet-10710	99	21	to	to	PART
cet-10710	99	22	dehydrate	dehydrate	VERB
cet-10710	99	23	pyrolysis	pyrolysis	NOUN
cet-10710	99	24	feedstock	feedstock	NOUN
cet-10710	99	25	and	and	CCONJ
cet-10710	99	26	to	to	PART
cet-10710	99	27	reheat	reheat	VERB
cet-10710	99	28	the	the	DET
cet-10710	99	29	sand	sand	NOUN
cet-10710	99	30	to	to	ADP
cet-10710	99	31	the	the	DET
cet-10710	99	32	fast	fast	ADJ
cet-10710	99	33	pyrolysis	pyrolysis	NOUN
cet-10710	99	34	reactor	reactor	NOUN
cet-10710	99	35	.	.	PUNCT
cet-10710	100	1	process	process	NOUN
cet-10710	100	2	simulation	simulation	NOUN
cet-10710	100	3	in	in	ADP
cet-10710	100	4	this	this	DET
cet-10710	100	5	work	work	NOUN
cet-10710	100	6	was	be	AUX
cet-10710	100	7	modelled	model	VERB
cet-10710	100	8	from	from	ADP
cet-10710	100	9	the	the	DET
cet-10710	100	10	flow	flow	NOUN
cet-10710	100	11	process	process	NOUN
cet-10710	100	12	of	of	ADP
cet-10710	100	13	a	a	DET
cet-10710	100	14	fast	fast	ADJ
cet-10710	100	15	pyrolysis	pyrolysis	NOUN
cet-10710	100	16	pilot	pilot	NOUN
cet-10710	100	17	plant	plant	NOUN
cet-10710	100	18	in	in	ADP
cet-10710	100	19	thailand	thailand	PROPN
cet-10710	100	20	.	.	PUNCT
cet-10710	101	1	simulation	simulation	PROPN
cet-10710	101	2	flowsheet	flowsheet	PROPN
cet-10710	101	3	of	of	ADP
cet-10710	101	4	the	the	DET
cet-10710	101	5	biomass	biomass	NOUN
cet-10710	101	6	pyrolysis	pyrolysis	NOUN
cet-10710	101	7	process	process	NOUN
cet-10710	101	8	in	in	ADP
cet-10710	101	9	this	this	DET
cet-10710	101	10	work	work	NOUN
cet-10710	101	11	was	be	AUX
cet-10710	101	12	shown	show	VERB
cet-10710	101	13	in	in	ADP
cet-10710	101	14	figure	figure	NOUN
cet-10710	101	15	1	1	NUM
cet-10710	101	16	.	.	PUNCT
cet-10710	101	17	biomass	biomass	NOUN
cet-10710	101	18	will	will	AUX
cet-10710	101	19	be	be	AUX
cet-10710	101	20	75	75	NUM
cet-10710	101	21	passed	pass	VERB
cet-10710	101	22	to	to	ADP
cet-10710	101	23	the	the	DET
cet-10710	101	24	dryer	dryer	NOUN
cet-10710	101	25	to	to	PART
cet-10710	101	26	eliminate	eliminate	VERB
cet-10710	101	27	moisture	moisture	NOUN
cet-10710	101	28	.	.	PUNCT
cet-10710	102	1	this	this	DET
cet-10710	102	2	process	process	NOUN
cet-10710	102	3	is	be	AUX
cet-10710	102	4	not	not	PART
cet-10710	102	5	affected	affect	VERB
cet-10710	102	6	directly	directly	ADV
cet-10710	102	7	to	to	ADP
cet-10710	102	8	the	the	DET
cet-10710	102	9	pyrolysis	pyrolysis	NOUN
cet-10710	102	10	process	process	NOUN
cet-10710	102	11	but	but	CCONJ
cet-10710	102	12	to	to	PART
cet-10710	102	13	fulfill	fulfill	VERB
cet-10710	102	14	the	the	DET
cet-10710	102	15	process	process	NOUN
cet-10710	102	16	based	base	VERB
cet-10710	102	17	on	on	ADP
cet-10710	102	18	the	the	DET
cet-10710	102	19	pilot	pilot	NOUN
cet-10710	102	20	plant	plant	NOUN
cet-10710	102	21	.	.	PUNCT
cet-10710	103	1	after	after	ADP
cet-10710	103	2	moisture	moisture	NOUN
cet-10710	103	3	removing	remove	VERB
cet-10710	103	4	biomass	biomass	NOUN
cet-10710	103	5	will	will	AUX
cet-10710	103	6	move	move	VERB
cet-10710	103	7	to	to	PART
cet-10710	103	8	ryield	ryield	VERB
cet-10710	103	9	to	to	PART
cet-10710	103	10	change	change	VERB
cet-10710	103	11	solid	solid	ADJ
cet-10710	103	12	component	component	NOUN
cet-10710	103	13	into	into	ADP
cet-10710	103	14	conventional	conventional	ADJ
cet-10710	103	15	components	component	NOUN
cet-10710	103	16	,	,	PUNCT
cet-10710	103	17	nonconventional	nonconventional	ADJ
cet-10710	103	18	components	component	NOUN
cet-10710	103	19	,	,	PUNCT
cet-10710	103	20	and	and	CCONJ
cet-10710	103	21	solids	solid	NOUN
cet-10710	103	22	component	component	NOUN
cet-10710	103	23	of	of	ADP
cet-10710	103	24	lignocellulosic	lignocellulosic	ADJ
cet-10710	103	25	biomass	biomass	NOUN
cet-10710	103	26	which	which	PRON
cet-10710	103	27	can	can	AUX
cet-10710	103	28	be	be	AUX
cet-10710	103	29	processed	process	VERB
cet-10710	103	30	in	in	ADP
cet-10710	103	31	the	the	DET
cet-10710	103	32	pyrolysis	pyrolysis	NOUN
cet-10710	103	33	reactor	reactor	NOUN
cet-10710	103	34	.	.	PUNCT
cet-10710	104	1	in	in	ADP
cet-10710	104	2	the	the	DET
cet-10710	104	3	pyrolysis	pyrolysis	NOUN
cet-10710	104	4	reactor	reactor	NOUN
cet-10710	104	5	the	the	DET
cet-10710	104	6	reaction	reaction	NOUN
cet-10710	104	7	mechanism	mechanism	NOUN
cet-10710	104	8	as	as	SCONJ
cet-10710	104	9	shown	show	VERB
cet-10710	104	10	in	in	ADP
cet-10710	104	11	table	table	NOUN
cet-10710	104	12	2	2	NUM
cet-10710	104	13	will	will	AUX
cet-10710	104	14	be	be	AUX
cet-10710	104	15	operated	operate	VERB
cet-10710	104	16	based	base	VERB
cet-10710	104	17	on	on	ADP
cet-10710	104	18	the	the	DET
cet-10710	104	19	relation	relation	NOUN
cet-10710	104	20	between	between	ADP
cet-10710	104	21	kinetic	kinetic	ADJ
cet-10710	104	22	constant	constant	ADJ
cet-10710	104	23	,	,	PUNCT
cet-10710	104	24	activation	activation	NOUN
cet-10710	104	25	energies	energy	NOUN
cet-10710	104	26	and	and	CCONJ
cet-10710	104	27	operation	operation	NOUN
cet-10710	104	28	parameter	parameter	NOUN
cet-10710	104	29	.	.	PUNCT
cet-10710	105	1	after	after	ADP
cet-10710	105	2	a	a	DET
cet-10710	105	3	fast	fast	ADJ
cet-10710	105	4	pyrolysis	pyrolysis	NOUN
cet-10710	105	5	process	process	NOUN
cet-10710	105	6	,	,	PUNCT
cet-10710	105	7	bio	bio	NOUN
cet-10710	105	8	-	-	NOUN
cet-10710	105	9	oil	oil	NOUN
cet-10710	105	10	,	,	PUNCT
cet-10710	105	11	as	as	ADP
cet-10710	105	12	the	the	DET
cet-10710	105	13	products	product	NOUN
cet-10710	105	14	,	,	PUNCT
cet-10710	105	15	is	be	AUX
cet-10710	105	16	cooled	cool	VERB
cet-10710	105	17	and	and	CCONJ
cet-10710	105	18	collected	collect	VERB
cet-10710	105	19	.	.	PUNCT
cet-10710	106	1	the	the	DET
cet-10710	106	2	detail	detail	NOUN
cet-10710	106	3	of	of	ADP
cet-10710	106	4	each	each	DET
cet-10710	106	5	operation	operation	NOUN
cet-10710	106	6	part	part	NOUN
cet-10710	106	7	is	be	AUX
cet-10710	106	8	described	describe	VERB
cet-10710	106	9	in	in	ADP
cet-10710	106	10	table	table	NOUN
cet-10710	106	11	3	3	NUM
cet-10710	106	12	.	.	PUNCT
cet-10710	106	13	figure	figure	NOUN
cet-10710	106	14	1	1	NUM
cet-10710	106	15	:	:	PUNCT
cet-10710	106	16	simulation	simulation	NOUN
cet-10710	106	17	flowsheet	flowsheet	NOUN
cet-10710	106	18	of	of	ADP
cet-10710	106	19	the	the	DET
cet-10710	106	20	biomass	biomass	NOUN
cet-10710	106	21	pyrolysis	pyrolysis	NOUN
cet-10710	106	22	process	process	NOUN
cet-10710	106	23	implemented	implement	VERB
cet-10710	106	24	in	in	ADP
cet-10710	106	25	aspen	aspen	PROPN
cet-10710	106	26	plus	plus	CCONJ
cet-10710	106	27	®	®	NOUN
cet-10710	106	28	table	table	NOUN
cet-10710	106	29	3	3	NUM
cet-10710	106	30	:	:	PUNCT
cet-10710	106	31	description	description	NOUN
cet-10710	106	32	of	of	ADP
cet-10710	106	33	aspen	aspen	PROPN
cet-10710	106	34	block	block	NOUN
cet-10710	106	35	operation	operation	NOUN
cet-10710	106	36	block	block	NOUN
cet-10710	106	37	aspen	aspen	PROPN
cet-10710	106	38	block	block	NOUN
cet-10710	106	39	i	i	PROPN
cet-10710	106	40	d	d	PROPN
cet-10710	106	41	operation	operation	PROPN
cet-10710	106	42	dryer	dryer	NOUN
cet-10710	106	43	rstoic	rstoic	ADJ
cet-10710	106	44	removing	remove	VERB
cet-10710	106	45	moisture	moisture	NOUN
cet-10710	106	46	to	to	ADP
cet-10710	106	47	7	7	NUM
cet-10710	106	48	%	%	NOUN
cet-10710	106	49	before	before	ADP
cet-10710	106	50	combustion	combustion	NOUN
cet-10710	106	51	decomp	decomp	NOUN
cet-10710	106	52	ryield	ryield	NOUN
cet-10710	106	53	decomposition	decomposition	NOUN
cet-10710	106	54	of	of	ADP
cet-10710	106	55	feedstock	feedstock	NOUN
cet-10710	106	56	(	(	PUNCT
cet-10710	106	57	sawdust	sawdust	NOUN
cet-10710	106	58	)	)	PUNCT
cet-10710	106	59	into	into	ADP
cet-10710	106	60	components	component	NOUN
cet-10710	106	61	for	for	ADP
cet-10710	106	62	reaction	reaction	NOUN
cet-10710	106	63	(	(	PUNCT
cet-10710	106	64	components	component	NOUN
cet-10710	106	65	and	and	CCONJ
cet-10710	106	66	energy	energy	NOUN
cet-10710	106	67	output	output	NOUN
cet-10710	106	68	)	)	PUNCT
cet-10710	106	69	pyrolysis	pyrolysis	NOUN
cet-10710	106	70	rstoic	rstoic	ADJ
cet-10710	106	71	operating	operating	NOUN
cet-10710	106	72	pyrolysis	pyrolysis	NOUN
cet-10710	106	73	reactor	reactor	NOUN
cet-10710	106	74	with	with	ADP
cet-10710	106	75	developed	develop	VERB
cet-10710	106	76	pyrolysis	pyrolysis	NOUN
cet-10710	106	77	kinetic	kinetic	ADJ
cet-10710	106	78	reactions	reaction	NOUN
cet-10710	106	79	cyclone	cyclone	NOUN
cet-10710	106	80	cyclone	cyclone	NOUN
cet-10710	106	81	solids	solid	NOUN
cet-10710	106	82	separation	separation	NOUN
cet-10710	106	83	heater	heater	NOUN
cet-10710	106	84	heater	heater	NOUN
cet-10710	106	85	simulating	simulate	VERB
cet-10710	106	86	the	the	DET
cet-10710	106	87	temperature	temperature	NOUN
cet-10710	106	88	of	of	ADP
cet-10710	106	89	the	the	DET
cet-10710	106	90	unreacted	unreacted	ADJ
cet-10710	106	91	carbon	carbon	NOUN
cet-10710	106	92	to	to	ADP
cet-10710	106	93	the	the	DET
cet-10710	106	94	reactor	reactor	NOUN
cet-10710	106	95	temperature	temperature	NOUN
cet-10710	106	96	.	.	PUNCT
cet-10710	107	1	separator	separator	NOUN
cet-10710	107	2	cooler	cooler	NOUN
cet-10710	107	3	dividing	divide	VERB
cet-10710	107	4	products	product	NOUN
cet-10710	107	5	in	in	ADP
cet-10710	107	6	a	a	DET
cet-10710	107	7	separator	separator	NOUN
cet-10710	107	8	(	(	PUNCT
cet-10710	107	9	flash2	flash2	NOUN
cet-10710	107	10	)	)	PUNCT
cet-10710	107	11	to	to	ADP
cet-10710	107	12	gases	gas	NOUN
cet-10710	107	13	and	and	CCONJ
cet-10710	107	14	liquid	liquid	ADJ
cet-10710	107	15	3	3	NUM
cet-10710	107	16	.	.	NOUN
cet-10710	107	17	results	result	NOUN
cet-10710	107	18	and	and	CCONJ
cet-10710	107	19	discussion	discussion	VERB
cet-10710	107	20	the	the	DET
cet-10710	107	21	product	product	NOUN
cet-10710	107	22	yields	yield	VERB
cet-10710	107	23	from	from	ADP
cet-10710	107	24	the	the	DET
cet-10710	107	25	pyrolysis	pyrolysis	NOUN
cet-10710	107	26	model	model	NOUN
cet-10710	107	27	were	be	AUX
cet-10710	107	28	analysed	analyse	VERB
cet-10710	107	29	based	base	VERB
cet-10710	107	30	on	on	ADP
cet-10710	107	31	temperature	temperature	NOUN
cet-10710	107	32	and	and	CCONJ
cet-10710	107	33	residence	residence	NOUN
cet-10710	107	34	times	time	NOUN
cet-10710	107	35	.	.	PUNCT
cet-10710	108	1	moreover	moreover	ADV
cet-10710	108	2	,	,	PUNCT
cet-10710	108	3	bio	bio	ADJ
cet-10710	108	4	-	-	ADJ
cet-10710	108	5	oil	oil	NOUN
cet-10710	108	6	yield	yield	NOUN
cet-10710	108	7	in	in	ADP
cet-10710	108	8	the	the	DET
cet-10710	108	9	fast	fast	ADJ
cet-10710	108	10	pyrolysis	pyrolysis	NOUN
cet-10710	108	11	model	model	NOUN
cet-10710	108	12	was	be	AUX
cet-10710	108	13	compared	compare	VERB
cet-10710	108	14	with	with	ADP
cet-10710	108	15	the	the	DET
cet-10710	108	16	results	result	NOUN
cet-10710	108	17	from	from	ADP
cet-10710	108	18	previous	previous	ADJ
cet-10710	108	19	works	work	NOUN
cet-10710	108	20	on	on	ADP
cet-10710	108	21	a	a	DET
cet-10710	108	22	laboratory	laboratory	NOUN
cet-10710	108	23	scale	scale	NOUN
cet-10710	108	24	and	and	CCONJ
cet-10710	108	25	pilot	pilot	NOUN
cet-10710	108	26	in	in	ADP
cet-10710	108	27	the	the	DET
cet-10710	108	28	same	same	ADJ
cet-10710	108	29	aim	aim	NOUN
cet-10710	108	30	as	as	ADP
cet-10710	108	31	fast	fast	ADJ
cet-10710	108	32	pyrolysis	pyrolysis	NOUN
cet-10710	108	33	.	.	PUNCT
cet-10710	109	1	3.1	3.1	NUM
cet-10710	109	2	residence	residence	NOUN
cet-10710	109	3	time	time	NOUN
cet-10710	109	4	and	and	CCONJ
cet-10710	109	5	temperature	temperature	NOUN
cet-10710	109	6	dependency	dependency	NOUN
cet-10710	109	7	the	the	DET
cet-10710	109	8	dependency	dependency	NOUN
cet-10710	109	9	of	of	ADP
cet-10710	109	10	the	the	DET
cet-10710	109	11	product	product	NOUN
cet-10710	109	12	yields	yield	VERB
cet-10710	109	13	on	on	ADP
cet-10710	109	14	temperature	temperature	NOUN
cet-10710	109	15	and	and	CCONJ
cet-10710	109	16	residence	residence	NOUN
cet-10710	109	17	time	time	NOUN
cet-10710	109	18	was	be	AUX
cet-10710	109	19	simulated	simulate	VERB
cet-10710	109	20	and	and	CCONJ
cet-10710	109	21	investigated	investigate	VERB
cet-10710	109	22	.	.	PUNCT
cet-10710	110	1	the	the	DET
cet-10710	110	2	results	result	NOUN
cet-10710	110	3	of	of	ADP
cet-10710	110	4	the	the	DET
cet-10710	110	5	simulation	simulation	NOUN
cet-10710	110	6	runs	run	NOUN
cet-10710	110	7	are	be	AUX
cet-10710	110	8	presented	present	VERB
cet-10710	110	9	in	in	ADP
cet-10710	110	10	figure	figure	NOUN
cet-10710	110	11	2	2	NUM
cet-10710	110	12	to	to	PART
cet-10710	110	13	compare	compare	VERB
cet-10710	110	14	between	between	ADP
cet-10710	110	15	the	the	DET
cet-10710	110	16	simulation	simulation	NOUN
cet-10710	110	17	result	result	NOUN
cet-10710	110	18	and	and	CCONJ
cet-10710	110	19	result	result	VERB
cet-10710	110	20	from	from	ADP
cet-10710	110	21	the	the	DET
cet-10710	110	22	pilot	pilot	NOUN
cet-10710	110	23	plant	plant	NOUN
cet-10710	110	24	.	.	PUNCT
cet-10710	111	1	figure	figure	NOUN
cet-10710	111	2	2a	2a	PROPN
cet-10710	111	3	shows	show	VERB
cet-10710	111	4	the	the	DET
cet-10710	111	5	product	product	NOUN
cet-10710	111	6	yield	yield	NOUN
cet-10710	111	7	from	from	ADP
cet-10710	111	8	simulation	simulation	NOUN
cet-10710	111	9	includes	include	VERB
cet-10710	111	10	water	water	NOUN
cet-10710	111	11	,	,	PUNCT
cet-10710	111	12	solid	solid	ADJ
cet-10710	111	13	,	,	PUNCT
cet-10710	111	14	gas	gas	NOUN
cet-10710	111	15	,	,	PUNCT
cet-10710	111	16	and	and	CCONJ
cet-10710	111	17	oil	oil	NOUN
cet-10710	111	18	product	product	NOUN
cet-10710	111	19	while	while	SCONJ
cet-10710	111	20	the	the	DET
cet-10710	111	21	result	result	NOUN
cet-10710	111	22	from	from	ADP
cet-10710	111	23	the	the	DET
cet-10710	111	24	experiment	experiment	NOUN
cet-10710	111	25	was	be	AUX
cet-10710	111	26	shown	show	VERB
cet-10710	111	27	in	in	ADP
cet-10710	111	28	figure	figure	NOUN
cet-10710	111	29	2b	2b	NOUN
cet-10710	111	30	.	.	PUNCT
cet-10710	112	1	the	the	DET
cet-10710	112	2	yield	yield	NOUN
cet-10710	112	3	curves	curve	NOUN
cet-10710	112	4	show	show	VERB
cet-10710	112	5	the	the	DET
cet-10710	112	6	typical	typical	ADJ
cet-10710	112	7	shape	shape	NOUN
cet-10710	112	8	for	for	ADP
cet-10710	112	9	pyrolysis	pyrolysis	NOUN
cet-10710	112	10	reactions	reaction	NOUN
cet-10710	112	11	,	,	PUNCT
cet-10710	112	12	with	with	ADP
cet-10710	112	13	the	the	DET
cet-10710	112	14	maximum	maximum	ADJ
cet-10710	112	15	liquid	liquid	ADJ
cet-10710	112	16	yield	yield	NOUN
cet-10710	112	17	about	about	ADV
cet-10710	112	18	50	50	NUM
cet-10710	112	19	%	%	NOUN
cet-10710	112	20	at	at	ADP
cet-10710	112	21	around	around	ADP
cet-10710	112	22	550	550	NUM
cet-10710	112	23	ºc	ºc	NOUN
cet-10710	112	24	and	and	CCONJ
cet-10710	112	25	residence	residence	NOUN
cet-10710	112	26	times	time	NOUN
cet-10710	112	27	of	of	ADP
cet-10710	112	28	1	1	NUM
cet-10710	112	29	s.	s.	NOUN
cet-10710	112	30	this	this	DET
cet-10710	112	31	condition	condition	NOUN
cet-10710	112	32	was	be	AUX
cet-10710	112	33	considered	consider	VERB
cet-10710	112	34	as	as	ADP
cet-10710	112	35	fast	fast	ADJ
cet-10710	112	36	pyrolysis	pyrolysis	NOUN
cet-10710	112	37	.	.	PUNCT
cet-10710	113	1	the	the	DET
cet-10710	113	2	liquid	liquid	ADJ
cet-10710	113	3	products	product	NOUN
cet-10710	113	4	’	'	PUNCT
cet-10710	113	5	yield	yield	NOUN
cet-10710	113	6	increased	increase	VERB
cet-10710	113	7	sharply	sharply	ADV
cet-10710	113	8	when	when	SCONJ
cet-10710	113	9	the	the	DET
cet-10710	113	10	temperature	temperature	NOUN
cet-10710	113	11	increased	increase	VERB
cet-10710	113	12	.	.	PUNCT
cet-10710	114	1	according	accord	VERB
cet-10710	114	2	to	to	ADP
cet-10710	114	3	pilot	pilot	NOUN
cet-10710	114	4	plant	plant	NOUN
cet-10710	114	5	data	datum	NOUN
cet-10710	114	6	(	(	PUNCT
cet-10710	114	7	jaroenkhasemmeesuk	jaroenkhasemmeesuk	NOUN
cet-10710	114	8	and	and	CCONJ
cet-10710	114	9	tippayawong	tippayawong	ADJ
cet-10710	114	10	,	,	PUNCT
cet-10710	114	11	2016	2016	NUM
cet-10710	114	12	)	)	PUNCT
cet-10710	114	13	,	,	PUNCT
cet-10710	114	14	at	at	ADP
cet-10710	114	15	the	the	DET
cet-10710	114	16	fast	fast	ADJ
cet-10710	114	17	pyrolysis	pyrolysis	NOUN
cet-10710	114	18	condition	condition	NOUN
cet-10710	114	19	1	1	NUM
cet-10710	114	20	-	-	SYM
cet-10710	114	21	2	2	NUM
cet-10710	114	22	s	s	NOUN
cet-10710	114	23	of	of	ADP
cet-10710	114	24	residence	residence	NOUN
cet-10710	114	25	times	time	NOUN
cet-10710	114	26	,	,	PUNCT
cet-10710	114	27	this	this	DET
cet-10710	114	28	model	model	NOUN
cet-10710	114	29	gave	give	VERB
cet-10710	114	30	the	the	DET
cet-10710	114	31	reliable	reliable	ADJ
cet-10710	114	32	result	result	NOUN
cet-10710	114	33	of	of	ADP
cet-10710	114	34	the	the	DET
cet-10710	114	35	product	product	NOUN
cet-10710	114	36	yields	yield	NOUN
cet-10710	114	37	of	of	ADP
cet-10710	114	38	fast	fast	ADJ
cet-10710	114	39	pyrolysis	pyrolysis	NOUN
cet-10710	114	40	at	at	ADP
cet-10710	114	41	intermediate	intermediate	ADJ
cet-10710	114	42	to	to	ADP
cet-10710	114	43	high	high	ADJ
cet-10710	114	44	temperatures	temperature	NOUN
cet-10710	114	45	(	(	PUNCT
cet-10710	114	46	500–600	500–600	NUM
cet-10710	114	47	°	°	NOUN
cet-10710	114	48	c	c	NOUN
cet-10710	114	49	)	)	PUNCT
cet-10710	114	50	.	.	PUNCT
cet-10710	115	1	the	the	DET
cet-10710	115	2	trend	trend	NOUN
cet-10710	115	3	of	of	ADP
cet-10710	115	4	product	product	NOUN
cet-10710	115	5	yields	yield	NOUN
cet-10710	115	6	from	from	ADP
cet-10710	115	7	the	the	DET
cet-10710	115	8	simulation	simulation	NOUN
cet-10710	115	9	was	be	AUX
cet-10710	115	10	compared	compare	VERB
cet-10710	115	11	with	with	ADP
cet-10710	115	12	the	the	DET
cet-10710	115	13	result	result	NOUN
cet-10710	115	14	from	from	ADP
cet-10710	115	15	the	the	DET
cet-10710	115	16	experiment	experiment	NOUN
cet-10710	115	17	using	use	VERB
cet-10710	115	18	the	the	DET
cet-10710	115	19	differential	differential	NOUN
cet-10710	115	20	of	of	ADP
cet-10710	115	21	their	their	PRON
cet-10710	115	22	trend	trend	NOUN
cet-10710	115	23	curve	curve	NOUN
cet-10710	115	24	.	.	PUNCT
cet-10710	116	1	t	t	NOUN
cet-10710	116	2	-	-	PUNCT
cet-10710	116	3	test	test	NOUN
cet-10710	116	4	at	at	ADP
cet-10710	116	5	95	95	NUM
cet-10710	116	6	%	%	NOUN
cet-10710	116	7	confidence	confidence	NOUN
cet-10710	116	8	interval	interval	NOUN
cet-10710	116	9	was	be	AUX
cet-10710	116	10	investigated	investigate	VERB
cet-10710	116	11	,	,	PUNCT
cet-10710	116	12	and	and	CCONJ
cet-10710	116	13	the	the	DET
cet-10710	116	14	t	t	NOUN
cet-10710	116	15	-	-	PUNCT
cet-10710	116	16	value	value	NOUN
cet-10710	116	17	of	of	ADP
cet-10710	116	18	these	these	DET
cet-10710	116	19	two	two	NUM
cet-10710	116	20	results	result	NOUN
cet-10710	116	21	is	be	AUX
cet-10710	116	22	0.00327	0.00327	NUM
cet-10710	116	23	maximum	maximum	ADJ
cet-10710	116	24	.	.	PUNCT
cet-10710	117	1	it	it	PRON
cet-10710	117	2	may	may	AUX
cet-10710	117	3	conclude	conclude	VERB
cet-10710	117	4	that	that	SCONJ
cet-10710	117	5	the	the	DET
cet-10710	117	6	trend	trend	NOUN
cet-10710	117	7	of	of	ADP
cet-10710	117	8	product	product	NOUN
cet-10710	117	9	yield	yield	NOUN
cet-10710	117	10	between	between	ADP
cet-10710	117	11	simulation	simulation	NOUN
cet-10710	117	12	and	and	CCONJ
cet-10710	117	13	the	the	DET
cet-10710	117	14	experiment	experiment	NOUN
cet-10710	117	15	was	be	AUX
cet-10710	117	16	not	not	PART
cet-10710	117	17	significantly	significantly	ADV
cet-10710	117	18	different	different	ADJ
cet-10710	117	19	.	.	PUNCT
cet-10710	118	1	the	the	DET
cet-10710	118	2	highest	high	ADJ
cet-10710	118	3	difference	difference	NOUN
cet-10710	118	4	percentage	percentage	NOUN
cet-10710	118	5	of	of	ADP
cet-10710	118	6	product	product	NOUN
cet-10710	118	7	yields	yield	NOUN
cet-10710	118	8	between	between	ADP
cet-10710	118	9	simulation	simulation	NOUN
cet-10710	118	10	and	and	CCONJ
cet-10710	118	11	experiment	experiment	NOUN
cet-10710	118	12	was	be	AUX
cet-10710	118	13	at	at	ADP
cet-10710	118	14	450	450	NUM
cet-10710	118	15	°	°	NOUN
cet-10710	118	16	c	c	NOUN
cet-10710	118	17	of	of	ADP
cet-10710	118	18	reaction	reaction	NOUN
cet-10710	118	19	temperature	temperature	NOUN
cet-10710	118	20	as	as	SCONJ
cet-10710	118	21	shown	show	VERB
cet-10710	118	22	in	in	ADP
cet-10710	118	23	figure	figure	NOUN
cet-10710	118	24	2a	2a	NUM
cet-10710	118	25	and	and	CCONJ
cet-10710	118	26	2b	2b	NOUN
cet-10710	118	27	.	.	PUNCT
cet-10710	119	1	the	the	DET
cet-10710	119	2	solid	solid	ADJ
cet-10710	119	3	product	product	NOUN
cet-10710	119	4	from	from	ADP
cet-10710	119	5	the	the	DET
cet-10710	119	6	experiment	experiment	NOUN
cet-10710	119	7	was	be	AUX
cet-10710	119	8	about	about	ADV
cet-10710	119	9	69	69	NUM
cet-10710	119	10	%	%	NOUN
cet-10710	119	11	76	76	NUM
cet-10710	119	12	while	while	SCONJ
cet-10710	119	13	the	the	DET
cet-10710	119	14	simulation	simulation	NOUN
cet-10710	119	15	showed	show	VERB
cet-10710	119	16	only	only	ADV
cet-10710	119	17	50	50	NUM
cet-10710	119	18	%	%	NOUN
cet-10710	119	19	,	,	PUNCT
cet-10710	119	20	while	while	SCONJ
cet-10710	119	21	the	the	DET
cet-10710	119	22	oil	oil	NOUN
cet-10710	119	23	product	product	NOUN
cet-10710	119	24	yield	yield	NOUN
cet-10710	119	25	from	from	ADP
cet-10710	119	26	the	the	DET
cet-10710	119	27	experiment	experiment	NOUN
cet-10710	119	28	was	be	AUX
cet-10710	119	29	lower	low	ADJ
cet-10710	119	30	than	than	ADP
cet-10710	119	31	simulation	simulation	NOUN
cet-10710	119	32	about	about	ADV
cet-10710	119	33	two	two	NUM
cet-10710	119	34	times	time	NOUN
cet-10710	119	35	.	.	PUNCT
cet-10710	120	1	this	this	PRON
cet-10710	120	2	may	may	AUX
cet-10710	120	3	explain	explain	VERB
cet-10710	120	4	that	that	SCONJ
cet-10710	120	5	,	,	PUNCT
cet-10710	120	6	at	at	ADP
cet-10710	120	7	450	450	NUM
cet-10710	120	8	°	°	NOUN
cet-10710	120	9	c	c	NOUN
cet-10710	120	10	reaction	reaction	NOUN
cet-10710	120	11	temperature	temperature	NOUN
cet-10710	120	12	,	,	PUNCT
cet-10710	120	13	the	the	DET
cet-10710	120	14	experiment	experiment	NOUN
cet-10710	120	15	can	can	AUX
cet-10710	120	16	not	not	PART
cet-10710	120	17	satisfy	satisfy	VERB
cet-10710	120	18	low	low	ADJ
cet-10710	120	19	residence	residence	NOUN
cet-10710	120	20	time	time	NOUN
cet-10710	120	21	condition	condition	NOUN
cet-10710	120	22	.	.	PUNCT
cet-10710	121	1	(	(	PUNCT
cet-10710	121	2	a	a	X
cet-10710	121	3	)	)	PUNCT
cet-10710	121	4	(	(	PUNCT
cet-10710	121	5	b	b	X
cet-10710	121	6	)	)	PUNCT
cet-10710	121	7	figure	figure	NOUN
cet-10710	121	8	2	2	NUM
cet-10710	121	9	:	:	PUNCT
cet-10710	121	10	comparison	comparison	NOUN
cet-10710	121	11	of	of	ADP
cet-10710	121	12	liquid	liquid	ADJ
cet-10710	121	13	product	product	NOUN
cet-10710	121	14	yield	yield	NOUN
cet-10710	121	15	of	of	ADP
cet-10710	121	16	fast	fast	ADJ
cet-10710	121	17	pyrolysis	pyrolysis	NOUN
cet-10710	121	18	between	between	ADP
cet-10710	121	19	(	(	PUNCT
cet-10710	121	20	a	a	PRON
cet-10710	121	21	)	)	PUNCT
cet-10710	121	22	simulation	simulation	NOUN
cet-10710	121	23	and	and	CCONJ
cet-10710	121	24	(	(	PUNCT
cet-10710	121	25	b	b	NOUN
cet-10710	121	26	)	)	PUNCT
cet-10710	121	27	previous	previous	ADJ
cet-10710	121	28	works	work	NOUN
cet-10710	121	29	in	in	ADP
cet-10710	121	30	pilot	pilot	NOUN
cet-10710	121	31	plant	plant	NOUN
cet-10710	121	32	.	.	PUNCT
cet-10710	122	1	3.2	3.2	NUM
cet-10710	122	2	bio	bio	ADJ
cet-10710	122	3	-	-	PUNCT
cet-10710	122	4	oil	oil	NOUN
cet-10710	122	5	components	component	NOUN
cet-10710	122	6	figure	figure	VERB
cet-10710	122	7	3	3	NUM
cet-10710	122	8	shows	show	VERB
cet-10710	122	9	that	that	SCONJ
cet-10710	122	10	the	the	DET
cet-10710	122	11	temperature	temperature	NOUN
cet-10710	122	12	at	at	ADP
cet-10710	122	13	the	the	DET
cet-10710	122	14	peak	peak	NOUN
cet-10710	122	15	of	of	ADP
cet-10710	122	16	the	the	DET
cet-10710	122	17	bio	bio	ADJ
cet-10710	122	18	-	-	ADJ
cet-10710	122	19	oil	oil	NOUN
cet-10710	122	20	yield	yield	NOUN
cet-10710	122	21	(	(	PUNCT
cet-10710	122	22	550	550	NUM
cet-10710	122	23	°	°	NOUN
cet-10710	122	24	c	c	NOUN
cet-10710	122	25	)	)	PUNCT
cet-10710	122	26	was	be	AUX
cet-10710	122	27	slightly	slightly	ADV
cet-10710	122	28	higher	high	ADJ
cet-10710	122	29	than	than	ADP
cet-10710	122	30	the	the	DET
cet-10710	122	31	typical	typical	ADJ
cet-10710	122	32	ranges	range	NOUN
cet-10710	122	33	of	of	ADP
cet-10710	122	34	500–520	500–520	NUM
cet-10710	122	35	°	°	ADP
cet-10710	122	36	c	c	NOUN
cet-10710	122	37	for	for	ADP
cet-10710	122	38	wood	wood	NOUN
cet-10710	122	39	biomass	biomass	NOUN
cet-10710	122	40	from	from	ADP
cet-10710	122	41	the	the	DET
cet-10710	122	42	literature	literature	NOUN
cet-10710	122	43	review	review	NOUN
cet-10710	122	44	and	and	CCONJ
cet-10710	122	45	experiments	experiment	NOUN
cet-10710	122	46	(	(	PUNCT
cet-10710	122	47	salehi	salehi	NOUN
cet-10710	122	48	et	et	PROPN
cet-10710	122	49	al	al	PROPN
cet-10710	122	50	.	.	PROPN
cet-10710	122	51	,	,	PUNCT
cet-10710	122	52	2013	2013	NUM
cet-10710	122	53	;	;	PUNCT
cet-10710	122	54	heo	heo	PROPN
cet-10710	122	55	et	et	PROPN
cet-10710	122	56	al	al	PROPN
cet-10710	122	57	.	.	PROPN
cet-10710	122	58	,	,	PUNCT
cet-10710	122	59	2010	2010	NUM
cet-10710	122	60	)	)	PUNCT
cet-10710	122	61	.	.	PUNCT
cet-10710	123	1	this	this	DET
cet-10710	123	2	literature	literature	NOUN
cet-10710	123	3	was	be	AUX
cet-10710	123	4	selected	select	VERB
cet-10710	123	5	according	accord	VERB
cet-10710	123	6	to	to	ADP
cet-10710	123	7	the	the	DET
cet-10710	123	8	close	close	ADJ
cet-10710	123	9	similarity	similarity	NOUN
cet-10710	123	10	of	of	ADP
cet-10710	123	11	raw	raw	ADJ
cet-10710	123	12	material	material	NOUN
cet-10710	123	13	composition	composition	NOUN
cet-10710	123	14	.	.	PUNCT
cet-10710	124	1	the	the	DET
cet-10710	124	2	simulation	simulation	NOUN
cet-10710	124	3	showed	show	VERB
cet-10710	124	4	51	51	NUM
cet-10710	124	5	%	%	NOUN
cet-10710	124	6	of	of	ADP
cet-10710	124	7	oil	oil	NOUN
cet-10710	124	8	yield	yield	NOUN
cet-10710	124	9	at	at	ADP
cet-10710	124	10	500	500	NUM
cet-10710	124	11	°	°	NOUN
cet-10710	124	12	c	c	NOUN
cet-10710	124	13	while	while	SCONJ
cet-10710	124	14	the	the	DET
cet-10710	124	15	experiment	experiment	NOUN
cet-10710	124	16	of	of	ADP
cet-10710	124	17	heo	heo	PROPN
cet-10710	124	18	et	et	PROPN
cet-10710	124	19	al	al	PROPN
cet-10710	124	20	.	.	PROPN
cet-10710	125	1	(	(	PUNCT
cet-10710	125	2	2010	2010	NUM
cet-10710	125	3	)	)	PUNCT
cet-10710	125	4	was	be	AUX
cet-10710	125	5	about	about	ADV
cet-10710	125	6	54	54	NUM
cet-10710	125	7	%	%	NOUN
cet-10710	125	8	.	.	PUNCT
cet-10710	126	1	the	the	DET
cet-10710	126	2	simulation	simulation	NOUN
cet-10710	126	3	result	result	NOUN
cet-10710	126	4	was	be	AUX
cet-10710	126	5	significantly	significantly	ADV
cet-10710	126	6	closer	close	ADJ
cet-10710	126	7	to	to	ADP
cet-10710	126	8	the	the	DET
cet-10710	126	9	experiment	experiment	NOUN
cet-10710	126	10	at	at	ADP
cet-10710	126	11	550	550	NUM
cet-10710	126	12	°	°	NOUN
cet-10710	126	13	c	c	NOUN
cet-10710	126	14	.	.	PUNCT
cet-10710	127	1	it	it	PRON
cet-10710	127	2	was	be	AUX
cet-10710	127	3	observed	observe	VERB
cet-10710	127	4	that	that	SCONJ
cet-10710	127	5	there	there	PRON
cet-10710	127	6	was	be	VERB
cet-10710	127	7	a	a	DET
cet-10710	127	8	correlation	correlation	NOUN
cet-10710	127	9	between	between	ADP
cet-10710	127	10	the	the	DET
cet-10710	127	11	product	product	NOUN
cet-10710	127	12	compositions	composition	NOUN
cet-10710	127	13	given	give	VERB
cet-10710	127	14	by	by	ADP
cet-10710	127	15	the	the	DET
cet-10710	127	16	simulation	simulation	NOUN
cet-10710	127	17	and	and	CCONJ
cet-10710	127	18	the	the	DET
cet-10710	127	19	collected	collect	VERB
cet-10710	127	20	data	datum	NOUN
cet-10710	127	21	from	from	ADP
cet-10710	127	22	the	the	DET
cet-10710	127	23	pilot	pilot	NOUN
cet-10710	127	24	plant	plant	NOUN
cet-10710	127	25	.	.	PUNCT
cet-10710	128	1	as	as	SCONJ
cet-10710	128	2	it	it	PRON
cet-10710	128	3	can	can	AUX
cet-10710	128	4	be	be	AUX
cet-10710	128	5	seen	see	VERB
cet-10710	128	6	that	that	SCONJ
cet-10710	128	7	the	the	DET
cet-10710	128	8	correlation	correlation	NOUN
cet-10710	128	9	between	between	ADP
cet-10710	128	10	the	the	DET
cet-10710	128	11	product	product	NOUN
cet-10710	128	12	compositions	composition	NOUN
cet-10710	128	13	given	give	VERB
cet-10710	128	14	by	by	ADP
cet-10710	128	15	the	the	DET
cet-10710	128	16	simulation	simulation	NOUN
cet-10710	128	17	and	and	CCONJ
cet-10710	128	18	the	the	DET
cet-10710	128	19	pilot	pilot	NOUN
cet-10710	128	20	plant	plant	NOUN
cet-10710	128	21	was	be	AUX
cet-10710	128	22	high	high	ADJ
cet-10710	128	23	.	.	PUNCT
cet-10710	129	1	the	the	DET
cet-10710	129	2	result	result	NOUN
cet-10710	129	3	shows	show	VERB
cet-10710	129	4	the	the	DET
cet-10710	129	5	closure	closure	NOUN
cet-10710	129	6	of	of	ADP
cet-10710	129	7	bio	bio	ADJ
cet-10710	129	8	-	-	ADJ
cet-10710	129	9	oil	oil	NOUN
cet-10710	129	10	yield	yield	NOUN
cet-10710	129	11	between	between	ADP
cet-10710	129	12	this	this	DET
cet-10710	129	13	simulation	simulation	NOUN
cet-10710	129	14	and	and	CCONJ
cet-10710	129	15	referred	refer	VERB
cet-10710	129	16	experiments	experiment	NOUN
cet-10710	129	17	at	at	ADP
cet-10710	129	18	500	500	NUM
cet-10710	129	19	–	–	PUNCT
cet-10710	129	20	550	550	NUM
cet-10710	129	21	°	°	SYM
cet-10710	129	22	c	c	NOUN
cet-10710	129	23	.	.	PUNCT
cet-10710	130	1	figure	figure	NOUN
cet-10710	130	2	3	3	NUM
cet-10710	130	3	:	:	PUNCT
cet-10710	130	4	comparison	comparison	NOUN
cet-10710	130	5	of	of	ADP
cet-10710	130	6	liquid	liquid	ADJ
cet-10710	130	7	product	product	NOUN
cet-10710	130	8	yield	yield	NOUN
cet-10710	130	9	of	of	ADP
cet-10710	130	10	fast	fast	ADJ
cet-10710	130	11	pyrolysis	pyrolysis	NOUN
cet-10710	130	12	between	between	ADP
cet-10710	130	13	simulation	simulation	NOUN
cet-10710	130	14	and	and	CCONJ
cet-10710	130	15	previous	previous	ADJ
cet-10710	130	16	works	work	NOUN
cet-10710	130	17	.	.	PUNCT
cet-10710	131	1	at	at	ADP
cet-10710	131	2	450	450	NUM
cet-10710	131	3	°	°	NOUN
cet-10710	131	4	c	c	NOUN
cet-10710	131	5	of	of	ADP
cet-10710	131	6	reaction	reaction	NOUN
cet-10710	131	7	temperature	temperature	NOUN
cet-10710	131	8	,	,	PUNCT
cet-10710	131	9	the	the	DET
cet-10710	131	10	results	result	NOUN
cet-10710	131	11	showed	show	VERB
cet-10710	131	12	a	a	DET
cet-10710	131	13	significant	significant	ADJ
cet-10710	131	14	difference	difference	NOUN
cet-10710	131	15	between	between	ADP
cet-10710	131	16	simulation	simulation	NOUN
cet-10710	131	17	and	and	CCONJ
cet-10710	131	18	reported	report	VERB
cet-10710	131	19	studies	study	NOUN
cet-10710	131	20	.	.	PUNCT
cet-10710	132	1	the	the	DET
cet-10710	132	2	study	study	NOUN
cet-10710	132	3	of	of	ADP
cet-10710	132	4	operating	operating	NOUN
cet-10710	132	5	parameters	parameter	NOUN
cet-10710	132	6	can	can	AUX
cet-10710	132	7	be	be	AUX
cet-10710	132	8	explained	explain	VERB
cet-10710	132	9	that	that	SCONJ
cet-10710	132	10	at	at	ADP
cet-10710	132	11	450	450	NUM
cet-10710	132	12	°	°	NOUN
cet-10710	132	13	c	c	NOUN
cet-10710	132	14	is	be	AUX
cet-10710	132	15	the	the	DET
cet-10710	132	16	condition	condition	NOUN
cet-10710	132	17	between	between	ADP
cet-10710	132	18	slow	slow	ADJ
cet-10710	132	19	pyrolysis	pyrolysis	NOUN
cet-10710	132	20	and	and	CCONJ
cet-10710	132	21	fast	fast	ADJ
cet-10710	132	22	pyrolysis	pyrolysis	NOUN
cet-10710	132	23	.	.	PUNCT
cet-10710	133	1	with	with	ADP
cet-10710	133	2	1	1	NUM
cet-10710	133	3	-	-	SYM
cet-10710	133	4	2	2	NUM
cet-10710	133	5	s	s	NOUN
cet-10710	133	6	residence	residence	NOUN
cet-10710	133	7	time	time	NOUN
cet-10710	133	8	in	in	ADP
cet-10710	133	9	this	this	DET
cet-10710	133	10	works	work	NOUN
cet-10710	133	11	scope	scope	NOUN
cet-10710	133	12	may	may	AUX
cet-10710	133	13	not	not	PART
cet-10710	133	14	satisfy	satisfy	VERB
cet-10710	133	15	the	the	DET
cet-10710	133	16	optimal	optimal	ADJ
cet-10710	133	17	condition	condition	NOUN
cet-10710	133	18	of	of	ADP
cet-10710	133	19	pyrolysis	pyrolysis	NOUN
cet-10710	133	20	and	and	CCONJ
cet-10710	133	21	its	its	PRON
cet-10710	133	22	kinetics	kinetic	NOUN
cet-10710	133	23	model	model	NOUN
cet-10710	133	24	.	.	PUNCT
cet-10710	134	1	the	the	DET
cet-10710	134	2	agreement	agreement	NOUN
cet-10710	134	3	between	between	ADP
cet-10710	134	4	the	the	DET
cet-10710	134	5	model	model	NOUN
cet-10710	134	6	simulation	simulation	NOUN
cet-10710	134	7	and	and	CCONJ
cet-10710	134	8	experimental	experimental	ADJ
cet-10710	134	9	data	datum	NOUN
cet-10710	134	10	at	at	ADP
cet-10710	134	11	fast	fast	ADJ
cet-10710	134	12	pyrolysis	pyrolysis	NOUN
cet-10710	134	13	condition	condition	NOUN
cet-10710	134	14	was	be	AUX
cet-10710	134	15	satisfactory	satisfactory	ADJ
cet-10710	134	16	but	but	CCONJ
cet-10710	134	17	more	more	ADJ
cet-10710	134	18	simulation	simulation	NOUN
cet-10710	134	19	data	datum	NOUN
cet-10710	134	20	such	such	ADJ
cet-10710	134	21	as	as	ADP
cet-10710	134	22	difference	difference	NOUN
cet-10710	134	23	composition	composition	NOUN
cet-10710	134	24	of	of	ADP
cet-10710	134	25	77	77	NUM
cet-10710	134	26	raw	raw	ADJ
cet-10710	134	27	material	material	NOUN
cet-10710	134	28	and	and	CCONJ
cet-10710	134	29	effect	effect	NOUN
cet-10710	134	30	of	of	ADP
cet-10710	134	31	other	other	ADJ
cet-10710	134	32	minor	minor	ADJ
cet-10710	134	33	parameters	parameter	NOUN
cet-10710	134	34	are	be	AUX
cet-10710	134	35	still	still	ADV
cet-10710	134	36	required	require	VERB
cet-10710	134	37	to	to	PART
cet-10710	134	38	confirm	confirm	VERB
cet-10710	134	39	this	this	DET
cet-10710	134	40	model	model	NOUN
cet-10710	134	41	in	in	ADP
cet-10710	134	42	order	order	NOUN
cet-10710	134	43	to	to	PART
cet-10710	134	44	make	make	VERB
cet-10710	134	45	it	it	PRON
cet-10710	134	46	more	more	ADV
cet-10710	134	47	comprehensive	comprehensive	ADJ
cet-10710	134	48	and	and	CCONJ
cet-10710	134	49	reliable	reliable	ADJ
cet-10710	134	50	.	.	PUNCT
cet-10710	135	1	4	4	X
cet-10710	135	2	.	.	X
cet-10710	135	3	conclusion	conclusion	NOUN
cet-10710	135	4	a	a	DET
cet-10710	135	5	kinetic	kinetic	ADJ
cet-10710	135	6	model	model	NOUN
cet-10710	135	7	process	process	NOUN
cet-10710	135	8	simulation	simulation	NOUN
cet-10710	135	9	of	of	ADP
cet-10710	135	10	fast	fast	ADJ
cet-10710	135	11	pyrolysis	pyrolysis	NOUN
cet-10710	135	12	has	have	AUX
cet-10710	135	13	been	be	AUX
cet-10710	135	14	developed	develop	VERB
cet-10710	135	15	with	with	ADP
cet-10710	135	16	aspen	aspen	PROPN
cet-10710	135	17	plus	plus	CCONJ
cet-10710	135	18	®	®	NOUN
cet-10710	135	19	to	to	PART
cet-10710	135	20	simulate	simulate	VERB
cet-10710	135	21	and	and	CCONJ
cet-10710	135	22	analyse	analyse	VERB
cet-10710	135	23	fast	fast	ADJ
cet-10710	135	24	pyrolysis	pyrolysis	NOUN
cet-10710	135	25	for	for	ADP
cet-10710	135	26	sawdust	sawdust	NOUN
cet-10710	135	27	as	as	ADP
cet-10710	135	28	bio	bio	ADJ
cet-10710	135	29	-	-	ADJ
cet-10710	135	30	oil	oil	NOUN
cet-10710	135	31	feedstock	feedstock	NOUN
cet-10710	135	32	.	.	PUNCT
cet-10710	136	1	the	the	DET
cet-10710	136	2	data	datum	NOUN
cet-10710	136	3	of	of	ADP
cet-10710	136	4	feedstock	feedstock	NOUN
cet-10710	136	5	were	be	AUX
cet-10710	136	6	based	base	VERB
cet-10710	136	7	on	on	ADP
cet-10710	136	8	experimental	experimental	ADJ
cet-10710	136	9	data	datum	NOUN
cet-10710	136	10	gained	gain	VERB
cet-10710	136	11	from	from	ADP
cet-10710	136	12	the	the	DET
cet-10710	136	13	pyrolysis	pyrolysis	NOUN
cet-10710	136	14	plant	plant	NOUN
cet-10710	136	15	.	.	PUNCT
cet-10710	137	1	the	the	DET
cet-10710	137	2	product	product	NOUN
cet-10710	137	3	yield	yield	NOUN
cet-10710	137	4	of	of	ADP
cet-10710	137	5	fast	fast	ADJ
cet-10710	137	6	pyrolysis	pyrolysis	NOUN
cet-10710	137	7	of	of	ADP
cet-10710	137	8	lignocellulosic	lignocellulosic	ADJ
cet-10710	137	9	biomass	biomass	NOUN
cet-10710	137	10	was	be	AUX
cet-10710	137	11	calculated	calculate	VERB
cet-10710	137	12	from	from	ADP
cet-10710	137	13	developed	develop	VERB
cet-10710	137	14	pyrolysis	pyrolysis	NOUN
cet-10710	137	15	reactions	reaction	NOUN
cet-10710	137	16	.	.	PUNCT
cet-10710	138	1	the	the	DET
cet-10710	138	2	result	result	NOUN
cet-10710	138	3	of	of	ADP
cet-10710	138	4	this	this	DET
cet-10710	138	5	model	model	NOUN
cet-10710	138	6	showed	show	VERB
cet-10710	138	7	that	that	SCONJ
cet-10710	138	8	it	it	PRON
cet-10710	138	9	was	be	AUX
cet-10710	138	10	suitable	suitable	ADJ
cet-10710	138	11	for	for	ADP
cet-10710	138	12	predicting	predict	VERB
cet-10710	138	13	fast	fast	ADJ
cet-10710	138	14	pyrolysis	pyrolysis	NOUN
cet-10710	138	15	reactions	reaction	NOUN
cet-10710	138	16	for	for	ADP
cet-10710	138	17	lignocellulosic	lignocellulosic	ADJ
cet-10710	138	18	biomass	biomass	NOUN
cet-10710	138	19	feedstock	feedstock	NOUN
cet-10710	138	20	at	at	ADP
cet-10710	138	21	high	high	ADJ
cet-10710	138	22	temperatures	temperature	NOUN
cet-10710	138	23	(	(	PUNCT
cet-10710	138	24	500	500	NUM
cet-10710	138	25	–	–	PUNCT
cet-10710	138	26	600	600	NUM
cet-10710	138	27	°	°	NOUN
cet-10710	138	28	c	c	NOUN
cet-10710	138	29	)	)	PUNCT
cet-10710	138	30	with	with	ADP
cet-10710	138	31	low	low	ADJ
cet-10710	138	32	residence	residence	NOUN
cet-10710	138	33	times	time	NOUN
cet-10710	138	34	(	(	PUNCT
cet-10710	138	35	1	1	NUM
cet-10710	138	36	-	-	SYM
cet-10710	138	37	2	2	NUM
cet-10710	138	38	s	s	NOUN
cet-10710	138	39	)	)	PUNCT
cet-10710	138	40	.	.	PUNCT
cet-10710	139	1	moreover	moreover	ADV
cet-10710	139	2	,	,	PUNCT
cet-10710	139	3	this	this	DET
cet-10710	139	4	model	model	NOUN
cet-10710	139	5	can	can	AUX
cet-10710	139	6	be	be	AUX
cet-10710	139	7	used	use	VERB
cet-10710	139	8	for	for	ADP
cet-10710	139	9	calculating	calculate	VERB
cet-10710	139	10	pyrolysis	pyrolysis	NOUN
cet-10710	139	11	products	product	NOUN
cet-10710	139	12	without	without	ADP
cet-10710	139	13	the	the	DET
cet-10710	139	14	need	need	NOUN
cet-10710	139	15	for	for	ADP
cet-10710	139	16	experimental	experimental	ADJ
cet-10710	139	17	data	datum	NOUN
cet-10710	139	18	with	with	ADP
cet-10710	139	19	less	less	ADJ
cet-10710	139	20	than	than	ADP
cet-10710	139	21	10	10	NUM
cet-10710	139	22	%	%	NOUN
cet-10710	139	23	difference	difference	NOUN
cet-10710	139	24	in	in	ADP
cet-10710	139	25	oil	oil	NOUN
cet-10710	139	26	product	product	NOUN
cet-10710	139	27	yield	yield	NOUN
cet-10710	139	28	.	.	PUNCT
cet-10710	140	1	the	the	DET
cet-10710	140	2	kinetics	kinetic	NOUN
cet-10710	140	3	will	will	AUX
cet-10710	140	4	determine	determine	VERB
cet-10710	140	5	how	how	SCONJ
cet-10710	140	6	fast	fast	ADV
cet-10710	140	7	the	the	DET
cet-10710	140	8	reaction	reaction	NOUN
cet-10710	140	9	is	be	AUX
cet-10710	140	10	approaching	approach	VERB
cet-10710	140	11	and	and	CCONJ
cet-10710	140	12	the	the	DET
cet-10710	140	13	residence	residence	NOUN
cet-10710	140	14	time	time	NOUN
cet-10710	140	15	will	will	AUX
cet-10710	140	16	determine	determine	VERB
cet-10710	140	17	whether	whether	SCONJ
cet-10710	140	18	the	the	DET
cet-10710	140	19	equilibrium	equilibrium	NOUN
cet-10710	140	20	conditions	condition	NOUN
cet-10710	140	21	are	be	AUX
cet-10710	140	22	obtained	obtain	VERB
cet-10710	140	23	.	.	PUNCT
cet-10710	141	1	the	the	DET
cet-10710	141	2	products	product	NOUN
cet-10710	141	3	of	of	ADP
cet-10710	141	4	the	the	DET
cet-10710	141	5	simulation	simulation	NOUN
cet-10710	141	6	were	be	AUX
cet-10710	141	7	analysed	analyse	VERB
cet-10710	141	8	and	and	CCONJ
cet-10710	141	9	compared	compare	VERB
cet-10710	141	10	with	with	ADP
cet-10710	141	11	the	the	DET
cet-10710	141	12	experiment	experiment	NOUN
cet-10710	141	13	and	and	CCONJ
cet-10710	141	14	showed	show	VERB
cet-10710	141	15	reliable	reliable	ADJ
cet-10710	141	16	results	result	NOUN
cet-10710	141	17	with	with	ADP
cet-10710	141	18	a	a	DET
cet-10710	141	19	significant	significant	ADJ
cet-10710	141	20	trend	trend	NOUN
cet-10710	141	21	as	as	ADP
cet-10710	141	22	an	an	DET
cet-10710	141	23	experimental	experimental	ADJ
cet-10710	141	24	result	result	NOUN
cet-10710	141	25	at	at	ADP
cet-10710	141	26	a	a	DET
cet-10710	141	27	95	95	NUM
cet-10710	141	28	%	%	NOUN
cet-10710	141	29	confidence	confidence	NOUN
cet-10710	141	30	interval	interval	NOUN
cet-10710	141	31	.	.	PUNCT
cet-10710	142	1	this	this	DET
cet-10710	142	2	fast	fast	ADJ
cet-10710	142	3	pyrolysis	pyrolysis	NOUN
cet-10710	142	4	model	model	NOUN
cet-10710	142	5	appeared	appear	VERB
cet-10710	142	6	to	to	PART
cet-10710	142	7	offer	offer	VERB
cet-10710	142	8	rapid	rapid	ADJ
cet-10710	142	9	assessment	assessment	NOUN
cet-10710	142	10	for	for	ADP
cet-10710	142	11	energy	energy	NOUN
cet-10710	142	12	projects	project	NOUN
cet-10710	142	13	associated	associate	VERB
cet-10710	142	14	with	with	ADP
cet-10710	142	15	the	the	DET
cet-10710	142	16	transition	transition	NOUN
cet-10710	142	17	towards	towards	ADP
cet-10710	142	18	low	low	ADJ
cet-10710	142	19	-	-	PUNCT
cet-10710	142	20	carbon	carbon	NOUN
cet-10710	142	21	development	development	NOUN
cet-10710	142	22	in	in	ADP
cet-10710	142	23	asia	asia	PROPN
cet-10710	142	24	.	.	PUNCT
cet-10710	143	1	acknowledgments	acknowledgment	NOUN
cet-10710	143	2	this	this	DET
cet-10710	143	3	research	research	NOUN
cet-10710	143	4	was	be	AUX
cet-10710	143	5	supported	support	VERB
cet-10710	143	6	by	by	ADP
cet-10710	143	7	the	the	DET
cet-10710	143	8	department	department	PROPN
cet-10710	143	9	of	of	ADP
cet-10710	143	10	mechanical	mechanical	ADJ
cet-10710	143	11	engineering	engineering	NOUN
cet-10710	143	12	,	,	PUNCT
cet-10710	143	13	mahidol	mahidol	PROPN
cet-10710	143	14	university	university	PROPN
cet-10710	143	15	,	,	PUNCT
cet-10710	143	16	chiang	chiang	PROPN
cet-10710	143	17	mai	mai	PROPN
cet-10710	143	18	university	university	PROPN
cet-10710	143	19	and	and	CCONJ
cet-10710	143	20	the	the	DET
cet-10710	143	21	energy	energy	NOUN
cet-10710	143	22	2050	2050	NUM
cet-10710	143	23	group	group	NOUN
cet-10710	143	24	at	at	ADP
cet-10710	143	25	the	the	DET
cet-10710	143	26	university	university	PROPN
cet-10710	143	27	of	of	ADP
cet-10710	143	28	sheffield	sheffield	PROPN
cet-10710	143	29	.	.	PUNCT
cet-10710	144	1	references	reference	NOUN
cet-10710	144	2	aspen	aspen	VERB
cet-10710	144	3	plus	plus	CCONJ
cet-10710	144	4	v8	v8	PROPN
cet-10710	144	5	,	,	PUNCT
cet-10710	144	6	2013	2013	NUM
cet-10710	144	7	,	,	PUNCT
cet-10710	144	8	aspen	aspen	PROPN
cet-10710	144	9	technology	technology	PROPN
cet-10710	144	10	inc	inc	PROPN
cet-10710	144	11	.	.	PROPN
cet-10710	144	12	,	,	PUNCT
cet-10710	144	13	houston	houston	PROPN
cet-10710	144	14	,	,	PUNCT
cet-10710	144	15	united	united	PROPN
cet-10710	144	16	states	states	PROPN
cet-10710	144	17	.	.	PUNCT
cet-10710	145	1	bridgwater	bridgwater	PROPN
cet-10710	145	2	a.v	a.v	PROPN
cet-10710	145	3	.	.	PROPN
cet-10710	145	4	,	,	PUNCT
cet-10710	145	5	2012	2012	NUM
cet-10710	145	6	,	,	PUNCT
cet-10710	145	7	review	review	NOUN
cet-10710	145	8	of	of	ADP
cet-10710	145	9	fast	fast	ADJ
cet-10710	145	10	pyrolysis	pyrolysis	NOUN
cet-10710	145	11	of	of	ADP
cet-10710	145	12	biomass	biomass	NOUN
cet-10710	145	13	and	and	CCONJ
cet-10710	145	14	product	product	NOUN
cet-10710	145	15	upgrading	upgrading	NOUN
cet-10710	145	16	,	,	PUNCT
cet-10710	145	17	biomass	biomass	NOUN
cet-10710	145	18	bioenergy	bioenergy	NOUN
cet-10710	145	19	,	,	PUNCT
cet-10710	145	20	38	38	NUM
cet-10710	145	21	,	,	PUNCT
cet-10710	145	22	68–94	68–94	NUM
cet-10710	145	23	.	.	PUNCT
cet-10710	146	1	calonaci	calonaci	PROPN
cet-10710	146	2	m.	m.	PROPN
cet-10710	146	3	,	,	PUNCT
cet-10710	146	4	grana	grana	PROPN
cet-10710	146	5	r.	r.	PROPN
cet-10710	146	6	,	,	PUNCT
cet-10710	146	7	hemings	hemings	PROPN
cet-10710	146	8	e.b	e.b	PROPN
cet-10710	146	9	.	.	PROPN
cet-10710	146	10	,	,	PUNCT
cet-10710	146	11	bozzano	bozzano	PROPN
cet-10710	146	12	g.	g.	PROPN
cet-10710	146	13	,	,	PUNCT
cet-10710	146	14	dente	dente	NOUN
cet-10710	146	15	m.	m.	NOUN
cet-10710	146	16	,	,	PUNCT
cet-10710	146	17	ranzi	ranzi	PROPN
cet-10710	146	18	e	e	PROPN
cet-10710	146	19	,	,	PUNCT
cet-10710	146	20	2010	2010	NUM
cet-10710	146	21	,	,	PUNCT
cet-10710	146	22	comprehensive	comprehensive	ADJ
cet-10710	146	23	kinetic	kinetic	NOUN
cet-10710	146	24	modeling	modeling	NOUN
cet-10710	146	25	study	study	NOUN
cet-10710	146	26	of	of	ADP
cet-10710	146	27	bio	bio	ADJ
cet-10710	146	28	-	-	ADJ
cet-10710	146	29	oil	oil	NOUN
cet-10710	146	30	formation	formation	NOUN
cet-10710	146	31	from	from	ADP
cet-10710	146	32	fast	fast	ADJ
cet-10710	146	33	pyrolysis	pyrolysis	NOUN
cet-10710	146	34	of	of	ADP
cet-10710	146	35	biomass	biomass	NOUN
cet-10710	146	36	,	,	PUNCT
cet-10710	146	37	energy	energy	NOUN
cet-10710	146	38	fuels	fuel	NOUN
cet-10710	146	39	,	,	PUNCT
cet-10710	146	40	24	24	NUM
cet-10710	146	41	,	,	PUNCT
cet-10710	146	42	5727–5734	5727–5734	NUM
cet-10710	146	43	.	.	PUNCT
cet-10710	147	1	corbetta	corbetta	NOUN
cet-10710	147	2	m.	m.	NOUN
cet-10710	147	3	,	,	PUNCT
cet-10710	147	4	pierucci	pierucci	PROPN
cet-10710	147	5	s.	s.	PROPN
cet-10710	147	6	,	,	PUNCT
cet-10710	147	7	ranzi	ranzi	PROPN
cet-10710	147	8	e.	e.	PROPN
cet-10710	147	9	,	,	PUNCT
cet-10710	147	10	bennadji	bennadji	PROPN
cet-10710	147	11	h.	h.	PROPN
cet-10710	147	12	,	,	PUNCT
cet-10710	147	13	fisher	fisher	PROPN
cet-10710	147	14	e.m	e.m	PROPN
cet-10710	147	15	.	.	PROPN
cet-10710	147	16	,	,	PUNCT
cet-10710	147	17	2013	2013	NUM
cet-10710	147	18	,	,	PUNCT
cet-10710	147	19	multistep	multistep	ADJ
cet-10710	147	20	kinetic	kinetic	ADJ
cet-10710	147	21	model	model	NOUN
cet-10710	147	22	of	of	ADP
cet-10710	147	23	biomass	biomass	NOUN
cet-10710	147	24	pyrolysis	pyrolysis	NOUN
cet-10710	147	25	,	,	PUNCT
cet-10710	147	26	xxxvi	xxxvi	PRON
cet-10710	147	27	meeting	meeting	NOUN
cet-10710	147	28	of	of	ADP
cet-10710	147	29	the	the	DET
cet-10710	147	30	italian	italian	ADJ
cet-10710	147	31	section	section	NOUN
cet-10710	147	32	of	of	ADP
cet-10710	147	33	the	the	DET
cet-10710	147	34	combustion	combustion	NOUN
cet-10710	147	35	institute	institute	PROPN
cet-10710	147	36	,	,	PUNCT
cet-10710	147	37	procida	procida	PROPN
cet-10710	147	38	,	,	PUNCT
cet-10710	147	39	italy	italy	PROPN
cet-10710	147	40	.	.	PUNCT
cet-10710	148	1	heo	heo	PROPN
cet-10710	148	2	h.s	h.s	PROPN
cet-10710	148	3	.	.	PROPN
cet-10710	148	4	,	,	PUNCT
cet-10710	148	5	park	park	PROPN
cet-10710	148	6	h.j	h.j	PROPN
cet-10710	148	7	.	.	PROPN
cet-10710	148	8	,	,	PUNCT
cet-10710	148	9	park	park	PROPN
cet-10710	148	10	y.k	y.k	PROPN
cet-10710	148	11	.	.	PROPN
cet-10710	148	12	ryu	ryu	PROPN
cet-10710	148	13	c.	c.	PROPN
cet-10710	148	14	,	,	PUNCT
cet-10710	148	15	suh	suh	PROPN
cet-10710	148	16	d.j	d.j	PROPN
cet-10710	148	17	.	.	PROPN
cet-10710	148	18	,	,	PUNCT
cet-10710	148	19	suh	suh	PROPN
cet-10710	148	20	y.w	y.w	PROPN
cet-10710	148	21	.	.	PROPN
cet-10710	148	22	,	,	PUNCT
cet-10710	148	23	yim	yim	PROPN
cet-10710	148	24	j.h	j.h	PROPN
cet-10710	148	25	.	.	PROPN
cet-10710	148	26	,	,	PUNCT
cet-10710	148	27	kim	kim	PROPN
cet-10710	148	28	s.s	s.s	PROPN
cet-10710	148	29	.	.	PROPN
cet-10710	148	30	,	,	PUNCT
cet-10710	148	31	2010	2010	NUM
cet-10710	148	32	,	,	PUNCT
cet-10710	148	33	bio	bio	ADJ
cet-10710	148	34	-	-	ADJ
cet-10710	148	35	oil	oil	NOUN
cet-10710	148	36	production	production	NOUN
cet-10710	148	37	from	from	ADP
cet-10710	148	38	fast	fast	ADJ
cet-10710	148	39	pyrolysis	pyrolysis	NOUN
cet-10710	148	40	of	of	ADP
cet-10710	148	41	waste	waste	NOUN
cet-10710	148	42	furniture	furniture	NOUN
cet-10710	148	43	sawdust	sawdust	NOUN
cet-10710	148	44	in	in	ADP
cet-10710	148	45	a	a	DET
cet-10710	148	46	fluidised	fluidised	ADJ
cet-10710	148	47	bed	bed	NOUN
cet-10710	148	48	,	,	PUNCT
cet-10710	148	49	bioresource	bioresource	ADJ
cet-10710	148	50	technology	technology	NOUN
cet-10710	148	51	,	,	PUNCT
cet-10710	148	52	101(1	101(1	NUM
cet-10710	148	53	)	)	PUNCT
cet-10710	148	54	,	,	PUNCT
cet-10710	148	55	s91	s91	NOUN
cet-10710	148	56	-	-	PUNCT
cet-10710	148	57	s96	s96	NOUN
cet-10710	148	58	.	.	PUNCT
cet-10710	148	59	jaroenkhasemmeesuk	jaroenkhasemmeesuk	PROPN
cet-10710	148	60	c.	c.	PROPN
cet-10710	148	61	,	,	PUNCT
cet-10710	148	62	diego	diego	PROPN
cet-10710	148	63	m.e	m.e	PROPN
cet-10710	148	64	.	.	PROPN
cet-10710	148	65	,	,	PUNCT
cet-10710	148	66	tippayawong	tippayawong	PROPN
cet-10710	148	67	n.	n.	PROPN
cet-10710	148	68	,	,	PUNCT
cet-10710	148	69	ingham	ingham	PROPN
cet-10710	148	70	d.b	d.b	PROPN
cet-10710	148	71	.	.	PROPN
cet-10710	148	72	,	,	PUNCT
cet-10710	148	73	pourkashanian	pourkashanian	PROPN
cet-10710	148	74	m.	m.	NOUN
cet-10710	148	75	,	,	PUNCT
cet-10710	148	76	2018	2018	NUM
cet-10710	148	77	,	,	PUNCT
cet-10710	148	78	simulation	simulation	NOUN
cet-10710	148	79	analysis	analysis	NOUN
cet-10710	148	80	of	of	ADP
cet-10710	148	81	the	the	DET
cet-10710	148	82	catalytic	catalytic	ADJ
cet-10710	148	83	cracking	cracking	NOUN
cet-10710	148	84	process	process	NOUN
cet-10710	148	85	of	of	ADP
cet-10710	148	86	biomass	biomass	NOUN
cet-10710	148	87	pyrolysis	pyrolysis	NOUN
cet-10710	148	88	oil	oil	NOUN
cet-10710	148	89	with	with	ADP
cet-10710	148	90	mixed	mixed	ADJ
cet-10710	148	91	catalysts	catalyst	NOUN
cet-10710	148	92	:	:	PUNCT
cet-10710	148	93	optimization	optimization	NOUN
cet-10710	148	94	using	use	VERB
cet-10710	148	95	the	the	DET
cet-10710	148	96	simplex	simplex	NOUN
cet-10710	148	97	lattice	lattice	NOUN
cet-10710	148	98	design	design	PROPN
cet-10710	148	99	,	,	PUNCT
cet-10710	148	100	international	international	ADJ
cet-10710	148	101	journal	journal	NOUN
cet-10710	148	102	of	of	ADP
cet-10710	148	103	energy	energy	NOUN
cet-10710	148	104	research	research	NOUN
cet-10710	148	105	,	,	PUNCT
cet-10710	148	106	42(9	42(9	NUM
cet-10710	148	107	)	)	PUNCT
cet-10710	148	108	,	,	PUNCT
cet-10710	148	109	2983	2983	NUM
cet-10710	148	110	-	-	SYM
cet-10710	148	111	2996	2996	NUM
cet-10710	148	112	.	.	PUNCT
cet-10710	149	1	jaroenkhasemmeesuk	jaroenkhasemmeesuk	PROPN
cet-10710	149	2	c.	c.	PROPN
cet-10710	149	3	,	,	PUNCT
cet-10710	149	4	tippayawong	tippayawong	PROPN
cet-10710	149	5	n.	n.	PROPN
cet-10710	149	6	,	,	PUNCT
cet-10710	149	7	2016	2016	NUM
cet-10710	149	8	,	,	PUNCT
cet-10710	149	9	kinetic	kinetic	ADJ
cet-10710	149	10	thermal	thermal	ADJ
cet-10710	149	11	degradation	degradation	NOUN
cet-10710	149	12	kinetics	kinetic	NOUN
cet-10710	149	13	of	of	ADP
cet-10710	149	14	sawdust	sawdust	NOUN
cet-10710	149	15	at	at	ADP
cet-10710	149	16	intermediate	intermediate	ADJ
cet-10710	149	17	heating	heating	NOUN
cet-10710	149	18	rates	rate	NOUN
cet-10710	149	19	,	,	PUNCT
cet-10710	149	20	applied	apply	VERB
cet-10710	149	21	thermal	thermal	ADJ
cet-10710	149	22	engineering	engineering	NOUN
cet-10710	149	23	,	,	PUNCT
cet-10710	149	24	103	103	NUM
cet-10710	149	25	,	,	PUNCT
cet-10710	149	26	170–176	170–176	NUM
cet-10710	149	27	.	.	PUNCT
cet-10710	150	1	jindo	jindo	PROPN
cet-10710	150	2	k.	k.	PROPN
cet-10710	150	3	,	,	PUNCT
cet-10710	150	4	mizumoto	mizumoto	PROPN
cet-10710	150	5	h.	h.	PROPN
cet-10710	150	6	,	,	PUNCT
cet-10710	150	7	sawada	sawada	PROPN
cet-10710	150	8	y.	y.	PROPN
cet-10710	150	9	,	,	PUNCT
cet-10710	150	10	sanchez	sanchez	PROPN
cet-10710	150	11	-	-	PUNCT
cet-10710	150	12	monedero	monedero	PROPN
cet-10710	150	13	m.a	m.a	PROPN
cet-10710	150	14	.	.	PROPN
cet-10710	150	15	,	,	PUNCT
cet-10710	150	16	sonoki	sonoki	PROPN
cet-10710	150	17	t.	t.	PROPN
cet-10710	150	18	,	,	PUNCT
cet-10710	150	19	2014	2014	NUM
cet-10710	150	20	,	,	PUNCT
cet-10710	150	21	physical	physical	ADJ
cet-10710	150	22	and	and	CCONJ
cet-10710	150	23	chemical	chemical	ADJ
cet-10710	150	24	characterization	characterization	NOUN
cet-10710	150	25	of	of	ADP
cet-10710	150	26	biochars	biochar	NOUN
cet-10710	150	27	derived	derive	VERB
cet-10710	150	28	from	from	ADP
cet-10710	150	29	different	different	ADJ
cet-10710	150	30	agricultural	agricultural	ADJ
cet-10710	150	31	residues	residue	NOUN
cet-10710	150	32	,	,	PUNCT
cet-10710	150	33	biogeosciences	biogeoscience	NOUN
cet-10710	150	34	,	,	PUNCT
cet-10710	150	35	11	11	NUM
cet-10710	150	36	,	,	PUNCT
cet-10710	150	37	6613	6613	NUM
cet-10710	150	38	-	-	SYM
cet-10710	150	39	6621	6621	NUM
cet-10710	150	40	.	.	PUNCT
cet-10710	151	1	onarheim	onarheim	PROPN
cet-10710	151	2	k.	k.	PROPN
cet-10710	151	3	,	,	PUNCT
cet-10710	151	4	solantausta	solantausta	PROPN
cet-10710	151	5	y.	y.	PROPN
cet-10710	151	6	,	,	PUNCT
cet-10710	151	7	lehto	lehto	PROPN
cet-10710	151	8	j.	j.	PROPN
cet-10710	151	9	,	,	PUNCT
cet-10710	151	10	2015	2015	NUM
cet-10710	151	11	,	,	PUNCT
cet-10710	151	12	process	process	NOUN
cet-10710	151	13	simulation	simulation	NOUN
cet-10710	151	14	development	development	NOUN
cet-10710	151	15	of	of	ADP
cet-10710	151	16	fast	fast	ADJ
cet-10710	151	17	pyrolysis	pyrolysis	NOUN
cet-10710	151	18	of	of	ADP
cet-10710	151	19	wood	wood	NOUN
cet-10710	151	20	using	use	VERB
cet-10710	151	21	aspen	aspen	PROPN
cet-10710	151	22	plus	plus	NOUN
cet-10710	151	23	,	,	PUNCT
cet-10710	151	24	energy	energy	NOUN
cet-10710	151	25	fuels	fuel	NOUN
cet-10710	151	26	,	,	PUNCT
cet-10710	151	27	29	29	NUM
cet-10710	151	28	,	,	PUNCT
cet-10710	151	29	205−217	205−217	X
cet-10710	151	30	.	.	NOUN
cet-10710	151	31	oyedun	oyedun	PROPN
cet-10710	151	32	a.o	a.o	PROPN
cet-10710	151	33	.	.	PROPN
cet-10710	151	34	,	,	PUNCT
cet-10710	151	35	lam	lam	PROPN
cet-10710	151	36	k.-l	k.-l	PROPN
cet-10710	151	37	.	.	PUNCT
cet-10710	151	38	,	,	PUNCT
cet-10710	151	39	gebreegziabher	gebreegziabher	PROPN
cet-10710	151	40	t.	t.	PROPN
cet-10710	151	41	,	,	PUNCT
cet-10710	151	42	lee	lee	PROPN
cet-10710	151	43	h.k.m	h.k.m	PROPN
cet-10710	151	44	.	.	PUNCT
cet-10710	152	1	and	and	CCONJ
cet-10710	152	2	hui	hui	PROPN
cet-10710	152	3	c.-w	c.-w	PROPN
cet-10710	152	4	.	.	PROPN
cet-10710	152	5	,	,	PUNCT
cet-10710	152	6	2012	2012	NUM
cet-10710	152	7	,	,	PUNCT
cet-10710	152	8	optimisation	optimisation	NOUN
cet-10710	152	9	of	of	ADP
cet-10710	152	10	operating	operate	VERB
cet-10710	152	11	parameters	parameter	NOUN
cet-10710	152	12	in	in	ADP
cet-10710	152	13	multi	multi	ADJ
cet-10710	152	14	-	-	ADJ
cet-10710	152	15	stage	stage	NOUN
cet-10710	152	16	pyrolysis	pyrolysis	NOUN
cet-10710	152	17	,	,	PUNCT
cet-10710	152	18	chemical	chemical	NOUN
cet-10710	152	19	engineering	engineering	NOUN
cet-10710	152	20	transactions	transaction	NOUN
cet-10710	152	21	,	,	PUNCT
cet-10710	152	22	29	29	NUM
cet-10710	152	23	,	,	PUNCT
cet-10710	152	24	655	655	NUM
cet-10710	152	25	-	-	SYM
cet-10710	152	26	660	660	NUM
cet-10710	152	27	pelucchi	pelucchi	ADJ
cet-10710	152	28	m.	m.	NOUN
cet-10710	152	29	,	,	PUNCT
cet-10710	152	30	faravelli	faravelli	PROPN
cet-10710	152	31	t.	t.	PROPN
cet-10710	152	32	,	,	PUNCT
cet-10710	152	33	frassoldati	frassoldati	PROPN
cet-10710	152	34	a.	a.	PROPN
cet-10710	152	35	,	,	PUNCT
cet-10710	152	36	ranzi	ranzi	PROPN
cet-10710	152	37	e.	e.	PROPN
cet-10710	152	38	,	,	PUNCT
cet-10710	152	39	sribala	sribala	PROPN
cet-10710	152	40	g.	g.	PROPN
cet-10710	152	41	,	,	PUNCT
cet-10710	152	42	marin	marin	NOUN
cet-10710	152	43	g.	g.	PROPN
cet-10710	152	44	,	,	PUNCT
cet-10710	152	45	van	van	PROPN
cet-10710	152	46	geem	geem	PROPN
cet-10710	152	47	k.	k.	PROPN
cet-10710	152	48	,	,	PUNCT
cet-10710	152	49	2018	2018	NUM
cet-10710	152	50	,	,	PUNCT
cet-10710	152	51	experimental	experimental	ADJ
cet-10710	152	52	and	and	CCONJ
cet-10710	152	53	kinetic	kinetic	ADJ
cet-10710	152	54	modeling	modeling	NOUN
cet-10710	152	55	study	study	NOUN
cet-10710	152	56	of	of	ADP
cet-10710	152	57	pyrolysis	pyrolysis	NOUN
cet-10710	152	58	and	and	CCONJ
cet-10710	152	59	combustion	combustion	NOUN
cet-10710	152	60	of	of	ADP
cet-10710	152	61	anisole	anisole	NOUN
cet-10710	152	62	,	,	PUNCT
cet-10710	152	63	chemical	chemical	NOUN
cet-10710	152	64	engineering	engineering	NOUN
cet-10710	152	65	transactions	transaction	NOUN
cet-10710	152	66	,	,	PUNCT
cet-10710	152	67	65	65	NUM
cet-10710	152	68	,	,	PUNCT
cet-10710	152	69	127	127	NUM
cet-10710	152	70	-	-	SYM
cet-10710	152	71	132	132	NUM
cet-10710	152	72	.	.	PUNCT
cet-10710	153	1	peters	peters	PROPN
cet-10710	153	2	j.f	j.f	PROPN
cet-10710	153	3	.	.	PROPN
cet-10710	153	4	,	,	PUNCT
cet-10710	153	5	iribarren	iribarren	PROPN
cet-10710	153	6	d.	d.	PROPN
cet-10710	153	7	,	,	PUNCT
cet-10710	153	8	dufour	dufour	PROPN
cet-10710	153	9	j.	j.	PROPN
cet-10710	153	10	,	,	PUNCT
cet-10710	153	11	2014a	2014a	NUM
cet-10710	153	12	,	,	PUNCT
cet-10710	153	13	predictive	predictive	ADJ
cet-10710	153	14	pyrolysis	pyrolysis	NOUN
cet-10710	153	15	process	process	NOUN
cet-10710	153	16	modelling	modelling	NOUN
cet-10710	153	17	in	in	ADP
cet-10710	153	18	aspen	aspen	PROPN
cet-10710	153	19	plus	plus	CCONJ
cet-10710	153	20	®	®	NOUN
cet-10710	153	21	,	,	PUNCT
cet-10710	153	22	european	european	ADJ
cet-10710	153	23	biomass	biomass	NOUN
cet-10710	153	24	conference	conference	NOUN
cet-10710	153	25	and	and	CCONJ
cet-10710	153	26	exhibition	exhibition	NOUN
cet-10710	153	27	,	,	PUNCT
cet-10710	153	28	copenhagen	copenhagen	PROPN
cet-10710	153	29	,	,	PUNCT
cet-10710	153	30	demark	demark	NOUN
cet-10710	153	31	,	,	PUNCT
cet-10710	153	32	21	21	NUM
cet-10710	153	33	.	.	PUNCT
cet-10710	154	1	peters	peters	PROPN
cet-10710	154	2	j.f	j.f	PROPN
cet-10710	154	3	.	.	PROPN
cet-10710	154	4	,	,	PUNCT
cet-10710	154	5	petrakopoulou	petrakopoulou	PROPN
cet-10710	154	6	f.	f.	PROPN
cet-10710	154	7	,	,	PUNCT
cet-10710	154	8	dufour	dufour	PROPN
cet-10710	154	9	j.	j.	PROPN
cet-10710	154	10	,	,	PUNCT
cet-10710	154	11	2014b	2014b	NUM
cet-10710	154	12	,	,	PUNCT
cet-10710	154	13	exergetic	exergetic	ADJ
cet-10710	154	14	analysis	analysis	NOUN
cet-10710	154	15	of	of	ADP
cet-10710	154	16	fast	fast	ADJ
cet-10710	154	17	pyrolysis	pyrolysis	NOUN
cet-10710	154	18	process	process	NOUN
cet-10710	154	19	for	for	ADP
cet-10710	154	20	bio	bio	ADJ
cet-10710	154	21	-	-	ADJ
cet-10710	154	22	oil	oil	NOUN
cet-10710	154	23	production	production	NOUN
cet-10710	154	24	,	,	PUNCT
cet-10710	154	25	fuel	fuel	NOUN
cet-10710	154	26	processing	processing	NOUN
cet-10710	154	27	technology	technology	NOUN
cet-10710	154	28	,	,	PUNCT
cet-10710	154	29	119	119	NUM
cet-10710	154	30	,	,	PUNCT
cet-10710	154	31	245	245	NUM
cet-10710	154	32	-	-	SYM
cet-10710	154	33	255	255	NUM
cet-10710	154	34	.	.	PUNCT
cet-10710	155	1	salehi	salehi	PROPN
cet-10710	155	2	e.	e.	PROPN
cet-10710	155	3	,	,	PUNCT
cet-10710	155	4	abedi	abedi	PROPN
cet-10710	155	5	j.	j.	PROPN
cet-10710	155	6	,	,	PUNCT
cet-10710	155	7	harding	harding	PROPN
cet-10710	155	8	t.g	t.g	PROPN
cet-10710	155	9	.	.	PROPN
cet-10710	155	10	,	,	PUNCT
cet-10710	155	11	seyedeyn	seyedeyn	PROPN
cet-10710	155	12	-	-	PROPN
cet-10710	155	13	azad	azad	PROPN
cet-10710	155	14	f.	f.	PROPN
cet-10710	155	15	,	,	PUNCT
cet-10710	155	16	2013	2013	NUM
cet-10710	155	17	,	,	PUNCT
cet-10710	155	18	bio	bio	NOUN
cet-10710	155	19	-	-	NOUN
cet-10710	155	20	oil	oil	NOUN
cet-10710	155	21	from	from	ADP
cet-10710	155	22	sawdust	sawdust	NOUN
cet-10710	155	23	:	:	PUNCT
cet-10710	155	24	design	design	NOUN
cet-10710	155	25	,	,	PUNCT
cet-10710	155	26	operation	operation	NOUN
cet-10710	155	27	,	,	PUNCT
cet-10710	155	28	and	and	CCONJ
cet-10710	155	29	performance	performance	NOUN
cet-10710	155	30	of	of	ADP
cet-10710	155	31	a	a	DET
cet-10710	155	32	bench	bench	NOUN
cet-10710	155	33	-	-	PUNCT
cet-10710	155	34	scale	scale	NOUN
cet-10710	155	35	fluidized	fluidize	VERB
cet-10710	155	36	-	-	PUNCT
cet-10710	155	37	bed	bed	NOUN
cet-10710	155	38	pyrolysis	pyrolysis	NOUN
cet-10710	155	39	plant	plant	NOUN
cet-10710	155	40	,	,	PUNCT
cet-10710	155	41	energy	energy	NOUN
cet-10710	155	42	fuels	fuel	NOUN
cet-10710	155	43	,	,	PUNCT
cet-10710	155	44	27	27	NUM
cet-10710	155	45	,	,	PUNCT
cet-10710	155	46	3332−3340	3332−3340	NUM
cet-10710	155	47	.	.	PUNCT
cet-10710	155	48	ward	ward	PROPN
cet-10710	155	49	j.	j.	PROPN
cet-10710	155	50	,	,	PUNCT
cet-10710	155	51	rasul	rasul	PROPN
cet-10710	155	52	m.g	m.g	PROPN
cet-10710	155	53	.	.	PROPN
cet-10710	155	54	,	,	PUNCT
cet-10710	155	55	bhuiya	bhuiya	PROPN
cet-10710	155	56	m.m.k	m.m.k	NOUN
cet-10710	155	57	.	.	PUNCT
cet-10710	155	58	,	,	PUNCT
cet-10710	155	59	2014	2014	NUM
cet-10710	155	60	,	,	PUNCT
cet-10710	155	61	energy	energy	NOUN
cet-10710	155	62	recovery	recovery	NOUN
cet-10710	155	63	from	from	ADP
cet-10710	155	64	biomass	biomass	NOUN
cet-10710	155	65	by	by	ADP
cet-10710	155	66	fast	fast	ADJ
cet-10710	155	67	pyrolysis	pyrolysis	NOUN
cet-10710	155	68	,	,	PUNCT
cet-10710	155	69	procedia	procedia	NOUN
cet-10710	155	70	engineering	engineering	NOUN
cet-10710	155	71	,	,	PUNCT
cet-10710	155	72	90	90	NUM
cet-10710	155	73	,	,	PUNCT
cet-10710	155	74	669	669	NUM
cet-10710	155	75	–	–	PUNCT
cet-10710	155	76	674	674	NUM
cet-10710	155	77	.	.	X
cet-10710	155	78	78	78	NUM
