id	sid	tid	token	lemma	pos
fens-395	1	1	microsoft	microsoft	PROPN
fens-395	1	2	word	word	PROPN
fens-395	1	3	3	3	NUM
fens-395	1	4	journal	journal	NOUN
fens-395	1	5	fia	fia	PROPN
fens-395	1	6	nr	nr	PROPN
fens-395	1	7	1	1	NUM
fens-395	1	8	2010	2010	NUM
fens-395	1	9	final_60-63.doc	final_60-63.doc	NOUN
fens-395	1	10	journal	journal	NOUN
fens-395	1	11	food	food	NOUN
fens-395	1	12	and	and	CCONJ
fens-395	1	13	environment	environment	NOUN
fens-395	1	14	safety	safety	NOUN
fens-395	1	15	of	of	ADP
fens-395	1	16	the	the	DET
fens-395	1	17	suceava	suceava	PROPN
fens-395	1	18	university	university	PROPN
fens-395	1	19	–	–	PUNCT
fens-395	1	20	food	food	NOUN
fens-395	1	21	engineering	engineering	NOUN
fens-395	1	22	,	,	PUNCT
fens-395	1	23	year	year	NOUN
fens-395	1	24	ix	ix	PROPN
fens-395	1	25	,	,	PUNCT
fens-395	1	26	no1	no1	PROPN
fens-395	1	27	2010	2010	NUM
fens-395	1	28	64	64	NUM
fens-395	1	29	studies	study	NOUN
fens-395	1	30	regarding	regard	VERB
fens-395	1	31	the	the	DET
fens-395	1	32	efficiency	efficiency	NOUN
fens-395	1	33	of	of	ADP
fens-395	1	34	a	a	DET
fens-395	1	35	direct	direct	ADJ
fens-395	1	36	methanol	methanol	NOUN
fens-395	1	37	fuel	fuel	NOUN
fens-395	1	38	cell	cell	NOUN
fens-395	1	39	(	(	PUNCT
fens-395	1	40	dmfc	dmfc	NOUN
fens-395	1	41	)	)	PUNCT
fens-395	1	42	violeta	violeta	PROPN
fens-395	1	43	vasilache	vasilache	PROPN
fens-395	1	44	stefan	stefan	PROPN
fens-395	1	45	cel	cel	PROPN
fens-395	1	46	mare	mare	PROPN
fens-395	1	47	university	university	PROPN
fens-395	1	48	of	of	ADP
fens-395	1	49	suceava	suceava	PROPN
fens-395	1	50	,	,	PUNCT
fens-395	1	51	faculty	faculty	NOUN
fens-395	1	52	of	of	ADP
fens-395	1	53	food	food	NOUN
fens-395	1	54	engineering	engineering	NOUN
fens-395	1	55	.	.	PUNCT
fens-395	2	1	13	13	NUM
fens-395	2	2	th	th	PROPN
fens-395	2	3	university	university	PROPN
fens-395	2	4	street	street	NOUN
fens-395	2	5	,	,	PUNCT
fens-395	2	6	720229	720229	NUM
fens-395	2	7	,	,	PUNCT
fens-395	2	8	romania	romania	PROPN
fens-395	2	9	,	,	PUNCT
fens-395	2	10	e	e	NOUN
fens-395	2	11	-	-	NOUN
fens-395	2	12	mail	mail	NOUN
fens-395	2	13	adress	adress	NOUN
fens-395	2	14	:	:	PUNCT
fens-395	2	15	violetav@usv.ro	violetav@usv.ro	NOUN
fens-395	2	16	abstract	abstract	NOUN
fens-395	2	17	:	:	PUNCT
fens-395	2	18	combustion	combustion	NOUN
fens-395	2	19	cells	cell	NOUN
fens-395	2	20	are	be	AUX
fens-395	2	21	devices	device	NOUN
fens-395	2	22	which	which	PRON
fens-395	2	23	transform	transform	VERB
fens-395	2	24	chemical	chemical	ADJ
fens-395	2	25	energy	energy	NOUN
fens-395	2	26	into	into	ADP
fens-395	2	27	electric	electric	ADJ
fens-395	2	28	and	and	CCONJ
fens-395	2	29	thermal	thermal	ADJ
fens-395	2	30	energy	energy	NOUN
fens-395	2	31	.	.	PUNCT
fens-395	3	1	there	there	PRON
fens-395	3	2	could	could	AUX
fens-395	3	3	be	be	AUX
fens-395	3	4	an	an	DET
fens-395	3	5	acceptable	acceptable	ADJ
fens-395	3	6	solution	solution	NOUN
fens-395	3	7	to	to	ADP
fens-395	3	8	the	the	DET
fens-395	3	9	problem	problem	NOUN
fens-395	3	10	of	of	ADP
fens-395	3	11	alternative	alternative	ADJ
fens-395	3	12	sources	source	NOUN
fens-395	3	13	of	of	ADP
fens-395	3	14	energy	energy	NOUN
fens-395	3	15	,	,	PUNCT
fens-395	3	16	for	for	ADP
fens-395	3	17	a	a	DET
fens-395	3	18	lot	lot	NOUN
fens-395	3	19	of	of	ADP
fens-395	3	20	practical	practical	ADJ
fens-395	3	21	applications	application	NOUN
fens-395	3	22	.	.	PUNCT
fens-395	4	1	dmfc	dmfc	NOUN
fens-395	4	2	combustion	combustion	NOUN
fens-395	4	3	cell	cell	NOUN
fens-395	4	4	(	(	PUNCT
fens-395	4	5	dmfc	dmfc	NOUN
fens-395	4	6	–	–	PUNCT
fens-395	4	7	direct	direct	ADJ
fens-395	4	8	methanol	methanol	NOUN
fens-395	4	9	fuel	fuel	NOUN
fens-395	4	10	cell	cell	NOUN
fens-395	4	11	)	)	PUNCT
fens-395	4	12	uses	use	VERB
fens-395	4	13	methanol	methanol	NOUN
fens-395	4	14	,	,	PUNCT
fens-395	4	15	instead	instead	ADV
fens-395	4	16	of	of	ADP
fens-395	4	17	hydrogen	hydrogen	NOUN
fens-395	4	18	,	,	PUNCT
fens-395	4	19	so	so	SCONJ
fens-395	4	20	it	it	PRON
fens-395	4	21	works	work	VERB
fens-395	4	22	safely	safely	ADV
fens-395	4	23	.	.	PUNCT
fens-395	5	1	more	more	ADJ
fens-395	5	2	,	,	PUNCT
fens-395	5	3	the	the	DET
fens-395	5	4	storage	storage	NOUN
fens-395	5	5	of	of	ADP
fens-395	5	6	combustible	combustible	NOUN
fens-395	5	7	does	do	AUX
fens-395	5	8	not	not	PART
fens-395	5	9	represent	represent	VERB
fens-395	5	10	a	a	DET
fens-395	5	11	difficult	difficult	ADJ
fens-395	5	12	problem	problem	NOUN
fens-395	5	13	,	,	PUNCT
fens-395	5	14	like	like	ADP
fens-395	5	15	the	the	DET
fens-395	5	16	hydrogen	hydrogen	NOUN
fens-395	5	17	storage	storage	NOUN
fens-395	5	18	presents	present	NOUN
fens-395	5	19	.	.	PUNCT
fens-395	6	1	a	a	DET
fens-395	6	2	reforming	reform	VERB
fens-395	6	3	device	device	NOUN
fens-395	6	4	is	be	AUX
fens-395	6	5	not	not	PART
fens-395	6	6	necessary	necessary	ADJ
fens-395	6	7	,	,	PUNCT
fens-395	6	8	because	because	SCONJ
fens-395	6	9	the	the	DET
fens-395	6	10	cell	cell	NOUN
fens-395	6	11	itself	itself	PRON
fens-395	6	12	transforms	transform	VERB
fens-395	6	13	methanol	methanol	NOUN
fens-395	6	14	into	into	ADP
fens-395	6	15	hydrogen	hydrogen	NOUN
fens-395	6	16	protons	proton	NOUN
fens-395	6	17	,	,	PUNCT
fens-395	6	18	free	free	ADJ
fens-395	6	19	electrons	electron	NOUN
fens-395	6	20	and	and	CCONJ
fens-395	6	21	co2	co2	NOUN
fens-395	6	22	.	.	PUNCT
fens-395	7	1	the	the	DET
fens-395	7	2	absence	absence	NOUN
fens-395	7	3	of	of	ADP
fens-395	7	4	reforming	reform	VERB
fens-395	7	5	device	device	NOUN
fens-395	7	6	make	make	VERB
fens-395	7	7	this	this	DET
fens-395	7	8	type	type	NOUN
fens-395	7	9	of	of	ADP
fens-395	7	10	cell	cell	NOUN
fens-395	7	11	more	more	ADV
fens-395	7	12	adapted	adapt	VERB
fens-395	7	13	for	for	ADP
fens-395	7	14	automotive	automotive	ADJ
fens-395	7	15	applications	application	NOUN
fens-395	7	16	where	where	SCONJ
fens-395	7	17	the	the	DET
fens-395	7	18	objective	objective	NOUN
fens-395	7	19	is	be	AUX
fens-395	7	20	to	to	PART
fens-395	7	21	have	have	VERB
fens-395	7	22	a	a	DET
fens-395	7	23	simple	simple	ADJ
fens-395	7	24	source	source	NOUN
fens-395	7	25	of	of	ADP
fens-395	7	26	electric	electric	ADJ
fens-395	7	27	power	power	NOUN
fens-395	7	28	.	.	PUNCT
fens-395	8	1	a	a	DET
fens-395	8	2	polymeric	polymeric	ADJ
fens-395	8	3	membrane	membrane	NOUN
fens-395	8	4	which	which	PRON
fens-395	8	5	could	could	AUX
fens-395	8	6	conduct	conduct	VERB
fens-395	8	7	protons	proton	NOUN
fens-395	8	8	is	be	AUX
fens-395	8	9	used	use	VERB
fens-395	8	10	as	as	ADP
fens-395	8	11	electrolyte	electrolyte	NOUN
fens-395	8	12	.	.	PUNCT
fens-395	9	1	the	the	DET
fens-395	9	2	technology	technology	NOUN
fens-395	9	3	dmfc	dmfc	NOUN
fens-395	9	4	(	(	PUNCT
fens-395	9	5	direct	direct	ADJ
fens-395	9	6	methanol	methanol	NOUN
fens-395	9	7	fuel	fuel	NOUN
fens-395	9	8	cell	cell	NOUN
fens-395	9	9	)	)	PUNCT
fens-395	9	10	is	be	AUX
fens-395	9	11	in	in	ADP
fens-395	9	12	fact	fact	NOUN
fens-395	9	13	a	a	DET
fens-395	9	14	variant	variant	NOUN
fens-395	9	15	of	of	ADP
fens-395	9	16	pemfc	pemfc	ADJ
fens-395	9	17	(	(	PUNCT
fens-395	9	18	polymer	polymer	NOUN
fens-395	9	19	electrolyte	electrolyte	NOUN
fens-395	9	20	membrane	membrane	NOUN
fens-395	9	21	fuel	fuel	NOUN
fens-395	9	22	cell	cell	NOUN
fens-395	9	23	)	)	PUNCT
fens-395	9	24	technology	technology	NOUN
fens-395	9	25	,	,	PUNCT
fens-395	9	26	which	which	PRON
fens-395	9	27	was	be	AUX
fens-395	9	28	developed	develop	VERB
fens-395	9	29	having	have	VERB
fens-395	9	30	hydrogen	hydrogen	NOUN
fens-395	9	31	as	as	ADP
fens-395	9	32	combustible	combustible	ADJ
fens-395	9	33	.	.	PUNCT
fens-395	10	1	using	use	VERB
fens-395	10	2	chemical	chemical	ADJ
fens-395	10	3	reactions	reaction	NOUN
fens-395	10	4	,	,	PUNCT
fens-395	10	5	the	the	DET
fens-395	10	6	efficiency	efficiency	NOUN
fens-395	10	7	was	be	AUX
fens-395	10	8	calculated	calculate	VERB
fens-395	10	9	theoretically	theoretically	ADV
fens-395	10	10	to	to	PART
fens-395	10	11	find	find	VERB
fens-395	10	12	the	the	DET
fens-395	10	13	possibilities	possibility	NOUN
fens-395	10	14	of	of	ADP
fens-395	10	15	increasing	increase	VERB
fens-395	10	16	it	it	PRON
fens-395	10	17	.	.	PUNCT
fens-395	11	1	thermodynamic	thermodynamic	ADJ
fens-395	11	2	considerations	consideration	NOUN
fens-395	11	3	were	be	AUX
fens-395	11	4	also	also	ADV
fens-395	11	5	used	use	VERB
fens-395	11	6	to	to	PART
fens-395	11	7	complete	complete	VERB
fens-395	11	8	the	the	DET
fens-395	11	9	efficiency	efficiency	NOUN
fens-395	11	10	study	study	NOUN
fens-395	11	11	.	.	PUNCT
fens-395	12	1	finally	finally	ADV
fens-395	12	2	,	,	PUNCT
fens-395	12	3	using	use	VERB
fens-395	12	4	scientific	scientific	ADJ
fens-395	12	5	data	datum	NOUN
fens-395	12	6	,	,	PUNCT
fens-395	12	7	a	a	DET
fens-395	12	8	calculus	calculus	NOUN
fens-395	12	9	was	be	AUX
fens-395	12	10	performed	perform	VERB
fens-395	12	11	.	.	PUNCT
fens-395	13	1	keywords	keyword	NOUN
fens-395	13	2	:	:	PUNCT
fens-395	13	3	methanol	methanol	NOUN
fens-395	13	4	fuel	fuel	NOUN
fens-395	13	5	cell	cell	NOUN
fens-395	13	6	,	,	PUNCT
fens-395	13	7	material	material	NOUN
fens-395	13	8	and	and	CCONJ
fens-395	13	9	energy	energy	NOUN
fens-395	13	10	balance	balance	NOUN
fens-395	13	11	,	,	PUNCT
fens-395	13	12	thermodynamic	thermodynamic	ADJ
fens-395	13	13	introduction	introduction	NOUN
fens-395	13	14	(	(	PUNCT
fens-395	13	15	actual	actual	ADJ
fens-395	13	16	state	state	NOUN
fens-395	13	17	of	of	ADP
fens-395	13	18	research	research	NOUN
fens-395	13	19	)	)	PUNCT
fens-395	13	20	surampidi	surampidi	NOUN
fens-395	13	21	and	and	CCONJ
fens-395	13	22	co.	co.	PROPN
fens-395	13	23	have	have	AUX
fens-395	13	24	studied	study	VERB
fens-395	13	25	the	the	DET
fens-395	13	26	effect	effect	NOUN
fens-395	13	27	of	of	ADP
fens-395	13	28	temperature	temperature	NOUN
fens-395	13	29	and	and	CCONJ
fens-395	13	30	of	of	ADP
fens-395	13	31	the	the	DET
fens-395	13	32	methanol	methanol	NOUN
fens-395	13	33	concentration	concentration	NOUN
fens-395	13	34	through	through	ADP
fens-395	13	35	efficiency	efficiency	NOUN
fens-395	13	36	in	in	ADP
fens-395	13	37	a	a	DET
fens-395	13	38	dmfc	dmfc	NOUN
fens-395	13	39	.	.	PUNCT
fens-395	14	1	the	the	DET
fens-395	14	2	performances	performance	NOUN
fens-395	14	3	were	be	AUX
fens-395	14	4	measured	measure	VERB
fens-395	14	5	at	at	ADP
fens-395	14	6	30ºc	30ºc	ADJ
fens-395	14	7	,	,	PUNCT
fens-395	14	8	60ºc	60ºc	ADJ
fens-395	14	9	and	and	CCONJ
fens-395	14	10	90	90	NUM
fens-395	14	11	°	°	NOUN
fens-395	14	12	c	c	NOUN
fens-395	14	13	respectively	respectively	ADV
fens-395	14	14	,	,	PUNCT
fens-395	14	15	and	and	CCONJ
fens-395	14	16	the	the	DET
fens-395	14	17	results	result	NOUN
fens-395	14	18	prove	prove	VERB
fens-395	14	19	an	an	DET
fens-395	14	20	increase	increase	NOUN
fens-395	14	21	of	of	ADP
fens-395	14	22	performances	performance	NOUN
fens-395	14	23	with	with	ADP
fens-395	14	24	increasing	increase	VERB
fens-395	14	25	the	the	DET
fens-395	14	26	temperature	temperature	NOUN
fens-395	14	27	.	.	PUNCT
fens-395	15	1	they	they	PRON
fens-395	15	2	worked	work	VERB
fens-395	15	3	with	with	ADP
fens-395	15	4	concentrations	concentration	NOUN
fens-395	15	5	of	of	ADP
fens-395	15	6	0,5	0,5	NUM
fens-395	15	7	,	,	PUNCT
fens-395	15	8	2,0	2,0	NUM
fens-395	15	9	and	and	CCONJ
fens-395	15	10	4,0	4,0	NUM
fens-395	15	11	m	m	NOUN
fens-395	15	12	;	;	PUNCT
fens-395	15	13	higher	high	ADJ
fens-395	15	14	voltage	voltage	NOUN
fens-395	15	15	was	be	AUX
fens-395	15	16	obtained	obtain	VERB
fens-395	15	17	for	for	ADP
fens-395	15	18	2,0	2,0	NUM
fens-395	15	19	m	m	NOUN
fens-395	15	20	concentration	concentration	NOUN
fens-395	15	21	when	when	SCONJ
fens-395	15	22	the	the	DET
fens-395	15	23	current	current	ADJ
fens-395	15	24	density	density	NOUN
fens-395	15	25	was	be	AUX
fens-395	15	26	higher	high	ADJ
fens-395	15	27	too	too	ADV
fens-395	15	28	.	.	PUNCT
fens-395	16	1	optimal	optimal	ADJ
fens-395	16	2	concentration	concentration	NOUN
fens-395	16	3	was	be	AUX
fens-395	16	4	between	between	ADP
fens-395	16	5	0,5	0,5	NUM
fens-395	16	6	and	and	CCONJ
fens-395	16	7	2,0	2,0	NUM
fens-395	16	8	m.	m.	NOUN
fens-395	16	9	jung	jung	PROPN
fens-395	16	10	and	and	CCONJ
fens-395	16	11	co.	co.	PROPN
fens-395	16	12	studied	study	VERB
fens-395	16	13	the	the	DET
fens-395	16	14	effect	effect	NOUN
fens-395	16	15	of	of	ADP
fens-395	16	16	working	work	VERB
fens-395	16	17	temperature	temperature	NOUN
fens-395	16	18	for	for	ADP
fens-395	16	19	the	the	DET
fens-395	16	20	range	range	NOUN
fens-395	16	21	60	60	NUM
fens-395	16	22	-	-	SYM
fens-395	16	23	120	120	NUM
fens-395	16	24	°	°	NUM
fens-395	16	25	c	c	NOUN
fens-395	16	26	and	and	CCONJ
fens-395	16	27	of	of	ADP
fens-395	16	28	the	the	DET
fens-395	16	29	methanol	methanol	NOUN
fens-395	16	30	concentration	concentration	NOUN
fens-395	16	31	for	for	ADP
fens-395	16	32	the	the	DET
fens-395	16	33	range	range	NOUN
fens-395	16	34	0,54,0	0,54,0	NUM
fens-395	16	35	m.	m.	NOUN
fens-395	16	36	the	the	DET
fens-395	16	37	methanol	methanol	NOUN
fens-395	16	38	flow	flow	NOUN
fens-395	16	39	on	on	ADP
fens-395	16	40	anode	anode	NOUN
fens-395	16	41	was	be	AUX
fens-395	16	42	9	9	NUM
fens-395	16	43	ml	ml	NOUN
fens-395	16	44	/	/	SYM
fens-395	16	45	min	min	NOUN
fens-395	16	46	and	and	CCONJ
fens-395	16	47	the	the	DET
fens-395	16	48	pure	pure	ADJ
fens-395	16	49	oxygen	oxygen	NOUN
fens-395	16	50	flow	flow	NOUN
fens-395	16	51	was	be	AUX
fens-395	16	52	105	105	NUM
fens-395	16	53	sccm	sccm	NOUN
fens-395	16	54	.	.	PUNCT
fens-395	17	1	the	the	DET
fens-395	17	2	results	result	NOUN
fens-395	17	3	also	also	ADV
fens-395	17	4	confirmed	confirm	VERB
fens-395	17	5	the	the	DET
fens-395	17	6	fact	fact	NOUN
fens-395	17	7	that	that	SCONJ
fens-395	17	8	performances	performance	NOUN
fens-395	17	9	of	of	ADP
fens-395	17	10	the	the	DET
fens-395	17	11	cell	cell	NOUN
fens-395	17	12	are	be	AUX
fens-395	17	13	increasing	increase	VERB
fens-395	17	14	with	with	ADP
fens-395	17	15	temperature	temperature	NOUN
fens-395	17	16	and	and	CCONJ
fens-395	17	17	the	the	DET
fens-395	17	18	optimal	optimal	ADJ
fens-395	17	19	concentration	concentration	NOUN
fens-395	17	20	was	be	AUX
fens-395	17	21	2,5	2,5	NUM
fens-395	17	22	m.	m.	NOUN
fens-395	17	23	nakagawa	nakagawa	PROPN
fens-395	17	24	and	and	CCONJ
fens-395	17	25	xiu	xiu	PROPN
fens-395	17	26	studied	study	VERB
fens-395	17	27	a	a	DET
fens-395	17	28	cell	cell	NOUN
fens-395	17	29	in	in	ADP
fens-395	17	30	the	the	DET
fens-395	17	31	temperatures	temperature	NOUN
fens-395	17	32	range	range	VERB
fens-395	17	33	from	from	ADP
fens-395	17	34	30ºc	30ºc	NOUN
fens-395	17	35	to	to	ADP
fens-395	17	36	100	100	NUM
fens-395	17	37	°	°	NOUN
fens-395	17	38	c	c	NOUN
fens-395	17	39	and	and	CCONJ
fens-395	17	40	the	the	DET
fens-395	17	41	effect	effect	NOUN
fens-395	17	42	of	of	ADP
fens-395	17	43	proportion	proportion	NOUN
fens-395	17	44	of	of	ADP
fens-395	17	45	oxidant	oxidant	ADJ
fens-395	17	46	gas	gas	NOUN
fens-395	17	47	(	(	PUNCT
fens-395	17	48	air	air	NOUN
fens-395	17	49	and	and	CCONJ
fens-395	17	50	pure	pure	ADJ
fens-395	17	51	oxygen	oxygen	NOUN
fens-395	17	52	respectively)[1,2,3,4	respectively)[1,2,3,4	NOUN
fens-395	17	53	]	]	X
fens-395	17	54	.	.	PUNCT
fens-395	18	1	recent	recent	ADJ
fens-395	18	2	studies	study	NOUN
fens-395	18	3	at	at	ADP
fens-395	18	4	los	los	PROPN
fens-395	18	5	alamos	alamos	PROPN
fens-395	18	6	national	national	PROPN
fens-395	18	7	laboratory	laboratory	PROPN
fens-395	18	8	(	(	PUNCT
fens-395	18	9	lanl	lanl	PROPN
fens-395	18	10	)	)	PUNCT
fens-395	18	11	focalized	focalize	VERB
fens-395	18	12	on	on	ADP
fens-395	18	13	possible	possible	ADJ
fens-395	18	14	applications	application	NOUN
fens-395	18	15	of	of	ADP
fens-395	18	16	dmfc	dmfc	NOUN
fens-395	18	17	as	as	ADP
fens-395	18	18	principal	principal	NOUN
fens-395	18	19	and	and	CCONJ
fens-395	18	20	auxiliary	auxiliary	ADJ
fens-395	18	21	power	power	NOUN
fens-395	18	22	source	source	NOUN
fens-395	18	23	for	for	ADP
fens-395	18	24	vehicles	vehicle	NOUN
fens-395	18	25	and	and	CCONJ
fens-395	18	26	as	as	ADP
fens-395	18	27	a	a	DET
fens-395	18	28	portable	portable	ADJ
fens-395	18	29	power	power	NOUN
fens-395	18	30	source	source	NOUN
fens-395	18	31	for	for	ADP
fens-395	18	32	the	the	DET
fens-395	18	33	range	range	NOUN
fens-395	18	34	1100	1100	NUM
fens-395	18	35	w.	w.	NOUN
fens-395	18	36	the	the	DET
fens-395	18	37	conditions	condition	NOUN
fens-395	18	38	in	in	ADP
fens-395	18	39	exploitation	exploitation	NOUN
fens-395	18	40	force	force	NOUN
fens-395	18	41	some	some	DET
fens-395	18	42	restrictions	restriction	NOUN
fens-395	18	43	,	,	PUNCT
fens-395	18	44	so	so	ADV
fens-395	18	45	working	work	VERB
fens-395	18	46	temperatures	temperature	NOUN
fens-395	18	47	have	have	VERB
fens-395	18	48	not	not	PART
fens-395	18	49	to	to	PART
fens-395	18	50	be	be	AUX
fens-395	18	51	higher	high	ADJ
fens-395	18	52	than	than	ADP
fens-395	18	53	100	100	NUM
fens-395	18	54	°	°	NOUN
fens-395	18	55	c	c	NOUN
fens-395	18	56	and	and	CCONJ
fens-395	18	57	the	the	DET
fens-395	18	58	consumption	consumption	NOUN
fens-395	18	59	of	of	ADP
fens-395	18	60	precious	precious	ADJ
fens-395	18	61	metals	metal	NOUN
fens-395	18	62	has	have	VERB
fens-395	18	63	to	to	PART
fens-395	18	64	be	be	AUX
fens-395	18	65	reduced	reduce	VERB
fens-395	18	66	at	at	ADP
fens-395	18	67	minimum	minimum	NOUN
fens-395	18	68	.	.	PUNCT
fens-395	19	1	for	for	ADP
fens-395	19	2	portable	portable	ADJ
fens-395	19	3	power	power	NOUN
fens-395	19	4	sources	source	NOUN
fens-395	19	5	the	the	DET
fens-395	19	6	temperature	temperature	NOUN
fens-395	19	7	should	should	AUX
fens-395	19	8	not	not	PART
fens-395	19	9	exceed	exceed	VERB
fens-395	19	10	80	80	NUM
fens-395	19	11	°	°	NOUN
fens-395	19	12	c	c	NOUN
fens-395	19	13	,	,	PUNCT
fens-395	19	14	but	but	CCONJ
fens-395	19	15	the	the	DET
fens-395	19	16	power	power	NOUN
fens-395	19	17	demands	demand	NOUN
fens-395	19	18	are	be	AUX
fens-395	19	19	reduced	reduce	VERB
fens-395	19	20	,	,	PUNCT
fens-395	19	21	journal	journal	NOUN
fens-395	19	22	food	food	NOUN
fens-395	19	23	and	and	CCONJ
fens-395	19	24	environment	environment	NOUN
fens-395	19	25	safety	safety	NOUN
fens-395	19	26	of	of	ADP
fens-395	19	27	the	the	DET
fens-395	19	28	suceava	suceava	PROPN
fens-395	19	29	university	university	PROPN
fens-395	19	30	–	–	PUNCT
fens-395	19	31	food	food	NOUN
fens-395	19	32	engineering	engineering	NOUN
fens-395	19	33	,	,	PUNCT
fens-395	19	34	year	year	NOUN
fens-395	19	35	ix	ix	PROPN
fens-395	19	36	,	,	PUNCT
fens-395	19	37	no1	no1	PROPN
fens-395	19	38	2010	2010	NUM
fens-395	19	39	65	65	NUM
fens-395	19	40	fact	fact	NOUN
fens-395	19	41	that	that	SCONJ
fens-395	19	42	imposes	impose	VERB
fens-395	19	43	a	a	DET
fens-395	19	44	decreasing	decreasing	NOUN
fens-395	19	45	of	of	ADP
fens-395	19	46	consumption	consumption	NOUN
fens-395	19	47	of	of	ADP
fens-395	19	48	noble	noble	ADJ
fens-395	19	49	metals	metal	NOUN
fens-395	19	50	[	[	X
fens-395	19	51	5,6	5,6	NUM
fens-395	19	52	]	]	PUNCT
fens-395	19	53	.	.	PUNCT
fens-395	20	1	theory	theory	NOUN
fens-395	20	2	,	,	PUNCT
fens-395	20	3	studies	study	NOUN
fens-395	20	4	,	,	PUNCT
fens-395	20	5	results	result	NOUN
fens-395	20	6	and	and	CCONJ
fens-395	20	7	discussion	discussion	NOUN
fens-395	20	8	function	function	NOUN
fens-395	20	9	of	of	ADP
fens-395	20	10	a	a	DET
fens-395	20	11	dmfc	dmfc	NOUN
fens-395	20	12	is	be	AUX
fens-395	20	13	based	base	VERB
fens-395	20	14	on	on	ADP
fens-395	20	15	next	next	ADJ
fens-395	20	16	phases	phase	NOUN
fens-395	20	17	:	:	PUNCT
fens-395	20	18	phase1	phase1	NOUN
fens-395	20	19	.	.	PUNCT
fens-395	21	1	those	those	DET
fens-395	21	2	two	two	NUM
fens-395	21	3	gases	gas	NOUN
fens-395	21	4	,	,	PUNCT
fens-395	21	5	oxygen	oxygen	NOUN
fens-395	21	6	(	(	PUNCT
fens-395	21	7	air	air	NOUN
fens-395	21	8	)	)	PUNCT
fens-395	21	9	and	and	CCONJ
fens-395	21	10	methanol	methanol	NOUN
fens-395	21	11	,	,	PUNCT
fens-395	21	12	maintained	maintain	VERB
fens-395	21	13	in	in	ADP
fens-395	21	14	two	two	NUM
fens-395	21	15	separated	separate	VERB
fens-395	21	16	tanks	tank	NOUN
fens-395	21	17	–	–	PUNCT
fens-395	21	18	oxygen	oxygen	NOUN
fens-395	21	19	on	on	ADP
fens-395	21	20	the	the	DET
fens-395	21	21	cathode	cathode	NOUN
fens-395	21	22	side	side	NOUN
fens-395	21	23	and	and	CCONJ
fens-395	21	24	methanol	methanol	NOUN
fens-395	21	25	on	on	ADP
fens-395	21	26	anode	anode	NOUN
fens-395	21	27	side	side	NOUN
fens-395	21	28	,	,	PUNCT
fens-395	21	29	flow	flow	NOUN
fens-395	21	30	from	from	ADP
fens-395	21	31	tank	tank	NOUN
fens-395	21	32	to	to	ADP
fens-395	21	33	catalyzer	catalyzer	NOUN
fens-395	21	34	.	.	PUNCT
fens-395	22	1	phase2	phase2	PROPN
fens-395	22	2	.	.	PUNCT
fens-395	23	1	methanol	methanol	NOUN
fens-395	23	2	(	(	PUNCT
fens-395	23	3	ch3oh	ch3oh	NUM
fens-395	23	4	)	)	PUNCT
fens-395	23	5	reacts	react	NOUN
fens-395	23	6	with	with	ADP
fens-395	23	7	water	water	NOUN
fens-395	23	8	forming	form	VERB
fens-395	23	9	carbon	carbon	NOUN
fens-395	23	10	dioxide	dioxide	NOUN
fens-395	23	11	and	and	CCONJ
fens-395	23	12	hydrogen	hydrogen	NOUN
fens-395	23	13	.	.	PUNCT
fens-395	24	1	at	at	ADP
fens-395	24	2	catalyzer	catalyzer	NOUN
fens-395	24	3	side	side	NOUN
fens-395	24	4	,	,	PUNCT
fens-395	24	5	hydrogen	hydrogen	NOUN
fens-395	24	6	is	be	AUX
fens-395	24	7	decomposed	decompose	VERB
fens-395	24	8	into	into	ADP
fens-395	24	9	two	two	NUM
fens-395	24	10	atoms	atom	NOUN
fens-395	24	11	of	of	ADP
fens-395	24	12	h+	h+	X
fens-395	24	13	(	(	PUNCT
fens-395	24	14	protons	proton	NOUN
fens-395	24	15	)	)	PUNCT
fens-395	24	16	and	and	CCONJ
fens-395	24	17	every	every	DET
fens-395	24	18	atom	atom	NOUN
fens-395	24	19	yields	yield	VERB
fens-395	24	20	its	its	PRON
fens-395	24	21	electron	electron	NOUN
fens-395	24	22	in	in	ADP
fens-395	24	23	this	this	PRON
fens-395	24	24	process[7,8	process[7,8	PROPN
fens-395	24	25	]	]	PUNCT
fens-395	24	26	.	.	PUNCT
fens-395	25	1	phase3	phase3	NOUN
fens-395	25	2	.	.	PUNCT
fens-395	26	1	protons	proton	NOUN
fens-395	26	2	pass	pass	VERB
fens-395	26	3	through	through	ADP
fens-395	26	4	electrolyte	electrolyte	NOUN
fens-395	26	5	(	(	PUNCT
fens-395	26	6	polymeric	polymeric	ADJ
fens-395	26	7	membrane	membrane	NOUN
fens-395	26	8	capable	capable	ADJ
fens-395	26	9	to	to	PART
fens-395	26	10	conduct	conduct	VERB
fens-395	26	11	protons	proton	NOUN
fens-395	26	12	)	)	PUNCT
fens-395	26	13	and	and	CCONJ
fens-395	26	14	displace	displace	VERB
fens-395	26	15	to	to	PART
fens-395	26	16	cathode	cathode	VERB
fens-395	26	17	.	.	PUNCT
fens-395	27	1	phase4	phase4	NOUN
fens-395	27	2	.	.	PUNCT
fens-395	28	1	electrons	electron	NOUN
fens-395	28	2	migrate	migrate	VERB
fens-395	28	3	from	from	ADP
fens-395	28	4	anode	anode	NOUN
fens-395	28	5	to	to	ADP
fens-395	28	6	cathode	cathode	VERB
fens-395	28	7	and	and	CCONJ
fens-395	28	8	generate	generate	VERB
fens-395	28	9	an	an	DET
fens-395	28	10	electric	electric	ADJ
fens-395	28	11	current	current	ADJ
fens-395	28	12	(	(	PUNCT
fens-395	28	13	electric	electric	ADJ
fens-395	28	14	power	power	NOUN
fens-395	28	15	)	)	PUNCT
fens-395	28	16	.	.	PUNCT
fens-395	29	1	phase5	phase5	PROPN
fens-395	29	2	.	.	PUNCT
fens-395	30	1	at	at	ADP
fens-395	30	2	contact	contact	NOUN
fens-395	30	3	with	with	ADP
fens-395	30	4	cathode	cathode	NOUN
fens-395	30	5	,	,	PUNCT
fens-395	30	6	four	four	NUM
fens-395	30	7	electrons	electron	NOUN
fens-395	30	8	always	always	ADV
fens-395	30	9	recombine	recombine	VERB
fens-395	30	10	with	with	ADP
fens-395	30	11	an	an	DET
fens-395	30	12	oxygen	oxygen	NOUN
fens-395	30	13	molecule	molecule	NOUN
fens-395	30	14	.	.	PUNCT
fens-395	31	1	phase6	phase6	NOUN
fens-395	31	2	.	.	PUNCT
fens-395	32	1	just	just	ADV
fens-395	32	2	formed	form	VERB
fens-395	32	3	oxygen	oxygen	NOUN
fens-395	32	4	ions	ion	NOUN
fens-395	32	5	have	have	VERB
fens-395	32	6	a	a	DET
fens-395	32	7	negative	negative	ADJ
fens-395	32	8	electric	electric	ADJ
fens-395	32	9	charge	charge	NOUN
fens-395	32	10	,	,	PUNCT
fens-395	32	11	and	and	CCONJ
fens-395	32	12	furthermore	furthermore	ADV
fens-395	32	13	react	react	VERB
fens-395	32	14	with	with	ADP
fens-395	32	15	protons	proton	NOUN
fens-395	32	16	forming	form	VERB
fens-395	32	17	water	water	NOUN
fens-395	32	18	.	.	PUNCT
fens-395	33	1	the	the	DET
fens-395	33	2	chemical	chemical	ADJ
fens-395	33	3	reactions	reaction	NOUN
fens-395	33	4	occurring	occur	VERB
fens-395	33	5	are	be	AUX
fens-395	33	6	:	:	PUNCT
fens-395	33	7	at	at	ADP
fens-395	33	8	anode	anode	ADJ
fens-395	33	9	side	side	NOUN
fens-395	33	10	:	:	PUNCT
fens-395	33	11	ch3oh	ch3oh	PROPN
fens-395	33	12	+	+	NUM
fens-395	33	13	h2o	h2o	NOUN
fens-395	33	14	→	→	PUNCT
fens-395	33	15	co2	co2	NOUN
fens-395	33	16	+	+	X
fens-395	33	17	6h+	6h+	NUM
fens-395	34	1	+	+	NUM
fens-395	34	2	6e	6e	NUM
fens-395	34	3	(	(	PUNCT
fens-395	34	4	oxidation	oxidation	NOUN
fens-395	34	5	)	)	PUNCT
fens-395	34	6	(	(	PUNCT
fens-395	34	7	1	1	X
fens-395	34	8	)	)	PUNCT
fens-395	34	9	at	at	ADP
fens-395	34	10	cathode	cathode	NOUN
fens-395	34	11	side	side	NOUN
fens-395	34	12	:	:	PUNCT
fens-395	34	13	3/2o2	3/2o2	NUM
fens-395	34	14	+	+	CCONJ
fens-395	34	15	6h+	6h+	NUM
fens-395	34	16	+	+	NUM
fens-395	34	17	6e→	6e→	NUM
fens-395	34	18	3h2o	3h2o	NUM
fens-395	34	19	(	(	PUNCT
fens-395	34	20	reduction	reduction	NOUN
fens-395	34	21	)	)	PUNCT
fens-395	34	22	(	(	PUNCT
fens-395	34	23	2	2	X
fens-395	34	24	)	)	PUNCT
fens-395	34	25	total	total	ADJ
fens-395	34	26	reaction	reaction	NOUN
fens-395	34	27	:	:	PUNCT
fens-395	34	28	ch3oh	ch3oh	ADV
fens-395	35	1	+	+	NUM
fens-395	35	2	3/2o2	3/2o2	NUM
fens-395	35	3	→	→	SYM
fens-395	35	4	co2	co2	NOUN
fens-395	35	5	+	+	CCONJ
fens-395	35	6	2h2o	2h2o	NOUN
fens-395	35	7	(	(	PUNCT
fens-395	35	8	3	3	X
fens-395	35	9	)	)	PUNCT
fens-395	35	10	the	the	DET
fens-395	35	11	efficiency	efficiency	NOUN
fens-395	35	12	of	of	ADP
fens-395	35	13	a	a	DET
fens-395	35	14	combustion	combustion	NOUN
fens-395	35	15	cell	cell	NOUN
fens-395	35	16	can	can	AUX
fens-395	35	17	be	be	AUX
fens-395	35	18	measured	measure	VERB
fens-395	35	19	by	by	ADP
fens-395	35	20	measuring	measure	VERB
fens-395	35	21	the	the	DET
fens-395	35	22	potential	potential	ADJ
fens-395	35	23	curve	curve	NOUN
fens-395	35	24	v(i	v(i	NUM
fens-395	35	25	)	)	PUNCT
fens-395	35	26	.	.	PUNCT
fens-395	36	1	generally	generally	ADV
fens-395	36	2	the	the	DET
fens-395	36	3	next	next	ADJ
fens-395	36	4	relation	relation	NOUN
fens-395	36	5	should	should	AUX
fens-395	36	6	be	be	AUX
fens-395	36	7	taken	take	VERB
fens-395	36	8	into	into	ADP
fens-395	36	9	consideration	consideration	NOUN
fens-395	36	10	:	:	PUNCT
fens-395	36	11	v(i)=ε0	v(i)=ε0	NOUN
fens-395	36	12	–	–	PUNCT
fens-395	36	13	ηact(i	ηact(i	NOUN
fens-395	36	14	)	)	PUNCT
fens-395	36	15	–	–	PUNCT
fens-395	36	16	ηohm(i	ηohm(i	NOUN
fens-395	36	17	)	)	PUNCT
fens-395	36	18	–	–	PUNCT
fens-395	36	19	ηconc(i	ηconc(i	NOUN
fens-395	36	20	)	)	PUNCT
fens-395	36	21	,	,	PUNCT
fens-395	36	22	(	(	PUNCT
fens-395	36	23	4	4	X
fens-395	36	24	)	)	PUNCT
fens-395	36	25	where	where	SCONJ
fens-395	36	26	ε0	ε0	NOUN
fens-395	36	27	is	be	AUX
fens-395	36	28	a	a	DET
fens-395	36	29	constant	constant	ADJ
fens-395	36	30	term	term	NOUN
fens-395	36	31	which	which	PRON
fens-395	36	32	represents	represent	VERB
fens-395	36	33	the	the	DET
fens-395	36	34	value	value	NOUN
fens-395	36	35	of	of	ADP
fens-395	36	36	potential	potential	ADJ
fens-395	36	37	difference	difference	NOUN
fens-395	36	38	of	of	ADP
fens-395	36	39	the	the	DET
fens-395	36	40	cell	cell	NOUN
fens-395	36	41	in	in	ADP
fens-395	36	42	open	open	ADJ
fens-395	36	43	circuit	circuit	NOUN
fens-395	36	44	(	(	PUNCT
fens-395	36	45	i=0	i=0	PROPN
fens-395	36	46	)	)	PUNCT
fens-395	36	47	;	;	PUNCT
fens-395	36	48	ηact(i	ηact(i	X
fens-395	36	49	)	)	PUNCT
fens-395	36	50	is	be	AUX
fens-395	36	51	a	a	DET
fens-395	36	52	logarithmic	logarithmic	ADJ
fens-395	36	53	term	term	NOUN
fens-395	36	54	(	(	PUNCT
fens-395	36	55	activation	activation	NOUN
fens-395	36	56	overpotential	overpotential	ADJ
fens-395	36	57	)	)	PUNCT
fens-395	36	58	,	,	PUNCT
fens-395	36	59	which	which	PRON
fens-395	36	60	represents	represent	VERB
fens-395	36	61	a	a	DET
fens-395	36	62	lose	lose	NOUN
fens-395	36	63	connected	connect	VERB
fens-395	36	64	with	with	ADP
fens-395	36	65	the	the	DET
fens-395	36	66	activation	activation	NOUN
fens-395	36	67	energy	energy	NOUN
fens-395	36	68	for	for	ADP
fens-395	36	69	starting	start	VERB
fens-395	36	70	electrochemical	electrochemical	ADJ
fens-395	36	71	reactions	reaction	NOUN
fens-395	36	72	,	,	PUNCT
fens-395	36	73	important	important	ADJ
fens-395	36	74	for	for	ADP
fens-395	36	75	lower	low	ADJ
fens-395	36	76	values	value	NOUN
fens-395	36	77	of	of	ADP
fens-395	36	78	the	the	DET
fens-395	36	79	current	current	ADJ
fens-395	36	80	density	density	NOUN
fens-395	36	81	;	;	PUNCT
fens-395	36	82	ηohm(i	ηohm(i	NOUN
fens-395	36	83	)	)	PUNCT
fens-395	36	84	is	be	AUX
fens-395	36	85	a	a	DET
fens-395	36	86	linear	linear	ADJ
fens-395	36	87	term	term	NOUN
fens-395	36	88	,	,	PUNCT
fens-395	36	89	representing	represent	VERB
fens-395	36	90	potential	potential	ADJ
fens-395	36	91	drop	drop	NOUN
fens-395	36	92	due	due	ADP
fens-395	36	93	to	to	ADP
fens-395	36	94	the	the	DET
fens-395	36	95	ohm	ohm	NOUN
fens-395	36	96	resistance	resistance	NOUN
fens-395	36	97	of	of	ADP
fens-395	36	98	the	the	DET
fens-395	36	99	electrolyte	electrolyte	NOUN
fens-395	36	100	,	,	PUNCT
fens-395	36	101	electrodes	electrode	NOUN
fens-395	36	102	and	and	CCONJ
fens-395	36	103	conductors	conductor	NOUN
fens-395	36	104	;	;	PUNCT
fens-395	36	105	ηconc(i	ηconc(i	X
fens-395	36	106	)	)	PUNCT
fens-395	36	107	is	be	AUX
fens-395	36	108	an	an	DET
fens-395	36	109	exponential	exponential	ADJ
fens-395	36	110	term	term	NOUN
fens-395	36	111	(	(	PUNCT
fens-395	36	112	diffusion	diffusion	NOUN
fens-395	36	113	or	or	CCONJ
fens-395	36	114	concentration	concentration	NOUN
fens-395	36	115	over	over	ADP
fens-395	36	116	-	-	PUNCT
fens-395	36	117	potential	potential	NOUN
fens-395	36	118	)	)	PUNCT
fens-395	36	119	,	,	PUNCT
fens-395	36	120	which	which	PRON
fens-395	36	121	represents	represent	VERB
fens-395	36	122	the	the	DET
fens-395	36	123	lose	lose	NOUN
fens-395	36	124	due	due	ADJ
fens-395	36	125	to	to	ADP
fens-395	36	126	reactants	reactant	NOUN
fens-395	36	127	reactivity	reactivity	NOUN
fens-395	36	128	variation	variation	NOUN
fens-395	36	129	on	on	ADP
fens-395	36	130	interface	interface	NOUN
fens-395	36	131	,	,	PUNCT
fens-395	36	132	important	important	ADJ
fens-395	36	133	for	for	ADP
fens-395	36	134	high	high	ADJ
fens-395	36	135	values	value	NOUN
fens-395	36	136	of	of	ADP
fens-395	36	137	current	current	ADJ
fens-395	36	138	density	density	NOUN
fens-395	36	139	.	.	PUNCT
fens-395	37	1	figure.1	figure.1	PROPN
fens-395	37	2	.	.	PUNCT
fens-395	38	1	image	image	NOUN
fens-395	38	2	of	of	ADP
fens-395	38	3	a	a	DET
fens-395	38	4	dmfc	dmfc	NOUN
fens-395	38	5	:	:	PUNCT
fens-395	38	6	water	water	NOUN
fens-395	38	7	,	,	PUNCT
fens-395	38	8	methanol	methanol	NOUN
fens-395	38	9	and	and	CCONJ
fens-395	38	10	protons	proton	NOUN
fens-395	38	11	change	change	VERB
fens-395	38	12	membrane	membrane	NOUN
fens-395	38	13	(	(	PUNCT
fens-395	38	14	pem	pem	NOUN
fens-395	38	15	)	)	PUNCT
fens-395	38	16	for	for	ADP
fens-395	38	17	a	a	DET
fens-395	38	18	thermal	thermal	ADJ
fens-395	38	19	engine	engine	NOUN
fens-395	38	20	the	the	DET
fens-395	38	21	maximum	maximum	ADJ
fens-395	38	22	theoretic	theoretic	ADJ
fens-395	38	23	efficiency	efficiency	NOUN
fens-395	38	24	is	be	AUX
fens-395	38	25	that	that	PRON
fens-395	38	26	of	of	ADP
fens-395	38	27	a	a	DET
fens-395	38	28	carnot	carnot	NOUN
fens-395	38	29	cycle	cycle	NOUN
fens-395	38	30	:	:	PUNCT
fens-395	38	31	ηc=1	ηc=1	NOUN
fens-395	38	32	–	–	PUNCT
fens-395	38	33	t2	t2	NOUN
fens-395	38	34	/	/	SYM
fens-395	38	35	t1	t1	PROPN
fens-395	38	36	,	,	PUNCT
fens-395	38	37	(	(	PUNCT
fens-395	38	38	5	5	NUM
fens-395	38	39	)	)	PUNCT
fens-395	38	40	where	where	SCONJ
fens-395	38	41	t1	t1	NOUN
fens-395	38	42	and	and	CCONJ
fens-395	38	43	t2	t2	NOUN
fens-395	38	44	are	be	AUX
fens-395	38	45	absolute	absolute	ADJ
fens-395	38	46	temperatures	temperature	NOUN
fens-395	38	47	of	of	ADP
fens-395	38	48	hot	hot	ADJ
fens-395	38	49	source	source	NOUN
fens-395	38	50	and	and	CCONJ
fens-395	38	51	cold	cold	ADJ
fens-395	38	52	source	source	NOUN
fens-395	38	53	respectively	respectively	ADV
fens-395	38	54	;	;	PUNCT
fens-395	38	55	for	for	ADP
fens-395	38	56	combustion	combustion	NOUN
fens-395	38	57	cell	cell	NOUN
fens-395	38	58	,	,	PUNCT
fens-395	38	59	maximum	maximum	ADJ
fens-395	38	60	efficiency	efficiency	NOUN
fens-395	38	61	is	be	AUX
fens-395	38	62	expressed	express	VERB
fens-395	38	63	by	by	ADP
fens-395	38	64	the	the	DET
fens-395	38	65	ratio	ratio	NOUN
fens-395	38	66	between	between	ADP
fens-395	38	67	free	free	ADJ
fens-395	38	68	energy	energy	NOUN
fens-395	38	69	gibbs	gibbs	PROPN
fens-395	38	70	(	(	PUNCT
fens-395	38	71	δg	δg	NOUN
fens-395	38	72	)	)	PUNCT
fens-395	38	73	and	and	CCONJ
fens-395	38	74	the	the	DET
fens-395	38	75	variation	variation	NOUN
fens-395	38	76	of	of	ADP
fens-395	38	77	free	free	ADJ
fens-395	38	78	enthalpy	enthalpy	NOUN
fens-395	38	79	(	(	PUNCT
fens-395	38	80	δh	δh	NOUN
fens-395	38	81	)	)	PUNCT
fens-395	38	82	in	in	ADP
fens-395	38	83	electrochemical	electrochemical	ADJ
fens-395	38	84	reaction	reaction	NOUN
fens-395	38	85	:	:	PUNCT
fens-395	38	86	ηpc=	ηpc=	NOUN
fens-395	38	87	δg/	δg/	NOUN
fens-395	38	88	δh	δh	ADP
fens-395	38	89	.	.	PUNCT
fens-395	39	1	(	(	PUNCT
fens-395	39	2	6	6	X
fens-395	39	3	)	)	PUNCT
fens-395	39	4	the	the	DET
fens-395	39	5	global	global	ADJ
fens-395	39	6	conversion	conversion	NOUN
fens-395	39	7	efficiency	efficiency	NOUN
fens-395	39	8	of	of	ADP
fens-395	39	9	a	a	DET
fens-395	39	10	combustion	combustion	NOUN
fens-395	39	11	cell	cell	NOUN
fens-395	39	12	is	be	AUX
fens-395	39	13	superior	superior	ADJ
fens-395	39	14	to	to	ADP
fens-395	39	15	that	that	PRON
fens-395	39	16	of	of	ADP
fens-395	39	17	a	a	DET
fens-395	39	18	journal	journal	NOUN
fens-395	39	19	food	food	NOUN
fens-395	39	20	and	and	CCONJ
fens-395	39	21	environment	environment	NOUN
fens-395	39	22	safety	safety	NOUN
fens-395	39	23	of	of	ADP
fens-395	39	24	the	the	DET
fens-395	39	25	suceava	suceava	PROPN
fens-395	39	26	university	university	PROPN
fens-395	39	27	–	–	PUNCT
fens-395	39	28	food	food	NOUN
fens-395	39	29	engineering	engineering	NOUN
fens-395	39	30	,	,	PUNCT
fens-395	39	31	year	year	NOUN
fens-395	39	32	ix	ix	PROPN
fens-395	39	33	,	,	PUNCT
fens-395	39	34	no1	no1	PROPN
fens-395	39	35	2010	2010	NUM
fens-395	39	36	66	66	NUM
fens-395	39	37	thermal	thermal	ADJ
fens-395	39	38	engine	engine	NOUN
fens-395	39	39	.	.	PUNCT
fens-395	40	1	thermodynamics	thermodynamic	NOUN
fens-395	40	2	of	of	ADP
fens-395	40	3	transformations	transformation	NOUN
fens-395	40	4	chemical	chemical	NOUN
fens-395	40	5	energy	energy	NOUN
fens-395	40	6	–	–	PUNCT
fens-395	40	7	electric	electric	ADJ
fens-395	40	8	energy	energy	NOUN
fens-395	40	9	give	give	NOUN
fens-395	40	10	:	:	PUNCT
fens-395	40	11	–	–	PUNCT
fens-395	40	12	δg	δg	NOUN
fens-395	40	13	=	=	SYM
fens-395	40	14	lutil	lutil	NOUN
fens-395	40	15	,	,	PUNCT
fens-395	40	16	δg	δg	ADP
fens-395	40	17	=	=	PUNCT
fens-395	40	18	δh	δh	X
fens-395	40	19	–	–	PUNCT
fens-395	40	20	tδs	tδs	NOUN
fens-395	40	21	(	(	PUNCT
fens-395	40	22	7	7	NUM
fens-395	40	23	)	)	PUNCT
fens-395	40	24	the	the	DET
fens-395	40	25	work	work	NOUN
fens-395	40	26	-	-	PUNCT
fens-395	40	27	function	function	NOUN
fens-395	40	28	of	of	ADP
fens-395	40	29	the	the	DET
fens-395	40	30	electrical	electrical	ADJ
fens-395	40	31	charge	charge	NOUN
fens-395	40	32	is	be	AUX
fens-395	40	33	giving	give	VERB
fens-395	40	34	by	by	ADP
fens-395	40	35	relation	relation	NOUN
fens-395	40	36	:	:	PUNCT
fens-395	40	37	lutil	lutil	NOUN
fens-395	40	38	=	=	SYM
fens-395	40	39	nfδe	nfδe	NOUN
fens-395	40	40	or	or	CCONJ
fens-395	40	41	–	–	PUNCT
fens-395	40	42	δg	δg	VERB
fens-395	40	43	=	=	SYM
fens-395	40	44	nfδe	nfδe	ADJ
fens-395	40	45	(	(	PUNCT
fens-395	40	46	8)	8)	NUM
fens-395	40	47	where	where	SCONJ
fens-395	40	48	,	,	PUNCT
fens-395	40	49	n	n	CCONJ
fens-395	40	50	=	=	NOUN
fens-395	40	51	number	number	NOUN
fens-395	40	52	of	of	ADP
fens-395	40	53	electrons	electron	NOUN
fens-395	40	54	participating	participate	VERB
fens-395	40	55	in	in	ADP
fens-395	40	56	reaction	reaction	NOUN
fens-395	40	57	,	,	PUNCT
fens-395	40	58	e	e	X
fens-395	40	59	=	=	PUNCT
fens-395	40	60	e.m.f	e.m.f	NOUN
fens-395	40	61	.	.	PUNCT
fens-395	41	1	(	(	PUNCT
fens-395	41	2	v	v	NOUN
fens-395	41	3	)	)	PUNCT
fens-395	41	4	(	(	PUNCT
fens-395	41	5	electromotive	electromotive	ADJ
fens-395	41	6	force	force	NOUN
fens-395	41	7	)	)	PUNCT
fens-395	41	8	,	,	PUNCT
fens-395	41	9	f	f	PROPN
fens-395	41	10	=	=	SYM
fens-395	41	11	faraday	faraday	PROPN
fens-395	41	12	’s	’s	PART
fens-395	41	13	constant	constant	ADJ
fens-395	41	14	.	.	PUNCT
fens-395	42	1	the	the	DET
fens-395	42	2	heat	heat	NOUN
fens-395	42	3	produced	produce	VERB
fens-395	42	4	is	be	AUX
fens-395	42	5	given	give	VERB
fens-395	42	6	by	by	ADP
fens-395	42	7	the	the	DET
fens-395	42	8	relation	relation	NOUN
fens-395	42	9	:	:	PUNCT
fens-395	42	10	q	q	NOUN
fens-395	42	11	=	=	PUNCT
fens-395	42	12	tδs	tδs	NOUN
fens-395	42	13	=	=	NOUN
fens-395	42	14	δh	δh	X
fens-395	42	15	–	–	PUNCT
fens-395	42	16	δg	δg	VERB
fens-395	42	17	.	.	PUNCT
fens-395	43	1	(	(	PUNCT
fens-395	43	2	9	9	NUM
fens-395	43	3	)	)	PUNCT
fens-395	43	4	for	for	ADP
fens-395	43	5	a	a	DET
fens-395	43	6	general	general	ADJ
fens-395	43	7	chemical	chemical	NOUN
fens-395	43	8	reaction	reaction	NOUN
fens-395	43	9	:	:	PUNCT
fens-395	43	10			ADJ
fens-395	43	11			ADP
fens-395	43	12			ADJ
fens-395	43	13			PUNCT
fens-395	43	14			ADJ
fens-395	43	15			PUNCT
fens-395	43	16			PROPN
fens-395	43	17	ba	ba	NOUN
fens-395	43	18	dc	dc	PROPN
fens-395	43	19	ba	ba	PROPN
fens-395	43	20	dcrtgg	dcrtgg	VERB
fens-395	43	21	ln0	ln0	PROPN
fens-395	43	22			PROPN
fens-395	43	23	(	(	PUNCT
fens-395	43	24	10	10	NUM
fens-395	43	25	)	)	PUNCT
fens-395	43	26	which	which	PRON
fens-395	43	27	could	could	AUX
fens-395	43	28	be	be	AUX
fens-395	43	29	written	write	VERB
fens-395	43	30	for	for	ADP
fens-395	43	31	an	an	DET
fens-395	43	32	ideal	ideal	ADJ
fens-395	43	33	gas	gas	NOUN
fens-395	43	34	,	,	PUNCT
fens-395	43	35			PROPN
fens-395	43	36			SYM
fens-395	43	37			NOUN
fens-395	43	38			PUNCT
fens-395	44	1	i	i	PRON
fens-395	44	2	i	i	PRON
fens-395	44	3	reactpart	reactpart	VERB
fens-395	44	4	prodpart	prodpart	PROPN
fens-395	44	5	rtgg	rtgg	PROPN
fens-395	44	6			PROPN
fens-395	44	7			PROPN
fens-395	45	1			PROPN
fens-395	45	2			NOUN
fens-395	45	3	..	..	PUNCT
fens-395	45	4	..	..	PUNCT
fens-395	46	1	ln0	ln0	ADV
fens-395	46	2	(	(	PUNCT
fens-395	46	3	11	11	NUM
fens-395	46	4	)	)	PUNCT
fens-395	46	5	where	where	SCONJ
fens-395	46	6	δg0	δg0	NOUN
fens-395	46	7	is	be	AUX
fens-395	46	8	gibbs	gibbs	PROPN
fens-395	46	9	free	free	ADJ
fens-395	46	10	energy	energy	NOUN
fens-395	46	11	in	in	ADP
fens-395	46	12	standard	standard	ADJ
fens-395	46	13	conditions	condition	NOUN
fens-395	46	14	(	(	PUNCT
fens-395	46	15	p=760mmhg	p=760mmhg	NOUN
fens-395	46	16	,	,	PUNCT
fens-395	46	17	t=25c	t=25c	PROPN
fens-395	46	18	°	°	ADP
fens-395	46	19	c	c	NOUN
fens-395	46	20	)	)	PUNCT
fens-395	46	21	,	,	PUNCT
fens-395	46	22	νi	νi	PRON
fens-395	46	23	are	be	AUX
fens-395	46	24	stoichiometric	stoichiometric	ADJ
fens-395	46	25	coefficients	coefficient	NOUN
fens-395	46	26	of	of	ADP
fens-395	46	27	reaction	reaction	NOUN
fens-395	46	28	.	.	PUNCT
fens-395	47	1	assuming	assume	VERB
fens-395	47	2	that	that	PRON
fens-395	47	3	:	:	PUNCT
fens-395	47	4	–	–	PUNCT
fens-395	47	5	δg	δg	NOUN
fens-395	47	6	=	=	SYM
fens-395	47	7	nfδe	nfδe	NOUN
fens-395	47	8	,	,	PUNCT
fens-395	47	9	on	on	ADP
fens-395	47	10	obtains	obtain	NOUN
fens-395	47	11	:	:	PUNCT
fens-395	47	12			NOUN
fens-395	47	13			PROPN
fens-395	47	14			NOUN
fens-395	47	15			NUM
fens-395	47	16			PROPN
fens-395	47	17	i	i	PRON
fens-395	47	18	i	i	PRON
fens-395	47	19	partprod	partprod	VERB
fens-395	47	20	partreact	partreact	VERB
fens-395	47	21	rtee	rtee	NOUN
fens-395	47	22			ADJ
fens-395	47	23			PROPN
fens-395	47	24	.	.	PUNCT
fens-395	47	25	.	.	PUNCT
fens-395	48	1	ln0	ln0	ADV
fens-395	48	2	(	(	PUNCT
fens-395	48	3	12	12	NUM
fens-395	48	4	)	)	PUNCT
fens-395	48	5	for	for	ADP
fens-395	48	6	standard	standard	ADJ
fens-395	48	7	conditions	condition	NOUN
fens-395	48	8	it	it	PRON
fens-395	48	9	follows	follow	VERB
fens-395	48	10	,	,	PUNCT
fens-395	48	11	e	e	PROPN
fens-395	48	12	=	=	SYM
fens-395	48	13	e0	e0	PROPN
fens-395	48	14	.	.	PUNCT
fens-395	49	1	in	in	ADP
fens-395	49	2	irreversible	irreversible	ADJ
fens-395	49	3	thermodynamics	thermodynamic	NOUN
fens-395	49	4	there	there	PRON
fens-395	49	5	are	be	VERB
fens-395	49	6	loses	lose	VERB
fens-395	49	7	due	due	ADJ
fens-395	49	8	to	to	PART
fens-395	49	9	:	:	PUNCT
fens-395	49	10	1	1	X
fens-395	49	11	.	.	PUNCT
fens-395	49	12	ohmic	ohmic	ADJ
fens-395	49	13	polarization	polarization	NOUN
fens-395	49	14	–	–	PUNCT
fens-395	49	15	due	due	ADP
fens-395	49	16	to	to	ADP
fens-395	49	17	resistance	resistance	NOUN
fens-395	49	18	phenomena	phenomenon	NOUN
fens-395	49	19	when	when	SCONJ
fens-395	49	20	ions	ion	NOUN
fens-395	49	21	pass	pass	VERB
fens-395	49	22	through	through	ADP
fens-395	49	23	electrolyte	electrolyte	NOUN
fens-395	49	24	and	and	CCONJ
fens-395	49	25	electrons	electron	NOUN
fens-395	49	26	pass	pass	VERB
fens-395	49	27	through	through	ADP
fens-395	49	28	interface	interface	NOUN
fens-395	49	29	.	.	PUNCT
fens-395	50	1	2	2	X
fens-395	50	2	.	.	X
fens-395	50	3	concentration	concentration	NOUN
fens-395	50	4	polarization	polarization	NOUN
fens-395	50	5	–	–	PUNCT
fens-395	50	6	due	due	ADP
fens-395	50	7	to	to	PART
fens-395	50	8	quickly	quickly	ADV
fens-395	50	9	consumption	consumption	NOUN
fens-395	50	10	of	of	ADP
fens-395	50	11	reactants	reactant	NOUN
fens-395	50	12	on	on	ADP
fens-395	50	13	electrodes	electrode	NOUN
fens-395	50	14	surface	surface	NOUN
fens-395	50	15	and	and	CCONJ
fens-395	50	16	appearing	appear	VERB
fens-395	50	17	of	of	ADP
fens-395	50	18	concentration	concentration	NOUN
fens-395	50	19	gradients	gradient	NOUN
fens-395	50	20	.	.	PUNCT
fens-395	51	1	3	3	X
fens-395	51	2	.	.	X
fens-395	51	3	activation	activation	NOUN
fens-395	51	4	polarization	polarization	NOUN
fens-395	51	5	–	–	PUNCT
fens-395	51	6	refers	refer	VERB
fens-395	51	7	to	to	ADP
fens-395	51	8	surpass	surpass	NOUN
fens-395	51	9	of	of	ADP
fens-395	51	10	a	a	DET
fens-395	51	11	initial	initial	ADJ
fens-395	51	12	threshold	threshold	NOUN
fens-395	51	13	potential	potential	ADJ
fens-395	51	14	δvact	δvact	NOUN
fens-395	51	15	similar	similar	ADJ
fens-395	51	16	with	with	ADP
fens-395	51	17	the	the	DET
fens-395	51	18	case	case	NOUN
fens-395	51	19	of	of	ADP
fens-395	51	20	concentration	concentration	NOUN
fens-395	51	21	polarization	polarization	NOUN
fens-395	51	22	.	.	PUNCT
fens-395	52	1	the	the	DET
fens-395	52	2	efficiency	efficiency	NOUN
fens-395	52	3	is	be	AUX
fens-395	52	4	defined	define	VERB
fens-395	52	5	after	after	ADP
fens-395	52	6	the	the	DET
fens-395	52	7	relation	relation	NOUN
fens-395	52	8	:	:	PUNCT
fens-395	52	9	lhv	lhv	NOUN
fens-395	52	10	elel	elel	ADJ
fens-395	52	11	e	e	NOUN
fens-395	52	12	e	e	PROPN
fens-395	52	13	nflhv	nflhv	PROPN
fens-395	52	14	nfl	nfl	PROPN
fens-395	52	15	lhv	lhv	PROPN
fens-395	52	16	l	l	PROPN
fens-395	52	17			X
fens-395	52	18	(	(	PUNCT
fens-395	52	19	13	13	NUM
fens-395	52	20	)	)	PUNCT
fens-395	52	21	lhv	lhv	NOUN
fens-395	52	22	represents	represent	VERB
fens-395	52	23	the	the	DET
fens-395	52	24	heat	heat	NOUN
fens-395	52	25	obtained	obtain	VERB
fens-395	52	26	by	by	ADP
fens-395	52	27	combustion	combustion	NOUN
fens-395	52	28	of	of	ADP
fens-395	52	29	a	a	DET
fens-395	52	30	mol	mol	NOUN
fens-395	52	31	of	of	ADP
fens-395	52	32	combustible	combustible	ADJ
fens-395	52	33	(	(	PUNCT
fens-395	52	34	j	j	NOUN
fens-395	52	35	/	/	SYM
fens-395	52	36	mol	mol	PROPN
fens-395	52	37	combustible	combustible	NOUN
fens-395	52	38	)	)	PUNCT
fens-395	52	39	.	.	PUNCT
fens-395	53	1	elhv	elhv	NOUN
fens-395	53	2	represents	represent	VERB
fens-395	53	3	the	the	DET
fens-395	53	4	electric	electric	ADJ
fens-395	53	5	equivalent	equivalent	NOUN
fens-395	53	6	of	of	ADP
fens-395	53	7	caloric	caloric	PROPN
fens-395	53	8	inferior	inferior	ADJ
fens-395	53	9	power	power	NOUN
fens-395	53	10	of	of	ADP
fens-395	53	11	the	the	DET
fens-395	53	12	combustible	combustible	NOUN
fens-395	53	13	.	.	PUNCT
fens-395	54	1	then	then	ADV
fens-395	54	2	the	the	DET
fens-395	54	3	potential	potential	ADJ
fens-395	54	4	difference	difference	NOUN
fens-395	54	5	of	of	ADP
fens-395	54	6	the	the	DET
fens-395	54	7	cell	cell	NOUN
fens-395	54	8	is	be	AUX
fens-395	54	9	:	:	PUNCT
fens-395	54	10	vc	vc	PROPN
fens-395	54	11	=	=	SYM
fens-395	54	12	e	e	X
fens-395	54	13	–	–	PUNCT
fens-395	54	14	δvohm	δvohm	NOUN
fens-395	54	15	–	–	PUNCT
fens-395	54	16	δvconc	δvconc	ADJ
fens-395	54	17	–	–	PUNCT
fens-395	54	18	δvact	δvact	NOUN
fens-395	54	19	.	.	PUNCT
fens-395	55	1	(	(	PUNCT
fens-395	55	2	14	14	NUM
fens-395	55	3	)	)	PUNCT
fens-395	55	4	here	here	ADV
fens-395	55	5	,	,	PUNCT
fens-395	55	6	δvohm	δvohm	NOUN
fens-395	55	7	represents	represent	VERB
fens-395	55	8	potential	potential	ADJ
fens-395	55	9	drop	drop	NOUN
fens-395	55	10	due	due	ADP
fens-395	55	11	to	to	ADP
fens-395	55	12	electric	electric	ADJ
fens-395	55	13	resistance	resistance	NOUN
fens-395	55	14	of	of	ADP
fens-395	55	15	the	the	DET
fens-395	55	16	cell	cell	NOUN
fens-395	55	17	,	,	PUNCT
fens-395	55	18	δvconc	δvconc	ADJ
fens-395	55	19	potential	potential	ADJ
fens-395	55	20	drop	drop	NOUN
fens-395	55	21	due	due	ADP
fens-395	55	22	to	to	ADP
fens-395	55	23	concentration	concentration	NOUN
fens-395	55	24	variation	variation	NOUN
fens-395	55	25	and	and	CCONJ
fens-395	55	26	δvact	δvact	NOUN
fens-395	55	27	potential	potential	ADJ
fens-395	55	28	drop	drop	NOUN
fens-395	55	29	due	due	ADJ
fens-395	55	30	to	to	ADP
fens-395	55	31	initial	initial	ADJ
fens-395	55	32	activation	activation	NOUN
fens-395	55	33	processes	process	NOUN
fens-395	55	34	.	.	PUNCT
fens-395	56	1	subsequent	subsequent	ADJ
fens-395	56	2	sources	source	NOUN
fens-395	56	3	of	of	ADP
fens-395	56	4	losing	losing	NOUN
fens-395	56	5	are	be	AUX
fens-395	56	6	bonded	bond	VERB
fens-395	56	7	by	by	ADP
fens-395	56	8	the	the	DET
fens-395	56	9	way	way	NOUN
fens-395	56	10	of	of	ADP
fens-395	56	11	using	use	VERB
fens-395	56	12	combustible	combustible	NOUN
fens-395	56	13	and	and	CCONJ
fens-395	56	14	air	air	NOUN
fens-395	56	15	.	.	PUNCT
fens-395	57	1	inh	inh	PROPN
fens-395	57	2	consh	consh	ADJ
fens-395	57	3	comb	comb	NOUN
fens-395	57	4	m	m	NOUN
fens-395	57	5	m	m	NOUN
fens-395	57	6	u	u	NOUN
fens-395	57	7	,	,	PUNCT
fens-395	57	8	,	,	PUNCT
fens-395	57	9	2	2	NUM
fens-395	57	10	2	2	NUM
fens-395	57	11	or	or	CCONJ
fens-395	57	12	(	(	PUNCT
fens-395	57	13	15	15	NUM
fens-395	57	14	)	)	PUNCT
fens-395	57	15	inohch	inohch	NOUN
fens-395	57	16	consohch	consohch	PROPN
fens-395	57	17	comb	comb	VERB
fens-395	57	18	m	m	NOUN
fens-395	57	19	m	m	NOUN
fens-395	57	20	u	u	NOUN
fens-395	57	21	,	,	PUNCT
fens-395	57	22	,	,	PUNCT
fens-395	57	23	3	3	NUM
fens-395	57	24	3	3	NUM
fens-395	57	25	.	.	PUNCT
fens-395	58	1	(	(	PUNCT
fens-395	58	2	16	16	NUM
fens-395	58	3	)	)	PUNCT
fens-395	58	4	here	here	ADV
fens-395	58	5	ucomb	ucomb	ADV
fens-395	58	6	is	be	AUX
fens-395	58	7	the	the	DET
fens-395	58	8	ratio	ratio	NOUN
fens-395	58	9	which	which	PRON
fens-395	58	10	describes	describe	VERB
fens-395	58	11	the	the	DET
fens-395	58	12	efficiency	efficiency	NOUN
fens-395	58	13	of	of	ADP
fens-395	58	14	combustible	combustible	ADJ
fens-395	58	15	utilization	utilization	NOUN
fens-395	58	16	,	,	PUNCT
fens-395	58	17	and	and	CCONJ
fens-395	58	18	m	m	NOUN
fens-395	58	19	are	be	AUX
fens-395	58	20	masses	masse	NOUN
fens-395	58	21	of	of	ADP
fens-395	58	22	combustibles	combustible	NOUN
fens-395	58	23	consumed	consume	VERB
fens-395	58	24	,	,	PUNCT
fens-395	58	25	and	and	CCONJ
fens-395	58	26	initial	initial	ADJ
fens-395	58	27	masses	masse	NOUN
fens-395	58	28	respectively	respectively	ADV
fens-395	58	29	.	.	PUNCT
fens-395	59	1	it	it	PRON
fens-395	59	2	follows	follow	VERB
fens-395	59	3	that	that	SCONJ
fens-395	59	4	:	:	PUNCT
fens-395	59	5	lhv	lhv	NOUN
fens-395	59	6	combc	combc	NOUN
fens-395	59	7	e	e	NOUN
fens-395	59	8	uv	uv	NOUN
fens-395	59	9			NOUN
fens-395	59	10	.	.	PUNCT
fens-395	60	1	(	(	PUNCT
fens-395	60	2	17	17	NUM
fens-395	60	3	)	)	PUNCT
fens-395	60	4	if	if	SCONJ
fens-395	60	5	one	one	NUM
fens-395	60	6	particularizes	particularize	VERB
fens-395	60	7	electrochemical	electrochemical	ADJ
fens-395	60	8	oxidation	oxidation	NOUN
fens-395	60	9	of	of	ADP
fens-395	60	10	methanol	methanol	NOUN
fens-395	60	11	,	,	PUNCT
fens-395	60	12	it	it	PRON
fens-395	60	13	follows	follow	VERB
fens-395	60	14	assuming	assume	VERB
fens-395	60	15	that	that	SCONJ
fens-395	60	16	a=1	a=1	ADP
fens-395	60	17	,	,	PUNCT
fens-395	60	18	b=3/2	b=3/2	NUM
fens-395	60	19	,	,	PUNCT
fens-395	60	20	c=1	c=1	NOUN
fens-395	60	21	and	and	CCONJ
fens-395	60	22	d=2	d=2	ADP
fens-395	60	23	,	,	PUNCT
fens-395	60	24			ADJ
fens-395	60	25			ADP
fens-395	60	26			ADJ
fens-395	60	27			PUNCT
fens-395	60	28			ADJ
fens-395	60	29			PUNCT
fens-395	60	30			PROPN
fens-395	60	31			PROPN
fens-395	60	32	23	23	NUM
fens-395	60	33	2	2	NUM
fens-395	60	34	1	1	NUM
fens-395	60	35	3	3	NUM
fens-395	60	36	2	2	NUM
fens-395	60	37	2	2	NUM
fens-395	60	38	1	1	NUM
fens-395	60	39	20	20	NUM
fens-395	60	40	ln	ln	ADJ
fens-395	60	41	oohch	oohch	NOUN
fens-395	60	42	ohcortgg	ohcortgg	NOUN
fens-395	60	43			PROPN
fens-395	60	44	(	(	PUNCT
fens-395	60	45	18	18	NUM
fens-395	60	46	)	)	PUNCT
fens-395	60	47	fact	fact	NOUN
fens-395	60	48	which	which	PRON
fens-395	60	49	diminishes	diminish	VERB
fens-395	60	50	δg	δg	AUX
fens-395	60	51	comparing	compare	VERB
fens-395	60	52	with	with	ADP
fens-395	60	53	δg0	δg0	NOUN
fens-395	60	54	,	,	PUNCT
fens-395	60	55	and	and	CCONJ
fens-395	60	56	consequently	consequently	ADV
fens-395	60	57	a	a	DET
fens-395	60	58	decreasing	decreasing	NOUN
fens-395	60	59	of	of	ADP
fens-395	60	60	efficiency	efficiency	NOUN
fens-395	60	61	.	.	PUNCT
fens-395	61	1	as	as	ADP
fens-395	61	2	a	a	DET
fens-395	61	3	general	general	ADJ
fens-395	61	4	rule	rule	NOUN
fens-395	61	5	,	,	PUNCT
fens-395	61	6	valid	valid	ADJ
fens-395	61	7	for	for	ADP
fens-395	61	8	combustion	combustion	NOUN
fens-395	61	9	cells	cell	NOUN
fens-395	61	10	,	,	PUNCT
fens-395	61	11	the	the	DET
fens-395	61	12	removal	removal	NOUN
fens-395	61	13	of	of	ADP
fens-395	61	14	formed	form	VERB
fens-395	61	15	water	water	NOUN
fens-395	61	16	should	should	AUX
fens-395	61	17	be	be	AUX
fens-395	61	18	ensured	ensure	VERB
fens-395	61	19	,	,	PUNCT
fens-395	61	20	because	because	SCONJ
fens-395	61	21	it	it	PRON
fens-395	61	22	induces	induce	VERB
fens-395	61	23	a	a	DET
fens-395	61	24	decrease	decrease	NOUN
fens-395	61	25	of	of	ADP
fens-395	61	26	methanol	methanol	NOUN
fens-395	61	27	solution	solution	NOUN
fens-395	61	28	concentration	concentration	NOUN
fens-395	61	29	.	.	PUNCT
fens-395	62	1	in	in	ADP
fens-395	62	2	this	this	DET
fens-395	62	3	case	case	NOUN
fens-395	62	4	,	,	PUNCT
fens-395	62	5	of	of	ADP
fens-395	62	6	direct	direct	ADJ
fens-395	62	7	methanol	methanol	NOUN
fens-395	62	8	fuel	fuel	NOUN
fens-395	62	9	cell	cell	NOUN
fens-395	62	10	,	,	PUNCT
fens-395	62	11	it	it	PRON
fens-395	62	12	works	work	VERB
fens-395	62	13	with	with	ADP
fens-395	62	14	totally	totally	ADV
fens-395	62	15	immersed	immerse	VERB
fens-395	62	16	electrodes	electrode	NOUN
fens-395	62	17	,	,	PUNCT
fens-395	62	18	which	which	PRON
fens-395	62	19	simplify	simplify	VERB
fens-395	62	20	the	the	DET
fens-395	62	21	problem	problem	NOUN
fens-395	62	22	from	from	ADP
fens-395	62	23	the	the	DET
fens-395	62	24	mechanical	mechanical	ADJ
fens-395	62	25	point	point	NOUN
fens-395	62	26	of	of	ADP
fens-395	62	27	view	view	NOUN
fens-395	62	28	.	.	PUNCT
fens-395	63	1	ideal	ideal	ADJ
fens-395	63	2	condition	condition	NOUN
fens-395	63	3	consists	consist	VERB
fens-395	63	4	of	of	ADP
fens-395	63	5	complete	complete	ADJ
fens-395	63	6	penetration	penetration	NOUN
fens-395	63	7	of	of	ADP
fens-395	63	8	electrolyte	electrolyte	NOUN
fens-395	63	9	into	into	ADP
fens-395	63	10	porosity	porosity	NOUN
fens-395	63	11	of	of	ADP
fens-395	63	12	journal	journal	ADJ
fens-395	63	13	food	food	NOUN
fens-395	63	14	and	and	CCONJ
fens-395	63	15	environment	environment	NOUN
fens-395	63	16	safety	safety	NOUN
fens-395	63	17	of	of	ADP
fens-395	63	18	the	the	DET
fens-395	63	19	suceava	suceava	PROPN
fens-395	63	20	university	university	PROPN
fens-395	63	21	–	–	PUNCT
fens-395	63	22	food	food	NOUN
fens-395	63	23	engineering	engineering	NOUN
fens-395	63	24	,	,	PUNCT
fens-395	63	25	year	year	NOUN
fens-395	63	26	ix	ix	PROPN
fens-395	63	27	,	,	PUNCT
fens-395	63	28	no1	no1	PROPN
fens-395	63	29	2010	2010	NUM
fens-395	63	30	67	67	NUM
fens-395	63	31	the	the	DET
fens-395	63	32	electrode	electrode	NOUN
fens-395	63	33	.	.	PUNCT
fens-395	64	1	it	it	PRON
fens-395	64	2	is	be	AUX
fens-395	64	3	pointed	point	VERB
fens-395	64	4	to	to	PART
fens-395	64	5	obtain	obtain	VERB
fens-395	64	6	a	a	DET
fens-395	64	7	higher	high	ADJ
fens-395	64	8	percent	percent	NOUN
fens-395	64	9	of	of	ADP
fens-395	64	10	volume	volume	NOUN
fens-395	64	11	porosity	porosity	NOUN
fens-395	64	12	,	,	PUNCT
fens-395	64	13	poresfree	poresfree	ADJ
fens-395	64	14	.	.	PUNCT
fens-395	65	1	the	the	DET
fens-395	65	2	dimension	dimension	NOUN
fens-395	65	3	of	of	ADP
fens-395	65	4	particles	particle	NOUN
fens-395	65	5	have	have	VERB
fens-395	65	6	to	to	PART
fens-395	65	7	be	be	AUX
fens-395	65	8	chosen	choose	VERB
fens-395	65	9	to	to	PART
fens-395	65	10	obtain	obtain	VERB
fens-395	65	11	a	a	DET
fens-395	65	12	good	good	ADJ
fens-395	65	13	contact	contact	NOUN
fens-395	65	14	through	through	ADP
fens-395	65	15	them	they	PRON
fens-395	65	16	and	and	CCONJ
fens-395	65	17	with	with	ADP
fens-395	65	18	support	support	NOUN
fens-395	65	19	layer	layer	NOUN
fens-395	65	20	,	,	PUNCT
fens-395	65	21	in	in	ADP
fens-395	65	22	order	order	NOUN
fens-395	65	23	to	to	PART
fens-395	65	24	facilitate	facilitate	VERB
fens-395	65	25	electronic	electronic	ADJ
fens-395	65	26	conductibility	conductibility	NOUN
fens-395	65	27	in	in	ADP
fens-395	65	28	all	all	DET
fens-395	65	29	electrode	electrode	NOUN
fens-395	65	30	volume	volume	NOUN
fens-395	65	31	[	[	X
fens-395	65	32	9,10,11	9,10,11	X
fens-395	65	33	]	]	PUNCT
fens-395	65	34	.	.	PUNCT
fens-395	66	1	the	the	DET
fens-395	66	2	reaction	reaction	NOUN
fens-395	66	3	rate	rate	NOUN
fens-395	66	4	in	in	ADP
fens-395	66	5	the	the	DET
fens-395	66	6	pores	pore	NOUN
fens-395	66	7	of	of	ADP
fens-395	66	8	the	the	DET
fens-395	66	9	electrode	electrode	NOUN
fens-395	66	10	,	,	PUNCT
fens-395	66	11	in	in	ADP
fens-395	66	12	every	every	DET
fens-395	66	13	point	point	NOUN
fens-395	66	14	,	,	PUNCT
fens-395	66	15	is	be	AUX
fens-395	66	16	dependent	dependent	ADJ
fens-395	66	17	by	by	ADP
fens-395	66	18	interface	interface	NOUN
fens-395	66	19	potential	potential	NOUN
fens-395	66	20	,	,	PUNCT
fens-395	66	21	current	current	ADJ
fens-395	66	22	density	density	NOUN
fens-395	66	23	which	which	PRON
fens-395	66	24	flows	flow	VERB
fens-395	66	25	through	through	ADP
fens-395	66	26	interface	interface	NOUN
fens-395	66	27	electrodeelectrolyte	electrodeelectrolyte	NOUN
fens-395	66	28	;	;	PUNCT
fens-395	66	29	by	by	ADP
fens-395	66	30	the	the	DET
fens-395	66	31	concentration	concentration	NOUN
fens-395	66	32	of	of	ADP
fens-395	66	33	reactant	reactant	NOUN
fens-395	66	34	species	specie	NOUN
fens-395	66	35	which	which	PRON
fens-395	66	36	arrive	arrive	VERB
fens-395	66	37	in	in	ADP
fens-395	66	38	pores	pore	NOUN
fens-395	66	39	,	,	PUNCT
fens-395	66	40	and	and	CCONJ
fens-395	66	41	by	by	ADP
fens-395	66	42	nature	nature	NOUN
fens-395	66	43	of	of	ADP
fens-395	66	44	electro	electro	NOUN
fens-395	66	45	-	-	PUNCT
fens-395	66	46	catalyzer	catalyzer	NOUN
fens-395	66	47	deposited	deposit	VERB
fens-395	66	48	on	on	ADP
fens-395	66	49	electrode	electrode	NOUN
fens-395	66	50	.	.	PUNCT
fens-395	67	1	these	these	DET
fens-395	67	2	local	local	ADJ
fens-395	67	3	conditions	condition	NOUN
fens-395	67	4	are	be	AUX
fens-395	67	5	depended	depend	VERB
fens-395	67	6	by	by	ADP
fens-395	67	7	mass	mass	ADJ
fens-395	67	8	transfer	transfer	NOUN
fens-395	67	9	of	of	ADP
fens-395	67	10	reactant	reactant	NOUN
fens-395	67	11	species	specie	NOUN
fens-395	67	12	and	and	CCONJ
fens-395	67	13	by	by	ADP
fens-395	67	14	current	current	ADJ
fens-395	67	15	transport	transport	NOUN
fens-395	67	16	to	to	ADP
fens-395	67	17	a	a	DET
fens-395	67	18	specified	specified	ADJ
fens-395	67	19	point	point	NOUN
fens-395	67	20	and	and	CCONJ
fens-395	67	21	by	by	ADP
fens-395	67	22	this	this	DET
fens-395	67	23	point	point	NOUN
fens-395	67	24	to	to	ADP
fens-395	67	25	another	another	DET
fens-395	67	26	interface	interface	NOUN
fens-395	67	27	.	.	PUNCT
fens-395	68	1	so	so	ADV
fens-395	68	2	,	,	PUNCT
fens-395	68	3	to	to	PART
fens-395	68	4	make	make	VERB
fens-395	68	5	a	a	DET
fens-395	68	6	complete	complete	ADJ
fens-395	68	7	characterization	characterization	NOUN
fens-395	68	8	of	of	ADP
fens-395	68	9	the	the	DET
fens-395	68	10	porous	porous	ADJ
fens-395	68	11	electrode	electrode	NOUN
fens-395	68	12	it	it	PRON
fens-395	68	13	is	be	AUX
fens-395	68	14	necessary	necessary	ADJ
fens-395	68	15	to	to	PART
fens-395	68	16	know	know	VERB
fens-395	68	17	the	the	DET
fens-395	68	18	distribution	distribution	NOUN
fens-395	68	19	of	of	ADP
fens-395	68	20	reaction	reaction	NOUN
fens-395	68	21	in	in	ADP
fens-395	68	22	all	all	DET
fens-395	68	23	electrode	electrode	NOUN
fens-395	68	24	volume	volume	NOUN
fens-395	68	25	.	.	PUNCT
fens-395	69	1	a	a	DET
fens-395	69	2	calculus	calculus	NOUN
fens-395	69	3	example	example	NOUN
fens-395	69	4	is	be	AUX
fens-395	69	5	presented	present	VERB
fens-395	69	6	here	here	ADV
fens-395	69	7	:	:	PUNCT
fens-395	69	8	global	global	ADJ
fens-395	69	9	reaction	reaction	NOUN
fens-395	69	10	:	:	PUNCT
fens-395	69	11	ch3oh	ch3oh	ADV
fens-395	69	12	+	+	NUM
fens-395	69	13	3/2	3/2	NUM
fens-395	69	14	o2	o2	ADJ
fens-395	69	15	→	→	SYM
fens-395	69	16	co2	co2	NOUN
fens-395	69	17	+	+	CCONJ
fens-395	69	18	2h2o	2h2o	NOUN
fens-395	69	19	for	for	ADP
fens-395	69	20	ideal	ideal	ADJ
fens-395	69	21	conditions	condition	NOUN
fens-395	69	22	:	:	PUNCT
fens-395	69	23	kmol	kmol	PROPN
fens-395	69	24	/	/	SYM
fens-395	69	25	kg32	kg32	PROPN
fens-395	69	26	m	m	PROPN
fens-395	69	27	oh3ch	oh3ch	ADJ
fens-395	69	28	=	=	PUNCT
fens-395	69	29	;	;	PUNCT
fens-395	69	30	kmol	kmol	PROPN
fens-395	69	31	/	/	SYM
fens-395	69	32	kg32	kg32	PROPN
fens-395	69	33	m	m	PROPN
fens-395	69	34	2o	2o	NOUN
fens-395	69	35	=	=	PUNCT
fens-395	69	36	on	on	ADP
fens-395	69	37	anode	anode	NOUN
fens-395	69	38	:	:	PUNCT
fens-395	69	39	ch3oh	ch3oh	X
fens-395	69	40	+	+	NUM
fens-395	69	41	h2o	h2o	NOUN
fens-395	69	42	→	→	PUNCT
fens-395	69	43	co2	co2	NOUN
fens-395	69	44	+	+	X
fens-395	70	1	6h+	6h+	NUM
fens-395	71	1	+	+	NUM
fens-395	71	2	6e	6e	NOUN
fens-395	71	3	so	so	ADV
fens-395	71	4	,	,	PUNCT
fens-395	71	5	every	every	PRON
fens-395	71	6	ch3oh	ch3oh	NOUN
fens-395	71	7	molecule	molecule	NOUN
fens-395	71	8	produces	produce	VERB
fens-395	71	9	6e-	6e-	NUM
fens-395	71	10	.	.	PUNCT
fens-395	72	1	1kmol	1kmol	NUM
fens-395	72	2	ch3oh	ch3oh	NOUN
fens-395	72	3	:	:	PUNCT
fens-395	72	4	6enq	6enq	PROPN
fens-395	72	5	a	a	DET
fens-395	72	6	••=	••=	NOUN
fens-395	72	7	;	;	PUNCT
fens-395	72	8	q	q	NOUN
fens-395	72	9	=	=	SYM
fens-395	72	10	5,78208	5,78208	NUM
fens-395	72	11	.	.	PUNCT
fens-395	73	1	108c	108c	PROPN
fens-395	73	2	total	total	ADJ
fens-395	73	3	produced	produce	VERB
fens-395	73	4	energy	energy	NOUN
fens-395	73	5	is	be	AUX
fens-395	73	6	(	(	PUNCT
fens-395	73	7	u=1,21v	u=1,21v	ADJ
fens-395	73	8	)	)	PUNCT
fens-395	73	9	w	w	PROPN
fens-395	73	10	=	=	PUNCT
fens-395	73	11	q.u	q.u	PROPN
fens-395	73	12	=	=	SYM
fens-395	73	13	6,99	6,99	PROPN
fens-395	73	14	....	....	PUNCT
fens-395	73	15	108j	108j	NUM
fens-395	73	16	or	or	CCONJ
fens-395	73	17	,	,	PUNCT
fens-395	73	18	w	w	PROPN
fens-395	73	19	=	=	SYM
fens-395	73	20	194,3	194,3	NUM
fens-395	73	21	kwh	kwh	NOUN
fens-395	73	22	for	for	ADP
fens-395	73	23	real	real	ADJ
fens-395	73	24	conditions	condition	NOUN
fens-395	73	25	:	:	PUNCT
fens-395	73	26	u	u	NOUN
fens-395	73	27	=	=	NOUN
fens-395	73	28	0,82	0,82	NOUN
fens-395	73	29	v	v	NOUN
fens-395	73	30	(	(	PUNCT
fens-395	73	31	from	from	ADP
fens-395	73	32	literature	literature	NOUN
fens-395	73	33	)	)	PUNCT
fens-395	73	34	5	5	NUM
fens-395	73	35	%	%	NOUN
fens-395	73	36	lost	lose	VERB
fens-395	73	37	by	by	ADP
fens-395	73	38	intermediate	intermediate	ADJ
fens-395	73	39	reactions	reaction	NOUN
fens-395	73	40	,	,	PUNCT
fens-395	73	41	so	so	CCONJ
fens-395	73	42	the	the	DET
fens-395	73	43	efficiency	efficiency	NOUN
fens-395	73	44	,	,	PUNCT
fens-395	73	45	%	%	INTJ
fens-395	73	46	95oltanme	95oltanme	NUM
fens-395	73	47			PROPN
fens-395	73	48	c10	c10	VERB
fens-395	73	49	...	...	PUNCT
fens-395	73	50	492,595,06enq	492,595,06enq	PROPN
fens-395	73	51	8	8	NUM
fens-395	73	52	a	a	DET
fens-395	73	53	=	=	NOUN
fens-395	73	54	•••=	•••=	X
fens-395	73	55	kwh125j105,4	kwh125j105,4	PROPN
fens-395	73	56	82,010	82,010	NUM
fens-395	73	57	...	...	PUNCT
fens-395	74	1	492,5uqw	492,5uqw	NUM
fens-395	75	1	8	8	NUM
fens-395	75	2	8	8	NUM
fens-395	75	3	=	=	NOUN
fens-395	75	4	•=	•=	NOUN
fens-395	75	5	=	=	SYM
fens-395	75	6	=	=	NOUN
fens-395	75	7	•=	•=	VERB
fens-395	75	8	%	%	NOUN
fens-395	75	9	64	64	NUM
fens-395	75	10	kwh3,194	kwh3,194	PROPN
fens-395	76	1	kwh125	kwh125	PROPN
fens-395	76	2	w	w	PROPN
fens-395	76	3	w	w	PROPN
fens-395	76	4	ideal	ideal	ADJ
fens-395	76	5	real	real	ADJ
fens-395	76	6	energetic	energetic	ADJ
fens-395	76	7	=	=	NOUN
fens-395	76	8	=	=	SYM
fens-395	76	9	=	=	NOUN
fens-395	76	10	η	η	NOUN
fens-395	76	11	references	reference	NOUN
fens-395	76	12	1	1	NUM
fens-395	76	13	.	.	PUNCT
fens-395	77	1	h.	h.	PROPN
fens-395	77	2	dohle	dohle	PROPN
fens-395	77	3	,	,	PUNCT
fens-395	77	4	j.	j.	PROPN
fens-395	77	5	divisek	divisek	PROPN
fens-395	77	6	and	and	CCONJ
fens-395	77	7	r.	r.	PROPN
fens-395	77	8	jung	jung	PROPN
fens-395	77	9	,	,	PUNCT
fens-395	77	10	process	process	NOUN
fens-395	77	11	engineering	engineering	NOUN
fens-395	77	12	of	of	ADP
fens-395	77	13	the	the	DET
fens-395	77	14	direct	direct	ADJ
fens-395	77	15	methanol	methanol	NOUN
fens-395	77	16	fuel	fuel	NOUN
fens-395	77	17	cell	cell	NOUN
fens-395	77	18	,	,	PUNCT
fens-395	77	19	j.	j.	PROPN
fens-395	77	20	power	power	PROPN
fens-395	77	21	sources	source	NOUN
fens-395	77	22	86	86	NUM
fens-395	77	23	(	(	PUNCT
fens-395	77	24	2000	2000	NUM
fens-395	77	25	)	)	PUNCT
fens-395	77	26	,	,	PUNCT
fens-395	77	27	pp	pp	ADP
fens-395	77	28	.	.	PUNCT
fens-395	78	1	469–477	469–477	NUM
fens-395	78	2	2	2	NUM
fens-395	78	3	.	.	PUNCT
fens-395	78	4	h.	h.	PROPN
fens-395	78	5	dohle	dohle	PROPN
fens-395	78	6	,	,	PUNCT
fens-395	78	7	h.	h.	PROPN
fens-395	78	8	schmitz	schmitz	PROPN
fens-395	78	9	,	,	PUNCT
fens-395	78	10	t.	t.	PROPN
fens-395	78	11	bewer	bewer	NOUN
fens-395	78	12	,	,	PUNCT
fens-395	78	13	j.	j.	PROPN
fens-395	78	14	mergel	mergel	PROPN
fens-395	78	15	and	and	CCONJ
fens-395	78	16	d.	d.	PROPN
fens-395	78	17	stolten	stolten	PROPN
fens-395	78	18	,	,	PUNCT
fens-395	78	19	development	development	NOUN
fens-395	78	20	of	of	ADP
fens-395	78	21	a	a	DET
fens-395	78	22	compact	compact	ADJ
fens-395	78	23	500w	500w	NUM
fens-395	78	24	class	class	NOUN
fens-395	78	25	direct	direct	ADJ
fens-395	78	26	methanol	methanol	NOUN
fens-395	78	27	fuel	fuel	NOUN
fens-395	78	28	cell	cell	NOUN
fens-395	78	29	stack	stack	NOUN
fens-395	78	30	,	,	PUNCT
fens-395	78	31	j.	j.	PROPN
fens-395	78	32	power	power	PROPN
fens-395	78	33	sources	source	NOUN
fens-395	78	34	106	106	NUM
fens-395	78	35	(	(	PUNCT
fens-395	78	36	2002	2002	NUM
fens-395	78	37	)	)	PUNCT
fens-395	78	38	,	,	PUNCT
fens-395	78	39	pp	pp	ADP
fens-395	78	40	.	.	PUNCT
fens-395	79	1	313–322	313–322	NUM
fens-395	79	2	3	3	NUM
fens-395	79	3	.	.	PUNCT
fens-395	79	4	d.h	d.h	PROPN
fens-395	79	5	.	.	PROPN
fens-395	79	6	jung	jung	PROPN
fens-395	79	7	,	,	PUNCT
fens-395	79	8	c.h	c.h	PROPN
fens-395	79	9	.	.	PROPN
fens-395	79	10	lee	lee	PROPN
fens-395	79	11	,	,	PUNCT
fens-395	79	12	c.s	c.s	PROPN
fens-395	79	13	.	.	PROPN
fens-395	79	14	kim	kim	PROPN
fens-395	79	15	and	and	CCONJ
fens-395	79	16	d.r	d.r	PROPN
fens-395	79	17	.	.	PROPN
fens-395	79	18	shin	shin	PROPN
fens-395	79	19	,	,	PUNCT
fens-395	79	20	performance	performance	NOUN
fens-395	79	21	of	of	ADP
fens-395	79	22	a	a	DET
fens-395	79	23	direct	direct	ADJ
fens-395	79	24	methanol	methanol	NOUN
fens-395	79	25	polymer	polymer	NOUN
fens-395	79	26	electrolyte	electrolyte	NOUN
fens-395	79	27	fuel	fuel	NOUN
fens-395	79	28	cell	cell	NOUN
fens-395	79	29	,	,	PUNCT
fens-395	79	30	j.	j.	PROPN
fens-395	79	31	power	power	PROPN
fens-395	79	32	sources	source	NOUN
fens-395	79	33	71	71	NUM
fens-395	79	34	(	(	PUNCT
fens-395	79	35	1998	1998	NUM
fens-395	79	36	)	)	PUNCT
fens-395	79	37	,	,	PUNCT
fens-395	79	38	pp	pp	ADP
fens-395	79	39	.	.	PUNCT
fens-395	80	1	169–173	169–173	NUM
fens-395	80	2	.	.	NOUN
fens-395	81	1	4	4	NUM
fens-395	81	2	.	.	X
fens-395	81	3	muscalu	muscalu	NOUN
fens-395	81	4	,	,	PUNCT
fens-395	81	5	s.	s.	PROPN
fens-395	81	6	,	,	PUNCT
fens-395	81	7	platon	platon	PROPN
fens-395	81	8	,	,	PUNCT
fens-395	81	9	v.	v.	ADV
fens-395	81	10	,	,	PUNCT
fens-395	81	11	pile	pile	NOUN
fens-395	81	12	de	de	PROPN
fens-395	81	13	combustie	combustie	NOUN
fens-395	81	14	,	,	PUNCT
fens-395	81	15	editura	editura	PROPN
fens-395	81	16	tehnica	tehnica	PROPN
fens-395	81	17	,	,	PUNCT
fens-395	81	18	1989	1989	NUM
fens-395	81	19	5	5	NUM
fens-395	81	20	.	.	PUNCT
fens-395	82	1	s.r	s.r	PROPN
fens-395	82	2	.	.	PROPN
fens-395	82	3	narayanan	narayanan	PROPN
fens-395	82	4	,	,	PUNCT
fens-395	82	5	a.	a.	PROPN
fens-395	82	6	kindle	kindle	PROPN
fens-395	82	7	,	,	PUNCT
fens-395	82	8	b.	b.	PROPN
fens-395	82	9	jeffriesnakamura	jeffriesnakamura	PROPN
fens-395	82	10	,	,	PUNCT
fens-395	82	11	w.	w.	PROPN
fens-395	82	12	chun	chun	PROPN
fens-395	82	13	,	,	PUNCT
fens-395	82	14	h.	h.	PROPN
fens-395	82	15	frank	frank	PROPN
fens-395	82	16	,	,	PUNCT
fens-395	82	17	m.	m.	NOUN
fens-395	82	18	smart	smart	ADJ
fens-395	82	19	,	,	PUNCT
fens-395	82	20	t.i	t.i	PROPN
fens-395	82	21	.	.	PROPN
fens-395	82	22	valdez	valdez	PROPN
fens-395	82	23	,	,	PUNCT
fens-395	82	24	s.	s.	PROPN
fens-395	82	25	surampudi	surampudi	PROPN
fens-395	82	26	,	,	PUNCT
fens-395	82	27	g.	g.	PROPN
fens-395	82	28	halpert	halpert	PROPN
fens-395	82	29	,	,	PUNCT
fens-395	82	30	j.	j.	PROPN
fens-395	82	31	kosek	kosek	PROPN
fens-395	82	32	and	and	CCONJ
fens-395	82	33	c.	c.	PROPN
fens-395	82	34	cropley	cropley	PROPN
fens-395	82	35	:	:	PUNCT
fens-395	82	36	,	,	PUNCT
fens-395	82	37	recent	recent	ADJ
fens-395	82	38	advances	advance	NOUN
fens-395	82	39	in	in	ADP
fens-395	82	40	pem	pem	NOUN
fens-395	82	41	liquid	liquid	NOUN
fens-395	82	42	-	-	PUNCT
fens-395	82	43	feed	feed	NOUN
fens-395	82	44	direct	direct	ADJ
fens-395	82	45	methanol	methanol	NOUN
fens-395	82	46	fuel	fuel	NOUN
fens-395	82	47	cells	cell	NOUN
fens-395	82	48	,	,	PUNCT
fens-395	82	49	ann	ann	PROPN
fens-395	82	50	.	.	PROPN
fens-395	82	51	battery	battery	PROPN
fens-395	82	52	conf	conf	NOUN
fens-395	82	53	.	.	PUNCT
fens-395	83	1	appl	appl	PROPN
fens-395	83	2	.	.	PUNCT
fens-395	84	1	adv	adv	PROPN
fens-395	84	2	.	.	PROPN
fens-395	84	3	11	11	NUM
fens-395	84	4	(	(	PUNCT
fens-395	84	5	1996	1996	NUM
fens-395	84	6	)	)	PUNCT
fens-395	84	7	,	,	PUNCT
fens-395	84	8	p.	p.	NOUN
fens-395	84	9	113	113	NUM
fens-395	84	10	.	.	PUNCT
fens-395	85	1	6	6	X
fens-395	85	2	.	.	PUNCT
fens-395	85	3	n.	n.	PROPN
fens-395	85	4	nakagawa	nakagawa	PROPN
fens-395	85	5	and	and	CCONJ
fens-395	85	6	y.	y.	PROPN
fens-395	85	7	xiu	xiu	PROPN
fens-395	85	8	,	,	PUNCT
fens-395	85	9	performance	performance	NOUN
fens-395	85	10	of	of	ADP
fens-395	85	11	a	a	DET
fens-395	85	12	direct	direct	ADJ
fens-395	85	13	methanol	methanol	NOUN
fens-395	85	14	fuel	fuel	NOUN
fens-395	85	15	cell	cell	NOUN
fens-395	85	16	operated	operate	VERB
fens-395	85	17	at	at	ADP
fens-395	85	18	atmospheric	atmospheric	ADJ
fens-395	85	19	pressure	pressure	NOUN
fens-395	85	20	,	,	PUNCT
fens-395	85	21	j.	j.	PROPN
fens-395	85	22	power	power	PROPN
fens-395	85	23	sources	source	NOUN
fens-395	85	24	118	118	NUM
fens-395	85	25	(	(	PUNCT
fens-395	85	26	2003	2003	NUM
fens-395	85	27	)	)	PUNCT
fens-395	85	28	,	,	PUNCT
fens-395	85	29	pp	pp	ADP
fens-395	85	30	.	.	PUNCT
fens-395	86	1	248–255	248–255	NUM
fens-395	86	2	.	.	X
fens-395	86	3	7	7	X
fens-395	86	4	.	.	X
fens-395	86	5	a.k	a.k	PROPN
fens-395	86	6	.	.	PROPN
fens-395	86	7	shukla	shukla	PROPN
fens-395	86	8	,	,	PUNCT
fens-395	86	9	p.a	p.a	PROPN
fens-395	86	10	.	.	PROPN
fens-395	86	11	christensen	christensen	PROPN
fens-395	86	12	,	,	PUNCT
fens-395	86	13	a.j	a.j	PROPN
fens-395	86	14	.	.	PROPN
fens-395	86	15	dickinson	dickinson	PROPN
fens-395	86	16	and	and	CCONJ
fens-395	86	17	a.	a.	NOUN
fens-395	86	18	hamnett	hamnett	PROPN
fens-395	86	19	:	:	PUNCT
fens-395	86	20	,	,	PUNCT
fens-395	86	21	a	a	DET
fens-395	86	22	liquid	liquid	NOUN
fens-395	86	23	-	-	PUNCT
fens-395	86	24	feed	feed	NOUN
fens-395	86	25	solid	solid	ADJ
fens-395	86	26	polymer	polymer	NOUN
fens-395	86	27	electrolyte	electrolyte	NOUN
fens-395	86	28	direct	direct	ADJ
fens-395	86	29	methanol	methanol	NOUN
fens-395	86	30	fuel	fuel	NOUN
fens-395	86	31	cell	cell	NOUN
fens-395	86	32	operating	operate	VERB
fens-395	86	33	at	at	ADP
fens-395	86	34	near	near	ADP
fens-395	86	35	ambient	ambient	ADJ
fens-395	86	36	conditions	condition	NOUN
fens-395	86	37	,	,	PUNCT
fens-395	86	38	j.	j.	PROPN
fens-395	86	39	power	power	PROPN
fens-395	86	40	sources	source	NOUN
fens-395	86	41	76	76	NUM
fens-395	86	42	(	(	PUNCT
fens-395	86	43	1998	1998	NUM
fens-395	86	44	)	)	PUNCT
fens-395	86	45	,	,	PUNCT
fens-395	86	46	pp	pp	ADP
fens-395	86	47	.	.	PUNCT
fens-395	87	1	54–59	54–59	NUM
fens-395	87	2	.	.	PUNCT
fens-395	88	1	8	8	NUM
fens-395	88	2	.	.	PUNCT
fens-395	88	3	a.k	a.k	PROPN
fens-395	88	4	.	.	PROPN
fens-395	88	5	shukla	shukla	PROPN
fens-395	88	6	,	,	PUNCT
fens-395	88	7	c.l	c.l	PROPN
fens-395	88	8	.	.	PROPN
fens-395	88	9	jackson	jackson	PROPN
fens-395	88	10	,	,	PUNCT
fens-395	88	11	k.	k.	PROPN
fens-395	88	12	scott	scott	PROPN
fens-395	88	13	and	and	CCONJ
fens-395	88	14	g.	g.	PROPN
fens-395	88	15	murgia	murgia	PROPN
fens-395	88	16	,	,	PUNCT
fens-395	88	17	a	a	DET
fens-395	88	18	solid	solid	ADJ
fens-395	88	19	-	-	PUNCT
fens-395	88	20	polymer	polymer	NOUN
fens-395	88	21	electrolyte	electrolyte	NOUN
fens-395	88	22	direct	direct	ADJ
fens-395	88	23	methanol	methanol	NOUN
fens-395	88	24	fuel	fuel	NOUN
fens-395	88	25	cell	cell	NOUN
fens-395	88	26	with	with	ADP
fens-395	88	27	a	a	DET
fens-395	88	28	mixed	mixed	ADJ
fens-395	88	29	reactant	reactant	NOUN
fens-395	88	30	and	and	CCONJ
fens-395	88	31	air	air	NOUN
fens-395	88	32	anode	anode	NOUN
fens-395	88	33	,	,	PUNCT
fens-395	88	34	j.	j.	PROPN
fens-395	88	35	power	power	PROPN
fens-395	88	36	sources	source	NOUN
fens-395	88	37	111	111	NUM
fens-395	88	38	(	(	PUNCT
fens-395	88	39	2002	2002	NUM
fens-395	88	40	)	)	PUNCT
fens-395	88	41	,	,	PUNCT
fens-395	88	42	pp	pp	PROPN
fens-395	88	43	.	.	PUNCT
fens-395	89	1	43–51	43–51	NUM
fens-395	89	2	.	.	NOUN
fens-395	90	1	9	9	NUM
fens-395	90	2	.	.	PUNCT
fens-395	90	3	s.	s.	PROPN
fens-395	90	4	surampidi	surampidi	PROPN
fens-395	90	5	,	,	PUNCT
fens-395	90	6	s.r	s.r	PROPN
fens-395	90	7	.	.	PROPN
fens-395	90	8	narayanan	narayanan	PROPN
fens-395	90	9	,	,	PUNCT
fens-395	90	10	e.	e.	PROPN
fens-395	90	11	vamos	vamos	PROPN
fens-395	90	12	,	,	PUNCT
fens-395	90	13	h.	h.	PROPN
fens-395	90	14	frank	frank	PROPN
fens-395	90	15	,	,	PUNCT
fens-395	90	16	g.	g.	PROPN
fens-395	90	17	halpert	halpert	PROPN
fens-395	90	18	,	,	PUNCT
fens-395	90	19	a.	a.	PROPN
fens-395	90	20	laconti	laconti	PROPN
fens-395	90	21	,	,	PUNCT
fens-395	90	22	j.	j.	PROPN
fens-395	90	23	kosek	kosek	PROPN
fens-395	90	24	,	,	PUNCT
fens-395	90	25	g.k	g.k	PROPN
fens-395	90	26	.	.	PROPN
fens-395	90	27	surya	surya	PROPN
fens-395	90	28	prakash	prakash	PROPN
fens-395	90	29	and	and	CCONJ
fens-395	90	30	g.a	g.a	PROPN
fens-395	90	31	.	.	PROPN
fens-395	90	32	olah	olah	PROPN
fens-395	90	33	,	,	PUNCT
fens-395	90	34	advances	advance	NOUN
fens-395	90	35	in	in	ADP
fens-395	90	36	direct	direct	ADJ
fens-395	90	37	oxidation	oxidation	NOUN
fens-395	90	38	methanol	methanol	NOUN
fens-395	90	39	fuel	fuel	NOUN
fens-395	90	40	cells	cell	NOUN
fens-395	90	41	,	,	PUNCT
fens-395	90	42	j.	j.	PROPN
fens-395	90	43	power	power	PROPN
fens-395	90	44	sources	source	NOUN
fens-395	90	45	47	47	NUM
fens-395	90	46	(	(	PUNCT
fens-395	90	47	1994	1994	NUM
fens-395	90	48	)	)	PUNCT
fens-395	90	49	,	,	PUNCT
fens-395	90	50	pp	pp	ADP
fens-395	90	51	.	.	PUNCT
fens-395	91	1	377–385	377–385	NUM
fens-395	91	2	.	.	PUNCT
fens-395	92	1	10	10	NUM
fens-395	92	2	.	.	PUNCT
fens-395	93	1	t.i	t.i	PROPN
fens-395	93	2	.	.	PROPN
fens-395	93	3	valdez	valdez	PROPN
fens-395	93	4	,	,	PUNCT
fens-395	93	5	s.r	s.r	PROPN
fens-395	93	6	.	.	PROPN
fens-395	93	7	narayanan	narayanan	PROPN
fens-395	93	8	,	,	PUNCT
fens-395	93	9	recent	recent	ADJ
fens-395	93	10	studies	study	NOUN
fens-395	93	11	on	on	ADP
fens-395	93	12	methanol	methanol	NOUN
fens-395	93	13	crossover	crossover	NOUN
fens-395	93	14	in	in	ADP
fens-395	93	15	liquid	liquid	NOUN
fens-395	93	16	-	-	PUNCT
fens-395	93	17	feed	feed	NOUN
fens-395	93	18	direct	direct	ADJ
fens-395	93	19	methanol	methanol	NOUN
fens-395	93	20	fuel	fuel	NOUN
fens-395	93	21	cells	cell	NOUN
fens-395	93	22	,	,	PUNCT
fens-395	93	23	proceedings	proceeding	NOUN
fens-395	93	24	of	of	ADP
fens-395	93	25	the	the	DET
fens-395	93	26	194th	194th	ADJ
fens-395	93	27	meeting	meeting	NOUN
fens-395	93	28	of	of	ADP
fens-395	93	29	the	the	DET
fens-395	93	30	electrochemical	electrochemical	ADJ
fens-395	93	31	society	society	NOUN
fens-395	93	32	,	,	PUNCT
fens-395	93	33	boston	boston	PROPN
fens-395	93	34	,	,	PUNCT
fens-395	93	35	november	november	PROPN
fens-395	93	36	1998	1998	NUM
fens-395	93	37	.	.	PUNCT
fens-395	94	1	11	11	NUM
fens-395	94	2	.	.	X
fens-395	95	1	veziroglu	veziroglu	PROPN
fens-395	95	2	,	,	PUNCT
fens-395	95	3	t.	t.	PROPN
fens-395	95	4	,	,	PUNCT
fens-395	95	5	n.	n.	NOUN
fens-395	95	6	,	,	PUNCT
fens-395	95	7	international	international	ADJ
fens-395	95	8	journal	journal	NOUN
fens-395	95	9	of	of	ADP
fens-395	95	10	hydrogen	hydrogen	NOUN
fens-395	95	11	energy	energy	NOUN
fens-395	95	12	,	,	PUNCT
fens-395	95	13	2000	2000	NUM
fens-395	95	14	,	,	PUNCT
fens-395	95	15	1143	1143	NUM
