Environmental Engineering Reference
In-Depth Information
7. Kamarudin SK, Achmad F, Daud WRW (2009) Overview on the application of direct
methanol fuel cell (DMFC) for portable electronic devices. Int J Hydrogen Energ 34:
6902-6916
8. Gottesfeld S, Pafford J (1988) A new approach to the problem of carbon monoxide poisoning
in fuel cells operating at low temperatures. J Electrochem Soc 135(10):2651-2652
9. Kreuer KD (2001) On the development of proton conducting polymer membranes for
hydrogen and methanol fuel cells. J Membrane Sci 185:29-39
10. Zawodzinski TA Jr, Spronger TE, Davey J, Jestel R, Lopez C, Valerio J, Gottesfeld S (1993)
A
comparative
study
of
water
uptake
by
and
transport
through
ionomeric
fuel
cell
membranes. J Electrochem Soc 140(7):1981-1985
11. Chen C, Fuller TF (2009) The effect of humidity on the degradation of Nafion membrane.
Polym Degrad Stabil 94:1436-1447
12. Jiang R, Kunz HR, Fenton JM (2005) Electrochemical oxidation of H 2 and H 2 /CO mixtures
in higher temperature (T cell [ 100C) proton exchange membrane fuel cells: electrochemical
impedance spectroscopy. J Electrochem Soc 152(7):A1329-A1340
13. Li Q, He RH, Gao JA, Jensen JO, Bjerrum NJ (2003) The CO poisoning effect in PEMFCs
operational at temperatures up to 200C. J Electrochem Soc 150(12):A1599-A1605
14. Das SK, Reis A, Berry KJ (2009) Experimental evaluation of CO poisoning on the
performance of a high temperature proton exchange membrane fuel cells. J Power Sources
193:691-698
15. Mathias MF, Makharia R, Gasteiger HA, Conley JJ, Fuller TJ, Gittleman CJ, Kocha SS,
Miller DP, Mittelsteadt CK, Xie T, Yan SG, Yu PT (2005) Two fuel cell cars in every
garage? Electrochem Soc Interface 14(3):24-35
16. Hogarth WHJ, da Costa JCD, Lu GQ (2005) Solid acid membranes for high temperature
([140C) proton exchange membrane fuel cells. J Power Sources 142(1-2):223-237
17. Sone Y, Ekdunge P, Simonsson D (1996) Proton conductivity of Nafion 117 as measured by a
four-electrode AC impedance method. J Electrochem Soc 143(4):1254-1259
18. Peinemann KV, Nunes SP (eds) (2008) Membranes for energy conversion. Wiley-VCH
Verlag Gmbh & Co. KGaA, Weinheim
19. Yang C, Costamagna P, Srinivasan S, Benziger J, Bocarsly AB (2001) Approaches and
technical challenges to high temperature operation of proton exchange membranes fuel cells.
J Power Sources 103:1-9
20. Santiago EI, Isidoro RA, Dresch MA, Matos BR, Linardi M, Fonseca FC (2009) Nafion-TiO 2
hybrid electrolytes for stable operation of PEM fuel cell at high temperature. Electrochim
Acta 54:4111-4117
21. Harrison WL, Hickner MA, Kim YS, MaGrath JE (2005) Poly(arylene ether sulphone)
copolymers and related systems from disulphonated monomer building blocks: synthesis,
characterization and performance—a topical review. Fuel Cells 5:201-212
22. Herring AM (2006) Inorganic polymer composite membranes for proton exchange membrane
fuel cells. J Macromol Sci C 46:245-296
23. Quinfeng L, Jensen JO, Savinell RF, Bjerrum NJ (2009) High temperature proton exchange
membranes based on polybenzimidazoles for fuel cells. Prog Polym Sci 34:339-477
24. Wainright JS, Wang JT, Weng D, Savinell RF, Litt M (1995) Acid-doped polybenzim-
idazoles—a new polymer electrolyte. J Electrochem Soc 142:L121-L123
25. Schuster M, Rager T, Noda A, Kreuer KD, Majer J (2005) About the choice of the protogenic
group in PEM separator materials for intermediate temperature, low humidity operation: a
critical comparison of sulphonic acid, phosphonic acid and imidazole functionalized model
compounds. Fuel Cells 5:355-365
26. Peng J, Shin JY, Song TW (2008) Transient response of high temperature PEM fuel cell.
J Power Sources 179:220-231
27. Sakai T, Takeraka H, Torikai E (1986) Gas diffusion in the dried and hydrated Nafions.
J Electrochem Soc 133(1):88-92
28. Paganin VA, Ticianelli EA, Gonzales ER (1996) Development and electrochemical studies of
gas diffusion electrodes for polymer electrolyte fuel cells. J Appl Electrochem 26:297-304
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