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High-temperature polymer electrolyte fuel

Ma Y,Wainright J, Savinell R, (2004). Conductivity of PBI Membranes for high-temperature polymer electrolyte fuel cells. Journal of Electrochemical Society, 151 8-16... [Pg.78]

Ahluwalia, R. K., Doss, E. D., and Kumar, R., Performance of High-Temperature Polymer Electrolyte Fuel Cell Systems, lEA Annex XI Phase II Meeting, Philadelphia, PA, May 17-18, 2002. [Pg.274]

Qian G, Benicewicz BC (2009) Synthesis and characterization of high molecular weight hexalluoroisopropylidene-containing polyhenzimidazole for high-temperature polymer electrolyte fuel cells. J Polym Sci Pol Chem 47 4064-4073... [Pg.226]

Wannek C, Lehnert W, Mergel J (2009) Membrane electrode assemblies for high-temperature polymer electrolyte fuel cells based on poly (2,5-benzimidazole) membranes with phosphoric acid impregnation via the catalyst layer. J Power Sources 192 258-266... [Pg.227]

Aric6 A S, Stassi A, Modica E, Ornelas R, Gatto I, Passalacqua E and Antonucci V (2008), Performance and degradation of high temperature polymer electrolyte fuel cell catalysts. Journal of Power Sources, 178,525-536. [Pg.671]

Schmidt, T.J. (2006) Durability and degradation in high-temperature polymer electrolyte fuel cells. ECS Trans., 1 (8), 19-31. [Pg.35]

J. (2009) Membrane electrode assemblies for high-temperature polymer electrolyte fuel cells based... [Pg.36]

Wannek, C., Konradi, I., Mergel, J., and Lehnert, W. (2009) Redistribution of phosphoric acid in membrane electrode assemblies for high temperature polymer electrolyte fuel cells. Int.J. Hydrogen Energy, 23, 9479. [Pg.36]

Schmidt, T.). (2009) High-temperature polymer electrolyte fuel cells durability insights, in Pdymer Electrolyte Fuel Cell Durability (eds. F.N. Buchi, M. Inaba, and T.J. Schmidt), Springer, New York, 199-221. [Pg.404]

High-Temperature Polymer Electrolyte Fuel-Cell Modeling... [Pg.819]

J., Lehnert, W., Banhart, )., and Stolten, D. (2010) In-situ synchrotron X-ray radiography on high temperature polymer electrolyte fuel cells. Electrochem. Commun., 12, 1436. [Pg.837]

HT-PEFC high-temperature polymer electrolyte fuel cell... [Pg.958]

High-Temperature Polymer Electrolyte Fuel Cells, Fig. 1 Chemical structures of PBI and TPS variants (a) m-PBI,... [Pg.997]

High-Temperature Polymer Electrolyte Fuel Cells, Fig. 2 CO-induced voltage loss for low- and high-temperature PEFCs. The LT-PEFC uses 0.5 mg/cm PtRu/C, the HT-PEFC uses 0.5 mg/cm Pt/C as catalyst. LT data are taken from ref. [16]. [Pg.999]

High-Temperature Polymer Electrolyte Fuel Cells, Fig. 3 Long-term durability of H2-Air HT-PEFCs (a) MEA using Advent TPS at 180 °C, 1 baTa, H2-Air stoich. 1.2/2 and (b) BASF Celtec P 1,000 (PBI) MEA at 160 °C, 1 bara, Hz-Air stoich. 1.2/2... [Pg.1001]


See other pages where High-temperature polymer electrolyte fuel is mentioned: [Pg.305]    [Pg.493]    [Pg.604]    [Pg.706]    [Pg.819]    [Pg.838]    [Pg.926]    [Pg.1037]    [Pg.1265]   


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