The Effect of Membrane Thickness on the Performance of PBI-Based High-Temperature Direct Methanol Fuel Cells

作者: Matthew Suarez

DOI:

关键词:

摘要:

参考文章(25)
Sunhoe Kim, Types of Fuel Cells and Applications for Electricity and Heat Co-Generation Lecture Notes in Electrical Engineering. pp. 561- 565 ,(2012) , 10.1007/978-94-007-2911-7_53
Gregor Hoogers, Fuel Cell Technology Handbook ,(2002)
Lorenz Gubler, Denis Kramer, Jörg Belack, Ömer Ünsal, Thomas J. Schmidt, Günther G. Scherer, Celtec-V A Polybenzimidazole-Based Membrane for the Direct Methanol Fuel Cell Journal of The Electrochemical Society. ,vol. 154, ,(2007) , 10.1149/1.2754078
J.M. Andújar, F. Segura, Fuel cells: History and updating. A walk along two centuries Renewable & Sustainable Energy Reviews. ,vol. 13, pp. 2309- 2322 ,(2009) , 10.1016/J.RSER.2009.03.015
P.J.A Tijm, F.J Waller, D.M Brown, Methanol technology developments for the new millennium Applied Catalysis A-general. ,vol. 221, pp. 275- 282 ,(2001) , 10.1016/S0926-860X(01)00805-5
M. Mamlouk, K. Scott, Phosphoric acid‐doped electrodes for a PBI polymer membrane fuel cell International Journal of Energy Research. ,vol. 35, pp. 507- 519 ,(2011) , 10.1002/ER.1708
K Scott, W.M Taama, P Argyropoulos, K Sundmacher, The impact of mass transport and methanol crossover on the direct methanol fuel cell Journal of Power Sources. ,vol. 83, pp. 204- 216 ,(1999) , 10.1016/S0378-7753(99)00303-1
Henry Foster Morley, On Grove's Gas-Battery Proceedings of the Physical Society of London. ,vol. 2, pp. 212- 223 ,(1875) , 10.1088/1478-7814/2/1/323