1 Yi, B.L., Fuel Cell—Principle, Technology & Applica-tion, Chemical Industry Press, Beijing, 161—162, 238(2003). (in Chinese) 2 Ahluwalia, R.K., Wang, X., “Direct hydrogen fuel cell systems for hybrid vehicles”, J. Power Sources, 139, 152—164(2005). 3 Yu, H.M., Ziegler, C., Oszcipok, M., Zobel, M., Hebling, C., “Hydrophilicity and hydrophobicity study of catalyst layers in proton exchange membrane fuel cells”, Elec-trochimica Acta, 51, 1199—1207 (2006). 4 Cho, E.A., Ko, J.J., Hong, H.Y., “Characteristics of the PEMFC repetitively brought to temperatures below 0℃”, J. Electrochem. Soc., 150(12), A1667—1670 (2003). 5 Garris, C.A., “Fuel cell pressurization system and method of use”, USA Pat., 0039673A1 (2002). 6 Reiser, C.A., “Battery-boosted, Rapid startup of frozen fuel cell”, USA Pat., 777115B2 (2004). 7 William, S., Wheat, W.S., Meltser, M.A., Masten, D.A., “Fuel cell energy management system for cold environ-ments”, USA Pat., 6727013B2 (2004). 8 Edlund, D.J., Pledger, W.A., “Integrated fuel cell system”, USA Pat., 6869707B2 (2005). 9 Yu, H.M., Zhang, S.S., Yi, B.L., Ming, P.W., “A method for improving the durability of PEMFCs in subzero en-vironment”, CN Pat., 136768.2 (2005). 10 Li, B.J., Handbook for Chemical Laboratory Assistant, Dalian University of Technology Press, Dalian (1996). (in Chinese)
|