Page 183 - Introduction to Transfer Phenomena in PEM Fuel Cells
P. 183

172     Introduction to Transfer Phenomena in PEM Fuel Cells
                           [THI 97] THIRUMALAI D., WHITE R.E., “Mathematical modelling of proton exchange
                             membrane fuel cell stacks”,  Journal of the Electrochemical Society,  vol. 144,
                             pp. 1717–1723, 1997.
                           [VAL 06] VALLERES C.,  WINKELMANN D., ROIZARD D.  et al., “On  Schröder’s
                             Paradox”, Journal of Membrane Science, vol. 278, nos 1–2, pp. 357–364, 2006.
                           [VAN 04] VANDERSTEEN J.D.J., KENNEY B., PHAROAH J.G. et al., “Mathematical
                             modelling of the transport phenomena  and the chemical/electrochemical
                             reactions in solid oxide  fuel cells: a review”,  Proceedings  of the Canadian
                             Hydrogen and Fuel Cells Conference, Toronto, September 2004.
                           [VER 88] VERBRUGGE M.W., HILL R.H., “Experimental and theoretical investigation
                             of  perfluorosulfonic acid  membrane equilibrated  with aqueous sulfuric acid
                             solutions”, Journal of Physical Chemistry, vol. 92, no. 23, pp. 6778–6783, 1988.
                           [WAG 03] WAGNER H.A., “Space – shuttle fuel cell”, in VIELSTICH W., LAMM A.,
                             GASTEIGER H.A. (eds), Handbook of Fuel Cells, Fundamentals technology and
                             application, vol. 4., John Wiley & Sons, New York, 2003.
                           [WAN 04] WANG C.Y., “Fundamentals models for fuel cell engineering”, Chemical
                             Reviews, vol. 104, pp. 4727–4766, 2004.
                           [WAN 06a] WANG  Y., WANG  C.Y., “Dynamics of polymer electrolyte fuel cells
                             undergoing load changes”, Electrochimica Acta, vol. 51, pp. 3924–3933, 2006.
                           [WAN 06b] WANG  Y.,  WANG  C.Y., NONISOTHERMAL  A., “Two-phase  model for
                             polymer electrolyte fuel cells”, Journal of the Electrochemical Society, vol. 153,
                             no. 6, pp. A1193–A1200, 2006.
                           [WAT 03] WATARI T., WANG H., KUWAHARA K. et al., “Water vapor sorption and
                             diffusion properties of sulfonated polyimide membranes”, Journal of Membrane
                             Science, vol. 219, pp. 137–147, 2003.
                           [WEB 04a] WEBER A.Z., NEWMAN J., “Modeling transport in polymer electrolyte
                             fuel cells”, Chemical Reviews, vol. 104, pp. 4679–4726, 2004.
                           [WEB 04b] WEBER A.Z., NEWMAN J., “Transport in polymer electrolyte membranes
                             – II. Mathematical  model”,  Journal of the Electrochemical Society, vol. 151,
                             no. 2, pp. A311–A325, 2004.
                           [WEB 06] WEBER A.Z., NEWMAN J., “Coupled thermal and water management in
                             polymer electrolyte fuel cells”, Journal of the Electrochemical Society, vol. 153,
                             no. 12, pp. A2205–A2214, 2006.
   178   179   180   181   182   183   184   185   186   187   188