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Elucidating the operating behavior of PEM fuel cell with nickel foam as cathode flow field 被引量:2

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摘要 Metal foam material,which serves as an alternative replacement of the conventional flow distributor of proton exchange membrane(PEM)fuel cell,has been attracting much attention over last few decades.In this work,three-dimensional modeling work for PEM fuel cell containing metal foam as cathode flow distributor has been carried out.The fuel cell performance and operating characteristics of metal foam flow field and conventional parallel flow channel have been compared and discussed.The cell performance has been reasonably validated based on the corresponding experimental tests conducted in this study.The superior performance of PEM fuel cell with metal foam as cathode flow field benefits a lot from the uniform gas flow.The porous metal foam material provides more pathways for the water delivery at the interface of metal foam flow field and gas diffusion layer(GDL),accelerating water removal capability of cathode.Because of the significant oxygen transfer loss in diffusion limited parallel channel,the operation of PEM fuel cell with parallel channel is found to be more sensitive to cathode humidification and oxygen supply at inlet.Due to the more uniform and effective electron transport though the porous electrode,it is possible to use thinner GDL in metal foam PEM fuel cell.It is expected that this study could give a good baseline of operating behavior of PEM fuel cell with metal foam flow distributor.
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2021年第5期1041-1056,共16页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China (Grant No.51921004) the Natural Science Foundation for Outstanding Young Scholars of Tianjin (Grant No.18JCJQJC46700)。
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  • 1[1]Shukla,A.K.,Ravikumar,M.K.,Gandhi,K.S.,Direct methanol fuel cells for vehicular applications,J.Solid State Electrochem,1998,2:117-122.
  • 2[2]Hirschenhofer,J.H.,Stauffer,D.B.,Fuel Cell Handbook,sixth ed.,Parsons Corporation Reading,2002.
  • 3[3]Sundmacher,K.,Scott,K.,Direct methanol polymer electrolyte fuel cell:Analysis of charge and mass transfer in the vapour-liquid-solid system,Chemical Engineering Science,1999,54:2927-2936.
  • 4[4]Argyropoulos,P.,Scott,K.,Taama,W.M.,One-dimensional thermal model for direct methanol fuel cell stacks Part I.Model development,Journal of Power Sources,1999,79:169-183.
  • 5[5]Argyropoulos,P.,Scott,K.,One-dimensional thermal model for direct methanol fuel cell stacks Part II.Model based parametric analysis and predicted temperature profiles,Journal of Power Sources,1999,79:184-198.
  • 6[6]Scott,K.,Argyropoulos,P.,A model for the liquid feed direct methanol fuel cell,Journal of Electroanalytical Chemistry,1999,477:97-110.
  • 7[7]Argyropoulos,P.,Scott,K.,A semi-empirical model of the direct methanol fuel cell performance Part I.Model development and verification,Journal of Power Sources,2003,123:190-199.
  • 8[8]Dohle,H.,Mergel,J.,Heat and power management of a direct-methanol-fuel-cell (DMFC) system,Journal of Power Sources,2002,111:268-282.
  • 9[9]Stefanie,V.A.,Josefin,M.,Process analysis of a liquid-feed direct methanol fuel cell system,Journal of Power Sources,2000,91:193-201.
  • 10[10]Guo,H.,Ma,C.F.,Heat and mass transfer and two-phase flow in hydrogen proton exchange membrane fuel cells and direct methanol fuel cells,in Proceedings of First International Conference on Fuel Cell Science,Engineering and Technology,New York:The American Society of Mechanical Engineers,2003,471-476.

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