Durability study and lifetime prediction of baseline proton exchange membrane fuel cell under severe operating conditions

被引:90
作者
Marrony, M. [1 ]
Barrera, R. [2 ]
Quenet, S. [1 ]
Ginocchio, S. [2 ]
Montelatici, L. [2 ]
Aslanides, A. [1 ]
机构
[1] European Inst Energy Res, D-76131 Karlsruhe, Germany
[2] Edison, I-10028 Trofarello, Italy
关键词
PEMFC-HT; lifetime; load cycling; cell testing; sulfonated polyetheretherketone; Nafion (R);
D O I
10.1016/j.jpowsour.2008.02.096
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Comparative studies of mechanical and electrochemical properties of Nafion (R) and sulfonated polyetheretherketone polymer-type membranes are carried out under severe fuel cell conditions required by industrials, within stationary and cycling electric load profiles. These membranes are proposed to be used in PEM between 70 and 90 degrees C as fluorinated or non-fluorinated baseline membranes, respectively. Thus, thought the performance of both membranes remains suitable, Nafion (R) backbone brought better mechanical properties and higher electrochemical stabilities than sulfonated polyetheretherketone backbone. The performance stability and the mechanical strength of the membrane-electrode assembly were shown to be influenced by several intrinsic properties of the membrane (e.g., thermal pre-treatment, thickness) and external conditions (fuel cell operating temperature, relative humidity). Finally, a lifetime prediction for membranes under stationary conditions is proposed depending on the operation temperature. At equivalent thicknesses (i.e. 50 mu m), Nafion (R) membranes were estimated able to operate into the 80-90 degrees C range while sulfonated polyetheretherketone would be limited into the 70-80 degrees C range. This approach brings baseline information about the capability of these types of polymer electrolyte membrane under fuel cell critical operations. Finally, it is revealed as a potential tool for the selection of the most promising advanced polymers for the ensuing research phase. (c) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:469 / 475
页数:7
相关论文
共 20 条
[1]   Effects of hydrothermal/thermal treatments on the water-uptake of Nafion membranes and relations with changes of conformation, counter-elastic force and tensile modulus of the matrix [J].
Alberti, G. ;
Narducci, R. ;
Sganappa, M. .
JOURNAL OF POWER SOURCES, 2008, 178 (02) :575-583
[2]   XPS investigation of Nafion® membrane degradation [J].
Chen, Cheng ;
Levitin, Galit ;
Hess, Dennis W. ;
Fuller, Thomas F. .
JOURNAL OF POWER SOURCES, 2007, 169 (02) :288-295
[3]   Multiblock sulfonated-fluorinated poly(arylene ether)s for a proton exchange membrane fuel cell [J].
Ghassemi, H ;
McGrath, JE ;
Zawodzinski, TA .
POLYMER, 2006, 47 (11) :4132-4139
[4]   Aspects of the chemical degradation of PFSA ionomers used in PEM fuel cells [J].
Healy, J ;
Hayden, C ;
Xie, T ;
Olson, K ;
Waldo, R ;
Brundage, A ;
Gasteiger, H ;
Abbott, J .
FUEL CELLS, 2005, 5 (02) :302-308
[5]   Alternative polymer systems for proton exchange membranes (PEMs) [J].
Hickner, MA ;
Ghassemi, H ;
Kim, YS ;
Einsla, BR ;
McGrath, JE .
CHEMICAL REVIEWS, 2004, 104 (10) :4587-4611
[6]   Recent advances in the functionalisation of polybenzimidazole and polyetherketone for fuel cell applications [J].
Jones, DJ ;
Rozière, J .
JOURNAL OF MEMBRANE SCIENCE, 2001, 185 (01) :41-58
[7]  
JONES DJ, 2005, FUEL CELL B, V8, P12
[8]   Aging mechanisms and lifetime of PEFC and DMFC [J].
Knights, SD ;
Colbow, KM ;
St-Pierre, J ;
Wilkinson, DP .
JOURNAL OF POWER SOURCES, 2004, 127 (1-2) :127-134
[9]   On the development of proton conducting materials for technological applications [J].
Kreuer, KD .
SOLID STATE IONICS, 1997, 97 (1-4) :1-15
[10]   Multilayer sulfonated polyaromatic PEMFC membranes [J].
Marrony, M ;
Rozière, J ;
Jones, DJ ;
Lindheimer, A .
FUEL CELLS, 2005, 5 (03) :412-418