Performance and durability of high temperature proton exchange membrane fuel cells with silicon carbide filled polybenzimidazole composite membranes

被引:4
作者
Schonvogel, Dana [1 ,7 ]
Belack, Joerg [2 ]
Vidakovic, Jurica [3 ]
Schmies, Henrike [1 ]
Uhlig, Lisa M. [1 ]
Langnickel, Hendrik [4 ]
Tung, Patrick Kin Man [5 ]
Meyer, Quentin [6 ]
Zhao, Chuan [6 ]
Wagner, Peter [1 ]
机构
[1] German Aerosp Ctr, Inst Engn Thermodynam, Stuttgart, Germany
[2] BASF Catalysts, Hannover, Germany
[3] Trigona, Blaubeuren, Germany
[4] German Aerosp Ctr, Inst Networked Energy Syst, Oldenburg, Germany
[5] Univ New South Wales, Tyree Micro CT Lab, Sydney, Australia
[6] Univ New South Wales, Sch Chem, Sydney 2052, Australia
[7] Carl von Ossietzky Str 15, D-26129 Oldenburg, Germany
关键词
High temperature proton exchange membrane; fuel cells; Membrane electrode assembly; Durability; Polybenzimidazole; Silicon carbide; ELECTROLYTE MATRIX; CATALYST; IMPACT;
D O I
10.1016/j.jpowsour.2023.233835
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
High temperature polymer electrolyte membrane fuel cells (HT-PEMFCs) are used for stationary to mobile applications and show increased tolerances to fuel impurities like CO compared to their low temperature counterpart. However, conventional HT-PEMFC membranes, based on polybenzimidazole (PBI), suffer from creeping during long-term operation and thus a significant increase in surface resistance. In this study, inorganic fillers in terms of silicon carbide (SiC) are incorporated into the standard PBI-based Celtec (R)-P membrane by a wellestablished large-scale polyphosphoric acid process. Operations over 1000 h of load cycling between 0.6 and 1.0 A cm -2 of SiC and for conventional HT-PEMFCs reveal differences in long-term durability. The ohmic resistance of the SiC-based single cell is 1/3 lower, while the membrane has a higher thickness retention. Cell performances are improved with lower degradation rates (<65 mu V h(-1) for both SiC and >100 mu V h(-1) for both conventional HT-PEMFCs) after 1000 h. However, SiC particle mobility and increased hydrogen permeability are observed after testing.
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页数:10
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