Degradation behavior of a polymer electrolyte membrane fuel cell employing metallic bipolar plates under reverse current condition

被引:35
作者
Eom, KwangSup [1 ]
Cho, EunAe [1 ]
Nam, Suk-Woo [1 ]
Lim, Tae-Hoon [1 ]
Jang, Jong Hyun [1 ]
Kim, Hyoung-Juhn [1 ]
Hong, Bo Ki [2 ]
Yang, Yoo Chang [2 ]
机构
[1] Korea Inst Sci & Technol, Fuel Cell Ctr, Seoul 136791, South Korea
[2] Hyundai Kia Motors, Fuel Cell Vehicle Team 1, Ecotechnol Ctr, Yongin 446912, Gueonggi Do, South Korea
关键词
Polymer electrolyte membrane fuel cell; Bipolar plate; Degradation; 1.4 V pulse cycling; Stainless steel bipolar plate; OXYGEN PARTIAL-PRESSURE; STAINLESS-STEEL; CORROSION BEHAVIOR; PEMFC; DURABILITY; CATHODE; CONDUCTIVITY; ENVIRONMENT; MECHANISM; HYDROGEN;
D O I
10.1016/j.electacta.2012.06.024
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
To examine durability of metallic bipolar plates (Bps) under reverse current conditions, the degradation of PEMFC employing graphite, bare 316L, and CrN-coated 316L BPs is investigated via a 1.4V pulse cycling test. After 20 cycles, the average voltage decay rate at 160 mA cm(-2) is 6.8, 16.8, and 12.0 mV cycle(-1) for the single cell using graphite, bare 316L, and CrN-coated 316L BPs, respectively. SEM, EPMA, and TEM analyses of the cathodes that experienced an extraordinary high voltage of 1.4 V show that carbon corrosion and Pt migration/agglomeration occur similarly for the single cells, irrespective of the bipolar plate material. In contrast, in the membrane tested with bare 316L and CrN-coated 316L, Fe and Cr are detected; the amounts of Fe and Cr in the membrane are higher for bare 316L than for CrN-coated 316L. The membrane contamination results in a decrease in the ionic conductivity of the membranes, which mainly contributes to the faster performance decay of the single cells employing bare 316L and CrN-coated 316L bipolar plates. Thus, if automotive PEMFCs using metallic BPs are exposed to reverse current conditions upon start/stop cycles, metal contamination of the membrane could accelerate the performance decay in addition to the cathode degradation, such as carbon corrosion and Pt migration/agglomeration. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:324 / 330
页数:7
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