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Kinetic studies of cathode degradation on PEM fuel cell short stack level undergoing freeze startups with different states of residual water and current draws

机译:阴极降解对PEM燃料电池短堆叠水平的动力学研究,冻结凝固冻结剩余水和电流拉伸

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One of the biggest challenges for a wide spread introduction of polymer electrolyte membrane fuel cells in automotive applications is the freeze start at subzero temperatures as this poses a severe threat to fuel cell performance and overall lifetime. Therefore, the impact of current draw during stack freeze startup at various rest water contents and current densities was investigated applying state of the art in-situ testing as quasi cyclic voltammetry.The results indicate a clear dependency between number of freeze startups and performance loss, whereas higher initial water content within the stack reduced its destructive impacts.In our earlier work we were able to show the dependency between residual water and degradation for non-freeze-startup-capable systems at the unit cell level [31]. With this work we confirm that the same physical relationship also applies to freeze-startup-capable systems on the short stack level.Furthermore, reversible performance losses that were encountered during this study can be assigned to oxidizable fuel contaminants, which are believed to be CO, and an easy cleansing procedure is being suggested. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在汽车应用中,在汽车应用中广泛推出的广泛涂抹引入的最大挑战之一是冻结的冻结,因为这对燃料电池性能和整体寿命构成了严重的威胁。因此,研究了当前抽取期间的冲击在各种休息水含量和电流密度期间的影响是将现场原位测试的施加状态作为准循环伏安。结果表明冻结启动和性能损失的数量明显依赖性,虽然堆栈内的初始含水量更高,但降低了其破坏性影响。在我们之前的工作中,我们能够在单元电池水平下展示残留水和用于非冻结启动的系统的降解之间的依赖性[31]。通过这项工作,我们确认相同的物理关系也适用于在短堆栈级别的冻结启动系统。在本研究期间遇到的可逆性能损失可以分配给可氧化的燃料污染物,这些燃料污染物被认为是CO的氧化燃料污染物并且正在建议简单的清洁程序。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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