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Statistical Simulation of the Performance and Degradation of a PEMFC Membrane Electrode Assembly

机译:PEMFC膜电极组件性能和降解的统计模拟

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A 1-D MEA Performance model was developed that considered transport of liquid water, agglomerate catalyst structure, and the statistical variation of the MEA characteristic parameters. The model was validated against a low surface area carbon supported catalyst across various platinum loadings and operational conditions. The statistical variation was found to play a significant role in creating noise in the validation data and that there was a coupling effect between movement in material properties with liquid water transport. Further, in studying the low platinum loaded catalyst layers it was found that liquid water played a significant role in the increasing the overall transport losses. The model was then further applied to study platinum dissolution via potential cycling accelerated stress tests, in which the platinum was found to dissolve nearest the membrane effectively resulting in reaction distribution shifts within the layer.
机译:开发了一维MEA性能模型,该模型考虑了液态水的输送,附聚物催化剂的结构以及MEA特征参数的统计变化。在各种铂负载量和操作条件下,针对低表面积碳载催化剂对模型进行了验证。发现统计差异在验证数据中产生噪声中起着重要作用,并且材料特性的移动与液态水的运输之间存在耦合效应。此外,在研究低铂负载的催化剂层时,发现液态水在增加总运输损失中起着重要作用。然后,通过潜在的循环加速应力测试将该模型进一步应用于研究铂的溶解,其中发现铂最有效地溶解在膜附近,从而导致反应在层中的分布移动。

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