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STEADY-STATE FUEL CELL PERFORMANCE MODEL FOR UNADHERED MEAS

机译:非粘附措施的稳态燃料电池性能模型

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摘要

Membrane electrode assemblies (MEAs) that were initially adhered at the cathode-catalyst-layer/cathode-porous-electrode (CCL/CPE) interface can become unadhered at this interface because of operational stressors. Unadhered MEAs may have an additional electrical contact resistance between the CCL and the CPE that was not present for adhered MEAs. This paper investigates the impact of an electrical contact resistance between the CCL and the CPE on fuel cell performance. Model predictions and experimental results are compared for adhered and un-adhered MEA designs operating in plates with different gas distribution channel geometries for a wide range of operating conditions. Model and experiment indicate that the effect of an electrical contact resistance between the CCL and the CPE can lead to significant performance loss.
机译:最初粘附在阴极催化剂层/阴极多孔电极(CCL / CPE)界面上的膜电极组件(MEA)可能会由于操作压力而在该界面上脱落。未粘附的MEA可能在CCL和CPE之间具有粘附的MEA不存在的额外电接触电阻。本文研究了CCL和CPE之间的电接触电阻对燃料电池性能的影响。比较了在各种工作条件下,在具有不同气体分布通道几何形状的板上运行的粘附和非粘附MEA设计的模型预测和实验结果。模型和实验表明,CCL和CPE之间的电接触电阻会导致明显的性能损失。

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  • 来源
  • 会议地点 HonoluluIL(US);HonoluluIL(US)
  • 作者单位

    Ballard Power Systems, 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada;

    Ballard Power Systems, 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada;

    Ballard Power Systems, 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada Automotive Fuel Cell Cooperation (AFCC), 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada;

    Ballard Power Systems, 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada Automotive Fuel Cell Cooperation (AFCC), 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada;

    Daimler AG, Wilhelm-Runge-Strasse 11, 89081 Ulm, Germany;

    Ballard Power Systems, 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada Automotive Fuel Cell Cooperation (AFCC), 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada;

    Ballard Power Systems, 9000 Glenlyon Parkway, Burnaby, BC, V5J 5J8, Canada Automotive Fue;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 表面处理 ;
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