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Elucidating differences between carbon paper and carbon cloth in polymer electrolyte fuel cells

机译:阐明聚合物电解质燃料电池中碳纸和碳布之间的差异

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This paper seeks to develop a structure-performance relationship for gas diffusion layers (GDLs) of polymer electrolyte fuel cells (PEFCs), and hence to explain the performance differences between carbon paper (CP) and carbon cloth (CC). Three-dimensional simulations, based on a two-phase model with GDL structural information taken into account, are carried out to explore the fundamentals behind experimentally observed performance differences of the two carbon substrates, i.e. CC and CP, under low- and high-humidity operations. Validation against polarization data is made under both operating conditions, and the results indicate that the CC is the better choice as a GDL material at high-humidity operations due to its low tortuosity of the pore structure and its rough textural surface facilitating droplet detachment. However, under dry conditions, the CP shows better performance due to its more tortuous structure, which prevents the loss of product water to dry gas streams, thus increasing the membrane hydration level and reducing the ohmic loss. The present work is one step toward developing a science-based framework for selection of materials for next-generation, high-performance gas diffusion media.
机译:本文试图建立聚合物电解质燃料电池(PEFC)的气体扩散层(GDL)的结构-性能关系,从而解释碳纸(CP)和碳布(CC)之间的性能差异。在考虑了GDL结构信息的两相模型的基础上进行了三维模拟,以探索在低湿度和高湿度下实验观察到的两种碳基质(即CC和CP)的性能差异背后的基础。操作。在两种操作条件下均针对极化数据进行了验证,结果表明,由于高孔隙率曲折度低且粗糙的表面有利于液滴的脱落,CC在高湿度操作中作为GDL材料是更好的选择。但是,在干燥条件下,CP由于其更曲折的结构而表现出更好的性能,可以防止产品水流失到干燥的气流中,从而增加了膜的水合作用水平并减少了欧姆损失。当前的工作是朝着开发一种基于科学的框架选择下一代高性能高性能气体扩散介质的材料迈出的一步。

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