On the Importance of MPL Structural Characteristics for PEM Fuel Cell Performance

Ruediger Schweiss, Magnus Herb, Raj Earla, Christian Meiser
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Abstract

A systematic study was performed with GDLs based on a singular backing using different MPL types and penetration levels. A simple method to estimate the micro-porous layer penetration in gas diffusion layers based on data obtained from force-deflection behavior of backings and MPL-coated GDLs is proposed. Comparison with SEM and previously published tomographic studies shows that a good estimate for the extent of MPL intrusion into the backing is obtained. MPL loading and penetration is shown to affect different ex-situ GDL properties (in-plane gas permeability, electrical and thermal conductivity) as well as the GDL single cell performance characteristics with respect to humification and high current density operation. Similar effects are reported for MPLs differing with respect to the presence of mud-cracks.
论MPL结构特性对PEM燃料电池性能的重要性
采用不同MPL类型和穿透水平的单一背衬,对gdl进行了系统研究。提出了一种基于衬底和mpl涂层gdl的力-挠曲行为数据估计气体扩散层中微孔层渗透的简单方法。通过与扫描电镜和先前发表的层析成像研究的比较,可以很好地估计MPL侵入地层的程度。MPL的加载和渗透会影响不同的非原位GDL性能(平面内透气性、导电性和导热性),以及GDL单电池在腐殖化和高电流密度操作方面的性能特征。类似的影响也被报道为MPLs,不同的是泥浆裂缝的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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