首页> 外文期刊>Journal of Fuel Cell Science and Technology >Through-Plane Permeability for Untreated and PTFE-Treated Gas Diffusion Layers in Proton Exchange Membrane Fuel Cells
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Through-Plane Permeability for Untreated and PTFE-Treated Gas Diffusion Layers in Proton Exchange Membrane Fuel Cells

机译:质子交换膜燃料电池中未经处理和经PTFE处理的气体扩散层的平面通透性

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摘要

The through-plane permeability has been experimentally measured for untreated and polytetrafluoroethylene-treated (PTFE-treated) gas diffusion layers (GDLs), as used in proton exchange membrane fuel cells. Contrary to what the literature has previously shown, the results suggest that there exists an optimum value for the wet-proofing agent, PTFE, at which the though-plane permeability of the GDL is a maximum. The analysis that is undertaken to investigate the effect of the air compressibility shows that there is an underestimation in the through-plane permeability of the tested GDLs by of the order of 9% if the density of the air is assumed to be constant. Also, a nondimensionalisation analysis shows that ignoring the non-Darcy effects at the maximum reported flow rates result in negligible errors for the untreated and treated GDLs.
机译:已通过实验测量了质子交换膜燃料电池中使用的未处理和经聚四氟乙烯处理(PTFE处理)的气体扩散层(GDL)的通透性。与文献先前所显示的相反,结果表明存在防湿剂PTFE的最佳值,在该值处GDL的平面渗透性最大。为调查空气可压缩性的影响而进行的分析表明,如果假定空气的密度恒定,则被测GDL的通透性将被低估9%左右。同样,无量纲分析显示,在最大报告流量下忽略非达西效应,对于未处理和已处理的GDL的误差可忽略不计。

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