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Effects of Structure and Hydrophobic Treatment on Water Transport Behaviour in PEM Fuel Cell Gas Diffusion Layers

机译:结构与疏水处理对PEM燃料电池气体扩散层水传输行为的影响

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This paper examines the effects of structure and wettability on water transport behaviour in PEM fuel cell gas diffusion layers(GDLs).Different GDL materials,including carbon cloth and carbon paper with and without PTFE and MPL coatings,were used in this study.The breakthrough pressure of liquid water,water flow rate and water retention in the GDL were measured.For the GDL with and without MPL,the results indicate that the paper GDLs require higher breakthrough pressure than the cloth ones.Compared to the untreated GDL,applying PTFE on the GDL increases breakthrough pressure up to 1.5 times while it decreases water flow rate and water retention up to about 3.8 and 0.5 times respectively,over the tested conditions.The results also show that applying MPL on the GDL surface has greater impact on breakthrough pressure than applying PTFE.Liquid water requires up to about 4 times greater pressure to break through the other side of the GDL with the MPL.By applying MPL,the amount of water retention and flow through the GDL also reduced greatly,to almost zero.In addition,the results suggest that the GDLs are degraded after being exposed to water,which causes a significant decrease in breakthrough pressure and an increase in water retention.
机译:本文研究了PEM燃料电池气体扩散层(GDLS)中的结构和润湿性对水运输行为的影响。在本研究中使用了包括碳布和没有PTFE和MPL涂层的碳布和碳纸,包括碳布和碳纸。突破测量液态水的压力,测量GDL中的水流速和水保留。对于具有和没有MPL的GDL,结果表明,纸质GDL需要比布料更高的突破压力。涂抹于未处理的GDL,施加PTFE GDL将突破压力增加到1.5倍,而在经过测试的条件下分别将水流量和水潴留分别降低约3.8%和0.5倍。结果还表明,在GDL表面上施加MPL对突破压力的影响更大。应用PTFE.Liquid水需要高达约4倍的压力,以通过MPL与MPL的另一侧断裂通过GDL的另一侧。施用MPL,水的量保证通过GDL的纽约和流动也大大减少,几乎归零。此外,结果表明GDL在暴露于水后降解,这导致突破压力显着降低和水潴留的增加。

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