首页> 外文会议>ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Thermal Engineering Summer Heat Transfer Conference 2007 >VISUALIZATION OF WATER TRANSPORT AND FREEZING PROCESS IN A GAS DIFFUSION LAYER OF PEFC DURING LOW TEMPERATURE OPERATION
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VISUALIZATION OF WATER TRANSPORT AND FREEZING PROCESS IN A GAS DIFFUSION LAYER OF PEFC DURING LOW TEMPERATURE OPERATION

机译:低温运行过程中PEFC气体扩散层中水输送和冻结过程的可视化

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During low temperature operation of polymer electrolyte fuel cell (PEFC), water flooding in a cathode electrode is a critical barrier to achieve high power density, because liquid water condensed in the porous gas diffusion layer (GDL) blocks oxygen transport to the active reaction sites. Furthermore, during startup below the freezing point, liquid water in the cathode GDL or on the catalyst layer (CL) surface is frozen and the cell voltage is suddenly decreased. In this study, we experimentally investigate liquid water transport and freezing process in a cathode GDL of PEFC at low temperature operations using an optical diagnostic. The results showed that liquid water behavior and ice formation at the cathode electrode are largely affected by operating parameters such as current density and ambient temperature. Furthermore, in order to prevent water flooding, we propose the structure of cathode GDL that has several slits for water removal. With this cathode GDL structure, it was found that liquid water accumulated inside the cathode electrode is rapidly removed and cell voltage is improved.
机译:在聚合物电解质燃料电池(PEFC)的低温运行期间,阴极电极中的注水是实现高功率密度的关键屏障,因为在多孔气体扩散层(GDL)中冷凝的液态水会阻止氧气向活性反应位点的传输。此外,在低于凝固点的启动过程中,阴极GDL中或催化剂层(CL)表面上的液态水被冻结,并且电池电压突然下降。在这项研究中,我们通过光学诊断实验研究了低温操作下PEFC阴极GDL中液体水的运输和冻结过程。结果表明,在阴极电极上的液态水行为和结冰在很大程度上受到诸如电流密度和环境温度等操作参数的影响。此外,为了防止水泛滥,我们提出了阴极GDL的结构,其具有多个用于去除水的狭缝。通过这种阴极GDL结构,发现可以迅速除去积聚在阴极电极内部的液态水,并且可以提高电池电压。

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