首页> 外文会议>ASME/JSME thermal engineering joint conference;AJTEC2011 >MICROSCOPIC OBSERVATION OF ICE DISTRIBUTION IN PEM FUEL CELL AT COLD START
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MICROSCOPIC OBSERVATION OF ICE DISTRIBUTION IN PEM FUEL CELL AT COLD START

机译:冷态启动PEM燃料电池中冰分布的显微观察

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In Polymer electrolyte membrane fuel cells (PEFCs), freezing of produced water induces the extreme deterioration of cell performance below zero. This phenomenon is a serious problem in cold regions and is needed to be solved to achieve the practical use of PEFCs. In this study, we investigated ice distribution at the cold start in a PEFC using an optical microscope and a CRYO-SEM to clarify the freezing mechanism. The observation results showed that the cold start at -10°C makes ice at the interface between the cathode catalyst layer (CL) and the micro porous layer of gas diffusion layer. Little ice was, however, observed in the cold start at -20°C, which indicated the ice formation inside the CL. The CRYO-SEM observation was conducted at -20°C to investigate the ice formation inside the CL, and this identified the effects of the current density and the cathode gas species on the ice distribution.
机译:在聚合物电解质膜燃料电池(PEFC)中,产出水的冻结会导致电池性能严重降低到零以下。这种现象在寒冷地区是一个严重的问题,需要解决才能实现PEFC的实际使用。在这项研究中,我们使用光学显微镜和CRYO-SEM调查了PEFC冷启动时的冰分布,以阐明冻结机理。观察结果表明,在-10℃下的冷启动使冰在阴极催化剂层(CL)和气体扩散层的微孔层之间的界面处结冰。但是,在-20°C的冷启动中几乎观察不到冰,这表明CL内部形成了冰。 CRYO-SEM观察是在-20°C进行的,以研究CL内部的冰形成,从而确定了电流密度和阴极气体种类对冰分布的影响。

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