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Water transport coefficient distribution through the membrane in a polymer electrolyte fuel cell

机译:聚合物电解质燃料电池中通过膜的水传输系数分布

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The net water transport coefficient through the membrane, defined as the ratio of the net water flux from the anode to cathode to the protonic flux, is used as a quantitative measure of water management in a polymer electrolyte fuel cell (PEFC). In this paper we report on experimental measurements of the net water transport coefficient distribution for the first time. This is accomplished by making simultaneous current and species distribution measurements along the flow channel of an instrumented PEFC via a multi-channel potentiostat and two micro gas chromatographs. The net water transport coefficient profile along the flow channels is then determined by a control-volume analysis under various anode and cathode inlet relative humidity (RH) at 80 degrees C and 2 atm. It is found that the local current density is dominated by the membrane hydration and that the gas RH has a large effect on water transport through the membrane. Very small or negative water transport coefficients are obtained, indicating strong water back diffusion through the 30 mu m Gore-Select (R) membrane used in this study. (c) 2006 Elsevier B.V. All rights reserved.
机译:穿过膜的净水传输系数定义为从阳极到阴极的净水通量与质子通量之比,用作聚合物电解质燃料电池(PEFC)中水管理的定量度量。在本文中,我们首次报告了净水输送系数分布的实验测量结果。这是通过多通道恒电位仪和两个微型气相色谱仪同时沿着仪器化PEFC的流动通道进行电流和物质分布测量来实现的。然后通过在80摄氏度和2个大气压下的各种阳极和阴极入口相对湿度(RH)下,通过控制量分析来确定沿流道的净水输送系数曲线。已经发现,局部电流密度主要由膜水合作用所决定,并且气体RH对通过膜的水传输具有很大的影响。获得非常小的或负的水传输系数,表明该研究中使用的30微米Gore-Select(R)膜有很强的水向后扩散。 (c)2006 Elsevier B.V.保留所有权利。

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