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THEORY OF WATER MANAGEMENT AT THE ANODE SIDE OF POLYMER ELECTROLYTE FUEL CELL MEMBRANES

机译:高分子电解质燃料电池膜阳极侧的水管理理论

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摘要

The behavior of the water transport and the water concentration profile at the anode side of the membrane in a polymer electrolyte fuel cell is considered theoretically. A linear transport equation based on the diffusion of water and electroosmotic water drag was taken into account. Two kinds of boundary value problem were treated: (1) for semi-infinite boundary conditions, analytical solutions for water concentration at a given time and location were obtained, under either humidified or non-humidified conditions at the anode side of the membrane; (2) for finite boundary conditions, the steady-state water concentration profile was obtained with two kinds of boundary condition at the cathode side. The effect of various fuel cell operation and membrane state parameters on the water concentration was evaluated in a systematic way. Among those parameters tested, the current density and water penetration parameters are essential in determining membrane water content. Membrane thickness and the diffusion coefficient of water are important parameters in the case of finite boundary conditions. It turned out that contamination of the membrane by foreign impurities (e.g. NaCl), even on the surface, will cause a serious effect on the water depletion at the anode side. Water supply from the anode side of the membrane results in a considerable improvement of the membrane state with regard to water depletion. Although the method was fairly simplified in comparison with the most detailed analysis of membrane water content, it gave explicit and easy-to-handle equations for the purpose of quantitative or semi-quantitative evaluation of the membrane water management in polymer electrolyte fuel cell operations. [References: 19]
机译:从理论上考虑了聚合物电解质燃料电池中膜的阳极侧的水输送行为和水浓度分布。考虑了基于水和电渗水阻力扩散的线性传输方程。处理了两种边界值问题:(1)对于半无限边界条件,获得了在给定时间和位置在膜的阳极侧在加湿或非加湿条件下水浓度的解析解; (2)对于有限边界条件,在阴极侧有两种边界条件获得了稳态水浓度曲线。以系统的方式评估了各种燃料电池操作和膜状态参数对水浓度的影响。在测试的那些参数中,电流密度和水渗透参数对于确定膜水含量至关重要。在有限边界条件下,膜厚度和水的扩散系数是重要的参数。事实证明,即使在表面上,外来杂质(例如NaCl)对膜的污染也将严重影响阳极侧的水消耗。从膜的阳极侧的供水在水消耗方面导致膜状态的显着改善。尽管与最详细的膜水含量分析相比,该方法已相当简化,但它给出了明确且易于操作的方程式,目的是对聚合物电解质燃料电池运行中的膜水管理进行定量或半定量评估。 [参考:19]

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