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Mathematical modeling of high-pressure PEM water electrolysis

机译:高压PEM水电解的数学模型

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This paper is devoted to the modeling and numerical optimization of proton-exchange membrane (PEM) water electrolysers for operation at elevated pressures (up to 130 bars). The model takes into account different geometrical parameters of the PEM cell, the kinetics of the hydrogen and oxygen evolution reactions, the electro-osmotic drag of water molecules, the permselectivity of the solid polymer electrolyte and associated gas cross-over phenomena. The role of various operating parameters (such as pressure, temperature, current density, flow rate of water) on cell efficiency, faradaic yield and heat produced during water electrolysis is evaluated and discussed. The model is also used for the purpose of optimizing the performances of PEM cells. In particular, optimal values of some critical operating parameters (current density, rate of water supplied to the anodes) are recommended.
机译:本文致力于质子交换膜(PEM)水电解器在高压(最高130 bar)下的建模和数值优化。该模型考虑了PEM电池的不同几何参数,氢气和氧气逸出反应的动力学,水分子的电渗透阻力,固体聚合物电解质的渗透选择性以及相关的气体穿越现象。评估和讨论了各种操作参数(例如压力,温度,电流密度,水的流速)对电解池效率,法拉第产率和水电解过程中产生的热量的作用。该模型还用于优化PEM电池性能的目的。特别是,建议一些关键操作参数(电流密度,供应给阳极的水的速率)的最佳值。

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