聚合物电解质膜电解
电解
工艺工程
耐久性
电流(流体)
电解质
制氢
电解水
可再生能源
环境科学
资本成本
电力转天然气
氢
废物管理
材料科学
化学
工程类
电极
电气工程
复合材料
有机化学
物理化学
作者
Maximilian Maier,Keenan Smith,J. Dodwell,Gareth Hinds,Paul R. Shearing,Dan J. L. Brett
标识
DOI:10.1016/j.ijhydene.2021.10.013
摘要
While hydrogen generation by alkaline water electrolysis is a well-established, mature technology and currently the lowest capital cost electrolyser option; polymer electrolyte membrane water electrolysers (PEMWEs) have made major advances in terms of cost, efficiency, and durability, and the installed capacity is growing rapidly. This makes the technology a promising candidate for large-scale hydrogen production, and especially for energy storage in conjunction with renewable energy sources – an application for which PEMWEs offer inherent advantages over alkaline electrolysis. Improvements in PEMWE technology have led to increasingly high operational current densities, which requires adequate mass transport strategies to ensure sufficient supply of reactant and removal of products. This review discusses the current knowledge related to mass transport and its characterisation/diagnosis for PEMWEs, considering the flow channels, liquid-gas diffusion layer, and polymer electrolyte membrane in particular.
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