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Three-electrolyte electrochemical energy storage systems using both anion- and cation-exchange membranes as separators

机译:使用阴离子交换膜和阳离子交换膜作为隔板的三电解质电化学储能系统

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摘要

A three-electrolyte cell configuration, in which an additional compartment filled with salt solution is created between the cation-exchange membrane and the anion-exchange membrane to separate the respective opposite charged ionic species, can be used to realize novel electrochemical systems using promising redox couples. Using lead-acid metal hydride hybrid redox couple as a typical three-electrolyte prototype, we monitored the potential change of individual components during operation to obtain better understanding on the factors affecting the electrochemical performance (including types of salt solution, electrolyte concentration, inter-electrode gap). Key issues (i.e., salting-out) and proposed solutions are discussed. This work offers new solutions to develop promising energy storage techniques. (C) 2018 Elsevier Ltd. All rights reserved.
机译:三电解质电池结构可用于在阳离子交换膜和阴离子交换膜之间创建一个充满盐溶液的附加隔室,以分隔各自相反的带电离子种类,可用于实现使用有希望的氧化还原的新型电化学系统夫妻。我们使用铅酸金属氢化物杂化氧化还原电对作为典型的三电解质原型,我们监测了操作期间各个组件的电势变化,以更好地了解影响电化学性能的因素(包括盐溶液的类型,电解质浓度,电极间隙)。讨论了关键问题(即盐析)和建议的解决方案。这项工作为开发有前途的储能技术提供了新的解决方案。 (C)2018 Elsevier Ltd.保留所有权利。

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