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The Exploration of Working Reactions for Electrolysers Using Statistical Mechanics

机译:使用统计力学探讨电解商工作反应的探讨

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This thermodynamic analysis theoretically explores the performance of a general electrolyser, and specifically for their working reactions (WRs). The electrolyser cell (EC) system is composed of an electrolyser and heat engines. The optimal working reactions for electrolysis suitable for energy storage require a high Carnot temperature, T_c, and high ΔTΔ~rS(T) values in order to minimize ΔG while maximizing the amount of thermal energy that can be converted to chemical energy. In addition, reactions with multiple products and few reactants create additional entropy; that is, many high entropy products coming from a few low entropy reactants, are optimal. A procedure using statistical mechanics was developed and employed to locate optimal WRs focused on the values of Δ~rS~0, T_c, and the number of products and reactants. The research and development direction for electrolyser WRs is discussed.
机译:这种热力学分析理论上探讨了一般电解槽的性能,专门用于其工作反应(WRS)。电解槽(EC)系统由电解槽和热发动机组成。适用于能量存储的电解的最佳工作反应需要高碳诺温度,T_C和高ΔTΔ〜RS(T)值,以便最小化ΔG,同时最大化可以转换为化学能的热能量。此外,与多种产品和少量反应物的反应产生额外的熵;也就是说,来自一些低熵反应物的许多高熵产品是最佳的。开发了一种使用统计力学的程序,采用并用于定位专注于δ〜RS〜0,T_C的值和产品和反应物数量的最佳WRS。讨论了电解槽WRS的研究和发展方向。

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