Cu-Cl热化学循环CuCl-HCl电解制氢的研究进展

Y. Gong, E. Chalkova, N. Akinfiev, V. Balashov, M. Fedkin, S. Lvov
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引用次数: 4

摘要

Cu-Cl热化学循环因其温度适中和效率高而成为最有吸引力的制氢技术之一。本研究采用新设计的电解槽系统,对循环的主要步骤之一——CuCl-HCl电解制氢进行了研究。在0.35 ~ 0.9 V的电压范围内进行电解反应。根据观察到的产氢率来评价电解系统的电流效率。研究了温度和试剂流速对电解性能的影响。在电解槽中测试了几种阴离子交换膜和阳离子交换膜,并比较了它们的工艺效率和对铜交叉的耐受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of CuCl-HCl electrolysis for hydrogen production via Cu-Cl thermochemical cycle
The Cu-Cl thermochemical cycle is among the most attractive technologies proposed for hydrogen production due to moderate temperature requirements and high efficiency. In the present study, one of the main steps of the cycle – H2 gas production via CuCl-HCl electrolysis – was investigated using a newly designed electrolyser system. The electrolysis reaction was performed with the applied voltage from 0.35 to 0.9 V. The current efficiency of the electrolysis system was evaluated based on the observed rate of hydrogen production. The effects of temperature and reagent flow rate on the electrolysis performance were studied. Several types of anion-exchange and cation-exchange membranes were tested in the electrolyser, and their performance was compared with respect to process efficiency and tolerance to copper crossover.
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