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Experimental study of effect of anolyte concentration and electrical potential on electrolyzer performance in thermochemical hydrogen production using the Cu-Cl cycle

机译:Cu-Cl循环中阳极电解液浓度和电势对热化学制氢电解槽性能影响的实验研究

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An important process in the copper-chlorine water splitting cycle for hydrogen production is electrolysis which occurs after a series of cycle steps that produce the constituents for the anolyte of the electrochemical cell. In this investigation, an anolyte mixture of HCl/CuCl/H2O of varying concentrations is circulated through the electrolyzer to assist in optimizing its performance. It is observed that the concentration and temperature of the anolyte directly affect the process. The efficiency of the electrolyzer is adversely affected, after running a series of experiments, due to copper deposition on the membrane. An important implication of the results is that, to determine the optimal electrolyzer performance, one needs to vary the flow rate and the concentration of anolyte, for a given constant voltage source. In addition, this work demonstrates that aqueous CuCl2 can be recovered from the waste solution exiting the electrolyzer and recycled to the hydrolysis reactor. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:铜-氯水分解循环中用于制氢的一个重要过程是电解,该电解发生在一系列循环步骤之后,产生电化学电池阳极电解液的成分。在这项研究中,不同浓度的HCl / CuCl / H2O的阳极电解液混合物循环通过电解槽,以帮助优化其性能。观察到阳极电解液的浓度和温度直接影响该过程。在进行一系列实验后,由于铜在膜上的沉积,电解槽的效率受到不利影响。结果的重要含义是,对于给定的恒定电压源,要确定最佳的电解槽性能,需要改变流速和阳极电解液的浓度。此外,这项工作表明,可以从离开电解槽的废液中回收含水CuCl2,并将其循环到水解反应器中。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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