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Nafion/Polyaniline composite membranes for hydrogen production in the Cu-Cl thermochemical cycle

机译:Nafion /聚苯胺复合膜,用于Cu-Cl热化学循环中的制氢

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摘要

The Cu-Cl thermochemical cycle is a promising cycle to produce hydrogen on a large scale. One of the challenges in the electrolyzer is the permeation of Cu from the anolyte through the membrane and into the catholyte, which is known as Cu crossover. We have examined the strategy to mitigate this by preparing Nafion polyaniline composite membranes. Moreover, we have examined how the reaction conditions changed the Cu permeability. In this study, Nafion 115 and 117 membranes have been chemically modified by in situ polymerization of aniline. Furthermore, three different oxidizing agent were used: H2O2, FeCl3 and ammonium persulfate (APS). In addition, 1, 5, and 24 h polymerization and different concentration of aniline were investigated. Their physical properties such as water uptake, ion exchange capacity (IEC), and proton conductivity have been determined. The permeability of Cu was examined by ex situ diffusion cell measurements. The results showed that polyaniline composite membranes have reduced Cu permeability. Full cell Cu-Cl electrolysis was used to evaluate these modified membranes. Electrochemical tests such cyclic voltammetry, stair step voltammetry, and galvanostatic were used to investigate the Cu permeability in the Cu-Cl electrolysis cell. The ex situ experiments correlate very well with the in situ measurements. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:Cu-Cl热化学循环是大规模生产氢的有前途的循环。电解槽的挑战之一是铜从阳极电解液穿过膜渗透到阴极电解液,这被称为铜交叉。我们已经研究了通过制备Nafion聚苯胺复合膜来减轻这种情况的策略。此外,我们研究了反应条件如何改变铜的渗透性。在这项研究中,Nafion 115和117膜已通过苯胺的原位聚合进行了化学修饰。此外,使用了三种不同的氧化剂:H2O2,FeCl3和过硫酸铵(APS)。此外,还研究了1、5和24小时聚合反应以及不同浓度的苯胺。已经确定了它们的物理性质,例如吸水率,离子交换容量(IEC)和质子传导率。通过异位扩散池测量来检查Cu的渗透性。结果表明,聚苯胺复合膜的铜渗透率降低。全电池Cu-Cl电解用于评估这些改性膜。电化学测试,例如循环伏安法,阶梯伏安法和恒电流法,用于研究Cu-Cl电解池中的Cu渗透性。异位实验与原位测量非常相关。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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