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Advanced CuCl Electrolyzer for Hydrogen Production via the Cu-Cl Thermochemical Cycle

机译:用于通过Cu-Cl热化学循环生产氢气的高级CuCl电解槽

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The Cu-Cl thermochemical cycle is among the most attractive technologies for hydrogen production due to its high efficiency and moderate temperature requirements. In this study, the H_2 producing reaction of the cycle, CuCl(aq) electrolysis, was investigated in a recently developed electrolyzer using a new type of double layer Nafion 117 membrane. Enhanced MEA durability allowed the system to operate at 80 °C for an extended period of time with continuous anolyte cycling and regeneration. An applied potential of 0.7 V was needed to produce the current density of about 0.12 A/cm~2, and the system maintained performance over a period of 100 hours with no substantial decline of hydrogen production rates. Linear polarization and electrochemical impedance spectroscopy were used to monitor the electrolyzer performance over time. Further research is underway to optimize the process parameters and MEA fabrication to extend the electrolyzer life time and current density.
机译:Cu-Cl热化学循环因其高效和适中的温度要求而成为最有吸引力的制氢技术之一。在这项研究中,在最近开发的使用新型双层Nafion 117膜的电解器中研究了循环的H_2产生反应CuCl(aq)电解。增强的MEA耐用性使系统能够在80°C下长时间运行,并具有连续的阳极电解液循环和再生功能。需要施加0.7 V的电势才能产生约0.12 A / cm〜2的电流密度,并且该系统在100小时的时间内保持性能不变,而制氢速率没有明显下降。线性极化和电化学阻抗谱用于监测电解槽随时间的性能。正在进行进一步的研究以优化工艺参数和MEA的制造,以延长电解槽的寿命和电流密度。

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