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In-situ measurement of hydrogen crossover in polymer electrolyte membrane water electrolysis

机译:高分子电解质膜水电解中氢交叉的原位测量

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摘要

An in-situ method for determination of hydrogen crossover in polymer electrolyte membrane (PEM) water electrolysis cells is discussed. The measurement principle is based on the electrochemical compensation of the crossover flux, which translates the mass flux determination into an electric current measurement. The proposed method features an extremely simple set-up and measurement procedure, as well as high accuracy. It allows for measurement with a fully assembled cell at normal water electrolysis conditions by use of standard equipment, also installed in industrial electrolyzer plants. The technique is especially suitable for high-pressure PEM electrolyzers operated under asymmetric pressure conditions. The applicability of the suggested method for a broad pressure range is briefly illustrated with a laboratory scale electrolyzer plant and by comparison of the measured data with available literature values.
机译:讨论了一种测定聚合物电解质膜(PEM)水电解池中氢交叉的原位方法。测量原理基于交叉通量的电化学补偿,该补偿将质量通量的确定转换为电流测量。所提出的方法具有极其简单的设置和测量程序,以及高精度。通过使用标准设备(也安装在工业电解厂中),可以在正常水电解条件下使用完全组装的电池进行测量。该技术特别适用于在非对称压力条件下运行的高压PEM电解槽。通过实验室规模的电解装置并通过将测量数据与现有文献值进行比较,简要说明了所建议方法在宽压力范围内的适用性。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第1期|49-53|共5页
  • 作者单位

    Otto-von-Guericke University Magdeburg, Process Systems Engineering, Universitaetsplatz 2, 39106 Magdeburg, Germany;

    Max Planck Institute for Dynamics of Complex Technical Systems, Sandtorstrasse 1, 39106 Magdeburg, Germany;

    Otto-von-Guericke University Magdeburg, Process Systems Engineering, Universitaetsplatz 2, 39106 Magdeburg, Germany Max Planck Institute for Dynamics of Complex Technical Systems, Sandtorstrasse 1, 39106 Magdeburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PEM electrolyzer; Water electrolysis; Hydrogen generation; Hydrogen crossover; High-pressure;

    机译:PEM电解槽;水电解;氢气产生;氢交换高压力;
  • 入库时间 2022-08-18 00:23:54

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