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Performance improvement of direct methanol fuel cells via anodic treatment using various organic acids

机译:通过使用各种有机酸进行阳极处理提高直接甲醇燃料电池的性能

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摘要

Performance improvement of direct methanol fuel cells (DMFCs) was achieved via an anodic treatment technique. Previously, anodic treatment was performed using sulfuric acid as acidic media, but various organic acids including formic, acetic, oxalic, and citric acids were employed in this study to avoid the use of toxic sulfuric acid. By replacing sulfuric acid to organic acids, a potential damage to catalyst layers and other components such as polymer electrolyte membrane and bipolar plates are expected to be minimized. The anodic treatment was performed by applying 0.7 V (vs. reversible hydrogen electrode) at the anode of DMFCs flowing the organic acid solutions for 30min. After the anodic treatment, peak power densities of DMFCs were increased by +7, +32, +23, and −2.6% when formic, acetic, oxalic, and citric acid solutions were employed, respectively. The enhanced catalytic activity of the DMFCs in the acetic and oxalic acid solutions was confirmed by analyzing electrochemical impedance spectroscopy data.
机译:通过阳极处理技术可以提高直接甲醇燃料电池(DMFC)的性能。以前,使用硫酸作为酸性介质进行阳极处理,但为了避免使用有毒硫酸,本研究采用了各种有机酸,包括甲酸,乙酸,草酸和柠檬酸。通过将硫酸替换为有机酸,预期对催化剂层和其他组分例如聚合物电解质膜和双极板的潜在损害被最小化。通过在使有机酸溶液流过的DMFC的阳极施加0.7 V(相对于可逆氢电极)进行30分钟的阳极处理。阳极处理后,使用甲酸,乙酸,草酸和柠檬酸溶液时,DMFC的峰值功率密度分别增加了+ 7,+ 32,+ 23和-2.6%。通过分析电化学阻抗谱数据证实了DMFC在乙酸和草酸溶液中的催化活性增强。

著录项

  • 来源
    《Korean Journal of Chemical Engineering》 |2013年第7期|1410-1414|共5页
  • 作者单位

    Department of Chemical and Biomolecular Engineering and Graduate School of EEWS (WCU) Korea Advanced Institute of Science and Technology">(171);

    Department of Chemical and Biomolecular Engineering and Graduate School of EEWS (WCU) Korea Advanced Institute of Science and Technology">(171);

    Department of Chemical and Biomolecular Engineering and Graduate School of EEWS (WCU) Korea Advanced Institute of Science and Technology">(171);

  • 收录信息 美国《科学引文索引》(SCI);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

  • 入库时间 2022-08-18 00:01:25

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