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Study of operating conditions and cell design on the performance of alkaline anion exchange membrane based direct methanol fuel cells

机译:基于碱性阴离子交换膜的直接甲醇燃料电池性能研究及电池设计

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摘要

Direct methanol fuel cells using an alkaline anion exchange membrane (AAEM) were prepared, studied, and optimized. The effects of fuel composition and electrode materials were investigated. Membrane electrode assemblies fabricated with Tokuyama® AAEM and commercial noble metal catalysts achieved peak power densities between 25 and 168 mWcm~(-2) depending on the operating temperature, fuel composition, and electrode materials used. Good electrode wettability at the anode was found to be very important for achieving high power densities. The performance of the best AAEM cells was comparable to Nafion®-based cells under similar conditions. Factors limiting the performance of AAEM MEAs were found to be different from those of Nafion® MEAs. Improved electrode kinetics for methanol oxidation in alkaline electrolyte at Pt-Ru are apparent at low current densities. At high current densities, rapid CO_2 production converts the hydroxide anions, necessary for methanol oxidation, to bicarbonate and carbonate: consequently, the membrane and interfacial conductivity are drastically reduced. These phenomena necessitate the use of aqueous potassium hydroxide and wettable electrode materials for efficient hydroxide supply to the anode. However, aqueous hydroxide is not needed at the cathode. Compared to AAEM-based fuel cells, methanol fuel cells based on proton-conducting Nafion® retain better performance at high current densities by providing the benefit of carbon dioxide rejection.
机译:制备,研究和优化了使用碱性阴离子交换膜(AAEM)的直接甲醇燃料电池。研究了燃料成分和电极材料的影响。由德山AAEM和市售贵金属催化剂制成的膜电极组件的峰值功率密度在25至168 mWcm〜(-2)之间,具体取决于工作温度,燃料成分和所用电极材料。发现阳极处良好的电极润湿性对于实现高功率密度非常重要。在类似条件下,最佳AAEM电池的性能可与基于Nafion®的电池相媲美。发现限制AAEM MEA性能的因素与Nafion®MEA不同。在低电流密度下,Pt-Ru下碱性电解质中甲醇氧化的电极动力学得到了改善。在高电流密度下,快速的CO_2产生将甲醇氧化所需的氢氧根阴离子转化为碳酸氢根和碳酸根:因此,膜和界面电导率急剧降低。这些现象需要使用氢氧化钾水溶液和可湿性电极材料以有效地将氢氧化物供应到阳极。但是,在阴极处不需要氢氧化物水溶液。与基于AAEM的燃料电池相比,基于质子传导的Nafion®的甲醇燃料电池具有二氧化碳排斥的优点,在高电流密度下仍保持更好的性能。

著录项

  • 来源
    《Journal of power sources》 |2011年第19期|p.7967-7972|共6页
  • 作者单位

    Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California 837 Bloom Walk, Los Angeles, CA 90089-1661, USA;

    Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California 837 Bloom Walk, Los Angeles, CA 90089-1661, USA;

    Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California 837 Bloom Walk, Los Angeles, CA 90089-1661, USA;

    Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California 837 Bloom Walk, Los Angeles, CA 90089-1661, USA;

    Loker Hydrocarbon Research Institute, Department of Chemistry, University of Southern California 837 Bloom Walk, Los Angeles, CA 90089-1661, USA;

  • 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

    direct methanol fuel cell; alkaline anion exchange membrane; membrane-electrode assembly; optimization;

    机译:直接甲醇燃料电池碱性阴离子交换膜膜电极组件优化;
  • 入库时间 2022-08-18 00:24:31

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