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首页> 外文期刊>Journal of power sources >Synchrotron X-Ray radiography of vanadium redox flow batteries - Time and spatial resolved electrolyte flow in porous carbon electrodes
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Synchrotron X-Ray radiography of vanadium redox flow batteries - Time and spatial resolved electrolyte flow in porous carbon electrodes

机译:Synchrotron X射线造影钒氧化还原电池 - 时间和空间分辨电解质流动在多孔碳电极中

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摘要

A porous carbon electrode fully saturated with electrolyte is one crucial aspect of vanadium redox flow battery efficiency. It determines the electrochemically active surface area, provides more active sites for the reaction during operation, and prevents local degradation due to inhomogeneities in electrolyte distribution. We investigate the electrolyte invasion and distribution at open-circuit potential in heat-treated carbon felt electrodes at varying compression ratios and flow field configurations, using synchrotron X-ray radiography. The quantitative analysis yields time-resolved saturation values of the injection and resolves local changes in saturation to detect areas of lower electrolyte accessibility. Compression ratios of 50% and above lead to a high electrode utilization with more than 97% saturation over the felt thickness. In contrast, carbon felts at 25% and 17% compression only reach 49% and 15% saturation near the flow fields. However, increasing the flow velocity after the injection causes the boundary area next to the flow field to fill even at low compressions. This area is especially critical for the electrode utilization since it is invaded after the bulk. Depending on the compression level, it does not reach full saturation.
机译:具有电解质完全饱和的多孔碳电极是钒氧化还原流量电池效率的一个关键方面。它决定了电化学活性表面积,在操作期间提供更高的反应的活性位点,并防止由于电解质分布中的不均匀性引起的局部劣化。我们使用同步压缩比和流场构造,研究了在热处理的碳毡电极中的电解质侵袭和分布在不同的压缩比和流场配置中。定量分析产生注射的时间分辨饱和值,并解决饱和度的局部变化以检测较低电解质可访问性的区域。压缩比为50%及以上的压缩率导致高电极利用,在毡厚度上具有超过97%的饱和度。相反,25%和17%压缩的碳纤维仅达到流场附近的49%和15%饱和度。然而,在注射之后增加流速导致流场旁边的边界区域即使在低压缩下也会填充。由于它在散装之后被侵入,因此该区域对于电极利用尤为重要。根据压缩级别,它没有达到完全饱和度。

著录项

  • 来源
    《Journal of power sources 》 |2021年第30期| 229660.1-229660.11| 共11页
  • 作者单位

    Karlsruhe Inst Technol Helmholtz Inst Ulm Helmholtzstr 11 D-89081 Ulm Germany;

    Karlsruhe Inst Technol Helmholtz Inst Ulm Helmholtzstr 11 D-89081 Ulm Germany;

    Karlsruhe Inst Technol Helmholtz Inst Ulm Helmholtzstr 11 D-89081 Ulm Germany;

    Univ Toronto Thermofluids Energy & Adv Mat TEAM Lab Dept Mech & Ind Engn Inst Sustainable Energy Fac Appl Sci & Engn 5 Kings Coll Rd Toronto ON M5S 3G8 Canada;

    Univ Toronto Thermofluids Energy & Adv Mat TEAM Lab Dept Mech & Ind Engn Inst Sustainable Energy Fac Appl Sci & Engn 5 Kings Coll Rd Toronto ON M5S 3G8 Canada;

    Karlsruhe Inst Technol Helmholtz Inst Ulm Helmholtzstr 11 D-89081 Ulm 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

    Synchrotron X-ray visualization; Electrolyte distribution; Vanadium redox flow battery; Carbon felt; Compression; Flow field;

    机译:同步X射线可视化;电解质分布;钒氧化还原流量电池;碳毡;压缩;流场;

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