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Cathode Potential and Mass Transfer Determine Performance of Oxygen Reducing Biocathodes in Microbial Fuel Cells

机译:阴极电位和传质决定了微生物燃料电池中氧还原生物阴极的性能

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摘要

The main limiting factor in Microbial Fuel Cell (MFC) power output is the cathode, because of the high overpotential for oxygen reduction. Oxygen reducing biocathodes can decrease this overpotential by the use of microorganisms as a catalyst In this study, we investigated the factors limiting biocathode performance. Three biocathodes were started up at different cathode potentials, and their performance and catalytic behavior was tested by means of polarization curves and cyclic voltammetry. The biocathodes controlled at +0.05 V and +0.15 V vs Ag/AgCl produced current almost immediately after inoculation, while the biocathode controlled at +0.25 V vs Ag/AgCl produced no current until day 15. The biocathode controlled at +0.15 V vs Ag/AgCl reached the highest current density of 313 mA/m~2. Cyclic voltammetry showed clear catalysis for all three biocathodes. The biocathodes were limited by both mass transfer of oxygen and by charge transfer.Mass transfer calculations show that the transfer of oxygen poses a serious limitation for the use of dissolved oxygen as an electron acceptor in MFCs.
机译:微生物燃料电池(MFC)功率输出的主要限制因素是阴极,因为氧还原的过电位很高。减少氧气的生物阴极可以通过使用微生物作为催化剂来降低这种过电位。在这项研究中,我们研究了限制生物阴极性能的因素。在不同的阴极电位下启动了三个生物阴极,并通过极化曲线和循环伏安法测试了它们的性能和催化行为。接种后,相对于Ag / AgCl而言,控制在+0.05 V和+0.15 V的生物阴极几乎立即产生电流,而直到第15天,相对于Ag / AgCl而言,控制于+0.25 V的生物阴极没有电流。 / AgCl达到最高电流密度313 mA / m〜2。循环伏安法显示所有三种生物阴极均具有清晰的催化作用。生物阴极受氧气的质量转移和电荷转移的限制。传质计算表明,氧气的传递对MFCs中溶解氧作为电子受体的使用构成了严重的限制。

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  • 来源
    《Environmental Science & Technology》 |2010年第18期|p.7151-7156|共6页
  • 作者单位

    Sub-Department of Environmental Technology, Wageningen University, Bomenweg 2, P.O. Box 8129, 6700 EV Wageningen,The Netherlands Wetsus, Centre of Excellence for Sustainable Water Technology, Agora I, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

    rnSub-Department of Environmental Technology, Wageningen University, Bomenweg 2, P.O. Box 8129, 6700 EV Wageningen,The Netherlands;

    rnSub-Department of Environmental Technology, Wageningen University, Bomenweg 2, P.O. Box 8129, 6700 EV Wageningen,The Netherlands;

    rnSub-Department of Environmental Technology, Wageningen University, Bomenweg 2, P.O. Box 8129, 6700 EV Wageningen,The Netherlands Wetsus, Centre of Excellence for Sustainable Water Technology, Agora I, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:04:03

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