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Regeneration of the power performance of cathodes affected by biofouling

机译:受生物污染影响的阴极功率性能的再生

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摘要

Air cathode microbial fuel cells (MFCs) were used in a cascade-system, to treat neat human urine as the fuel. Their long-term operation caused biodeterioration and biofouling of the cathodes. The cathodes were made from two graphite-painted layers, separated by a current collector. The initial performance of the MFCs was reaching average values of 105.5 +/- 32.2 mu W and current of 1164.5 +/- 120.2 mu A. After 3 months of operation the power performance decreased to 9.8 +/- 3.5 mu W, whilst current decreased to 461.2 +/- 137.5 mu A. Polarisation studies revealed significant transport losses accompanied by a biofilm formation on the cathodes. The alkaline lysis procedure was established to remove the biomass and chemical compounds adsorbed on the cathode's surface. As a result, the current increased from 378.6 +/- 108.3 mu A to 503.8 +/- 95.6 mu A. The additional step of replacing the outer layer of the cathode resulted in a further increase of current to 698.1 +/- 130 mu A. Similarly, the power performance of the MFCs was recovered to the original level reaching 105.3 +/- 16.3 mu W, which corresponds to 100% recovery. Monitoring bacterial cell number on the cathode's surface showed that biofilm formed during operation was successfully removed and composed mainly of dead bacterial cells after treatment. To the best of the authors' knowledge, this is the first time that the performance of deteriorating cathodes, has been successfully recovered for MFCs in-situ. Through this easy, fast and inexpensive procedure, designing multilayer cathodes may help enhance the range of operating conditions, if a biofilm forms on their surface. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:空气阴极微生物燃料电池(MFCs)用于级联系统,以处理纯净的人类尿液作为燃料。它们的长期运行导致阴极的生物降解和生物结垢。阴极由两层石墨涂层制成,并被集电器隔开。 MFC的初始性能达到平均值105.5 +/- 32.2μW,电流达到1164.5 +/- 120.2μA。运行3个月后,功率性能降至9.8 +/- 3.5μW,而电流却下降了。至461.2 +/- 137.5μA。极化研究表明,显着的运输损失伴随着在阴极上形成生物膜。建立了碱性裂解程序以去除吸附在阴极表面的生物质和化学化合物。结果,电流从378.6 +/- 108.3μA增加到503.8 +/- 95.6μA。更换阴极外层的额外步骤导致电流进一步增加到698.1 +/- 130μA类似地,MFC的功率性能恢复到原始水平,达到105.3 +/-16.3μW,这对应于100%的恢复。监测阴极表面的细菌细胞数表明,操作过程中形成的生物膜已被成功清除,并且主要由处理后的死亡细菌细胞组成。据作者所知,这是首次成功地就现场MFC恢复了劣化的阴极性能。通过这种简单,快速且廉价的程序,如果在多层阴极上形成生物膜,则设计多层阴极可能有助于增加操作条件的范围。 (C)2016作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Applied Energy》 |2016年第1期|431-437|共7页
  • 作者单位

    Univ W England, Bristol BioEnergy Ctr, Bristol Robot Lab, Coldharbour Lane, Bristol BS16 1QY, Avon, England|Wroclaw Univ Technol, Wyb Wyspianskiego 27, PL-50370 Wroclaw, Poland;

    Univ W England, Bristol BioEnergy Ctr, Bristol Robot Lab, Coldharbour Lane, Bristol BS16 1QY, Avon, England;

    Univ W England, Bristol BioEnergy Ctr, Bristol Robot Lab, Coldharbour Lane, Bristol BS16 1QY, Avon, England;

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

    Biodeterioration; Microbial fuel cell; Air cathode; Biofilm; Fouling; Lysis;

    机译:生物降解微生物燃料电池空气阴极生物膜结垢溶血;
  • 入库时间 2022-08-18 00:08:19

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