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首页> 外文期刊>Journal of power sources >Additive manufactured graphene-based electrodes exhibit beneficial performances in Pseudomonas aeruginosa microbial fuel cells
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Additive manufactured graphene-based electrodes exhibit beneficial performances in Pseudomonas aeruginosa microbial fuel cells

机译:添加剂制造的石墨烯基电极在假单胞菌铜绿假单胞菌微生物燃料电池中表现出有益的性能

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摘要

A commercial polylactic acid/graphene (8 wt%) composite filament was used to additive manufacture (AM) graphene macroelectrodes (AM-GMs). The electrode surfaces were characterised and Pseudomonas aeruginosa was utilised as the exoelectrogen. The MFC was optimised using growth kinetic assays, biofilm formation, and quantification of pyocyanin production (via liquid chromatography-mass spectrometry) in conditions that were representative of the batch-fed MFC configuration utilised. Cell potential and bacterial viability was recorded at 0 h, 24 h, 48 h, 72 h, 96 h and 120 h, power density and current density were calculated. There was no significant difference between P. aeruginosa cell proliferation in either media tested. Interestingly, no accumulation of pyocyanin was evident. Additively manufactured electrodes comprised of graphene (AM-GMs) were successfully applied in a P. aeruginosa MFC configuration and power outputs (110.74 +/- 14.63 mu W m-2) produced were comparable to that of the 'benchmark' electrode, carbon cloth (93.49 +/- 5.17 mu W m-2). The AM-GMs demonstrated power/current outputs similar to that of the carbon cloth electrodes in both anaerobic LB and glucose-based media over 120 h; the AM-GMs had no significant detrimental effect on P. aeruginosa viability. This study highlights the potential application of additive manufactured electrodes with the incorporation of nanomaterials (e.g., graphene) as one approach to enhance power outputs.
机译:商业聚乳酸/石墨烯(8wt%)复合丝将用于添加制剂(AM)石墨烯宏观电极(AM-GMS)。特征在于电极表面,并且使用假单胞菌铜绿假单胞菌作为外部电磁。在代表使用的分批MFC构型的条件下,使用生长动力学测定,生物膜形成和定量优化MFC,生物膜形成和钙蛋白产生(通过液相色谱 - 质谱)的定量。在0h,24h,48h,72h,96 h和120h,计算功率密度和电流密度,记录细胞电位和细菌活力。在测试任一培养基中的铜绿假单胞菌细胞增殖之间没有显着差异。有趣的是,碧粘素没有积累很明显。成功地应用于石墨烯(AM-GMS)的含有碱性制造电极,在P.铜绿假单胞菌MFC配置和电力输出(110.74 +/-14.63μm-2)中,产生的电力输出与“基准”电极,碳布相当(93.49 +/- 5.17 mu w m-2)。 AM-GMS显示出类似于120小时的厌氧LB和基于葡萄糖的介质中的碳布电极的功率/电流输出; AM-GMS对铜绿假单胞活力没有显着不利影响。该研究突出了添加剂制造电极的潜在应用,使纳米材料(例如,石墨烯)作为一种提高功率输出的方法。

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  • 来源
    《Journal of power sources》 |2021年第1期|229938.1-229938.11|共11页
  • 作者单位

    Univ Bath Dept Biol & Biochem Bath BA2 7AY Avon England|Manchester Metropolitan Univ Microbiol Interfaces Fac Sci & Engn Chester St Manchester M1 5GD Lancs England|Manchester Metropolitan Univ Manchester Fuel Cell Innovat Ctr Chester St Manchester M1 5GD Lancs England;

    Manchester Metropolitan Univ Microbiol Interfaces Fac Sci & Engn Chester St Manchester M1 5GD Lancs England;

    Manchester Metropolitan Univ Fac Sci & Engn Chester St Manchester M1 5GD Lancs England;

    Univ Manchester Dept Mech Aviat & Civil Engn Fac Sci & Engn Sackville St Bldg Manchester M1 3WE Lancs England;

    Manchester Metropolitan Univ Microbiol Interfaces Fac Sci & Engn Chester St Manchester M1 5GD Lancs England;

    Manchester Metropolitan Univ Manchester Fuel Cell Innovat Ctr Chester St Manchester M1 5GD Lancs England|Manchester Metropolitan Univ Fac Sci & Engn Chester St Manchester M1 5GD Lancs England;

    Manchester Metropolitan Univ Microbiol Interfaces Fac Sci & Engn Chester St Manchester M1 5GD Lancs England;

  • 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

    Microbial fuel cell; Additive manufacturing; Graphene; Pseudomonas aeruginosa; Pyocyanin; Biotechnology;

    机译:微生物燃料电池;添加剂制造;石墨烯;假霉素;豆糖素;生物技术;

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