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A New Insight into Potential Regulation on Growth and Power Generation of Geobacter suffurreducens in Microbial Fuel Cells Based on Energy Viewpoint

机译:基于能量观点的微生物燃料电池中减少细菌的土壤细菌生长和发电的潜在调控新见解

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摘要

The anode potential in microbial fuel cells (MFCs) defines the possible metabolic energy gain (PMEG) for the bacteria growth. This study focused on the mechanism behind anode potential controlling microbial growth and power generation in MFCs from an energy perspective. Four sets of MFCs were operated with varied conditions: three with different applied anode potential (-160,0, and 400 mV vs standard hydrogen electrode (SHE)) and one with an external resistor (500 Ω). A model strain Geobacter sulfurreducens was used here. The evolution of biomass was measured and its quantitative relationship with PMEG was analyzed. Linear voltammetry and cyclic voltammetry were also carried out Results indicated a notable gain in biomass and power density when anode potential increased from -160 to 0 mV. However, no gain in biomass and power generation was detected when anode potential further increased to 400 mV. At anode potential of 0 mV and below, 6. sulfurreducens extracted a significant portion of PMEG for growth, while utilization of PMEG significantly decreased at 400 mV. Furthermore, the anode potential has a minor influence on individual G. sulfurreducens cell activity, and the maximum power density of MFC proportionate to biomass.
机译:微生物燃料电池(MFCs)中的阳极电位定义了细菌生长的可能的代谢能增益(PMEG)。这项研究从能量的角度着眼于阳极电位控制MFC中微生物生长和发电的机制。四套MFC在不同的条件下运行:三套具有不同的施加的阳极电势(相对于标准氢电极(SHE)为-160,0和400 mV),另一套具有外部电阻(500Ω)。这里使用模型菌株Geobacter sulfreducens。测量生物量的演变,并分析其与PMEG的定量关系。还进行了线性伏安法和循环伏安法。结果表明,当阳极电势从-160增加到0 mV时,生物量和功率密度显着增加。但是,当阳极电势进一步增加到400 mV时,未检测到生物量和发电量的增加。在阳极电势为0 mV或更低时,6.硫还原剂提取了很大一部分PMEG用于生长,而在400 mV时PMEG的利用率显着下降。此外,阳极电势对单个G.硫的还原细胞的活性影响较小,而MFC的最大功率密度与生物质成正比。

著录项

  • 来源
    《Environmental Science & Technology》 |2010年第8期|p.3187-3191|共5页
  • 作者单位

    State Key Joint Laboratory of Environment Simulation and Pollution Control Department of Environmental Science and Engineering Tsinghua University, Beijing, 100084, P.R. China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control Department of Environmental Science and Engineering Tsinghua University, Beijing, 100084, P.R. China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control Department of Environmental Science and Engineering Tsinghua University, Beijing, 100084, P.R. China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control Department of Environmental Science and Engineering Tsinghua University, Beijing, 100084, P.R. China;

  • 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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