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Effect of Anodic Biofilm Growth on the Performance of the Microbial Fuel Cell (MFC)

机译:阳极生物膜生长对微生物燃料电池(MFC)性能的影响

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Electrochemical impedance spectroscopy (EIS) and Cyclic Voltammetry (CV) were used to explore the mechanism of the effect of anodic biofilm growth on power output of the microbial fuel cell (MFC) at different operational conditions. These operational conditions included MFC systems with and without the bacterial catalyst and at different periods of biofilm growth. Power density increased with the development of biofilm on the anodic surface. Higher power density of 594 mW/m2; was observed on day 30 (a maturate bioflim) compared with the power density of 33.4 mW/m2; on day 5 (an immature biofilm). The MFC without biofilm catalyst generated unnoticeable power density of 8.6 mW/m2;. These results showed that biofilm growth greatly reduced the anode polarization impedance and facilitated the kinetics of the electrochemical reactions so as to enhance extracellular electron transfer from bacteria to anode electrode and increase the power generation.
机译:电化学阻抗谱(EIS)和循环伏安法(CV)用于探讨在不同操作条件下阳极生物膜生长对微生物燃料电池(MFC)功率输出的影响机理。这些操作条件包括具有和不具有细菌催化剂以及在生物膜生长的不同时期的MFC系统。功率密度随着阳极表面生物膜的发展而增加。更高的功率密度为594 mW / m2;在第30天(成熟的生物燃料)观察到功率密度为33.4 mW / m2;在第5天(生物膜未成熟)。没有生物膜催化剂的MFC产生了8.6 mW / m2的引人注目的功率密度。这些结果表明,生物膜的生长大大降低了阳极极化阻抗,并促进了电化学反应的动力学,从而增强了细胞外电子从细菌向阳极电极的转移并增加了发电量。

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