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Continuous power generation and microbial community structure of the anode biofilms in a three-stage microbial fuel cell system

机译:三级微生物燃料电池系统中阳极生物膜的连续发电和微生物群落结构

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A mediator-less three-stage two-chamber microbial fuel cell (MFC) system was developed and operated continuously for more than 1.5 years to evaluate continuous power generation while treating artificial wastewater containing glucose (10 mM) concurrently. A stable power density of 28 W/m~3 was attained with an anode hydraulic retention time of 4.5 h and phosphate buffer as the cathode electrolyte. An overall dissolved organic carbon removal ratio was about 85%, and coulombic efficiency was about 46% in this MFC system. We also analyzed the microbial community structure of anode biofilms in each MFC. Since the environment in each MFC was different due to passing on the products to the next MFC in series, the microbial community structure was different accordingly. The anode biofilm in the first MFC consisted mainly of bacteria belonging to the Gammaproteobacteria, identified as Aeromonas sp., while the Firmicutes dominated the anode biofilms in the second and third MFCs that were mainly fed with acetate. Cyclic voltammetric results supported the presence of a redox compound(s) associated with the anode biofilm matrix, rather than mobile (dissolved) forms, which could be responsible for the electron transfer to the anode. Scanning electron microscopy revealed that the anode biofilms were comprised of morphologically different cells that were firmly attached on the anode surface and interconnected each other with anchor-like filamentous appendages, which might support the results of cyclic voltammetry.
机译:开发了一种无介体的三级两室微生物燃料电池(MFC)系统,该系统连续运行1.5年以上,以评估连续发电,同时处理含葡萄糖(10 mM)的人造废水。阳极水力保持时间为4.5 h,磷酸盐缓冲液作为阴极电解质,可实现28 W / m〜3的稳定功率密度。在该MFC系统中,总溶解有机碳去除率约为85%,库仑效率约为46%。我们还分析了每个MFC中阳极生物膜的微生物群落结构。由于将每个产品依次传递到下一个MFC中,每个MFC中的环境都不同,因此微生物群落结构也相应地不同。第一个MFC中的阳极生物膜主要由属于丙种变形杆菌的细菌组成,被鉴定为Aeromonas sp。,而Firmicutes在第二和第三个MFC中的阳极生物膜中占主导地位,主要以醋酸盐为食。循环伏安结果支持存在与阳极生物膜基质相关的氧化还原化合物,而不是可移动(溶解)的形式,这可能是电子转移到阳极的原因。扫描电子显微镜显示,阳极生物膜由形态不同的细胞组成,这些细胞牢固地附着在阳极表面并与锚状丝状附件相互连接,这可能支持循环伏安法的结果。

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