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Effects of the presence of nanoscale zero-valent iron on the degradation of polychlorinated biphenyls and total organic carbon by sediment microbial fuel cell

机译:纳米零价铁的存在对沉积物微生物燃料电池降解多氯联苯和总有机碳的影响

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摘要

The degradation of polychlorinated biphenyls (PCBs) and total organic carbon (TOC) by sediment microbial fuel cell (SMFC) with/without nanoscale zero-valent iron (NZVI) addition was investigated. It was found that the combined application led to the highest removal efficiencies of PCBs (37.55 +/- 1.11%) and TOC (49.72 +/- 1.54%) in all circumstances and produced a higher power density (108.89 mW/m(2)) and a corresponding lower internal resistance (264 Omega) than operation employing SMFC only. The TOC removal efficiency and the total production of electricity were linear. High-throughput sequencing of anodic microbial communities indicated that the electrode participation can increase the abundance of electrogenic bacteria (Geobacter and Pseudomonas) and the NZVI addition can reduce the oxidation reduction potential of the system and therefore enrich some bacteria (Longilinea and Desulfofustis) beneficial to the degradation of organic matter. (C) 2018 Elsevier B.V. All rights reserved.
机译:研究了添加/不添加纳米级零价铁(NZVI)的沉积物微生物燃料电池(SMFC)对多氯联苯(PCBs)和总有机碳(TOC)的降解。结果发现,在所有情况下,组合应用都能带来最高的PCB去除效率(37.55 +/- 1.11%)和TOC(49.72 +/- 1.54%),并产生更高的功率密度(108.89 mW / m(2) )和比仅采用SMFC的操作更低的内部电阻(264Ω)。 TOC去除效率与总发电量呈线性关系。阳极微生物群落的高通量测序表明,电极的参与可以增加电致细菌的数量(土杆菌和假单胞菌),加入NZVI可以降低系统的氧化还原电位,因此可以富集一些有益于细菌生长的细菌(Longilinea和Desulfofustis)。有机物的降解。 (C)2018 Elsevier B.V.保留所有权利。

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