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Microbial fuel cell-upflow biofilter coupling system for deep denitrification and power recovery: Efficiencies, bacterial succession and interactions

机译:微生物燃料电池 - 上流生物过滤器联轴器耦合系统,用于深度脱氮和功率回收:效率,细菌连续和相互作用

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摘要

The excess organic carbon is often added to meet denitrification requirements during municipal wastewater treatment, resulting in the carbon waste and increased risk of secondary pollution. In this study, microbial fuel cell (MFC) was coupled with an up-flow denitrification biofilter (BF), and the long-term performances of denitrification and power output were investigated under the different carbon source concentration. With sodium acetate (NaAc) of 600 mg/L and 300 mg/L, the favorable denitrification efficiencies were obtained (98.60%) and the stable current output was maintained (0.44 mA0.48 mA). By supplying NaAc of 150 mg/L, the high denitrification efficiency remained in a high range (89.31%) and the current output maintained at 0.12 mA, while, the denitrification efficiency dropped to 71.34% without coupling MFC. Electron balance analysis indicated that both nitrate removal and electron recovery efficiencies were higher in MFC-BF than that in BF, verifying the improved denitrification and carbon utilization performance. Coupling MFC significantly altered the bacterial community structure and composition, and while, the diversified abundance and distribution of bacterial genera were observed at the different locations. Compared with BF, the more exoelectrogenic genera (Desulfobacterium, Trichococcus) and genera holding both denitrifying and electrogenic functions (Dechloromonas, Geobacter) were found dominated in MFC-BF. Instead, the dominating genera in BF were Dechloromonas, Desulfomicrobium, Acidovorax and etc. By coupling MFC, the more complex and diversified network and the closer interaction relationships between the dominant potential functional genera were found. The study provides a feasible approach to effectively improve the denitrification efficiency and organic carbon recovery for deep denitrification process.
机译:经常添加过量的有机碳以满足市政废水处理期间的脱氮要求,导致碳浪费和次要污染风险增加。在该研究中,微生物燃料电池(MFC)与上流脱氮生物过滤器(BF)偶联,并在不同的碳源浓度下研究了反硝化和功率输出的长期性能。含有600mg / L和300mg / L的醋酸钠(Naac),获得有利的脱氮效率(98.60%),保持稳定的电流输出(0.44 mA0.48 mA)。通过供应150mg / L的Naac,高脱氮效率保持在高范围(89.31%),电流输出保持在0.12 mA,而脱氮效率下降至71.34%而不偶联MFC。电子平衡分析表明,MFC-BF中的硝酸盐去除和电子回收效率均高于BF,验证改善的脱氮和碳利用性能。偶联MFC显着改变了细菌群落结构和组成,而在不同位置观察到细菌属的多样化和分布。与BF相比,发现在MFC-BF中占据了含有反硝化和发电功能(Dechloromonas,Geobacter的脱硫,Trichococcus)和金属菌均具有更高的exoellogencionα(脱硫,脱氯钨)。相反,BF中的主导属是通过偶联MFC,发现更复杂和多样化的网络以及所占主潜在功能属之间更近似的相互作用关系的脱氯基,脱硫纤维素。该研究提供了一种可行的方法,可以有效提高脱硝效率和有机碳回收以进行深度脱氮过程。

著录项

  • 来源
    《Environmental research》 |2021年第5期|110331.1-110331.8|共8页
  • 作者单位

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Key Laboratory of Environmental Biotechnology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China;

    Key Lab of Structures Dynamic Behavior and Control of China Ministry of Education School of Civil Engineering Harbin Institute of Technology Harbin 150090 China;

    Key Lab of Structures Dynamic Behavior and Control of China Ministry of Education School of Civil Engineering Harbin Institute of Technology Harbin 150090 China;

    Civil and Infrastructure Engineering School of Engineering RMIT University Melbourne Vic 3001 Australia;

    Store Key Laboratory of Urban Water Resource and Environment School of Environment Harbin Institute of Technology Harbin 150090 China Key Laboratory of Environmental Biotechnology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbial fuel cell; Upflow biofilter; Denitrification; Power output; Bacterial distribution; Bacterial ecological networks;

    机译:微生物燃料电池;上流生物过滤器;反硝化;功率输出;细菌分布;细菌生态网络;

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