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Performance and bacterial community structure of a novel inverse fluidized bed bioreactor (IFBBR) treating synthetic municipal wastewater

机译:一种新型逆流化床生物反应器(IFBBR)的性能和细菌群落结构处理合成城市废水

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摘要

The performance of a lab-scale integrated anoxic and aerobic inverse fluidized bed bioreactors (IFBBR) for biological nutrient removal from synthetic municipal wastewater was studied at chemical oxygen demand (COD) loading rates of 0.34-2.10 kg COD/(m~3-d) and nitrogen loading rates of 0.035-0.213 kg N/(m~3-d). Total COD removal efficiencies of>84% were achieved, concomitantly with complete nitrification. The overall nitrogen removal efficiencies were >75%. Low biomass yields of 0.030-0.101 g VSS/g COD were achieved. Compared with other FBBR systems, the energy consumption for this IFBBR system was an average 59% less at organic loading rates (OLRs) of 1.02 and 2.10 kg COD/(m~3-d). Bacterial community structures of attached and suspended biomass revealed that the dominant phyla were Proteobacteria, Bacteroidetes, and Epsilonbacteraeota, etc. The relative abundance of ammonia-oxidizing bacteria (AOBs) and nitrite-oxidizing bacteria (NOBs) in the aerobic attached biomass were 0.451% and 0.110%, respectively. COD mass balance in the anoxic zone was closed by consideration of sulfate reduction, which was confirmed by the presence of genus Chlorobium (sulfate-reducing bacteria) in the anoxic attached biofilm with a relative abundance of 0.32%.
机译:在化学需氧量(COD)加载率为0.34-2.10公斤COD /(M〜3-D)的化学需氧量(COD)加载率,研究了用于从合成市政废水中的生物养分除去的生物养分除去的生物养分和有氧异化床生物反应器(IFBBR)的性能。 )和氮负载率为0.035-0.213 kg n /(m〜3-d)。实现了> 84%的总鳕鱼去除效率,伴随着完全硝化。整体氮去除效率> 75%。达到了0.030-0.101g焦点的低生物量产量。与其他FBBR系统相比,IFBBR系统的能量消耗在1.02和2.10kg COD /(M〜3-D)的有机加载率(OLR)处的平均平均为59%。附着和悬浮生物量的细菌群落结构揭示了优势的植物是植物菌,细菌和epsilonaClaceoota等。氨氧化细菌(Aobs)和氮酸盐氧化细菌(NOBS)的相对丰度为0.451%分别为0.110%。通过考虑硫酸盐还原,通过缺氧附着的生物膜中的氯钴(硫酸盐还原细菌)存在,确认亚氧基区中的COD质量平衡,其相对丰度为0.32%。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第may20期|137288.1-137288.15|共15页
  • 作者单位

    Department of Chemical and Biochemical Engineering University of Western Ontario London ON N6A 5B9 Canada;

    Department of Chemical and Biochemical Engineering University of Western Ontario London ON N6A 5B9 Canada;

    Department of Chemical and Biochemical Engineering University of Western Ontario London ON N6A 5B9 Canada;

    Department of Chemical and Biochemical Engineering University of Western Ontario London ON N6A 5B9 Canada;

    Department of Chemical and Biochemical Engineering University of Western Ontario London ON N6A 5B9 Canada;

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

    IFBBR; Nitrification-denitrification; 16S rRNA; Low biomass yield; Energy consumption;

    机译:IFBBR;硝化 - 反硝化;16s rrna;低生物质产量;能源消耗;

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