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首页> 外文期刊>Science of the total environment >Supersaturated-oxygen aeration effects on a high-loaded membrane bioreactor (HL-MBR): Biological performance and microbial population dynamics
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Supersaturated-oxygen aeration effects on a high-loaded membrane bioreactor (HL-MBR): Biological performance and microbial population dynamics

机译:在高负荷膜生物反应器(HL-MBR)上的过饱和氧气通气效应:生物学性能和微生物种群动态

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摘要

Conventional diffused aeration systems (such as fine-bubble diffusers) exhibit a poor oxygen transfer in waste-water treatment plants (WWTPs), particularly when operating at sludge concentrations higher than 15 g L~(-1). The supersaturated dissolved oxygen (SDOX) system has been proposed as an alternative for supplying dissolved oxygen (DO) at high mixed liquor suspended solids (MLSS) concentrations. The advantages introduced by such technology include the possibility of operating WWTPs at much higher than usual MLSS concentrations, increasing the treatment capacity of WWTPs. Recent studies have demonstrated that the SDOX system has higher oxygen transfer rates (OTRs) and oxygen transfer efficiencies (OTEs) relative to fine-bubble diffusers. However, it is unknown if the high-pressure conditions introduced by SDOX may possibly impact the biological performance of WWTPs. In this study, the effects of SDOX technology on the biological performance of a membrane bioreactor (MBR) were evaluated. The MBR was operated at an MLSS concentration of approximately 15 g L~(-1) in four phases as follows: (P1) with bubble diffusers, (P2) with an SDOX unit, (P3) with the bubble diffusers, and (P4) with the SDOX unit. The performance of the MBR was assessed by monitoring the sludge concentration, as well as changes in the particle size distribution (PSD), sludge activity, organic matter removal and nitrification performance, and changes in the microbial community within the MBR. The operational conditions exerted by the SDOX technology did not affect the concentration of active biomass during the study period. The biological performance of the MBR was not affected by the introduction of the SDOX technology. Finally, the microbial community was relatively stable although some variations at the family and genus level were evident during each of the study phases. Therefore, the SDOX system can be proposed as an alternative technology for DO supply in WWTPs increasing the overall treatment capacity.
机译:传统的扩散曝气系统(例如细气泡扩散器)在废水处理厂(WWTPS)中表现出差的氧气转移,特别是当在高于15g L〜(-1)的污泥浓度下操作时。已经提出了过饱和溶解的氧(Sdox)系统作为在高混合液悬浮固体(MLS)浓度下供应溶解的氧(DO)的替代方案。这种技术引入的优点包括经营WWTP的可能性高于通常的MLSS浓度,增加了WWTP的处理能力。最近的研究表明,SDOX系统相对于细气泡漫射器具有较高的氧传输速率(OTRS)和氧转移效率(OTES)。然而,如果SDOX引入的高压条件可能会影响WWTPS的生物学性能,则尚不清楚。在该研究中,评估SDOX技术对膜生物反应器(MBR)的生物学性能的影响。 MBR在四个相中以约15gL〜(-1)的MLS浓度为如下:(P1),用气泡漫射器(P2),用SDOX单元,(P3),与气泡漫射器,和(P4 )与SDOX单位。通过监测污泥浓度来评估MBR的性能,以及粒度分布(PSD),污泥活性,有机物质去除和硝化性能的变化,以及MBR内的微生物群落的变化。 Sdox技术施加的操作条件在研究期间不影响活性生物质的浓度。 MBR的生物学性能不受SDOX技术引入的影响。最后,微生物群落相对稳定,尽管在每个研究阶段期间家庭和属级别的一些变化是明显的。因此,可以提出SDOX系统作为WWTPS的供应的替代技术,增加了整个处理能力。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|144847.1-144847.12|共12页
  • 作者单位

    Department of Water Supply Sanitation and Environmental Engineering IHE Delft Institute for Water Education Westvest 7 2611AX Delft the Netherlands Department of Biotechnology Delft University of Technology Van der Maasweg 9 2629 HZ Delft the Netherlands;

    Department of Water Supply Sanitation and Environmental Engineering IHE Delft Institute for Water Education Westvest 7 2611AX Delft the Netherlands;

    Faculty of Food Technology and Biotechnology University of Zagreb Pierottijeva 6 10000 Zagreb Croatia;

    Faculty of Food Technology and Biotechnology University of Zagreb Pierottijeva 6 10000 Zagreb Croatia;

    Laboratory for Biology and Microbial Genetics Department of Biochemical Engineering Faculty of Food Technology and Biotechnology University of Zagreb Krsnjavoga 25 10000 Zagreb Croatia;

    Laboratory for Biology and Microbial Genetics Department of Biochemical Engineering Faculty of Food Technology and Biotechnology University of Zagreb Krsnjavoga 25 10000 Zagreb Croatia;

    BlueInGreen LLC 700 W. Research Center Blvd. Suite 1208 FayetteviUe AR 72701 United States;

    HAC Group LLC 8111 Hicckma Mills Dr Kansas City MO 64132 United States;

    Civil Architectural and Environmental Engineering Department University of Texas at Austin Austin 7X United States;

    Civil Architectural and Environmental Engineering Department University of Texas at Austin Austin 7X United States;

    Department of Water Supply Sanitation and Environmental Engineering IHE Delft Institute for Water Education Westvest 7 2611AX Delft the Netherlands Department of Biotechnology Delft University of Technology Van der Maasweg 9 2629 HZ Delft the Netherlands;

    Department of Water Supply Sanitation and Environmental Engineering IHE Delft Institute for Water Education Westvest 7 2611AX Delft the Netherlands;

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

    Oxygen transfer; Supersaturated dissolved oxygen; High mixed liquor suspended solids; Biological wastewater treatment; High-loaded membrane bioreactor;

    机译:氧气转移;超饱和溶解氧;高混合液悬浮固体;生物废水处理;高负载膜生物反应器;

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