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Mechanisms of Pathogenic Virus Removal in a Full-Scale Membrane Bioreactor

机译:大型膜生物反应器中病原病毒去除的机理

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摘要

Four pathogenic virus removal mechanisms were investigated in a full-scale membrane bioreactor (MBR; nominal pore size 0.04 μm): (ⅰ) attachment of virus to mixed liquor solids; (ⅱ) virus retention by a just backwashed membrane; (ⅲ) virus retention by the membrane cake layer; and (ⅳ) inactivation. We quantified adenovirus, norovirus genogroup Ⅱ (GII), and F+ coliphage in the influent wastewater, the solid and liquid fractions of the mixed liquor, return flow, and permeate using quantitative PCR (adenovirus and norovirus GII) and infectrvity assays (F+ coliphage). Permeate samples were collected 4-5 days, 1 day, 3 h, and immediately after chlorine enhanced backwashes. The MBR achieved high log removals for adenovirus (3.9 to 5.5), norovirus GII (4.6 to 5.7), and F+ coliphage (5.4 to 7.1). The greatest contribution to total removal was provided by the backwashed membrane, followed by inactivation, the cake layer, and attachment to solids. Increases in turbidity and particle counts after backwashes indicated potential breakthrough of particles, but virus removal following backwashes was still high. This study demonstrates the ability of the MBR process to provide over 4 logs of removal for adenovirus and norovirus GII, even after a partial loss of the cake layer, and provides evidence for assigning virus disinfection credit to similar MBRs used to reclaim wastewater for reuse.
机译:在全尺寸膜生物反应器(MBR;标称孔径0.04μm)中研究了四种病原性病毒去除机理:(ⅰ)将病毒附着到混合液固体中; (ⅱ)刚反洗过的膜对病毒的保留; (ⅲ)病毒被膜饼层截留; (ⅳ)灭活。我们使用定量PCR(腺病毒和诺如病毒GII)和传染性分析(F +噬菌体)对进水废水中的腺病毒,诺如病毒基因组Ⅱ(GII)和F +噬菌体,混合液的固液部分,回流和渗透液进行定量。 。在氯强化反冲洗后的4-5天,1天,3小时和立即收集渗透液样品。 MBR对腺病毒(3.9至5.5),诺如病毒GII(4.6至5.7)和F +噬菌体(5.4至7.1)实现了较高的对数去除率。对总去除量的最大贡献在于反洗膜,然后是灭活膜,滤饼层和对固体的附着。反洗后浊度和颗粒数的增加表明颗粒有可能突破,但反洗后去除病毒的可能性仍然很高。这项研究证明了MBR工艺能够提供腺病毒和诺如病毒GII超过4个清除记录的能力,即使在部分滤饼层损失之后,也提供了将病毒消毒功劳分配给用于回收废水以供再利用的类似MBR的证据。

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  • 来源
    《Environmental Science & Technology》 |2015年第5期|2815-2822|共8页
  • 作者单位

    ReNUWIt (Reinventing the Nation's Urban Water Infrastructure) Engineering Research Center, University of California, Berkeley, California, 94720, United States,Department of Civil and Environmental Engineering, University of California, Berkeley, California 94720, United States;

    ReNUWIt (Reinventing the Nation's Urban Water Infrastructure) Engineering Research Center, University of California, Berkeley, California, 94720, United States,Department of Civil and Environmental Engineering, University of California, Berkeley, California 94720, United States;

    Urban Water Systems Engineering, Technische Universitaet Muenchen, 85748 Garching, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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