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合流制排水系统中指示微生物和肠道病毒的日变化规律。

Diurnal fluctuation of indicator microorganisms and intestinal viruses in combined sewer system.

机构信息

Environment Research Division, Korea Institute of Construction Technology, 2311, Daehwa-dong, Ilsanseo-gu, Goyang-si, Gyeonggi-do 411-712, Republic of Korea.

出版信息

Water Sci Technol. 2009;60(11):2791-801. doi: 10.2166/wst.2009.732.

Abstract

Combined sewer overflow (CSO) has been considered to be a source of pathogenic microorganisms for aquatic environment. For the effective control and treatment of CSOs, the microbial behavior in combined sewer system (CSS) needs to be investigated. In this study, whole-day extensive monitoring of indicator microorganisms and intestinal viruses in dry weather flow (DWF) was conducted at a small residential urban drainage area with CSS. All indicator bacteria represented similar diurnal variations in the two different monitoring campaigns; their concentrations gradually decreased to the minimum at the dawn (around 5 a.m.), increased sharply to the maximum around 7 to 8 a.m., and remained rather constant from noon to midnight. On the other hand, neither coliphages nor intestinal viruses showed any concentration peaks in the morning. The maximum/minimum load ratios ranged from 18 to 42 for total coliforms, fecal coliforms and E. coli, whereas those ratios for coliphages, enteroviruses and noroviruses G2 showed greater values than those for indicator bacteria. These results indicate that the diurnal variation patterns of bacterial and viral concentrations in DWF should be considered, which affect the discharge characteristics of each microorganism and the loads of bacteria and viruses in CSOs significantly vary with the overflow time as well.

摘要

合流制污水溢流(CSO)被认为是水生环境中病原微生物的来源。为了对 CSO 进行有效控制和处理,需要研究 CSS 中的微生物行为。在这项研究中,对具有 CSS 的小型住宅城市排水区的旱季流量(DWF)中的指示微生物和肠道病毒进行了全天广泛监测。两项不同监测活动中的所有指示细菌均表现出相似的昼夜变化;它们的浓度在黎明(约凌晨 5 点)逐渐降至最低,在早上 7 点至 8 点急剧增加,并在中午到午夜之间保持相当稳定。另一方面,噬菌体和肠道病毒在早上均未显示出任何浓度峰值。总大肠菌群、粪大肠菌群和大肠杆菌的最大/最小负荷比范围为 18 至 42,而噬菌体、肠道病毒和诺如病毒 G2 的比值大于指示细菌。这些结果表明,应考虑 DWF 中细菌和病毒浓度的昼夜变化模式,这会显著影响每种微生物的排放特征,并且 CSO 中的细菌和病毒负荷也会随着溢流量的变化而变化。

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