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Investigation of pathogen disinfection and regrowth in a simple graywater recycling system for toilet flushing

机译:厕所冲洗简单灰水回收系统中病原体消毒和再生的研究

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Graywater treatment systems must inactivate pathogens, prevent regrowth, be low cost, and be simple to operate to support their widespread adoption for alleviating water stress. A treatment system comprised only of filtration and disinfection could meet these constraints. To investigate pathogen disinfection and regrowth in such a system with minimal organic matter removal, herein three disinfectants (chlorine, ultraviolet irradiation, and ozone) were tested in combination with three filter types (coarse, sand, and cartridge) for inactivation of pathogens in graywater from the showers and hand washbasins of 14 student residences. Graywater was spiked with bacterial and viral pathogens or surrogates post-filtration. Chlorination post-filtration achieved log reductions greater than 7.1, 8.0, and 7.4 for Escherichia coli, Salmonella enterica, and Pseudomonas aeruginosa, respectively, and 3.8 for MS2 bacteriophage. UV was similarly effective, but would not prevent regrowth without a disinfectant residual. Ozonation generally was ineffective at the doses tested, with the exception that MS2 log removal was 3.7. Pathogen regrowth could be prevented for 4d with a chlorine residual of 2.75mg/L even for a simulated high-contamination event (6 log each pathogen). When chlorine residual was maintained, regrowth of indicators and pathogens was prevented for the light graywater investigated.
机译:灰水处理系统必须灭活病原体,防止再生,低成本,并且操作简单,以支持他们广泛采用缓解水分胁迫。仅包含过滤和消毒的治疗系统可以满足这些约束。为了研究这种系统中的病原体消毒和再生,在具有最小的有机物质去除的系统中,本文三种消毒剂(氯,紫外线辐照和臭氧)与三种过滤剂类型(粗,沙子和盒)组合进行测试,用于在灰水中灭活病原体来自14名学生住所的淋浴和手动洗脸盆。灰水掺入细菌和病毒病原体或过滤后替代物。氯化后过滤分别达到大于7.1,8.0和7.4的氯化碱基,分别为7.1,8.0和7.4,Salmonella肠道和假单胞菌铜绿假单胞菌和3.8用于MS2噬菌体。 UV同样有效,但不会妨碍没有消毒残留的再生。臭氧化通常在测试的剂量上无效,但MS2对数除去为3.7。甚至可以防止病原体再生,其中氯残留为2.75mg / L的氯残留,即使是模拟的高污染事件(6针对每个病原体)。维持氯残留物时,预防浅灰水的指标和病原体的再生。

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