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Fate of Escherichia coli in dialysis device exposed into sewage influent and activated sludge.

作者信息

Ung Porsry, Peng Chanthol, Yuk Sokunsreiroat, Ann Vannak, Mith Hasika, Tan Reasmey, Miyanaga Kazuhiko, Tanji Yasunori

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, 4259 J2-15 Nagatsuta-cho, Midori-ku, Yokohama 226-8501, Japan E-mail:

Department of Rural Engineering, Institute of Technology of Cambodia, Russian Federation Blvd, P.O. Box 86, 12156 Phnom Penh, Cambodia.

出版信息

J Water Health. 2018 Jun;16(3):380-390. doi: 10.2166/wh.2018.282.

Abstract

Tracing the fate of pathogens in environmental water, particularly in wastewater, with a suitable methodology is a demanding task. We investigated the fate of Escherichia coli K12 in sewage influent and activated sludge using a novel approach that involves the application of a biologically stable dialysis device. The ion concentrations inside the device could reach that of surrounding solution when it was incubated in phosphate buffered saline for 2 h. E. coli K12 above 10 CFU mL (inoculated in distilled water, influent, activated sludge) were introduced into the device and incubated in influent and activated sludge for 10 days. Without indigenous microorganisms, E. coli K12 could survive even with the limited ions and nutrients concentrations in influent and activated sludge. E. coli K12 abundance in influent and activated sludge were reduced by 60 and 85%, respectively, after just 1 day. The establishment of microbial community in wastewater played an important role in reducing E. coli K12. Bacteriophage propagated in filtered influent or activated sludge when E. coli K12 was introduced, but not in raw influent or activated sludge. The methodology developed in this study can be applied in the actual environmental water to trace the fate of pathogens.

摘要

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