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Removal of Bacteriophages MS2 and ΦX174 during Transport in a Sandy Anoxic Aquifer

机译:含沙缺水含水层运输过程中噬菌体MS2和ΦX174的去除

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The objectives of our study were to determine (i) removal of bacteriophage MS2 and 4ΦX174, as surrogates for human pathogenic viruses, in an anoxic aquifer and (ii) the safe length of the microbial protection zone in anoxic aquifers. 3.5 Log units of MS2 were removed by adsorption and inactivation during 63 days residence time, which was 1.4 log units lower than removal of ΦX174. These removal rates were considerably lower than previously reported for MS2 and ΦX174 in oxic aquifers and consequently longer protection zones around anoxic aquifers might be needed. Therefore, the observed log removal of MS2 was used in a risk assessment approach to determine the required safe length of the microbial protection zone. In case of a leaking sewer in the vicinity of a well in an anoxic aquifer, the risk assessment demonstrated that a microbial protection zone of 110 m may be needed to meet a risk of infection of 10~(-4) persons per year. This length can be two to three times larger than the length of the protection zone currently used in a number of countries.
机译:我们研究的目的是确定(i)去除缺氧含水层中作为人类病原病毒替代物的噬菌体MS2和4ΦX174,以及(ii)缺氧含水层中微生物保护区的安全长度。在63天的停留时间内,通过吸附和灭活去除了3.5个对数单位的MS2,这比ΦX174的去除低1.4个对数单位。这些去除率明显低于以前在含氧含水层中对MS2和ΦX174的报道,因此可能需要在含氧含水层周围更长的保护区。因此,在风险评估方法中使用观察到的MS2的对数去除来确定所需的微生物保护区安全长度。如果在缺氧蓄水层的井附近有下水道泄漏,则风险评估表明,可能需要110 m的微生物保护区,以满足每年10〜(-4)人的感染风险。该长度可以是许多国家当前使用的保护区长度的两到三倍。

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