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Photoreactivation of Escherichia coli following medium-pressure ultraviolet disinfection and its control using chloramination

机译:中压紫外线消毒后大肠杆菌的光活化和氯胺化控制

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Ultraviolet (UV) disinfection is becoming increasingly popular as an alternative disinfection technology to chlorination in recent years. In this study, we investigated the photoreactivation of Escherichia coli following medium-pressure (MP) UV disinfection of synthetic water by a bench-scale collimated beam apparatus. The UV doses ranged from 1.6-19.7 mWS/cm(2) and photoreactivation was investigated for 6 hours under fluorescent light. In addition, chloramination was applied after UV disinfection to investigate its ability to control photoreactivation. It was found that photoreactivation occurred for all UV doses tested and the increase in bacteria numbers ranged from 0.04 to 1.35 log(10). However, the degree of photoreactivation decreased with increased UV doses. Chloramination experiments revealed that the addition of 0.5 mg/l of monochloramine resulted in suppression of photoreactivation for 1 hour only. An increased monochloramine dose of 1 mg/l was found to prevent photoreactivation for the entire duration of the experiment. The results of this study have shown that photoreactivation occurs even after MP UV disinfection, although it is of a lesser extent at higher UV doses. This study has also established that secondary chloramination can effectively suppress and eliminate photoreactivation with a chloramine dose of 1 mg/l.
机译:近年来,紫外线(UV)消毒作为氯化的替代消毒技术变得越来越普遍。在这项研究中,我们研究了通过台式准直光束仪对合成水进行中压(MP)紫外线消毒后大肠杆菌的光活化。紫外线剂量范围为1.6-19.7 mWS / cm(2),并在荧光灯下研究了6小时的光活化。此外,在紫外线消毒后进行了氯化,以研究其控制光活化的能力。发现在所有测试的紫外线剂量下均发生光活化,细菌数量的增加范围为0.04至1.35 log(10)。但是,光活化的程度随着紫外线剂量的增加而降低。氯化实验表明,添加0.5 mg / l的一氯胺只能抑制光活化1小时。发现在整个实验过程中增加一氯胺剂量1 mg / l可以防止光活化。这项研究的结果表明,即使在MP UV消毒后也发生光活化,尽管在较高UV剂量下光活化的程度较小。这项研究还确定,二次氯胺化可有效抑制和消除1 mg / l的氯胺剂量的光再活化。

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