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Simultaneous Control of Microorganisms and Disinfection By-products by Sequential Chlorination

机译:通过顺序氯化法同时控制微生物和消毒副产物

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Objective To introduce a new sequential chlorination disinfection process in which short-term free chlorine and chloramine are sequentially added. Methods Pilot tests of this sequential chlorination were carried out in a drinking water plant. Results The sequential chlorination disinfection process had the same or better efficiency on microbe (including virus)inactivation compared with the free chlorine disinfection process. There seemed to be some synergetic disinfection effect between free chlorine and monochloramine because they attacked different targets. The sequential chlorination disinfection process resulted in 35.7%-77.0% TTHM formation and 36.6%-54.8% THAA5 formation less than the free chlorination process.The poorer the water quality was, the more advantage the sequential chlorination disinfection had over the free chlorination.Conclusion This process takes advantages of free chlorine's quick inactivation of microorganisms and chloramine's low disinfection by-product (DBP) yield and long-term residual effect, allowing simultaneous control of microbes and DBPs in an effective and economic way.
机译:目的介绍一种新的序列氯化消毒过程,其中顺序加入短期自由氯和氯胺。方法在饮用水植物中进行该序贯氯化的试验试验。结果与游离氯消毒过程相比,序列氯化消毒方法对微生物(包括病毒)灭活具有相同或更好的效率。似乎在游离氯和单氯胺之间存在一些协同消毒作用,因为它们攻击了不同的靶标。序列氯化消毒过程导致35.7%-77.0%TTHM形成和36.6%-54.8%THAA5形成少于自由氯化过程。水质较差,序列氯化消毒在游离氯化过度越大。结论该过程利用自由氯的微生物快速失活的优点和氯胺的低消毒副产物(DBP)产量和长期残余效果,允许以有效和经济的方式同时对微生物和DBPS进行同时控制微生物和DBP。

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