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A Pilot-Scale Study on Ultraviolet Disinfection System for Drinking Water

机译:紫外线饮用水紫外线消毒系统的试验规范研究

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In recent years, Ultraviolet technology for drinking water disinfection has experienced rapid growth in North America and Europe driven by the needs of disinfection by-product reduction and control of emerging pathogens such as Cryptosporidium which are resistant to chlorination. Tsinghua University did some work based on pilot scale UV system in Dongguan. The aim of this study was to evaluate the efficacy of UV systems for drinking water under pilot-scale conditions (continuous flow system) and compared with the collimated beam results in Lab under the same water quality. The experiment results showed that (1) UV was effective against E. coli and TBC. B. substilis and MS2 was more UV-resistant especially when UVT was below 90%. (2)The inactivation of micro-organisms by UV could be described with first-order kinetics using fluence-inactivation data from laboratory studies in CB tests for a certain fluence range. No inactivation at low fluences (shoulder) and no further increase of inactivation at higher fluences (tailing) was observed for some challenge micro-organisms. (3)Water quality and UV sensitivity of micro-organism influenced the inactivation rate. (4) For the daily monitor results of 13000 hours, UV could be a stable disinfection manner for total coliform and TBC. (5) The lamp intensity on-line monitor showed that the lamp efficiency decay was limited within the first 12000 hours.
机译:近年来,紫外线用于饮用水消毒的紫外线经历了北美和欧洲的快速增长,这是由于消毒副产物减少的需求和对抗氯化抗性的新出现病原体的需求而导致的。清华大学根据东莞试点规模UV系统做了一些工作。本研究的目的是在先导条件(连续流动系统)下评估紫外线系统对饮用水的功效,并与在相同水质下实验室的准确束导致的准直梁。实验结果表明,(1)UV对大肠杆菌和TBC有效。 B.替代MS2更抗紫外线,特别是当UVT低于90%时。 (2)UV的微生物的灭活可以使用来自CB测试中的来自实验室研究的流量 - 失活数据进行一定的流量范围。对于一些挑战微生物,没有在低流量(肩部)处没有灭活,并且没有在较高的流利(尾矿)下灭活的进一步增加。 (3)水质和紫外线敏感性的微生物影响了灭活率。 (4)对于每日监测结果13000小时,UV可以是总大肠杆菌和TBC的稳定消毒方式。 (5)灯强度在线显示器显示灯效衰减在前12000小时内有限。

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