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UV disinfection of secondary water supply: Online monitoring with micro-fluorescent silica detectors

机译:二次供水的紫外线消毒:使用微荧光二氧化硅检测器进行在线监控

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In past decades, secondary water supply (SWS) systems in high-rise residential buildings have seen a rapid development in China, and ultraviolet (UV) treatment has been selected as a principal disinfection technology. However, several special problems of the SWS systems, such as large daily fluctuations in water flow rate (Q) and seasonal variations in water temperature, may strongly impact the disinfection efficiency, but these issues have never been addressed before. In this study, the practical application of UV technology in an SWS system was investigated in detail. A tri-parameter monitoring system, which had earlier been developed based on three micro-fluorescent silica detectors, was installed in a UV disinfection reactor for the SWS system in a high-rise residential building. Combined with an initial fluence validation by biodosimetry, the lamp output attenuation coefficient (N), sleeve fouling coefficient (F), water transmittance (T), Q, and output fluence (U) were monitored online for about 6 months. During the long-term test period, the daily average N increased by ca. 50% due to the seasonal variation in water temperature; the F decreased by ca. 70% due to the sleeve scaling; and a large daily fluctuation of Q. induced an obvious fluctuation of U. The average U over the whole operation period was as high as 169 mJ/cm~2, alerting an enormous loss of energy. Through online monitoring of the N, T, F, Q and U, this study revealed the current serious problems for UV disinfection of SWS systems, and proposed potential solutions accordingly.
机译:在过去的几十年中,高层住宅建筑中的二次供水(SWS)系统在中国得到了快速发展,紫外线(UV)处理已被选作主要的消毒技术。但是,SWS系统的一些特殊问题,例如水流量(Q)的每日大波动和水温的季节性变化,可能会严重影响消毒效率,但是这些问题以前从未得到解决。在这项研究中,详细研究了紫外线技术在SWS系统中的实际应用。在较早的时候基于三个微荧光二氧化硅检测器开发的三参数监测系统,被安装在高层住宅建筑中用于SWS系统的紫外线消毒反应器中。结合通过生物剂量学进行的初始注量验证,对灯的输出衰减系数(N),套管结垢系数(F),透水率(T),Q和输出注量(U)进行了在线监测,为期约6个月。在长期测试期间,日平均N增加了约。 50%由于水温的季节性变化; F减少了约。 70%由于袖子结垢;每天Q的较大波动引起U的明显波动。整个操作期间的平均U高达169 mJ / cm〜2,这提醒着能量的巨大损失。通过在线监测N,T,F,Q和U,这项研究揭示了SWS系统紫外线消毒当前存在的严重问题,并据此提出了潜在的解决方案。

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