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首页> 外文期刊>Water Environment Research >Real-Time Determination of the Efficacy of Residual Disinfection to Limit Wastewater Contamination in a Water Distribution System Using Filtration-Based Luminescence
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Real-Time Determination of the Efficacy of Residual Disinfection to Limit Wastewater Contamination in a Water Distribution System Using Filtration-Based Luminescence

机译:使用基于过滤的发光技术实时测定配水系统中残留消毒对限制废水污染的功效

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摘要

Water distribution systems can be vulnerable to microbial contamination through cross-connections, wastewater backflow, the intrusion of soiled water after a loss of pressure resulting from an electricity blackout, natural disaster, or intentional contamination of the system in a bioterrrorism event. The most urgent matter a water treatment utility would face in this situation is detecting the presence and extent of a contamination event in real-time, so that immediate action can be taken to mitigate the problem. The current approved microbiological detection methods are culture-based plate count methods, which require incubation time (1 to 7 days). This long period of time would not be useful for the protection of public health. This study was designed to simulate wastewater intrusion in a water distribution system. The objectives were 2-fold: (1) real-time detection of water contamination, and (2) investigation of the sustainability of drinking water systems to suppress the contamination with secondary disinfectant residuals (chlorine and chloramine). The events of drinking water contamination resulting from a wastewater addition were determined by filtration-based luminescence assay. The water contamination was detected by luminescence method within 5 minutes. The signal amplification attributed to wastewater contamination was clear-10~2-fold signal increase. After 1 hour, chlorinated water could inactivate 98.8% of the bacterial contaminant, while chloraminated water reduced 77.2%.
机译:配电系统可能会因交叉连接,废水回流,电力中断,自然灾害或在生物恐怖事件中蓄意污染系统而导致压力损失后入侵脏水而容易受到微生物污染。在这种情况下,水处理公用事业公司将面临的最紧迫的事情是实时检测污染事件的存在和程度,以便可以立即采取措施减轻该问题。当前批准的微生物检测方法是基于培养的板计数方法,需要孵育时间(1至7天)。如此长的时间对于保护公共健康将毫无用处。本研究旨在模拟供水系统中的废水入侵。目标是2个方面:(1)实时检测水的污染,以及(2)研究饮用水系统的可持续性,以抑制二次消毒剂残留物(氯和氯胺)的污染。通过基于过滤的发光测定法确定了废水添加引起的饮用水污染事件。在5分钟内通过发光方法检测到水污染。废水污染引起的信号放大明显增加了10〜2倍。 1小时后,氯化水可以灭活98.8%的细菌污染物,而氯化水则减少77.2%。

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