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首页> 外文期刊>Environmental Science: Water Research & Technology >Application of the CANARY event detection software for real-time performance monitoring of decentralized water reuse systems
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Application of the CANARY event detection software for real-time performance monitoring of decentralized water reuse systems

机译:CANARY事件检测软件在分散式回水系统实时性能监控中的应用

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摘要

Real-time monitoring of water reuse systems ensures the production of high quality water to protect human health at the point-of-use. In this study, several online real-time sensors were utilized to monitor effluent from a wastewater fed laboratory-scale membrane bioreactor (MBR) under natural and simulated failure conditions. These simulated failures included adding reactor mixed liquor to emulate a membrane breach, and spiking MS2 bacteriophage into the reactor to create a high viral load, which might be observed during an outbreak. The CANARY event detection software was used to analyze sensor data and report changes in water quality that might be indicative of poor system behavior. During simulated failure conditions, CANARY reported 20 alarms, accurately detecting each failure. During natural operating conditions, 219 alarms were produced and 189 were attributed to known events (e.g., system and sensor maintenance). The remaining alarms (23) during natural operating conditions were considered to have an unknown cause. However, 13 of those had signal deviations similar to known events, but could not be definitively linked to a source. The results of this study suggest that real-time monitoring in conjunction with CANARY analysis may be useful as an early warning system for monitoring the effluent of water reuse systems, and may help to quickly identify treatment malfunctions or other abnormal conditions.
机译:实时监测中水回用系统可确保生产高质量的水,从而在使用时保护人类健康。在这项研究中,使用了几个在线实时传感器来监测在自然和模拟故障情况下,实验室规模的膜式生物反应器(MBR)供给的废水的废水。这些模拟失败包括添加反应器混合液以模拟膜破裂,以及将MS2噬菌体掺入反应器中以产生高病毒载量,这可能在爆发期间观察到。 CANARY事件检测软件用于分析传感器数据并报告水质变化,这可能表明系统行为不佳。在模拟故障情况下,CANARY报告了20条警报,可准确检测出每个故障。在自然操作条件下,产生了219个警报,其中189个归因于已知事件(例如,系统和传感器维护)。自然运行条件下的其余警报(23)被认为是原因不明。但是,其中13个信号的偏差与已知事件相似,但不能确定地与信号源关联。这项研究的结果表明,结合CANARY分析进行实时监测可能是有用的预警系统,用于监测回水系统的废水,并可能有助于快速识别处理故障或其他异常情况。

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    University of Cincinnati, Department of Biomedical, Chemical, and Environmental Engineering, 2901 Woodside Drive, Cincinnati, OH 45221, USA;

    National Homeland Security Research Center, United States Environmental Protection Agency, 26 W. Martin Luther King Dr., Cincinnati, OH 45268, USA;

    Pegasus Technical Services, Inc., 46 E. Hollister St., Cincinnati, OH 45219, USA;

    Student Services Contractor, United States Environmental Protection Agency, 26 W. Martin Luther King Dr., Cincinnati, OH 45268, USA;

    Systems Exposure Division, National Exposure Research Laboratory, United States Environmental Protection Agency, 26 W. Martin Luther King Dr., MS 587 Cincinnati, OH 45268, USA;

    Student Services Contractor, United States Environmental Protection Agency, 26 W. Martin Luther King Dr., Cincinnati, OH 45268, USA;

    National Homeland Security Research Center, United States Environmental Protection Agency, 26 W. Martin Luther King Dr., Cincinnati, OH 45268, USA;

    University of Cincinnati, Department of Biomedical, Chemical, and Environmental Engineering, 2901 Woodside Drive, Cincinnati, OH 45221, USA;

    Systems Exposure Division, National Exposure Research Laboratory, United States Environmental Protection Agency, 26 W. Martin Luther King Dr., MS 587 Cincinnati, OH 45268, USA;

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