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Real-time contaminant detection and classification in a drinking water pipe using conventional water quality sensors: Techniques and experimental results

机译:使用常规水质传感器对饮用水管道中的污染物进行实时检测和分类:技术和实验结果

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摘要

Accurate detection and identification of natural or intentional contamination events in a drinking water pipe is critical to drinking water supply security and health risk management. To use conventional water quality sensors for the purpose, we have explored a real-time event adaptive detection, identification and warning (READiw) methodology and examined it using pilot-scale pipe flow experiments of 11 chemical and biological contaminants each at three concentration levels. The tested contaminants include pesticide and herbicides (aldicarb, glyphosate and dicamba), alkaloids (nicotine and colchicine), E. coli in terrific broth, biological growth media (nutrient broth, terrific broth, tryptic soy broth), and inorganic chemical compounds (mercuric chloride and potassium ferricyanide). First, through adaptive transformation of the sensor outputs, contaminant signals were enhanced and background noise was reduced in time-series plots leading to detection and identification of all simulated contamination events. The improved sensor detection threshold was 0.1% of the background for pH and oxidation-reduction potential (ORP), 0.9% for free chlorine, 1.6% for total chlorine, and 0.9% for chloride. Second, the relative changes calculated from adaptively transformed residual chlorine measurements were quantitatively related to contaminant-chlorine reactivity in drinking water. We have shown that based on these kinetic and chemical differences, the tested contaminants were distinguishable in forensic discrimination diagrams made of adaptively transformed sensor measurements.
机译:准确检测和识别饮用水管道中的自然或故意污染事件对于饮用水供应安全和健康风险管理至关重要。为了将常规水质传感器用于此目的,我们探索了一种实时事件自适应检测,识别和警告(READiw)方法,并使用中试规模的管道流动实验对11种化学和生物污染物进行了实验,并分别对三种浓度进行了检测。所测试的污染物包括农药和除草剂(涕灭威,草甘膦和麦草畏),生物碱(烟碱和秋水仙碱),极好的肉汤中的大肠杆菌,生物生长介质(营养肉汤,极好肉汤,胰蛋白酶大豆肉汤)和无机化合物(汞)氯化物和铁氰化钾)。首先,通过传感器输出的自适应转换,在时序图中可以提高污染物信号并降低背景噪声,从而检测和识别所有模拟污染事件。改进的传感器检测阈值为pH和氧化还原电位(ORP)的背景的0.1%,游离氯为0.9%,总氯为1.6%,氯为0.9%。第二,从适应性转化的残留氯测量值计算出的相对变化与饮用水中的污染物-氯反应性定量相关。我们已经表明,基于这些动力学和化学差异,在通过自适应转换传感器测量得出的法医辨别图中,可以区分测试的污染物。

著录项

  • 来源
    《Journal of Environmental Management》 |2009年第8期|2494-2506|共13页
  • 作者单位

    U.S. Environmental Protection Agency, National Risk Management Research Laboratory, Water Supply and Water Resources Division,26 West Martin Luther King Dr., Cincinnati, OH 45268, USA;

    U.S. Environmental Protection Agency, National Risk Management Research Laboratory, Water Supply and Water Resources Division,26 West Martin Luther King Dr., Cincinnati, OH 45268, USA;

    U.S. Environmental Protection Agency, National Risk Management Research Laboratory, Water Supply and Water Resources Division,26 West Martin Luther King Dr., Cincinnati, OH 45268, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    contaminant detection; contaminant identification; drinking water security; detection threshold; adaptive monitoring; water quality sensors;

    机译:污染物检测;污染物识别;饮用水安全;检测阈值;自适应监控;水质传感器;
  • 入库时间 2022-08-17 13:36:06

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