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Fluorescence-based monitoring of anthropogenic pollutant inputs to an urban stream in Southern California, USA

机译:美国南部加利福尼亚州城市溪流的荧光 - 基于人为污染物投入的监测

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摘要

Fluorescence spectroscopy has been increasingly used to detect sewage and other anthropogenic contaminants in surface waters. Despite progress in successfully detecting bacterial and sewage inputs to rivers over diverse spatial scales, the use of fluorescence-based in-situ sensors to track contaminant inputs during storm events and to discern bacterial contamination from background natural organic matter (NOM) fluorescence have received less attention. A portable, submersible fluorometer equipped with tryptophan (TRP)-like and humic-like fluorescence sensors was used to track inputs of untreated wastewater added to natural creek water in a laboratory sewage spill simulation. Significant, positive correlations were observed between TRP fluorescence, the TRP:humic ratio, percent wastewater, and Escherichia coli concentrations, indicating that both the TRP sensor and the TRP:humic ratio tracked wastewater inputs against the background creek water DOM fluorescence. The portable fluorometer was subsequently deployed in an urban creek during a storm in 2018. The peak in TRP fluorescence was found to increase with the rising limb of the hydrograph and followed similar temporal dynamics to that of caffeine and fecal indicator bacteria, which are chemical and biological markers of potential fecal pollution. Results from this study demonstrate that tracking of TRP fluorescence intensity and TRP:humic ratios, with turbidity correction of sensor outputs, may be an appropriate warning tool for rapid monitoring of sewage or other bacterial inputs to aquatic environments.
机译:荧光光谱已经越来越多地用于检测表面水中的污水和其他人为污染物。尽管进展成功地检测到河流的细菌和污水投入,但在不同的空间尺度上的使用,使用荧光的原位传感器在风暴事件期间跟踪污染物输入,并从背景天然有机物(NOM)荧光中辨别细菌污染(NOM)荧光已收到较少注意力。配备有色氨酸(TRP)的便携式潜水器(TRP)和腐殖液荧光传感器用于跟踪未处理废水的输入,在实验室污水泄漏模拟中添加到天然溪水中。在TRP荧光,TRP:腐殖比,百分比废水和大肠杆菌浓度之间观察到显着,正相关,表明TRP传感器和TRP:腐殖液比跟踪废水对背景溪水DOM荧光输入。随后将便携式荧光计在2018年风暴期间部署在城市溪中。发现TRP荧光中的峰值随着水文的上升和伴随咖啡因和粪便指标细菌的循环和粪便指标细菌的峰值增加。潜在粪便污染的生物学标志。本研究结果表明,TRP荧光强度和TRP:腐殖液比率,具有传感器输出的浊度校正,可以是用于快速监测到水生环境的污水或其他细菌输入的适当警告工具。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第may20期|137206.1-137206.8|共8页
  • 作者单位

    Department of Civil Construction and Environmental Engineering San Diego State University 5500 Campanile Drive San Diego CA 92182 United States of America Department of Civil and Environmental Engineering Stanford University 450 Serra Mall Stanford CA 94305 United States of America;

    Department of Civil Construction and Environmental Engineering San Diego State University 5500 Campanile Drive San Diego CA 92182 United States of America;

    Department of Civil Construction and Environmental Engineering San Diego State University 5500 Campanile Drive San Diego CA 92182 United States of America;

    Department of Civil Construction and Environmental Engineering San Diego State University 5500 Campanile Drive San Diego CA 92182 United States of America;

    Department of Civil Construction and Environmental Engineering San Diego State University 5500 Campanile Drive San Diego CA 92182 United States of America;

    College of Public Health San Diego State University 5500 Campanile Drive San Diego CA 92182 United States of America;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Urban stream; Pollution; Sewage; Tryptophan; Fluorometer; Sensor;

    机译:城市溪流;污染;污水;色氨酸;荧光计;传感器;

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