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Fluorescence as a potential monitoring tool for recycled water systems: A Review

机译:荧光作为循环水系统的潜在监视工具:回顾

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摘要

A rapid, highly sensitive and selective detector is urgently required to detect contamination events in recycled water systems - for example, cross-connection events in dual reticulation pipes that recycle advanced treated sewage effluent - as existing technologies, including total organic carbon and conductivity monitoring, cannot always provide the sensitivity required. Fluorescence spectroscopy has been suggested as a potential monitoring tool given its high sensitivity and selectivity. A review of recent literature demonstrates that by monitoring the fluorescence of dissolved organic matter (DOM), the ratios of humic-like (Peak C) and protein-like (Peak T) fluorescence peaks can be used to identify trace sewage contamination in river waters and estuaries, a situation analogous to contamination detection in recycled water systems. Additionally, strong correlations have been shown between Peak T and biochemical oxygen demand (BOD) in rivers, which is indicative of water impacted by microbial activity and therefore of sewage impacted systems. Hence, this review concludes that the sensitive detection of contamination events in recycled water systems may be achieved by monitoring Peak T and/or Peak C fluorescence. However, in such systems, effluent is treated to a high standard resulting in much lower DOM concentrations and the impact of these advanced treatment processes on Peaks T and C fluorescence is largely unknown and requires investigation. This review has highlighted that further work is also required to determine (a) the stability and distinc-tiveness of recycled water fluorescence in relation to the treatment processes utilised, (b) the impact of matrix effects, particularly the impact of oxidation, (c) calibration issues for online monitoring, and (d) the advanced data analytical techniques required, if any, to improve detection of contamination events.
机译:作为现有技术,包括总有机碳和电导率监测的现有技术,迫切需要一种快速,高度灵敏且选择性强的检测器来检测循环水系统中的污染事件,例如,用于循环利用经处理的高级污水的双网状管道中的交叉连接事件。不能总是提供所需的灵敏度。荧光光谱法因其高灵敏度和高选择性而被建议作为一种潜在的监测工具。最近的文献综述表明,通过监测溶解有机物(DOM)的荧光,腐殖质(Peak C)和蛋白质样(Peak T)荧光峰的比率可用于识别河水中的微量污水污染。和河口,这类似于循环水系统中的污染物检测。此外,在河流的T峰与生化需氧量(BOD)之间已显示出很强的相关性,这表明微生物活动影响了水,进而影响了污水系统。因此,本次审查得出的结论是,可以通过监测峰值T和/或峰值C荧光来实现对循环水系统中污染事件的灵敏检测。但是,在这样的系统中,废水经过高标准处理,导致DOM浓度低得多,这些先进处理工艺对T和C峰荧光的影响在很大程度上尚不清楚,需要进行研究。这项审查强调指出,还需要进一步的工作来确定(a)循环水荧光与所采用的处理方法有关的稳定性和区别性;(b)基质效应的影响,尤其是氧化的影响,(c )用于在线监控的校准问题,以及(d)改进污染事件检测所需的高级数据分析技术(如果有)。

著录项

  • 来源
    《Water Research》 |2009年第4期|863-881|共19页
  • 作者单位

    UNSW Water Research Centre, School of Civil and Environmental Engineering, University of New South Wales, Sydney,rnNSW 2052, Australia;

    UNSW Water Research Centre, School of Civil and Environmental Engineering, University of New South Wales, Sydney,rnNSW 2052, Australia School of Geography, Earth and Environmental Sciences, University of Birmingham, UK;

    UNSW Water Research Centre, School of Civil and Environmental Engineering, University of New South Wales, Sydney,rnNSW 2052, Australia Smithsonian Environmental Research Centre, 647 Contees Wharf Road, Edgewater, MD 21037, USA;

    UNSW Water Research Centre, School of Civil and Environmental Engineering, University of New South Wales, Sydney,rnNSW 2052, Australia;

    UNSW Water Research Centre, School of Civil and Environmental Engineering, University of New South Wales, Sydney,rnNSW 2052, Australia;

    UNSW Water Research Centre, School of Civil and Environmental Engineering, University of New South Wales, Sydney,rnNSW 2052, Australia;

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

    contamination; cross-connection; EEM; matrix effects; membrane; monitoring;

    机译:污染;交叉连接;EEM;基质效应膜;监控;

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