Application of EEM fluorescence spectroscopy for characterizing organic DBP precursors in different water sources: a review

Jinglong Hu, Rong Xiao, Ruihua Zhang, Zhengdi Wu, Fangyuan Jiang, Cheng Ye, Ruixin Qu, Wenhai Chu
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Abstract

Disinfection by-products (DBPs), generated from the reaction of disinfectants with DBP precursors, have been found to pose unintentional risks to human health. Considering that the concentration and speciation of DBPs formed during disinfection will be affected by the content and composition of dissolved organic matter (DOM), widespread concern about the characteristics of DBP precursors in water sources have been prompted. Three-dimensional excitation–emission matrix (EEM) can quickly and efficiently determine the properties and composition of DOM in water, and thus is generally used to investigate the origin of DBP precursors in water sources. This study overviews the fluorescent properties of different DBP precursors, summarizes the application of different EEM interpretation methods in DBP precursors and analyses the key factors affecting the correlation between the fluorescent components and DBP precursors (e.g., natural organic matter, algal organic matter, effluent organic matter and organic matter derived from other sources). A series of factors, including composition of fluorophores, bromide concentration, spatio-temporal characteristics and disinfectant types, could impact the correlation between DBP formation potential and fluorescent components. As for future research needs, it is of significance to select suitable fluorescence analysis methods and investigate the combination of EEM with other characterization technologies based on different situations.
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应用 EEM 荧光光谱鉴定不同水源中的有机 DBP 前体:综述
人们发现,消毒剂与 DBP 前体反应产生的消毒副产物(DBP)会对人类健康造成意外风险。考虑到消毒过程中形成的 DBPs 的浓度和种类会受到溶解有机物(DOM)的含量和组成的影响,水源中 DBP 前体的特征引起了人们的广泛关注。三维激发-发射矩阵(EEM)可以快速有效地确定水中 DOM 的性质和组成,因此被普遍用于研究水源中 DBP 前体的来源。本研究概述了不同 DBP 前体的荧光特性,总结了不同 EEM 解释方法在 DBP 前体中的应用,并分析了影响荧光成分与 DBP 前体(如天然有机物、藻类有机物、污水有机物和其他来源的有机物)之间相关性的关键因素。荧光团成分、溴化物浓度、时空特征和消毒剂类型等一系列因素都可能影响 DBP 形成潜力与荧光成分之间的相关性。对于未来的研究需求,根据不同情况选择合适的荧光分析方法并研究 EEM 与其他表征技术的结合具有重要意义。
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