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Fate and role of fluorescence moieties in extracellular polymeric substances during biological wastewater treatment: A review

机译:荧光部分在生物废水中细胞外聚合物物质中的命运和作用:综述

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In biological wastewater treatment systems, extracellular polymeric substances (EPS) are continuously excreted as a response to environmental changes and substrate conditions. It could severely affect the treatment efficacy such as membrane fouling, dewaterability and the formation of carcinogenic disinfection by-products (DBPs). The heterogeneous dissolved organic matter (DOM) with varying size and chemical nature constitute a primary proportion of EPS. In the last few decades, fluorescence spectros-copy has received increasing attention for characterizing these organic substances due to the attractive features of this low-cost spectroscopic approach, including easy sample handling, rapid, non-destructive and highly sensitive nature. In this review, we summarize the application of fluorescence spectroscopy for characterizing EPS and provide the potential implications for online monitoring of water quality along with its limitations. We also link the dynamics of fluorescent dissolved organic matter (FDOM) in EPS with operational and environmental changes in wastewater treatment systems as well as their associations with metal binding, membrane fouling, adsorption, toxicity, and dewaterability. The multiple modes of exploration of fluorescence spectra, such as synchronous spectra with or without coupling with two-dimensional correlation spectroscopy (2D-C0S), excitation-emission matrix (EEM) deconvoluted fluorescence regional integration (FRI), and parallel factor analysis (PARAFAC) are also discussed. The potential fluorescence indicators to depict the composition and bulk characteristics of EPS are also of interest. Further studies are highly recommended to expand the application of fluorescence spectroscopy paired with appropriate supplementary techniques to fully unravel the underlying mechanisms associated with EPS.
机译:在生物废水处理系统中,细胞外聚合物物质(EPS)被连续排出作为对环境变化和底物条件的反应。它可能严重影响膜污垢,脱水性和致癌消毒副产物(DBPS)的形成疗效。具有不同尺寸和化学性质的异质溶解有机物(DOM)构成了EPS的主要比例。在过去的几十年中,由于这种低成本光谱法的吸引力,包括易于样品处理,快速,非破坏性和高度敏感的性质,荧光光谱拷贝已经收到了越来越关注这些有机物质的关注。在本文中,我们总结了荧光光谱的应用,以表征EPS,并提供对水质的潜在影响以及其限制。我们还将荧光溶解有机物质(FDOM)的动态联系在污水处理系统中的运营和环境变化以及金属结合,膜污染,吸附,毒性和脱水性的关联。荧光光谱的多种探测模式,例如具有或不与二维相关光谱(2D-C0S),激发发射矩阵(EEM)去酚荧光区域集成(FRI)和并行因子分析(ParaFac)的同步光谱还讨论过。描绘EPS的组成和散装特征的潜在荧光指标也有目的。强烈建议使用进一步的研究来扩展荧光光谱与适当的补充技术配对的应用,以完全解开与EPS相关的潜在机制。

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