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Advances in the characterization and monitoring of natural organic matter using spectroscopic approaches

机译:采用光谱方法的表征和监测天然有机物的研究进展

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Natural organic matter (NOM) is ubiquitous in environment and plays a fundamental role in the geochemical cycling of elements. It is involved in a wide range of environmental processes and can significantly affect the environmental fates of exogenous contaminants. Understanding the properties and environmental behaviors of NOM is critical to advance water treatment technologies and environmental remediation strategies. NOM is composed of characteristic light-absorbing/emitting functional groups, which are the "identification card" of NOM and susceptive to ambient physiochemical changes. These groups and their variations can be captured through optical sensing. Therefore, spectroscopic techniques are elegant tools to track the sources, features, and environmental behaviors of NOM. In this work, the most recent advances in molecular spectroscopic techniques, including UV-Vis, fluorescence, infrared, and Raman spectroscopy, for the characterization, measurement, and monitoring of NOM are reviewed, and the state-of-the-art innovations are highlighted. Furthermore, the limitations of current spectroscopic approaches for the exploration of NOM-related environmental processesand how these weaknesses/drawbacks can be addressed are explored. Finally, suggestions and directions are proposed to advance the development of spectroscopic methods in analyzing and elucidating the properties and behaviors of NOM in natural and engineered environments. (c) 2020 Elsevier Ltd. All rights reserved.
机译:天然有机物(NOM)在环境中普遍存在,在元素的地球化学循环中起着基本作用。它参与了各种环境过程,可以显着影响外源污染物的环境置源。了解NOM的性质和环境行为对于推进水处理技术和环境修复策略至关重要。 NOM由特征光吸收/发射官能团组成,其是NOM和易受环境生理化学变化的“识别卡”。这些组及其变化可以通过光学感测捕获。因此,光谱技术是优雅的工具,可以跟踪NOM的来源,特征和环境行为。在这项工作中,综述了分子光谱技术的最新进程,包括UV-VI,荧光,红外和拉曼光谱,以及NOM的特征和监测,以及最先进的创新是突出了。此外,探讨了当前光谱方法对NOM相关环境过程的探索的局限性,可以解决这些弱点/缺点。最后,建议提出建议和方向来推进分析和阐明自然和工程环境中NOM的性质和行为的光谱方法的发展。 (c)2020 elestvier有限公司保留所有权利。

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