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Characterization and biogeochemical implications of dissolved organic matter in aquatic environments

机译:溶解有机物在水生环境中的表征和生物地球化学影响

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摘要

Dissolved organic matter (DOM) is viewed as one of the most chemically active organic substances on earth. It plays vital roles in the fate, bioavailability and toxicity of aquatic exogenous chemical species (e.g., heavy metals, organic pollutants, and nanomaterials). The characteristics of DOM such low concentrations, salt interference and complexity in aquatic environments and limitations of pretreatment for sample preparation and application of characterization techniques severely limit understanding of its nature and environmental roles. This review provides a characterization continuum of aquatic DOM, and demonstrate its biogeochemical implications, enabling in-depth insight into its nature and environmental roles. A synthesis of the effective DOM pretreatment strategies, comprising extraction and fractionation methods, and characterization techniques is presented. Additionally, the biogeochemical dynamics of aquatic DOM and its environmental implications are discussed. The findings indicate the collection of representative DOM samples from water as the first and critical step for characterizing its properties, dynamics, and environmental implications. However, various pretreatment procedures may alter DOM composition and structure, producing highly variable recoveries and even influencing its subsequent characterization. Therefore, complimentary use of various characterization techniques is highly recommended to obtain as much information on DOM as possible, as each characterization technique exhibits various advantages and limitations. Moreover, DOM could markedly change the physical and chemical properties of exogenous chemical species, influencing their transformation and mobility, and finally altering their potential bioavailability and toxicity. Several research gaps to be addressed include the impact of pretreatment on the composition and structure of aquatic DOM, molecular-level structural elucidation for DOM, and assessment of the effects of DOM dynamics on the fate, bioavailability and toxicity of exogenous chemical species.
机译:溶解有机物(DOM)被视为地球上最具化学活性的有机物质之一。它在水生外源化学物质(例如,重金属,有机污染物和纳米材料)的命运,生物利用度和毒性中起重要作用。 DOM这种低浓度,盐干扰和水生环境中的复杂性以及样品制备的预处理的局限性和表征技术的局限性严重限制了对其性质和环境作用的理解。该审查提供了水生Dom的表征连续体,并展示其生物地球化学影响,从而深入了解其性质和环境职位。提出了一种合成,包括提取和分级方法,以及表征技术。另外,讨论了水生DOM的生物地质化学动态及其环境影响。该发现表明来自水的代表性DOM样本的集合作为表征其性质,动力学和环境影响的第一和关键步骤。然而,各种预处理程序可以改变DOM组成和结构,产生高度可变的回收率,甚至影响其随后的表征。因此,强烈建议使用各种表征技术的补充使用,以便尽可能多地获得DOM的信息,因为每个表征技术表现出各种优点和限制。此外,DOM可以显着改变外源化学物质的物理和化学性质,影响其转化和迁移率,最终改变其潜在的生物利用度和毒性。要解决的几项研究差距包括预处理对水生Dom,分子水平结构阐释的组成和结构的影响,以及评估Dom动力学对外源化学物质的命运,生物利用度和毒性的影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|113041.1-113041.17|共17页
  • 作者单位

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xian 710055 People's Republic of China Shaanxi Key Laboratory of Environmental Engineering Xi 'an University of Architecture and Technology Xi 'an 710055 People's Republic of China International Science & Technology Cooperation Center for Urban Alternative Water Resources Development Xi'an University of Architecture and Technology Xi'an 710055 People's Republic of China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xian 710055 People's Republic of China Shaanxi Key Laboratory of Environmental Engineering Xi 'an University of Architecture and Technology Xi 'an 710055 People's Republic of China International Science & Technology Cooperation Center for Urban Alternative Water Resources Development Xi'an University of Architecture and Technology Xi'an 710055 People's Republic of China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xian 710055 People's Republic of China Shaanxi Key Laboratory of Environmental Engineering Xi 'an University of Architecture and Technology Xi 'an 710055 People's Republic of China International Science & Technology Cooperation Center for Urban Alternative Water Resources Development Xi'an University of Architecture and Technology Xi'an 710055 People's Republic of China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xian 710055 People's Republic of China Shaanxi Key Laboratory of Environmental Engineering Xi 'an University of Architecture and Technology Xi 'an 710055 People's Republic of China International Science & Technology Cooperation Center for Urban Alternative Water Resources Development Xi'an University of Architecture and Technology Xi'an 710055 People's Republic of China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xian 710055 People's Republic of China International Science & Technology Cooperation Center for Urban Alternative Water Resources Development Xi'an University of Architecture and Technology Xi'an 710055 People's Republic of China;

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

    Dissolved organic matter; Pretreatment methods; Characterization techniques; Biogeochemical implications; Review;

    机译:溶解有机物;预处理方法;表征技术;生物地球化学意义;审查;

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