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内陆水体中的有色溶解有机物:现有知识与未来挑战。

Chromophoric dissolved organic matter in inland waters: Present knowledge and future challenges.

机构信息

Taihu Laboratory for Lake Ecosystem Research, State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Taihu Laboratory for Lake Ecosystem Research, State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China; University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sci Total Environ. 2021 Mar 10;759:143550. doi: 10.1016/j.scitotenv.2020.143550. Epub 2020 Nov 17.

Abstract

Chromophoric dissolved organic matter (CDOM) plays an important role in the biogeochemical cycle and energy flow of aquatic ecosystems. Thus, systematic and comprehensive understanding of CDOM dynamics is critically important for aquatic ecosystem management. CDOM spans multiple study fields, including analytical chemistry, biogeochemistry, water color remote sensing, and global environmental change. Here, we thoroughly summarize the progresses of recent studies focusing on the characterization, distribution, sources, composition, and fate of CDOM in inland waters. Characterization methods, remote sensing estimation, and biogeochemistry cycle processes were the hotspots of CDOM studies. Specifically, optical, isotope, and mass spectrometric techniques have been widely used to characterize CDOM abundance, composition, and sources. Remote sensing is an effective tool to map CDOM distribution with high temporal and spatial resolutions. CDOM dynamics are mainly determined by watershed-related processes, including rainfall discharge, groundwater, wastewater discharges/effluents, and biogeochemical cycling occurring in soil and water bodies. We highlight the underlying mechanisms of the photochemical degradation and microbial decomposition of CDOM, and emphasize that photochemical and microbial processes of CDOM in inland waters accelerate nutrient cycling and regeneration in the water column and also exacerbate global warming by releasing greenhouse gases. Future study directions to improve the understanding of CDOM dynamics in inland waters are proposed. This review provides an interdisciplinary view and new insights on CDOM dynamics in inland waters.

摘要

显色溶解有机质(CDOM)在水生生态系统的生物地球化学循环和能量流动中起着重要作用。因此,系统和全面地了解 CDOM 的动态变化对于水生生态系统的管理至关重要。CDOM 跨越了多个研究领域,包括分析化学、生物地球化学、水色遥感和全球环境变化。在这里,我们彻底总结了最近关于内陆水体中 CDOM 的特征、分布、来源、组成和命运的研究进展。特征化方法、遥感估算和生物地球化学循环过程是 CDOM 研究的热点。具体来说,光学、同位素和质谱技术已广泛用于表征 CDOM 的丰度、组成和来源。遥感是一种有效的工具,可以以高时空分辨率绘制 CDOM 的分布。CDOM 的动态主要由与流域相关的过程决定,包括降雨排放、地下水、污水排放/废水以及土壤和水体中的生物地球化学循环。我们强调了 CDOM 光化学降解和微生物分解的潜在机制,并强调了内陆水体中 CDOM 的光化学和微生物过程加速了水柱中营养物质的循环和再生,并通过释放温室气体加剧了全球变暖。提出了改善对内陆水体中 CDOM 动态理解的未来研究方向。本综述提供了一个跨学科的视角和对内陆水体中 CDOM 动态的新见解。

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