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水生有机物的特性描述:评估、展望与研究重点。

Characterization of aquatic organic matter: Assessment, perspectives and research priorities.

机构信息

Department of Environment and Energy, Sejong University, Seoul, 143-747, South Korea.

Department of Environment and Energy, Sejong University, Seoul, 143-747, South Korea; Biophysics Institute, Italian National Research Council, Pisa, Italy.

出版信息

Water Res. 2019 Oct 15;163:114908. doi: 10.1016/j.watres.2019.114908. Epub 2019 Jul 23.

Abstract

Organic matter (OM) refers to the largest reactive reservoir of carbon-based compounds on Earth. Aside of its role as a source of carbon, OM is also actively involved in a wide range of ecological functions. It also plays an important role in the solubility, toxicity, bioavailability, mobility and distribution of pollutants. Therefore, OM is a key component in the local and global carbon cycle. About 12,000 articles containing organic matter in the title were published during the past decade, with a continuous increasing number each year (ISI Web of Science). Although this topic was widely explored and its interest has significantly increased, some limitations remain. These limitations can be technical (e.g., pre-treatment processes, low-resolution instrument, data handling) and can be related to the current approach. In this review, we first present the current strategies and tools to characterize the organic matter in the aquatic environment, then we tackle several aspects of current characterization limitations. Finally, we suggest new perspectives and priorities of research to improve the current limitations. From our point of view, simultaneous studies of particulate and dissolved OM fractions should be prioritized and multi-disciplinary approach, creation of databases, controlled experiments and collaborative works should be the next targets for future OM research priorities.

摘要

有机物质(OM)是地球上最大的碳基化合物反应库。除了作为碳源的作用外,OM 还广泛参与各种生态功能。它还在污染物的溶解度、毒性、生物利用度、迁移性和分布中起着重要作用。因此,OM 是本地和全球碳循环的关键组成部分。在过去十年中,ISI Web of Science 上发表了约 12000 篇标题中含有有机物质的文章,每年的数量都在持续增加。尽管这个主题已经被广泛探索,并且其兴趣显著增加,但仍存在一些限制。这些限制可能是技术上的(例如,预处理过程、低分辨率仪器、数据处理),也可能与当前的方法有关。在这篇综述中,我们首先介绍了当前用于表征水生环境中有机物质的策略和工具,然后讨论了当前表征限制的几个方面。最后,我们提出了一些新的观点和研究重点,以改善当前的局限性。在我们看来,应优先考虑同时研究颗粒态和溶解态 OM 组分,并采取多学科方法、创建数据库、进行对照实验和开展合作研究,这应是未来 OM 研究重点的下一个目标。

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