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土壤有机质的分子和微观特征分析研究进展:当前的局限与未来展望。

Advances in Molecular and Microscale Characterization of Soil Organic Matter: Current Limitations and Future Prospects.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Environ Sci Technol. 2022 Sep 20;56(18):12793-12810. doi: 10.1021/acs.est.2c00421. Epub 2022 Aug 29.

Abstract

Soil organic matter (SOM) comprises a continuum of organic materials from granular organic debris to small organic molecules and contains more organic carbon than global vegetation and the atmosphere combined. It has remarkable effects on soil ecological functions and the global carbon cycle as well as the fate of pollutants in the terrestrial ecosystem. Therefore, characterization of SOM is an important topic in soil science, ecology, and environmental science. Chemical complexity and spatial heterogeneity are by far the two biggest challenges to our understanding of SOM. Recent developments in analytical techniques and methods provide the opportunity to reveal SOM composition at the molecular level and to observe its distribution in soils at micro- and nanoscales, which have greatly improved our understanding of SOM. This paper reviews the outstanding advances in SOM characterization regarding these two issues from target and nontarget analyses comprising molecular marker analysis, ultrahigh-resolution mass spectrometry analysis, and in situ microscopic imaging techniques such as synchrotron-based spectromicroscopy, nanoscale secondary ion mass spectrometry, and emerging electron and optical microscopic imaging techniques. However, current techniques and methods remain far from unlocking the unknown properties of SOM. We systematically point out the limitations of the current technologies and outline the future prospects for comprehensive characterization of SOM at the molecular level and micro- and nanoscales, paying particular attention to issues of environmental concern.

摘要

土壤有机质(SOM)包括从颗粒状有机碎屑到小分子有机物质的连续有机物质,其有机碳含量超过全球植被和大气的总和。它对土壤生态功能和全球碳循环以及陆地生态系统中污染物的归宿有显著影响。因此,SOM 的特征描述是土壤科学、生态学和环境科学中的一个重要课题。到目前为止,化学复杂性和空间异质性是我们理解 SOM 的两个最大挑战。分析技术和方法的最新进展为我们在分子水平上揭示 SOM 组成以及观察其在土壤中的微观和纳米尺度分布提供了机会,这极大地提高了我们对 SOM 的理解。本文综述了从目标和非目标分析(包括分子标记分析、超高分辨率质谱分析)方面,对 SOM 特征描述这两个问题的突出进展,以及同步辐射基光谱显微镜、纳米二次离子质谱和新兴电子和光学显微镜成像技术等原位微观成像技术。然而,目前的技术和方法仍然远远不能揭示 SOM 的未知特性。我们系统地指出了当前技术的局限性,并概述了在分子水平和微观及纳米尺度上对 SOM 进行全面特征描述的未来前景,特别关注与环境有关的问题。

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