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土壤溶解有机质的化学多样性。

Chemodiversity of Soil Dissolved Organic Matter.

机构信息

Key Laboratory of Pollution Control and Ecosystem Restoration in Industry Clusters, Ministry of Education, School of Environment and Energy, South China University of Technology, Guangzhou, Guangdong 510006, People's Republic of China.

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, the Chinese Academy of Sciences, Nanjing 210008, People's Republic of China.

出版信息

Environ Sci Technol. 2020 May 19;54(10):6174-6184. doi: 10.1021/acs.est.0c01136. Epub 2020 Apr 27.

Abstract

Dissolved organic matter (DOM) plays a key role in many biogeochemical processes, but the drivers controlling the diversity of chemical composition and properties of DOM molecules (chemodiversity) in soils are poorly understood. It has also been debated whether environmental conditions or intrinsic molecular properties control the accumulation and persistence of DOM due to the complexity of both molecular composition of DOM and interactions between DOM and surrounding environments. In this study, soil DOM samples were extracted from 33 soils collected from different regions of China, and we investigated the effects of climate and soil properties on the chemodiversity of DOM across different regions of China, employing a combination of Fourier transform ion cyclotron resonance mass spectrometry, optical spectroscopy, and statistical analyses. Our results indicated that, despite the heterogeneity of soil samples and complex influencing factors, aridity and clay can account for the majority of the variations of DOM chemical composition. The finding implied that DOM chemodiversity is an ecosystem property closely related to the environment, and can be used in developing large-scale soil biogeochemistry models for predicting C cycling in soils.

摘要

溶解有机质(DOM)在许多生物地球化学过程中起着关键作用,但控制土壤中 DOM 分子化学组成和性质多样性(化学多样性)的驱动因素仍知之甚少。由于 DOM 的分子组成以及 DOM 与周围环境之间的相互作用的复杂性,也存在争议,即环境条件还是固有分子特性控制 DOM 的积累和持久性。在这项研究中,从中国不同地区采集的 33 个土壤中提取了土壤 DOM 样品,并采用傅里叶变换离子回旋共振质谱、光学光谱和统计分析相结合的方法,研究了气候和土壤特性对中国不同地区 DOM 化学多样性的影响。我们的结果表明,尽管土壤样品存在异质性且影响因素复杂,但干旱和粘土可以解释 DOM 化学组成变化的大部分原因。这一发现表明,DOM 化学多样性是一种与环境密切相关的生态系统特性,可以用于开发大规模土壤生物地球化学模型,以预测土壤中的 C 循环。

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