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干燥-湿润循环如何影响沉积物中重金属的可用性?从 DOM 分子组成角度探讨。

How do drying-wetting cycles influence availability of heavy metals in sediment? A perspective from DOM molecular composition.

机构信息

College of Geographic Science, Hunan Normal University, Changsha 410081, PR China; Institute of Ecological and Environmental Sciences, Sichuan Agricultural University, Chengdu, Sichuan 611130, PR China.

College of Geographic Science, Hunan Normal University, Changsha 410081, PR China.

出版信息

Water Res. 2022 Jul 15;220:118671. doi: 10.1016/j.watres.2022.118671. Epub 2022 May 25.

Abstract

Investigating the influence mechanism of drying-wetting cycles on the availability and mobility of heavy metals in sediment from the perspective of the molecular composition of dissolved organic matter (DOM) may gain a new understanding, but little current information exists. Here, we used spectral technologies, high-resolution mass spectrometry, and elemental stoichiometry method to trace the change rules of the molecular composition of DOM in the riparian sediment of the river. Results showed that the drying-wetting cycles could benefit the degradation of labile fractions (e.g., proteins, aliphatics, and lipids) of DOM and retain the fractions with high aromaticity and molecular size (e.g., lignin). The decrease in the availability of Cd after drying-wetting alternation processes was highly related to these changes in DOM composition. However, the availability of Zn and Cu remained almost unchanged, which probably resulted from the release and depletion of N and S in sediment-derived DOM under drying-wetting alternation conditions. As for Cr, its exchangeable fraction was unchanged during the drying-wetting alternation process, likely due to its high stability in the sediment. These results have implications on the environmental geochemical cycling of heavy metals in the riparian sediment with frequent drying-wetting alternation.

摘要

从溶解有机质(DOM)分子组成的角度研究干湿循环对沉积物中重金属赋存和迁移性的影响机制,可能会有新的认识,但目前相关信息很少。本研究采用光谱技术、高分辨质谱和元素化学计量方法,追踪了河流滨岸带沉积物中 DOM 的分子组成变化规律。结果表明,干湿循环有利于 DOM 中易降解组分(如蛋白质、脂肪和类脂)的降解,并保留高芳香度和大分子量的组分(如木质素)。干燥-湿润交替过程后 Cd 的生物可利用性降低与 DOM 组成的这些变化密切相关。然而,Zn 和 Cu 的生物可利用性几乎保持不变,这可能是由于在干湿交替条件下,源自沉积物的 DOM 中 N 和 S 的释放和耗尽。对于 Cr,其可交换部分在干湿交替过程中保持不变,这可能是由于其在沉积物中具有很高的稳定性。这些结果对于频繁干湿交替的滨岸带沉积物中重金属的环境地球化学循环具有重要意义。

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