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天然有机物与重金属阳离子相互作用的多尺度建模:聚集与稳定机制

Multi-scale modeling of natural organic matter-heavy metal cations interactions: Aggregation and stabilization mechanisms.

作者信息

Zhou Zhiyu, Zhang Chi, Xi Mengning, Ma Haonan, Jia Hanzhong

机构信息

College of Natural Resources and Environment, Northwest A & F University, Yangling, Shaanxi, 712100, P.R. China.

College of Natural Resources and Environment, Northwest A & F University, Yangling, Shaanxi, 712100, P.R. China; Key Laboratory of Low-Carbon Green Agriculture in Northwestern China, Ministry of Agriculture and Rural Affairs, Yangling, Shaanxi, 712100, P.R. China.

出版信息

Water Res. 2023 Jun 30;238:120007. doi: 10.1016/j.watres.2023.120007. Epub 2023 Apr 26.

Abstract

Interaction between natural organic matters (NOM) and heavy metal cations in aqueous environment are of great significance for maintaining stability of organic carbon and restraining transport of heavy metal contaminants in (bio)geochemical processes. We systematically explore the aggregation process and complexation between NOM and heavy metal cations (Ag, Cd, Pb, Zn, Eu) under different pH condition by molecular dynamics (MD) simulations, umbrella sampling method, and quantum chemistry calculations. The character of molecular structures NOM-heavy metal complexes and association are quantified. In acidic pH condition, aggregation proceeds via H-bonding and π-π interactions between NOM fragments. In neutral condition, Ag, Cd, Pb, and Eu can form inner-sphere complexes with the surface carboxylic groups and therefore reduce intermolecular charge repulsion, eventually leading to NOM aggregation, and it shows that even without direct binding, the outer-sphere adsorbed Zn can also result in the formation of NOM assemble through H-bonding. Consequently, these heavy metals are capable of promoting NOM aggregation regardless of the complexing ways. Complexing free energy calculations characterized the dynamic processes of cations binding to the carboxylic groups of NOM fragment and the related energy landscape. This study provides quantitative insights for understanding the environmental processes of heavy metals and cycle of C in aquatic ecosystem, and contributes to developing environment-friendly strategies for controlling heavy metal contaminants.

摘要

在水环境中,天然有机物(NOM)与重金属阳离子之间的相互作用对于维持有机碳的稳定性以及在(生物)地球化学过程中抑制重金属污染物的迁移具有重要意义。我们通过分子动力学(MD)模拟、伞形采样方法和量子化学计算,系统地研究了在不同pH条件下NOM与重金属阳离子(Ag、Cd、Pb、Zn、Eu)之间的聚集过程和络合作用。对NOM-重金属络合物的分子结构特征和缔合进行了量化。在酸性pH条件下,聚集通过NOM片段之间的氢键和π-π相互作用进行。在中性条件下,Ag、Cd、Pb和Eu可以与表面羧基形成内球络合物,从而减少分子间电荷排斥,最终导致NOM聚集,并且表明即使没有直接结合,外层吸附的Zn也可以通过氢键导致NOM组装的形成。因此,无论络合方式如何,这些重金属都能够促进NOM聚集。络合自由能计算表征了阳离子与NOM片段羧基结合的动态过程以及相关的能量景观。本研究为理解水生生态系统中重金属的环境过程和碳循环提供了定量见解,并有助于制定控制重金属污染物的环境友好策略。

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