污染场地中多组分重金属的污染特征与蒙脱石吸附机制研究

    POLLUTION CHARACTERISTICS OF MULTICOMPONENT HEAVY METALS AND THEIR ADSORPTION MECHANISM ON MONTMORILLONITE IN CONTAMINANTED SITES

    • 摘要: 重金属污染场地的治理是当前环境修复领域的关键问题。本文通过文献调研,收集了世界范围内280组污染场地重金属种类与浓度数据,并分析了污染特征及主要重金属的赋存规律。研究发现,Cd、Pb、Zn、Cu等重金属在污染场地中检出率较高,且浓度差异显著。皮尔逊相关性分析显示,Pb与Zn、Cd的相关性系数分别为0.73和0.63,而Cd与Zn的相关性最高(0.94),表明这些重金属具有相似的污染来源,并在土壤环境中经历了类似的迁移和富集过程。此外,本文采用分子动力学模拟探讨了重金属离子在蒙脱石中的吸附行为,结果表明Pb与蒙脱石的相互作用能增长最为显著,主要由于其较小的水合半径和较强的极化能力,使其更易与蒙脱石表面结合,形成稳定的结合物。研究结果为理解污染场地中重金属的协同赋存特征及其在黏土矿物中的吸附行为提供了理论参考。

       

      Abstract: Remediation of heavy metal-contaminated sites represents a critical challenge in the field of environmental restoration. Through a comprehensive literature review, this study compiled data on heavy metal types and concentrations from 280 contaminated sites worldwide, analyzing the pollution characteristics and distribution patterns of major contaminants. The results indicate that Cd, Pb, Zn, and Cu are the most frequently detected heavy metals at contaminated sites, with significant variations in their concentration levels. Pearson correlation analysis revealed correlation coefficients of 0.73 between Pb and Zn, 0.63 between Pb and Cd, and the strongest correlation(0.94)between Cd and Zn, suggesting that these heavy metals share common pollution sources and undergo similar migration and enrichment processes in soil environments. Furthermore, molecular dynamics simulations were employed to investigate the adsorption behavior of heavy metal ions in montmorillonite. The results demonstrated that Pb exhibited the most significant increase in interaction energy, primarily attributable to its smaller hydration radius and stronger polarization capability, which enhance its binding capacity to the montmorillonite surface and promote the formation of stable complexes. This research provides theoretical insights into the co-occurrence patterns of heavy metals at contaminated sites and their adsorption mechanisms in clay minerals.

       

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