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腐殖质体系中铜(II)离子的迁移-掺入钙离子(II)、镁离子(II)和铁(III)离子的影响。

Migration of copper(II) ions in humic systems-effect of incorporated calcium(II), magnesium(II), and iron(III) ions.

机构信息

Brno University of Technology, Faculty of Chemistry, Purkyňova 118, 612 00, Brno, Czech Republic.

出版信息

Environ Sci Pollut Res Int. 2024 Aug;31(40):52996-53007. doi: 10.1007/s11356-024-34758-w. Epub 2024 Aug 21.

Abstract

The mobility of heavy metals in natural soil systems can be affected by the properties and compositions of those systems: the content and quality of organic matter as well as the character of inorganic constituents. In this work, the diffusion of copper(II) ions in humic hydrogels with incorporated calcium(II), magnesium(II), and iron(III) ions was investigated. The methods of instantaneous planar source and of constant source were used. Experimental data yielded the time development of the concentration in hydrogels and the values of effective diffusion coefficients. The coefficients include both the influence of the hydrogel structure and the interaction of diffusing particles with the hydrogel. Our results showed that the presence of natural metal ions such as calcium, magnesium, or iron can strongly affect the diffusivity of copper in humic systems. They indicate that the mobility of copper ions depends on their concentration. The mobility can be supported by higher contents of copper in the system. While the incorporation of Ca and Mg resulted in the decrease in the diffusivity of copper ions, the incorporation of Fe(III) into humic hydrogel resulted in an increase in the diffusivity of Cu(II) in the hydrogel in comparison with pure humic hydrogel.

摘要

重金属在自然土壤系统中的迁移性可能受到这些系统特性和组成的影响

有机质的含量和质量以及无机成分的性质。在这项工作中,研究了掺入钙(II)、镁(II)和铁(III)离子的腐殖质水凝胶中铜(II)离子的扩散。使用了瞬时平面源和恒源方法。实验数据得出了水凝胶中浓度的时间发展和有效扩散系数的值。这些系数包括水凝胶结构的影响和扩散粒子与水凝胶的相互作用。我们的结果表明,天然金属离子如钙、镁或铁的存在会强烈影响铜在腐殖质系统中的扩散性。它们表明铜离子的迁移性取决于它们的浓度。系统中较高的铜含量可以支持其迁移性。虽然钙和镁的掺入导致铜离子扩散系数降低,但与纯腐殖质水凝胶相比,铁(III)掺入腐殖质水凝胶导致铜(II)在水凝胶中的扩散系数增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2e6/11379747/810bf5286139/11356_2024_34758_Fig1_HTML.jpg

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