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The effects of potentially toxic metals (copper and zinc) on selected physical and physico-chemical properties of bentonites

机译:潜在有毒金属(铜和锌)对膨润土某些物理和物理化学特性的影响

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摘要

The purpose of this study was to determine the effect of copper or zinc ions, absorbed by soil on its physical and physicochemical properties. The change in these properties may reduce the soil usefulness as a mineral protective barrier, for example, on hazardous waste landfills. Parameters such as granulometric composition, effective particle size d10, empirical hydraulic conductivity, Atterberg limits, colloidal activity, specific surface area, sorption moisture content, and montmorillonite content were determined. The tests were carried out on model Na+ or Ca2+ samples of American bentonites (SWy-3, Stx-1b) and Slovak bentonite from Jelšový potok (BSvk), subjected to ion exchange for Cu2+ or Zn2+ ion. The content of elements was determined using inductively coupled plasma optical emission spectrometry (ICP-OES). Regression analysis showed a significant effect of Zn2+ ions on the reduction of sorption moisture content w95 and the increase in the hydraulic conductivity. Nearly complete negative correlation was obtained between the Cu2+ ion content and the specific surface area, sorption moisture content w50, and montmorillonite content (R = -0.99). It was observed that the significance of the influence of Cu2+ and Zn2+ ions on specific clay properties differed, which indicates different behavior of these metals in the clay-water system. The different nature of clays contaminated with Cu2+ and Zn2+ ions justifies the need to continue research on other potentially toxic metals and to further search for prediction equations of the cohesive soil hydraulic conductivity based on soil parameters that are most frequently modified as a result of their impact.
机译:这项研究的目的是确定被土壤吸收的铜或锌离子对其物理和物理化学性质的影响。这些特性的变化可能会降低土壤作为矿物保护屏障的作用,例如在危险废物掩埋场上。确定了诸如粒度组成,有效粒径d10,经验水力传导率,阿特伯格极限,胶体活性,比表面积,吸附水分含量和蒙脱土含量等参数。测试是对来自Jelšovýpotok(BSvk)的美国膨润土(SWy-3,Stx-1b)和斯洛伐克膨润土的Na + 或Ca 2 + 模型样品进行的,进行离子交换以交换Cu 2 + 或Zn 2 + 离子。使用电感耦合等离子体发射光谱法(ICP-OES)测定元素的含量。回归分析表明,Zn 2 + 离子对降低吸附水分w95和增加水力传导率具有显著作用。 Cu 2 + 离子含量与比表面积,吸附水分含量w50和蒙脱土含量之间几乎完全负相关(R = -0.99)。观察到Cu 2 + 和Zn 2 + 离子对特定粘土性质的影响的意义不同,这表明这些金属在粘土水中的行为不同。系统。受到Cu 2 + 和Zn 2 + 离子污染的粘土的不同性质证明有必要继续研究其他潜在有毒金属并进一步寻找内聚力的预测方程式土壤水力传导率基于土壤参数(由于其影响而最经常修改)。

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