首页> 外文期刊>Geoderma: An International Journal of Soil Science >Sorption of Hg(II) by modified K10 montmorillonite: Influence of pH, ionic strength and the treatment with different cations
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Sorption of Hg(II) by modified K10 montmorillonite: Influence of pH, ionic strength and the treatment with different cations

机译:改性K10蒙脱石对Hg(II)的吸附:pH,离子强度和不同阳离子处理的影响

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This paper describes a treatment of the mineral montmorillonite (MMT) with sodium (MMT-Na), potassium (MMT-K) and calcium (MMT-Ca), aiming the removal of the highly toxic Hg(II) from aqueous medium. An apparent equilibrium near 10 h of contact time was verified, being this time adopted for the sorption studies. The data obtained by this study evidenced that a pseudo-second order was appropriate to describe the model for the three materials. The increase of the ionic strength showed a significant depletion in the Hg(II) sorption, and was more significant for the mineral treated with the monovalent cations. Also, the study showed a high pH-dependency with the better performance close to pH 7.0 that was adopted for the sorption study. The sorption isotherms were carried out between 10.00 and 500.0 mu g L-1, and showed a better Hg(II) sorption for MMT-K, followed by MMT-Na and MMT-Ca, with the maximum sorption values (%) of 94.9, 92.4 and 60.4, respectively, for the concentration of 10.00 mu g L-1. The order of sorption was confirmed by the use of the Langmuir and two-site Langmuir models. The findings suggest this mineral phase as an appropriate sorbent for the removal of Hg(II) from aqueous medium, especially at low concentrations. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文介绍了用钠(MMT-Na),钾(MMT-K)和钙(MMT-Ca)处理蒙脱土(MMT)的目的,旨在从水性介质中去除剧毒的Hg(II)。验证了接触时间10 h附近的表观平衡,这次是吸附研究所采用的时间。这项研究获得的数据表明,伪二级指令适合描述这三种材料的模型。离子强度的增加表明Hg(II)的吸附显着减少,对于单价阳离子处理过的矿物更显着。此外,该研究还显示了高pH依赖性,在吸附研究中采用了接近pH 7.0的更好性能。吸附等温线在10.00和500.0μg L-1之间进行,对MMT-K表现出更好的Hg(II)吸附,其次是MMT-Na和MMT-Ca,最大吸附值(%)为94.9浓度分别为10.00μg L-1时,分别为92.4和60.4。吸附的顺序通过使用Langmuir模型和两点Langmuir模型确定。研究结果表明,该矿物相是从水性介质中除去Hg(II)的合适吸附剂,尤其是在低浓度下。 (C)2014 Elsevier B.V.保留所有权利。

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