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氧化锰包覆砂去除水溶液中的铜(II)和铅(II)II. 平衡研究与竞争吸附

Removal of copper(II) and lead(II) from aqueous solution by manganese oxide coated sand II. Equilibrium study and competitive adsorption.

作者信息

Han Runping, Lu Zhu, Zou Weihua, Daotong Wang, Shi Jie, Jiujun Yang

机构信息

Department of Chemistry, Zhengzhou University, No. 75 of Daxue North Road, Zhengzhou 450052, PR China.

出版信息

J Hazard Mater. 2006 Sep 1;137(1):480-8. doi: 10.1016/j.jhazmat.2006.02.018. Epub 2006 Mar 6.

Abstract

The adsorption equilibrium of MOCS and the Cu(II) and Pb(II) ions removal capacity by MOCS in single-(non-competitive) and binary-(competitive) component sorption systems from aqueous solutions were investigated. The equilibrium data were analyzed using the Langmuir, Freundlich, Temkin and Redlich-Peterson isotherms. The characteristic parameters for each isotherm were determined. The Langmuir and Redlich-Peterson isotherms provided the best correlation for both Cu(II) and Pb(II) onto MOCS. From the Langmuir isotherms, maximum adsorption capacities of MOCS towards Cu(II) and Pb(II) are determined at different temperature. The maximum adsorption capacity of Cu(II) and Pb(II) per gram MOCS in single component sorption systems were from 5.91 and 7.71 micromol to 7.56 and 9.22 micromol for the temperature range of 288-318 K, respectively. The order of affinity based on a weight uptake by MOCS was as follows: Pb(II)>Cu(II). The same behavior was observed during competitive adsorption that is in the case of adsorption from their binary solution. The thermodynamic parameters (DeltaG degrees , DeltaH degrees , and DeltaS degrees) for Cu(II) and Pb(II) sorption on MOCS were also determined from the temperature dependence. This competitive adsorption showed that the uptake of each metal was considerably reduced with an increasing concentration of the other, the adsorption of Cu(II) being more strongly influenced by Pb(II) than vice versa due to the higher affinity of MOCS for the latter.

摘要

研究了金属有机骨架化合物(MOCS)的吸附平衡以及MOCS在单组分(非竞争)和双组分(竞争)吸附体系中从水溶液中去除Cu(II)和Pb(II)离子的能力。使用朗缪尔(Langmuir)、弗伦德利希(Freundlich)、坦金(Temkin)和雷德利希-彼得森(Redlich-Peterson)等温线对平衡数据进行了分析。确定了每个等温线的特征参数。朗缪尔和雷德利希-彼得森等温线对Cu(II)和Pb(II)在MOCS上的吸附提供了最佳相关性。根据朗缪尔等温线,在不同温度下测定了MOCS对Cu(II)和Pb(II)的最大吸附容量。在288 - 318 K的温度范围内,单组分吸附体系中每克MOCS对Cu(II)和Pb(II)的最大吸附容量分别为5.91和7.71微摩尔至7.56和9.22微摩尔。基于MOCS的重量吸附量的亲和力顺序如下:Pb(II)>Cu(II)。在竞争吸附过程中,即在从它们的二元溶液中吸附的情况下,观察到了相同的行为。还根据温度依赖性确定了Cu(II)和Pb(II)在MOCS上吸附的热力学参数(ΔG°、ΔH°和ΔS°)。这种竞争吸附表明,随着另一种金属浓度的增加,每种金属的吸附量都显著降低,由于MOCS对Pb(II)的亲和力更高,Cu(II)的吸附比相反情况更受Pb(II)的强烈影响。

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