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Sorption of Lead(II) on Two Chelating Resins: From the Exchange Coefficient to the Intrinsic Complexation Constant

机译:两种螯合树脂对铅(II)的吸附:从交换系数到固有络合常数

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摘要

The sorption of inorganic lead(II) on two cationic resins containing different complexing groups, the iminodiacetic Chelex 100 and the carboxylic Amberlite CG-50, was investigated. The Gibbs-Donnan model was used to describe and predict the sorption through the determination of the intrinsic complexation constants. These quantities, even though non-thermodynamic, characterize the sorption as being independent of experimental conditions. The sorption mechanism for metals on complexing resins was also studied by adding a competitive soluble ligand that shifts the sorption curves to higher pH. The ligand competes with the resin for complexation with the metal ion. Lead(II) is strongly sorbed on Chelex 100 through the formation of two complexes in the resin phase: MHL with log 10 β 111i =−0.3 and ML with log 10 β 111i =−3.7. The presence of the competitive ligand in solution allows for the determination of a third complex. Furthermore, on Amberlite CG-50 the sorption is rather strong and involves the formation of the complex ML, in more acidic solution, with log 10 β 110i =−2.0. In the presence of the ligand PyDA, the ML(OH) complex was characterized by log 10 β 11−1i =−5.6. In all the experiments the hydrolysis reactions in the aqueous phase are considered quantitatively.
机译:研究了两种含不同络合基团的阳离子树脂(亚氨基二乙酸Chelex 100和羧酸Amberlite CG-50)对无机铅(II)的吸附。 Gibbs-Donnan模型用于通过确定固有络合常数来描述和预测吸附。这些量,即使是非热力学的,也表明吸附与实验条件无关。还通过添加竞争性可溶性配体来研究金属在络合树脂上的吸附机理,该竞争性可溶性配体将吸附曲线移至更高的pH。配体与树脂竞争与金属离子络合。铅(II)通过在树脂相中形成两种络合物而强烈吸附在Chelex 100上:Mlog的log 10 β 111i =-0.3和ML的log sub> > 10 β 111i = − 3.7。溶液中竞争性配体的存在可以确定第三种配合物。此外,在Amberlite CG-50上的吸附非常强,并且涉及在更酸性的溶液中形成对数 10 β 110i =-2.0的复合ML。在配体PyDA存在下,ML(OH)配合物的特征为log 10 β 11-1i =-5.6。在所有实验中,都定量地考虑了水相中的水解反应。

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