State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.
Water Res. 2011 Jan;45(3):1177-88. doi: 10.1016/j.watres.2010.11.009. Epub 2010 Nov 12.
Adsorptive properties for Cu (II), Pb (II) and Cd (II) onto an iminodiacetic acid (IDA) chelating resin were systematically investigated at the optimal pH-value in both single and binary solutions using batch experiments. The Langmuir isotherm model and the pseudo second-order rate equation could explain respectively the isotherm and kinetic experimental data for sole-component system with much satisfaction. The maximum adsorption capacity in single system for Cu (II), Pb (II) and Cd (II) was calculated to be 2.27 mmol/g, 1.27 mmol/g and 0.65 mmol/g individually. The initial adsorption rate followed the order as Cu (II)>Pb (II)>Cd (II) at the fixed initial concentration, and for each metal the initial sorption rate increased as the initial concentration increased. In addition, the modified Langmuir model could describe the binary competitive adsorption behavior successfully, with which the interaction coefficient was obtained to follow the order as Cu (II)<Pb (II)<Cd (II). Furthermore, in every case of the investigated three binary systems, the reduction in both the uptake amounts and distribution coefficients testified the antagonistic competitive phenomena. Obviously, this novel IDA-chelating resin possessed of a good selectivity toward Cu (II) over Pb (II) and Cd (II) for the obtained highest separation factor values were up to 21.30 and 133.91 in the range of tested. This interaction mechanism between the favorable component and other metal ions could mainly contribute to the direct displacement impact which be herewith illustrated schematically.
在最佳 pH 值条件下,通过批量实验系统地研究了在单一和二元溶液中,亚氨基二乙酸(IDA)螯合树脂对 Cu(II)、Pb(II)和 Cd(II)的吸附性能。Langmuir 等温吸附模型和拟二级速率方程分别很好地解释了单一体系的等温线和动力学实验数据。在单一体系中,Cu(II)、Pb(II)和 Cd(II)的最大吸附容量分别计算为 2.27mmol/g、1.27mmol/g 和 0.65mmol/g。在固定初始浓度下,初始吸附速率遵循 Cu(II)>Pb(II)>Cd(II)的顺序,对于每种金属,初始吸附速率随着初始浓度的增加而增加。此外,改进的 Langmuir 模型可以成功地描述二元竞争吸附行为,通过该模型可以获得相互作用系数,其顺序为 Cu(II)<Pb(II)<Cd(II)。此外,在所研究的三个二元体系的每一种情况下,吸附量和分配系数的降低都证明了拮抗竞争现象。显然,这种新型的 IDA 螯合树脂对 Cu(II)具有良好的选择性,因为在测试范围内获得的最高分离因子值高达 21.30 和 133.91。有利组分与其他金属离子之间的这种相互作用机制主要归因于直接置换作用,本文通过示意图对此进行了说明。