Biochemical Processing and Biomaterial Research Laboratory, Faculty of Arts and Sciences, Gazi University, 06500 Ankara, Turkey. g
J Hazard Mater. 2011 Mar 15;187(1-3):213-21. doi: 10.1016/j.jhazmat.2011.01.022. Epub 2011 Jan 13.
The aim of this study is to prepare ion-imprinted polymers, which can be used for the selective removal of Cr(VI) anions from aqueous media. 4-Vinyl pyridine (4-VP) was used as functional monomer. The Cr(VI)-imprinted poly(4-vinyl pyridine-co-2-hydroxyethyl methacrylate), poly(VP-HEMA), particles were prepared by bulk polymerization. The Cr(VI)-imprinted polymer particles were grained from the bulk polymer, and the template ions (i.e., Cr(VI)) were removed using thiourea (0.5%, v/v) in 0.5M HCl. The Cr(VI)-imprinted polymer contained 21.4 μmol 4-VP/g polymers. The specific surface area of the IIP2 particles was found to be 34.5m(2)/g (size range of 75-150 μm), and the swelling ratio was about to 108%. The effect of initial concentration of Cr(VI) anions, the adsorption rate and the pH of the medium on adsorption capacity of Cr(VI)-imprinting polymer were studied. The maximum experimental adsorption capacity was 3.31 mmol Cr(VI)/g polymer. Under competitive condition, the adsorption capacity of Cr(VI)-imprinted particles for Cr(VI) is 13.8 and 11.7 folds greater than that of the Cr(III) and Ni(II) ions, respectively. The first- and second order kinetics models were estimated on the basis of comparative analysis of the corresponding rate parameters, equilibrium capacity and correlation coefficients. The Langmuir adsorption isotherm model was well described the Cr(VI)-imprinted system and the maximum adsorption capacity (Q(max)) was found to be 3.42 mmol/g. Moreover, the reusability of the poly(VP-HEMA) particles was tested for several times and no significant loss in adsorption capacity was observed.
本研究旨在制备离子印迹聚合物,以用于从水介质中选择性去除 Cr(VI)阴离子。选用 4-乙烯基吡啶(4-VP)作为功能单体。采用本体聚合法制备 Cr(VI)印迹的聚(4-乙烯基吡啶-共-2-羟乙基甲基丙烯酸酯)(poly(VP-HEMA))颗粒。通过将本体聚合物粒化,用 0.5M HCl 中的硫脲(0.5%,v/v)去除模板离子(即 Cr(VI))。Cr(VI)印迹聚合物中含有 21.4 μmol 4-VP/g 聚合物。IIP2 颗粒的比表面积被发现为 34.5m²/g(粒径范围为 75-150μm),溶胀比约为 108%。研究了 Cr(VI)阴离子初始浓度、吸附速率和介质 pH 对 Cr(VI)印迹聚合物吸附容量的影响。最大实验吸附容量为 3.31mmol Cr(VI)/g 聚合物。在竞争条件下,Cr(VI)印迹颗粒对 Cr(VI)的吸附容量分别是 Cr(III)和 Ni(II)离子的 13.8 和 11.7 倍。通过对相应速率参数、平衡容量和相关系数的比较分析,估算了一级和二级动力学模型。Langmuir 吸附等温线模型很好地描述了 Cr(VI)印迹体系,最大吸附容量(Q(max))为 3.42mmol/g。此外,还测试了 poly(VP-HEMA)颗粒的可重复使用性,发现吸附容量没有明显损失。