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含萃取剂的磁性海藻酸钠微胶囊对镍的吸附

Nickel adsorption by magnetic alginate microcapsules containing an extractant.

作者信息

Ngomsik Audrey-Flore, Bee Agnès, Siaugue Jean-Michel, Cabuil Valérie, Cote Gérard

机构信息

Laboratoire Liquides Ioniques et Interfaces chargées (LI2C) case 63, Université Pierre et Marie Curie-Paris 6, CNRS UMR 7612, 4 place Jussieu 75252 PARIS France.

出版信息

Water Res. 2006 May;40(9):1848-56. doi: 10.1016/j.watres.2006.02.036. Epub 2006 Apr 21.

Abstract

The adsorption of heavy metals on biomaterials was investigated by studying the potential of alginate microcapsules containing an extractant (Cyanex 272) and magnetic nanoparticles (gamma-Fe2O3) for the adsorption of nickel (II) from aqueous solutions. A two-stage kinetics behaviour was observed with 70% of the maximum sorption capacity achieved within 8 h. An increase in nickel removal with increase in pH occurred, the maximum uptake capacity being around 0.42 mmol g-1 at pH 8. The adsorption isotherm (pH about 5.3) was obtained in a wide range of initial nickel concentrations; the experimental data were fitted by a Langmuir model and the qmax value was estimated to be 0.52 mmol g-1. Moreover, including magnetic particles in the microcapsules allowed easy isolation of the beads from the aqueous solutions after the sorption process. Magnetic microcapsules are then suitable for the development of efficient biosorbents for removal and recovery of heavy metals from wastewater using magnetic separation.

摘要

通过研究含有萃取剂(Cyanex 272)和磁性纳米颗粒(γ-Fe2O3)的海藻酸钠微胶囊从水溶液中吸附镍(II)的潜力,对生物材料上重金属的吸附进行了研究。观察到两阶段动力学行为,在8小时内达到最大吸附容量的70%。随着pH值的升高,镍去除率增加,在pH 8时最大吸附容量约为0.42 mmol g-1。在很宽的初始镍浓度范围内获得了吸附等温线(pH约为5.3);实验数据用Langmuir模型拟合,qmax值估计为0.52 mmol g-1。此外,在微胶囊中加入磁性颗粒使得吸附过程后能轻松地从水溶液中分离出珠子。因此,磁性微胶囊适用于开发高效生物吸附剂,用于通过磁分离从废水中去除和回收重金属。

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