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γ-环糊精/壳聚糖复合材料的合成及其对水溶液中 Cd(II)的高效去除。

Synthesis of γ-cyclodextrin/chitosan composites for the efficient removal of Cd(II) from aqueous solution.

机构信息

Department of Chemical Technology, University of Johannesburg, Johannesburg, South Africa.

出版信息

Int J Biol Macromol. 2011 Nov 1;49(4):504-12. doi: 10.1016/j.ijbiomac.2011.06.002. Epub 2011 Jun 13.

Abstract

The synthesis of chitosan-graft-γ-cyclodextrin (Ch-g-γ-CD) using persulfate/ascorbic acid redox system was done and characterized by FTIR, XRD, TGA and SEM/EDX. The optimum yield of the copolymer was obtained using 16×10(-3) M γ-cyclodextrins (γ-CD), 2.8×10(-2) M ascorbic acid (AA), 1.8×10(-2) M K(2)S(2)O(8) and 0.1g chitosan in 25 mL of 2% aqueous formic acid at 45±0.2°C. The highest percent grafting samples were evaluated for cadmium metal ion (Cd(II)) removal from the aqueous solutions where the sorption capacities were found proportional to the grafting extent. The sorption was pH and concentration dependent where, pH=8.5 was found to be the optimum value. The adsorption data were modeled using Langmuir and Freundlich isotherms. The equilibrium data followed the Langmuir isotherm model with maximum sorption capacity of 833.33 mg/g. The influence of electrolytes, sodium chloride (NaCl) and sodium sulphate (Na(2)SO(4)) on Cd(II) uptake was also studied. Desorption of the cadmium loaded Ch-g-γ-CD was accomplished with 0.01 N H(2)SO(4). The adsorbent exhibited high reusability and could be successfully recycled for nine cycles where in the ninth cycle 27% adsorption was feasible.

摘要

采用过硫酸盐/抗坏血酸氧化还原体系合成了壳聚糖接枝-γ-环糊精(Ch-g-γ-CD),并通过傅里叶变换红外光谱(FTIR)、X 射线衍射(XRD)、热重分析(TGA)和扫描电子显微镜/能谱分析(SEM/EDX)进行了表征。在 45±0.2°C、2%甲酸水溶液中,使用 16×10(-3) M γ-环糊精(γ-CD)、2.8×10(-2) M 抗坏血酸(AA)、1.8×10(-2) M K(2)S(2)O(8)和 0.1g 壳聚糖,共聚产物的产率最高。对最高接枝度的样品进行了评价,以研究其从水溶液中去除镉金属离子(Cd(II))的能力,发现吸附容量与接枝度成正比。吸附受 pH 值和浓度的影响,其中 pH=8.5 被发现是最佳值。吸附数据采用 Langmuir 和 Freundlich 等温线进行了拟合。平衡数据符合 Langmuir 等温线模型,最大吸附容量为 833.33mg/g。还研究了电解质(氯化钠(NaCl)和硫酸钠(Na(2)SO(4))对 Cd(II)吸附的影响。用 0.01N H(2)SO(4)实现了负载镉的 Ch-g-γ-CD 的解吸。该吸附剂表现出较高的可重复使用性,并可成功回收九次,在第九次循环中,仍有 27%的吸附能力。

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