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高效去除铜离子的水凝胶珠,由阳离子羟乙基纤维素和阴离子海藻酸钠触发。

Efficient removal of copper ions using a hydrogel bead triggered by the cationic hectorite clay and anionic sodium alginate.

机构信息

State Key Laboratory Breeding Base of Green Chemistry Synthesis Technology, Discipline of Industrial Catalysis, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou, 310032, China.

出版信息

Environ Sci Pollut Res Int. 2019 Jun;26(16):16482-16492. doi: 10.1007/s11356-019-04895-8. Epub 2019 Apr 13.

Abstract

Sodium alginate (SA) is a linear biopolymer, which is the nontoxic, biodegradable, and rich in carboxyl and hydroxyl groups. In the paper, the SA-based hydrogel bead was prepared by the cationic hectorite clay and anionic sodium alginate with a simple ionic gelation method under freeze-drying, and the adsorption properties were evaluated by the removal of copper ions from aqueous solutions. The composites were characterized by X-ray diffraction (XRD), nitrogen adsorption-desorption isotherm (BET), thermal analysis (TG), and Fourier transform infrared spectroscopy (FT-IR). The pseudo-first-order and pseudo-second-order kinetic models were used to describe the kinetic data and the Langmuir, Freundlich, Dubinin-Radushkevich (D-R), and Temkin models were applied to describe the adsorption isotherms. The results showed that the adsorption process was found to follow the Freundlich isotherm model and the maximum sorption capacity was observed to be 160.28 mg/g under the initial concentration from 10 to 700 mg/L at 45 °C. Adsorption kinetics data fitted well with pseudo-second-order rate model. The porous structure of the composite was responsible for the adsorption of Cu ions. But the adsorption ability could be improved by pH. Finally, the adsorption mechanism was suggested. Graphical abstract.

摘要

海藻酸钠(SA)是一种线性生物聚合物,具有无毒、可生物降解以及富含羧基和羟基等特点。本文采用简单的离子凝胶化法,在冷冻干燥条件下,利用阳离子羟乙基蒙脱土和阴离子海藻酸钠制备了基于 SA 的水凝胶珠,并通过从水溶液中去除铜离子来评价其吸附性能。采用 X 射线衍射(XRD)、氮气吸附-脱附等温线(BET)、热分析(TG)和傅里叶变换红外光谱(FT-IR)对复合材料进行了表征。采用伪一级和伪二级动力学模型来描述动力学数据,并用 Langmuir、Freundlich、Dubinin-Radushkevich(D-R)和 Temkin 模型来描述吸附等温线。结果表明,吸附过程符合 Freundlich 等温线模型,在 45°C 时,初始浓度为 10-700mg/L 时,最大吸附容量为 160.28mg/g。吸附动力学数据很好地符合伪二级速率模型。复合材料的多孔结构是吸附 Cu 离子的原因。但吸附能力可以通过 pH 值得到提高。最后提出了吸附机制。

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