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使用壳聚糖-粘土复合材料从水溶液中吸附铬(III)和铬(VI)离子

Adsorption of Chromium (III) and Chromium (VI) Ions from Aqueous Solution Using Chitosan-Clay Composite Materials.

作者信息

Majigsuren Enkhtuya, Byambasuren Ulziidelger, Bat-Amgalan Munkhpurev, Mendsaikhan Enkhtuul, Kano Naoki, Kim Hee Joon, Yunden Ganchimeg

机构信息

Department of Chemical Engineering, School of Applied Sciences, Mongolian University of Science and Technology, Ulaanbaatar 14191, Mongolia.

Department of Chemistry and Chemical Engineering, Faculty of Engineering, Niigata University, Niigata 950-2181, Japan.

出版信息

Polymers (Basel). 2024 May 14;16(10):1399. doi: 10.3390/polym16101399.

Abstract

In this work, biopolymer chitosan and natural clay were used to obtain composite materials. The overall aim of this study was to improve the properties (porosity, thermal stability and density) of pure chitosan beads by the addition of clay and to obtain a chitosan-based composite material for the adsorption of heavy metals from an aqueous solution, using Mongolian resources, and to study the adsorption mechanism. The natural clay was pre-treated with acid and heat to remove the impurities. The chitosan and pre-treated clay were mixed in different ratios (8:1, 8:2 and 8:3) for chemical processing to obtain a composite bead for the adsorption of chromium ions. The adsorption of Cr(III) and Cr(VI) was studied as a function of the solution pH, time, temperature, initial concentration of the chromium solution and mass of the composite bead. It was found that the composite bead obtained from the mixture of chitosan and treated clay with a mass ratio of 8:1 and 8:2 had the highest adsorption capacity (23.5 and 17.31 mg·g) for Cr(III) and Cr(VI), respectively, in the optimum conditions. The properties of the composite materials, prepared by mixing chitosan and clay with a ratio of 8:1 and 8:2, were investigated using XRD, SEM-EDS, BET and TG analysis. The adsorption mechanism was discussed based on the XPS analysis results. It was confirmed that the chromium ions were adsorbed in their original form, such as Cr(III) and Cr(VI), without undergoing oxidation or reduction reactions. Furthermore, Cr(III) and Cr(VI) were associated with the hydroxyl and amino groups of the composite beads during adsorption. The kinetic, thermodynamic and isothermal analysis of the adsorption process revealed that the interaction between the chitosan/clay composite bead and Cr(III) and Cr(VI) ions can be considered as a second-order endothermic reaction, as such the adsorption can be assessed using the Langmuir isotherm model. It was concluded that the composite bead could be used as an adsorbent for the removal of chromium ions.

摘要

在本研究中,使用生物聚合物壳聚糖和天然粘土来制备复合材料。本研究的总体目标是通过添加粘土来改善纯壳聚糖珠的性能(孔隙率、热稳定性和密度),利用蒙古资源获得一种用于从水溶液中吸附重金属的壳聚糖基复合材料,并研究其吸附机理。天然粘土经过酸处理和热处理以去除杂质。壳聚糖和预处理后的粘土按不同比例(8:1、8:2和8:3)混合进行化学处理,以获得用于吸附铬离子的复合珠。研究了Cr(III)和Cr(VI)的吸附与溶液pH值、时间、温度、铬溶液初始浓度以及复合珠质量的关系。结果发现,在最佳条件下,壳聚糖与处理后粘土质量比为8:1和8:2的混合物所制得的复合珠对Cr(III)和Cr(VI)的吸附容量分别最高(23.5和17.31 mg·g)。使用XRD、SEM-EDS、BET和TG分析研究了壳聚糖与粘土比例为8:1和8:2所制备的复合材料的性能。基于XPS分析结果讨论了吸附机理。证实铬离子以其原始形式(如Cr(III)和Cr(VI))被吸附,未发生氧化或还原反应。此外,Cr(III)和Cr(VI)在吸附过程中与复合珠的羟基和氨基结合。吸附过程的动力学性、热力学和等温线分析表明,壳聚糖/粘土复合珠与Cr(III)和Cr(VI)离子之间的相互作用可视为二级吸热反应,因此可以使用朗缪尔等温线模型评估吸附情况。得出结论,该复合珠可作为去除铬离子的吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efc6/11125037/b2db79f7b5d2/polymers-16-01399-g001.jpg

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