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基于壳聚糖的生物复合材料,用硫代氨基甲酸盐部分修饰,用于从水介质中去除阳离子。

Chitosan-Based Bio-Composite Modified with Thiocarbamate Moiety for Decontamination of Cations from the Aqueous Media.

机构信息

Key Laboratory for Palygorskite Science and Applied Technology of Jiangsu Province, National & Local Joint Engineering Research Center for Deep Utilization Technology of Rock-salt Resource, Faculty of Chemical Engineering, Huaiyin Institute of Technology, Huaian 223003, China.

Institute of Chemistry, University of Campinas, UNICAMP, P.O. Box 6154, Campinas 13084-971, SP, Brazil.

出版信息

Molecules. 2020 Jan 6;25(1):226. doi: 10.3390/molecules25010226.

Abstract

Herein, we report the development of chitosan (CH)-based bio-composite modified with acrylonitrile (AN) in the presence of carbon disulfide. The current work aimed to increase the Lewis basic centers on the polymeric backbone using single-step three-components (chitosan, carbon disulfide, and acrylonitrile) reaction. For a said purpose, the thiocarbamate moiety was attached to the pendant functional amine (NH) of chitosan. Both the pristine CH and modified CH-AN bio-composites were first characterized using numerous analytical and imaging techniques, including C-NMR (solid-form), Fourier-transform infrared spectroscopy (FTIR), elemental investigation, thermogravimetric analysis, and scanning electron microscopy (SEM). Finally, the modified bio-composite (CH-AN) was deployed for the decontamination of cations from the aqueous media. The sorption ability of the CH-AN bio-composite was evaluated by applying it to lead and copper-containing aqueous solution. The chitosan-based CH-AN bio-composite exhibited greater sorption capacity for lead (2.54 mmol g) and copper (2.02 mmol g) than precursor chitosan from aqueous solution based on Langmuir sorption isotherm. The experimental findings fitted better to Langmuir model than Temkin and Freundlich isotherms using linear regression method. Different linearization of Langmuir model showed different error functions and isothermal parameters. The nonlinear regression analysis showed lower values of error functions as compared with linear regression analysis. The chitosan with thiocarbamate group is an outstanding material for the decontamination of toxic elements from the aqueous environment.

摘要

在此,我们报告了在二硫化碳存在的情况下,用丙烯腈(AN)对壳聚糖(CH)进行改性得到的壳聚糖基生物复合材料的开发。目前的工作旨在通过一步三组分(壳聚糖、二硫化碳和丙烯腈)反应在聚合物主链上增加路易斯碱性中心。为此,将硫代氨基甲酸酯部分连接到壳聚糖的侧链伯氨基(NH)上。首先使用多种分析和成像技术对原始 CH 和改性 CH-AN 生物复合材料进行了表征,包括 C-NMR(固态)、傅里叶变换红外光谱(FTIR)、元素分析、热重分析和扫描电子显微镜(SEM)。最后,将改性生物复合材料(CH-AN)用于从水介质中去除阳离子。通过将 CH-AN 生物复合材料应用于含铅和铜的水溶液来评估其对阳离子的吸附能力。基于 Langmuir 吸附等温线,壳聚糖基 CH-AN 生物复合材料对水溶液中的铅(2.54 mmol g)和铜(2.02 mmol g)的吸附能力大于前体壳聚糖。线性回归法表明,实验结果更符合 Langmuir 模型,而不是 Temkin 和 Freundlich 等温线。Langmuir 模型的不同线性化显示出不同的误差函数和等温参数。与线性回归分析相比,非线性回归分析的误差函数值较低。带有硫代氨基甲酸酯基团的壳聚糖是一种从水环境污染中去除有毒元素的优秀材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2370/6982774/f219d5f98e99/molecules-25-00226-g001.jpg

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