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用于动力学修复砷污染水的可持续磁性壳聚糖生物吸附剂微球的研制

Development of sustainable magnetic chitosan biosorbent beads for kinetic remediation of arsenic contaminated water.

作者信息

Ayub Asif, Raza Zulfiqar Ali, Majeed Muhammad Irfan, Tariq Muhammad Rizwan, Irfan Ayesha

机构信息

Department of Applied Sciences, National Textile University, Faisalabad 37610, Pakistan; Department of Chemistry, University of Agriculture, Faisalabad 38000, Pakistan.

Department of Applied Sciences, National Textile University, Faisalabad 37610, Pakistan.

出版信息

Int J Biol Macromol. 2020 Nov 15;163:603-617. doi: 10.1016/j.ijbiomac.2020.06.287. Epub 2020 Jul 3.

Abstract

We report the preparation of both control chitosan and magnetic chitosan beads as biosorbents using chitosan as matrix and magnetite (FeO) nanoparticles as reinforcement followed by detailed advanced characterization. The batch trials were performed to study the adsorption kinetics of biosorbents by removing As and As species from water systems. The experimental data was inserted into Langmuir and Freundlich's isotherms to undertake the mechanism and adsorption capacity of the test biosorbents. Under Langmuir's isotherm, maximum monolayer adsorption capacity (q) of the biosorbent was observed to be 73.69 and 79.49 mg/g for As and As species, respectively, under specified conditions. The optimum doses of 1.5 and 2 g/L of MCBB at pH 6.7 showed 99.5 and 99% removal of As and As, respectively. The analysis demonstrated that the biosorption process obeyed pseudo 2nd order kinetics with linear regression coefficient (R) of >0.999. The regeneration and reusability of biosorbents were also assessed.

摘要

我们报告了以壳聚糖为基质、磁铁矿(FeO)纳米颗粒为增强剂制备对照壳聚糖和磁性壳聚糖珠作为生物吸附剂的过程,并进行了详细的高级表征。进行了批量试验,以研究生物吸附剂从水系统中去除砷和砷物种的吸附动力学。将实验数据代入朗缪尔和弗伦德里希等温线,以探讨测试生物吸附剂的吸附机理和吸附容量。在朗缪尔等温线下,在特定条件下,生物吸附剂对砷和砷物种的最大单层吸附容量(q)分别为73.69和79.49 mg/g。在pH值为6.7时,1.5和2 g/L的磁性壳聚糖珠的最佳剂量分别显示出99.5%和99%的砷和砷去除率。分析表明,生物吸附过程符合准二级动力学,线性回归系数(R)>0.999。还评估了生物吸附剂的再生和可重复使用性。

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