离子液体阳离子三丙基甲基氯化铵修饰甲壳素微球去除六价铬

Salima Benniche , Ounissa Senhadji-Kebiche , Ariana Pintor , Claudia Fontas
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引用次数: 0

摘要

将离子液体三丙基甲基氯化铵(Aliquat 336)固定为天然可再生多糖甲壳素,制备了一种新型吸附剂。采用SEM、BET、TGA、FTIR和DRX等技术对该吸附剂进行了综合表征,并对其去除水溶液中Cr(VI)的性能进行了评价。系统考察了pH、搅拌时间、初始Cr(VI)浓度和吸附剂用量等关键理化参数的影响。在最佳pH为2的条件下,吸附量达到35 mg/g,是天然几丁质吸附量的20倍。与共存离子的干扰研究证实了在竞争条件下吸附剂去除Cr(VI)的稳健性。在0.1 M的NaOH溶液中实现了有效的解吸,在接触1小时内可以回收80%的金属。此外,该吸附剂在5次循环中表现出显著的稳定性,保持了较高的吸附容量而性能没有明显损失。该研究强调了新型吸附剂作为一种可持续和高效的Cr(VI)修复材料的潜力,该材料具有高吸附容量,可重复使用和环保设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hexavalent chromium removal using chitin microspheres modified by an ionic liquid cation tricaprylmethylammonium chloride (Aliquat 336)
A novel sorbent was successfully developed by immobilizing the ionic liquid tricaprylylmethylammonium chloride (Aliquat 336) into chitin, a natural and renewable polysaccharide. The sorbent was comprehensively characterized using SEM, BET, TGA, FTIR and DRX techniques, and its performance was evaluated for the removal of Cr(VI) from aqueous solutions. The effects of key physicochemical parameters—including pH, stirring time, initial Cr(VI) concentration, and sorbent dosage—were systematically investigated. The sorbent demonstrated high selectivity performance and efficiency for Cr(VI) removal, highlighting a maximum adsorption capacity of 35 mg/g, which is 20 times greater than that of native chitin, at an optimum pH of 2. Interference studies with coexisting ions confirmed the robustness of the sorbent to remove Cr(VI) under competitive conditions. Effective desorption was achieved with a 0.1 M NaOH solution, allowing for 80 % metal recovery within 1 hour of contact. Additionally, the sorbent exhibited remarkable stability over five cycles, maintaining its high adsorption capacity without significant loss in performance.
This study underscores the potential of the new sorbent as a sustainable and efficient material for Cr(VI) remediation, combining high adsorption capacity, reusability, and eco-friendly design.
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CiteScore
3.70
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