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CO2-Responsive Graft Modified Chitosan for Heavy Metal (Nickel) Recovery

机译:二氧化碳响应型接枝改性壳聚糖用于重金属(镍)的回收

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摘要

Chitosan was chemically functionalized with poly(diethylaminoethyl methacrylate) (PDEAEMA) using a grafting to approach to produce a CO2-responsive material for adsorbing metals from wastewater streams. A need for improved economical and greener approaches to recover heavy metals from wastewater streams exists due to increasing resource scarcity. Chitosan is currently used as an adsorbent for heavy metals but suffers from some properties that can be disadvantageous to its effectiveness; it is difficult to effectively disperse in water (which limits available surface area) and to regenerate. We set out to improve its effectiveness by grafting CO2-responsive tertiary amine containing polymers onto the chitosan backbone, with the goals of preparing and assessing a new type of adsorbent based on a novel concept; using carbon dioxide switchable polymers to enhance the performance of chitosan. PDEAEMA chains prepared by nitroxide-mediated polymerization were grafted onto chitosan functionalized with glycidyl methacrylate. In carbonated water, the grafted chitosan displayed improved dispersibility and exhibited a Ni(II) adsorption capacity higher than several other chemically functionalized chitosan variants reported in the literature with the regenerated material having a higher capacity than all physical and chemical derivatives reported in the literature. The results of this study validate the continued development of this material for applications in heavy metal removal and recovery from wastewater streams.
机译:使用接枝的方法,使用聚甲基丙烯酸二乙氨基乙酯(PDEAEMA)对壳聚糖进行化学功能化,以生产可从废水中吸收金属的CO2响应材料。由于资源稀缺,需要一种改进的经济和绿色方法以从废水中回收重金属。壳聚糖目前被用作重金属的吸附剂,但其某些性能可能对其有效性不利。有效分散在水中(限制了可用的表面积)和再生很困难。我们着手通过将含CO2响应叔胺的聚合物接枝到壳聚糖骨架上来提高其有效性,其目的是基于新概念制备和评估新型吸附剂。使用二氧化碳可转换的聚合物来增强壳聚糖的性能。将由氮氧化物介导的聚合反应制备的PDEAEMA链接枝到用甲基丙烯酸缩水甘油酯官能化的壳聚糖上。在碳酸水中,接枝的壳聚糖显示出比文献中报道的其他几种化学功能化壳聚糖变体更高的分散性和更高的Ni(II)吸附容量,其中再生材料的容量高于文献中报道的所有物理和化学衍生物。这项研究的结果证实了这种材料的持续开发,可用于去除废水中的重金属和回收。

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