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Removal and recovery of heavy metals from aqueous solution using β-cyclodextrin polymer and optimization of complexation conditions

机译:使用β-环糊精聚合物去除和回收水溶液中的重金属并优化络合条件

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Removal of heavy metal contaminants from spent streams can be done in many ways using conventional and membrane techniques. Recovering the heavy metal contaminants is very important to prevent recontamination as well as to realize the potential value. Ultrafiltration (UF) has the potential to offer a simple solution in conjunction with size enhancement of the species to be removed referred to as size-enhanced ultrafiltration in literature. The present study focuses on the use of functionalized cyclodextrin, that is, carboxymethyl beta-cyclodextrin (CM-beta-CD is a derivative of natural material which is easily available) which not only enables the removal of heavy metal contaminants but also amenable for recovering back the contaminant species and the chelating agent for reuse. The experimental studies were conducted using the ultrafiltration system equipped with 50 kDa MWCO (molecular weight cut-off) PES membrane. The design of experiments was done using central composite design of response surface methodology (RSM). The experiments were conducted as per the statistical design to analyze and optimize the process conditions, such as initial pH of the feed, polymer to metal loading rate and initial concentration of the feed solution. The optimization study was done to maximize the rejection, performance index of the membrane (PFI) and recovery of metal. The analysis of variance was performed to examine the developed regression models. Our studies indicated that the CM-beta-CD could remove the heavy metal species as well facilitate the recovery of heavy metal species. The experimental values were consistent with the predicted values, which confirm the good validity of the models developed by RSM.
机译:可以使用常规技术和膜技术以多种方式去除废液中的重金属污染物。回收重金属污染物对于防止再次污染以及实现潜在价值非常重要。超滤(UF)有可能提供一种简单的解决方案,同时结合要去除的物种的尺寸增大,在文献中称为尺寸增强超滤。本研究集中于功能化环糊精的使用,即羧甲基β-环糊精(CM-β-CD是天然材料的衍生物,很容易获得),它不仅可以去除重金属污染物,还可以回收退回污染物种类和螯合剂以重复使用。使用配备有50 kDa MWCO(分子量截留)PES膜的超滤系统进行了实验研究。实验的设计是使用响应面方法(RSM)的中央复合设计完成的。根据统计设计进行实验,以分析和优化工艺条件,例如进料的初始pH,聚合物对金属的负载速率和进料溶液的初始浓度。进行了优化研究,以最大程度地提高废品率,膜性能指数(PFI)和金属回收率。进行方差分析以检查开发的回归模型。我们的研究表明,CM-β-CD可以去除重金属物质,并促进重金属物质的回收。实验值与预测值一致,证实了RSM开发的模型的良好有效性。

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