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Performance evaluation of chitosan-based flocculants with good pH resistance and high heavy metals removal capacity

机译:基于壳聚糖的絮凝剂性能评价,具有良好的pH抗性和高重金属去除能力

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摘要

Dual-function chitosan-based flocculants with chelation and flocculation capacity, carboxylated chitosan-graft-polyacrylamide (PCA), carboxylated chitosan-graft-polyacrylamide-co-sodium xanthate (PCAXC), and carboxy-lated chitosan-graft-poly(acrylamide-2-acrylamido-2-methylpropane sulfonic acid) (PCAAF), are designed and prepared by UV initiation method. The physicochemical characteristics of PCA, PCAXC, and PCAAF were characterized by fourier transform infrared spectroscopy, H-1 nuclear magnetic resonance, and X-ray diffraction pattern to confirm the successful syntheses. Then PCA, PCAXC, and PCAAF are applied to chelate and flocculate Cu, Cr, and Ni from water. Effects of pH, flocculants dosage, reaction time, and stirring speed were investigated systematically to detect the relationship between flocculants structural and chelation-flocculation capacity. The maximum removal rate of Cu and Cr obtained by PCAXC at are 85.1% and 76.1%, respectively, while The maximum removal rate of Ni obtained by PCAAF at is more than 75.7%%. In addition, the relationship between the initial concentration of simulated heavy metal wastewater and the flocculants dosage and the competitive chelation-flocculation properties in the mixed heavy metal solution are also detected in detail. The mechanism can be assigned to the effective interaction between function groups of the flocculants and heavy metal irons by chelation, charge neutralization, and adsorption bridging mechanism.
机译:双函数壳聚糖的絮凝剂,螯合和絮凝能力,羧基壳聚糖 - 移植物 - 聚丙烯酰胺(PCA),羧化壳聚糖 - 移植物 - 聚丙烯酰胺 - 共酸二酸钠(PCAXC)和羧基壳聚糖 - 移植物 - 聚丙烯酰胺(丙烯酰胺 - 通过UV引发方法设计和制备2-丙烯酰胺-2-甲基丙烷磺酸)(PCAAF)。 PCA,PCAXC和PCAAF的物理化学特性是傅里叶变换红外光谱,H-1核磁共振和X射线衍射图案的特征,以确认成功合成。然后将PCA,PCAXC和PCAAF施用于螯合并从水中絮凝Cu,Cr和Ni。系统地研究了pH,絮凝剂剂量,反应时间和搅拌速度的影响,检测絮凝剂结构和螯合絮凝能力之间的关系。 PCAXC获得的Cu和Cr的最大去除率分别为85.1%和76.1%,而PCAAF获得的Ni的最大去除率分别超过75.7 %%。另外,还详细检测了模拟重金属废水和絮凝剂剂量的初始浓度与絮凝剂剂量的关系和混合重金属溶液中的竞争螯合絮凝性能。通过螯合,电荷中和和吸附桥接机制,可以将该机制分配给絮凝剂和重金属铁的功能组之间的有效相互作用。

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