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Zinc Ion Removal on Hybrid Pectin-Based Beads Containing Modified Poly(Methyl Methacrylate) Waste

机译:含有改性聚甲基丙烯酸甲酯废物的果胶杂化微珠的锌离子去除

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摘要

A new hybrid sorbent in the form of round beads containing modified poly(methyl methacrylate) (PMMA) waste immobilized in pectin and crosslinked with calcium ions was prepared. A previously obtained and characterized powdered poly(methyl methacrylate)–based sorbent was used. Batch and column studies on the new material’s sorption-desorption properties were performed. Two kinetic models (pseudo-first- and pseudo-second-order) and three isotherms (Langmuir, Langmuir bisite and Freundlich) were used to describe the results. Breakthrough and elution curves were also obtained. Nitric, hydrochloric, and sulfuric acid of various concentrations were used in the desorption studies. Higher sorption affinity of zinc(II) ions to hybrid sorbent than to pectin alone, reflected by higher values of the Langmuir and Freundlich model parameters, was observed. The maximum sorption capacities, calculated based on the best-fitted models, were 50.2 mg/g (Langmuir bisite) and 42.2 mg/g (Langmuir) for hybrid and only pectin beads, respectively. The stripping of Zn ions using 0.1 M solutions of mineral acids was similarly effective in the case of both sorbents. The mass balance calculated for the column studies showed about 100% recovery of zinc in a sorption-desorption cycle. By applying the hybrid sorbent under the studied conditions it is possible to purify Zn in water to the level permitted by law and concentrate Zn(II) ions by about 60 times.
机译:制备了一种新的圆珠杂化吸附剂,其中包含固定在果胶中并与钙离子交联的改性聚甲基丙烯酸甲酯(PMMA)废料。使用先前获得的并表征的粉状聚(甲基丙烯酸甲酯)基吸附剂。对该新材料的吸附-解吸特性进行了分批和列研究。使用两个动力学模型(伪一阶和伪第二阶)和三个等温线(Langmuir,Langmuir bisite和Freundlich)来描述结果。还获得了突破和洗脱曲线。解吸研究中使用了各种浓度的硝酸,盐酸和硫酸。观察到较高的Langmuir和Freundlich模型参数值反映了锌(II)离子对混合型吸附剂的吸附亲和力高于单独的果胶。根据最佳拟合模型计算出的最大吸附容量,对于杂化和仅果胶珠分别为50.2 mg / g(Langmuir双站点)和42.2 mg / g(Langmuir)。在两种吸附剂的情况下,使用0.1 M的无机酸溶液汽提Zn离子同样有效。为柱研究计算的质量平衡表明,在吸附-解吸循环中锌的回收率约为100%。通过在研究的条件下使用混合吸附剂,可以将水中的Zn纯化到法律允许的水平,并将Zn(II)离子浓缩约60倍。

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