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首页> 外文期刊>Journal of Polymers and the Environment >Pectin Based Graft Copolymer-ZnO Hybrid Nanocomposite for the Adsorptive Removal of Crystal Violet
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Pectin Based Graft Copolymer-ZnO Hybrid Nanocomposite for the Adsorptive Removal of Crystal Violet

机译:果胶基接枝共聚物-ZnO杂化纳米复合材料对结晶紫的吸附去除

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摘要

In this work we report the comparative study of the dye adsorption behavior of a Pectin-based terpolymer gel, pectin-graft-(poly(2-acrylamido-2-methyl-1-propane sulfonic acid)-co-acrylamide) (Pec-g-poy(AMPS-co-AAm)) and its nanocomposite with ZnO, (Pec-g-poy(AMPS-co-AAm)/ZnO) from aqueous solutions. Both the hydrogel systems have been synthesized using microwave irradiation technique through free radical polymerization. Swelling behavior of the systems was studied in buffer solutions of pH ranging from 1.2 to 13 and maximum swelling was observed in neutral medium. The equilibrium swelling of parent gel was found to be 28.12g/g whereas it was 16.54 in the case of nanocomposite. Cationic dye, crystal violet, is employed to assess the adsorption efficiency of the gel samples from aqueous solutions. The influence of initial dye concentration was investigated. A maximum adsorption of 329 and 568mg/g has been observed for the parent gel and the nanocomposite respectively. The presence of ZnO is observed to enhance the adsorption capacity of Pec-g-poy(AMPS-co-AAm) gel considerably. The kinetic studies revealed a second order adsorption process with high rate of initial adsorption in the case of the nanocomposite when compared to the parent gel and the isotherm studies reveals that the adsorption process fits well into Langmuir model. The evaluation of thermodynamic parameters indicated the adsorption process to be exothermic and spontaneous. Desorption studies under acidic condition showed that almost 96% of the adsorbed dye molecules could be desorbed to the stripping solution of pH 1.2 which support the use of these hydrogel systems for the repeated use as adsorbents for cationic dyes.
机译:在这项工作中,我们报告了一种基于果胶的三元共聚物凝胶果胶接枝-(聚(2-丙烯酰胺基-2-甲基-1-丙烷磺酸)-共丙烯酰胺)(Pec- g-poy(AMPS-co-AAm))及其与ZnO的纳米复合材料(Pec-g-poy(AMPS-co-AAm)/ ZnO)来自水溶液。两种水凝胶体系都是使用微波辐射技术通过自由基聚合合成的。在pH为1.2至13的缓冲溶液中研究了系统的溶胀行为,在中性介质中观察到最大溶胀。发现母体凝胶的平衡溶胀为28.12g / g,而在纳米复合材料的情况下为16.54。阳离子染料(结晶紫)用于评估凝胶样品从水溶液中的吸附效率。研究了初始染料浓度的影响。母体凝胶和纳米复合材料分别观察到最大吸附量为329和568mg / g。观察到ZnO的存在可大大增强Pec-g-poy(AMPS-co-AAm)凝胶的吸附能力。动力学研究表明,与母体凝胶相比,在纳米复合材料的情况下,二级吸附过程具有较高的初始吸附率,等温线研究表明,吸附过程非常适合Langmuir模型。热力学参数的评估表明吸附过程是放热的和自发的。在酸性条件下的解吸研究表明,几乎96%的吸附染料分子都可以解吸到pH 1.2的反萃取溶液中,这支持使用这些水凝胶体系重复用作阳离子染料的吸附剂。

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