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Silylated-montmorillonite as co-adsorbent of chitosan composites for methylene blue dye removal in aqueous solution

机译:甲硅烷基甲酸甲硅烷钴作为壳聚糖复合材料的共吸附剂,用于水溶液中的亚甲基蓝染料

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Industrialization plays important role in the economy of developing countries, including increasing community welfare. However, the presence of poorly industries waste disposal system has negative impact to the environment. Therefore, it is necessary to overcome this problem with low-cost technology, called adsorption. In this research, silylated-montmorillonite (sMMt) has been successfully prepared as supporting material for adsorption of methylene blue by chitosan. The sMMt was characterized by FTIR, XRD, and elemental mapping techniques. The chitosan/sMMt composites were prepared through dissolution-precipitation method and produced rod-like morphology as observed by SEM. The adsorption process was carried out in a batch method by studying the pH and the adsorption contact time. The adsorption kinetic mechanism of the chitosan/sMMt nanocomposite followed pseudo-second order rather than Lagergren model indicating chemisorption predominant. The addition of silylated-montmorillonite into chitosan enhanced the methylene blue dye removal performance, which evidenced by improving Qe values by 10% compared to chitosan.
机译:工业化在发展中国家的经济中起着重要作用,包括增加社区福利。然而,存在糟糕的行业废物处理系统对环境产生负面影响。因此,有必要以低成本技术克服这个问题,称为吸附。在该研究中,甲硅烷基甲酸甲硅烷钴(SMMT)已成功制备成用于吸附亚壳聚糖的亚甲基蓝色。 SMMT的特点是FTIR,XRD和元素映射技术。通过溶解 - 沉淀法制备壳聚糖/ SMMT复合材料,并产生由SEM观察的棒状形态。通过研究pH和吸附接触时间,在分批方法中进行吸附过程。壳聚糖/ SMMT纳米复合材料的吸附动力学机制跟随伪二次阶,而不是表明化学吸取的模型。将甲硅烷基甲酸甲硅烷酮加入壳聚糖中增强了亚甲基蓝染料去除性能,而与壳聚糖相比,通过将QE值提高10%的亚甲基蓝染料去除性能。

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