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Chemically Modified Polyvinyl Chloride for Removal of Thionine Dye (Lauth’s Violet)

机译:化学改性的聚氯乙烯用于去除硫氨酸染料(Lauth的紫罗兰色)

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摘要

The chemical modification of hydrophobic polymer matrices is an alternative way to elchange their surface properties. The introduction of sulfonic groups in the polymer changes the surface properties such as adhesion, wettability, catalytic ability, and adsorption capacity. This work describes the production and application of chemically modified polyvinyl chloride (PVC) as adsorbent for dyes removal. Chemical modification of PVC was evaluated by infrared spectroscopy and elemental analysis, which indicated the presence of sulfonic groups on PVC. The chemically modified PVC (PVCDS) showed an ion exchange capacity of 1.03 mmol−1, and efficiently removed the thionine dye (Lauth’s violet) from aqueous solutions, reaching equilibrium in 30 min. The adsorption kinetics was better adjusted for a pseudo second order model. This result indicates that the adsorption of thionine onto PVCDS occurs by chemisorption. Among the models for the state of equilibrium, SIPS and Langmuir exhibited the best fit to the experimental results and PVCDS showed high adsorption capacities (370 mg−1). Thus, it is assumed that the system presents homogeneous characteristics to the distribution of active sites. The modification promoted the formation of surface characteristics favorable to the dye adsorption by the polymer.
机译:疏水性聚合物基质的化学改性是改变其表面性能的另一种方法。在聚合物中引入磺酸基改变了表面性质,例如粘合性,润湿性,催化能力和吸附能力。这项工作描述了化学改性的聚氯乙烯(PVC)作为吸附剂去除染料的生产和应用。通过红外光谱和元素分析评估了PVC的化学改性,这表明PVC上存在磺酸基。经过化学修饰的PVC(PVCDS)的离子交换容量为1.03 mmol -1 ,可以有效地从水溶液中去除硫氨酸染料(Lauth的紫罗兰色),并在30分钟内达到平衡。对于伪二级模型,可以更好地调节吸附动力学。该结果表明,蛋氨酸通过化学吸附发生在PVCDS上的吸附。在平衡状态模型中,SIPS和Langmuir与实验结果最吻合,PVCDS具有高吸附能力(370 mg -1 )。因此,假定该系统对活动位点的分布呈现出均匀的特性。改性促进了有利于聚合物吸附染料的表面特性的形成。

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