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Removal of chlorobenzene and 1,4-dichlorobenzene using novel poly-o-toluidine zirconium(IV) phosphotellurite exchanger

机译:使用新型聚邻甲苯胺锆(IV)磷铁矿交换剂去除氯苯和1,4-二氯苯

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Novel hybrid exchanger poly-o-toluidine zirconium(IV) phosphotellurite was synthesized and physico-chemical properties of the material were well studied by FTIR, XRD, TGA, SEM-EDX and TEM analysis. The composite exchanger showed good ion exchange capacity and excellent removal potential towards US Environmental Protection Agency listed priority pollutants like chlorobenzene and 1,4-dichlorobenzene. The factors affecting the adsorption like time, pH and temperature were studied in detail using UV spectrophotometry. More than 90% of the pollutants were successfully removed using the exchanger. The composite also showed selectivity towards heavy metal ions, especially mercury ions. The sorption kinetics of the material was studied in detail using pseudo first order and pseudo second order kinetics. The material followed pseudo second order kinetic model indicating chemisorption of the pollutants. The composite can be successfully used for environmental remediation purposes.
机译:合成了新型杂化交换剂聚邻甲苯胺化锆(IV)亚磷酸锂,并通过FTIR,XRD,TGA,SEM-EDX和TEM分析对该材料的理化性质进行了很好的研究。该复合交换剂对美国环境保护署列出的优先污染物如氯苯和1,4-二氯苯具有良好的离子交换能力和极好的去除潜力。使用紫外分光光度法详细研究了影响吸附的因素,如时间,pH和温度。使用该交换器成功去除了90%以上的污染物。该复合材料还显示出对重金属离子,特别是汞离子的选择性。使用伪一级和伪二级动力学详细研究了材料的吸附动力学。该材料遵循伪二级动力学模型,表明污染物的化学吸附。该复合材料可成功用于环境修复。

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