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Synthesis and characterization of epoxy resin-based ion-imprinted polymer for selective removal of copper ions

机译:环氧树脂基离子印迹聚合物选择性去除铜离子的合成与表征

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With the continuous development of the concept of green chemistry, more attention is being paid to the selective capture of copper (Ⅱ) from wastewater and its recovery and reuse. Ion imprinting technology is widely used to remove heavy metals from aqueous solutions due to its high selectivity. In this work, Cu(Ⅱ) imprinted polymer (Cu(Ⅱ)-IIP) was prepared by stepwise polymerization using Cu(Ⅱ) ions as the template ions, PEG-600 as a pore-forming agent, epoxy resin as the carrier, and polyethylene polyamine as curing agent and complexing agent. The influences of solution pH, reaction temperature, reaction time and initial solubility of metal ions on its adsorption ability were systematically examined. The studies showed that the maximum adsorption quantity was 91.58 mg/g when pH=5 and T=318K. The adsorption for Cu(Ⅱ) of the Cu(Ⅱ)-IIP was considered to be the monolayer chemisorption and spontaneous endothermic process. In the presence of multiple coexisting ions, Cu(Ⅱ)-IIP had high selectivity for Cu(Ⅱ). After five adsorption-desorption cycles, high removal rate could still be obtained, which means that the material provides a feasible method for treating wastewater containing Cu(Ⅱ) ions.
机译:随着绿色化学理念的不断发展,人们越来越关注从废水中选择性地捕获铜(II.)及其回收再利用。离子印迹技术因其高选择性而被广泛用于去除水溶液中的重金属。本工作以Cu(II.)离子为模板离子,以PEG-600为成孔剂,以环氧树脂为载体,聚乙烯多胺为固化剂和络合剂,采用逐步聚合法制备了Cu(II.)印迹聚合物(Cu(II.)-IIP)。系统研究了溶液pH值、反应温度、反应时间和金属离子初始溶解度对其吸附能力的影响。研究表明,当pH=5且T=318K时,最大吸附量为91.58 mg/g。Cu(II.)-IIP对Cu(II.)的吸附被认为是单层化学吸附和自吸热过程。在多个共存离子存在下,Cu(II.)-IIP对Cu(II.)具有较高的选择性。经过5次吸附-脱附循环后,仍能获得较高的去除率,这意味着该材料为处理含Cu(II.)离子的废水提供了一种可行的方法。

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