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首页> 外文期刊>Journal of Applied Polymer Science >Thiourea modified hyper-crosslinked polystyrene resin for heavy metal ions removal from aqueous solutions
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Thiourea modified hyper-crosslinked polystyrene resin for heavy metal ions removal from aqueous solutions

机译:硫脲改性超交联的聚苯乙烯树脂,用于从水溶液中除去重金属离子

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摘要

A hyper-crosslinked resin chemically modified with thiourea (TM-HPS) was synthesized, characterized, and evaluated for the removal of heavy metal ions (Pb2+, Cd2+, and Cu2+) from aqueous solutions. The structural characterization results showed that a few thiourea groups were grafted on the surface of the resin with a big BET surface area and a large number of narrow micropores. Various experimental conditions such as pH, contact time, temperature, and initial metal concentration of the three heavy metal ions onto TM-HPS were investigated systematically. The results indicated that the prepared resin was effective for the removal of the heavy metal ions from aqueous solutions. The isotherm data could be better fitted by Langmuir model, yielding maximum adsorption capacities of 689.65, 432.90, and 290.69 mg/g for Pd2+, Cd2+, and Cu2+, respectively. And the adsorption kinetics of the three metal ions followed the pseudo-second-order equation. FTIR and XPS analysis of TM-HPS before and after adsorption further revealed that the adsorption mechanism could be a synergistic effect between functional groups and metal ions and electrostatic attraction, which may provide a new insight into the design of highly effective adsorbents and their potential technological applications for the removal of heavy metal ions from aqueous solutions. (C) 2017 Wiley Periodicals, Inc.
机译:与硫脲(TM-HPS)化学修饰的一个超交联树脂的合成,其特征在于,并评价了从水溶液中去除重金属离子(PB2 +,Cd2 +的,并且铜离子)的。结构表征结果表明,少量硫脲基团在树脂表面上接枝,具有大的BET表面积和大量窄的微孔。系统地研究了各种实验条件,例如pH,接触时间,温度和初始金属浓度在TM-HPS上进行了全面研究。结果表明,制备的树脂可有效地从水溶液中除去重金属离子。 ISotherm数据可以通过Langmuir模型更好地装配,产生689.65,432.90和PD2 +,CD2 +和Cu2 +的最大吸附容量为689.65,432.90和290.69mg / g。并且三个金属离子的吸附动力学跟随伪二阶方程。在吸附之前和之后的TM-HPS的FTIR和XPS分析进一步揭示了吸附机制可以是官能团和金属离子和静电吸引力之间的协同效应,这可能对高效吸附剂的设计和潜在的技术进行了新的洞察力。从水溶液中除去重金属离子的应用。 (c)2017 Wiley期刊,Inc。

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