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Novel polyazamacrocyclic receptor impregnated macroporous polymeric resins for highly efficient capture of palladium from nitric acid media

机译:新型聚氮杂酰氯环受体浸渍大孔聚合物树脂,用于从硝酸培养基中高效捕获钯

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摘要

A novel composite resin C-8-Cyclen/CG-71M, with the specific binding ability to palladium ions in HNO3 solution, was developed by impregnating tetraoctyl-substituted 1,4,7,10-tetraazacyclododecane (C-8 -Cyclen) receptor into the macroporous polymeric resins (Amberchrom CG-71M). The structure and morphology of obtained products were fully characterized. Study on the batch experiments revealed that C-8 -Cyclen/CG-71M resin exhibited rapid kinetics, favorable adsorption ability and high selectivity toward Pd(II) in a wide HNO3 concentration. The theoretical interpretation of the experimental data by employing kinetics models, Langmuir/Freundlich isotherms and thermodynamic equations were implemented to describe the adsorption behavior. The results showed that the adsorption process of Pd(II) by C-8 -Cyclen/CG-71M was comforted to a monolayer-coverage with the maximum adsorption capacity of 169.5 mg/g. Besides, the XPS analysis was performed to probe the underlying adsorption mechanism to Pd(II). A suggested mechanism involving the synergistic effect of four cyclic amines in C-8-Cyclen receptors was proposed to describe the interaction manner between Pd(II) and C-8-Cyclen/CG-71M. Furthermore, the resin was also applied to recovery Pd(II) from HCl media and similar results were obtained. Overall, due to the benign synthesis, efficient adsorption ability and facile operation, C-8-Cyclen/CG71M might be a promising resin material for Pd(II) selective capture from radioactive wastes, and other leaching solution of spent catalysts and electronic scraps.
机译:通过浸渍二乙基取代的1,4,7,10-四唑二癸烷(C-8 -CYCLEN)受体,开发了一种新型复合树脂C-8-CYCKEN / CG-71M,其具有HNO3溶液中的钯离子的钯离子的特异性结合能力进入大孔聚合物树脂(Amberchrom CG-71M)。所得产物的结构和形态完全表征。对批量实验的研究表明,C-8 - 环/ CG-71M树脂在宽HNO3浓度下表现出快速的动力学,有利的吸附能力和高选择性,对Pd(II)的高选择性。通过采用动力学模型,Langmuir / Freundlich等温和热力学方程对实验数据的理论解释,以描述吸附行为。结果表明,C-8 - 环/ CG-71M的Pd(II)的吸附过程被安慰至单层覆盖物,最大吸附能力为169.5mg / g。此外,进行XPS分析以探测Pd(II)的潜在吸附机制。提出了一种建议的机制,涉及四个环胺在C-8-环宁受体中的协同作用,以描述Pd(II)和C-8-环烯/ CG-71M之间的相互作用方式。此外,还将树脂施用于来自HCl培养基的回收Pd(II),得到类似的结果。总的来说,由于良性合成,有效的吸附能力和容易操作,C-8-Cyclen / CG71M可能是来自放射性废物的PD(II)选择性捕获的有前途的树脂材料,以及废物催化剂和电子废料的其他浸出溶液。

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