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Highly selective recovery of palladium by a new silica-based adsorbent functionalized with macrocyclic ligand

机译:新型用大环配体官能化的基于二氧化硅的吸附剂可高选择性地回收钯

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摘要

A new kind of silica-based adsorbent with high selectivity and efficient adsorption for palladium ion (Pd(II)) was synthesized in this study. A macrocyclic polyether isomer was modified for incorporation to the silica matrix as a ligand to realize the complexation between Pd(II) and the adsorbent. The adsorption of Pd(Il) in HNO3 media was evaluated by both batch and column operations. Influences including acidity, contact time, initial metal concentration and elution conditions were detailed. From a practical viewpoint, the functionalized adsorbent was employed for the recovery of Pd(II) from the simulated high level liquid waste (HLLW) containing a large amount of interferences. Superior selectivity to Pd(II) as well as a recovery rate higher than 90% was obtained. A mechanism concerning the formation of complex ion-pair was proposed for the description of the Pd(II)-binding process. The macrocyclic ligand functionalized silica adsorbent possesses potential for the recovery of the palladium resource in radioactive liquid waste.
机译:本研究合成了一种新型的高选择性,高效吸附钯离子的二氧化硅基吸附剂。对大环聚醚异构体进行了改性,以便以配体形式掺入二氧化硅基质中,从而实现Pd(II)与吸附剂之间的络合。通过分批操作和柱操作来评估Pd(II)在HNO 3介质中的吸附。详细的影响包括酸度,接触时间,初始金属浓度和洗脱条件。从实践的角度来看,功能化吸附剂用于从含有大量干扰物的模拟高放废液(HLLW)中回收Pd(II)。获得了对Pd(II)的优异选择性以及高于90%的回收率。为了描述Pd(II)-结合过程,提出了一种关于形成复杂离子对的机制。大环配体官能化的二氧化硅吸附剂具有回收放射性废液中钯资源的潜力。

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