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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Selective recovery of gold, palladium, or platinum from acidic waste solution
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Selective recovery of gold, palladium, or platinum from acidic waste solution

机译:从酸性废物溶液选择性恢复金,钯或铂金

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End-of-life electrical and electronic equipment is the potential secondary resource for economically -viable precious metals (PMs), e.g., gold (Au), palladium (Pd), or platinum (Pt). The hydrometallurgical processes produce acidic leachates during the recovery of PMs from waste sources, while the selective recovery of Au, Pd, or Pt from such a matrix is challenging either due to the chemical similarities of elements or complexities in the sources and matrices. A total of nine solid -phase extraction (SPE) systems, all claimed to designed for separation of PMs from complex matrices, was evaluated at varying solution pH (..2 to 10) based on the selectivity towards Au, Pd, or Pt. The observation was used to develop a technique for selective Au, Pd, or Pt separation from acidic waste solutions using a macrocycle-equipped SPE. The feed solution flow-rates, eluent-type or compositions has been optimized to achieve maximum separation efficiency of the target analytes. The relative affinity of the macrocycles in solid phase towards the ions (Pd Au Pt) is the core phenomenon of the proposed technique, and the host -guest type interaction is expected to be more stable than the resin -based separation processes. Furthermore, application of the macrocycle-equipped SPE system is advantageous regarding economics as it minimizes the impact of coexisting ions in the matrix and provides unaltered separation performance for several loading-elution cycles. (C) 2018 Elsevier B.V. All rights reserved.
机译:寿命终端电气和电子设备是经济可行的贵金属(PMS),例如金(Au),钯(Pd)或铂(Pt)的潜在的二级资源。液压冶金方法在从废物源回收PMS期间产生酸性渗滤液,而来自这种基质的AU,Pd或Pt的选择性恢复是挑战,因为由于源和矩阵中的元素或复杂性的化学相似之处。总共有九个固体萃取(SPE)系统,均要求保护用于从复合矩阵分离PMS,基于对Au,Pd或Pt的选择性来评估不同溶液pH(.2至10)。使用宏循环的SPE,使用观察结果来开发用于从酸性废物溶液的选择性Au,pd或pt分离的技术。已经优化了进料溶液流量,洗脱液或组合物以实现目标分析物的最大分离效率。宏杂种在固相中的相对亲和力朝向离子(Pd& Au& Pt)是所提出的技术的核心现象,并且预期主体 - 预后型相互作用比树脂的分离过程更稳定。此外,宏系的SPE系统的应用是有利的,因为它最大限度地减少了基质中共存离子的冲击并为几个加载洗脱循环提供了不妨碍的分离性能。 (c)2018 Elsevier B.v.保留所有权利。

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