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New extractants for separation of platinium-group metals from chloride solutions and their application to recycling processes

机译:用于从氯化物溶液中分离铂族金属的新型萃取剂及其在回收过程中的应用

摘要

In this paper some results on the application of four N,N’-tetrasubstituted malonamide derivatives for the extraction and separation of platinum-group metals (PGMs) are presented. The above mentioned extractants were specifically synthesized in order to evaluate their efficiency for the extraction of a specific metal, or group of metals, from aqueous chloride matrices. Different behaviours were obtained towards platinum(IV) and/or palladium(II) extraction, all the N,N’-tetrasubstituted malonamide derivatives allowing the mutual separation of the two metal ions, depending on the HCl concentration. Generally, extraction experiments were carried out involving initial aqueous phases containing 100 mg/L of each metal isolate, in varying 1M to 8M HCl concentration ranges, and 0.05M extractant in 1,2- dichloroethane solutions. From the preliminary results obtained, one can conclude that HCl concentrations and the structure of the malonamide derivative play a crucial role on the efficiency shown for Pt(IV) and/or Pd(II) extraction. The efficiency of the stripping stage of the loaded organic phases is variable, depending on the N,N’-tetrasubstituted malonamide derivative, as well as on the metal ion involved; for Pt(IV), distilled water and 1M HCl were generally successful, whereas for Pd(II), thiourea in HCl gave better results. The overall data already achieved suggest that these extractants may be good candidates for further evaluation in PGMs separations from real solutions resulting from recycling processes.
机译:本文介绍了四种N,N’-四取代的丙二酰胺衍生物在铂族金属(PGM)的萃取和分离中的应用结果。专门合成上述萃取剂,以评估其从氯化物水溶液中萃取特定金属或一组金属的效率。对于铂(IV)和/或钯(II)萃取,获得了不同的行为,所有N,N'-四取代的丙二酰胺衍生物都可以根据HCl的浓度相互分离两种金属离子。通常,进行的萃取实验涉及初始水相,其中包含100 mg / L的每种金属分离物(浓度范围为1M至8M HCl)和0.05M萃取剂的1,2-二氯乙烷溶液。从获得的初步结果,可以得出结论,HCl浓度和丙二酰胺衍生物的结构对Pt(IV)和/或Pd(II)萃取的效率起着至关重要的作用。负载的有机相的汽提阶段的效率是可变的,取决于N,N’-四取代的丙二酰胺衍生物以及所涉及的金属离子。对于Pt(IV),蒸馏水和1M HCl通常是成功的,而对于Pd(II),硫脲在HCl中的效果更好。已经获得的总体数据表明,这些萃取剂可能是进一步评估从回收工艺产生的真实溶液中分离PGM的良好候选物。

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