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首页> 外文期刊>Solvent Extraction and Ion Exchange >Silver Extraction from Hydrochloric Acid Solutions with the Disulfide of Bis(2,4,4-trimethylpentyl)Dithiophosphinic Acid
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Silver Extraction from Hydrochloric Acid Solutions with the Disulfide of Bis(2,4,4-trimethylpentyl)Dithiophosphinic Acid

机译:用双二硫膦二硫化物从盐酸溶液中提取盐酸溶液

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Silver extraction from hydrochloric acid solutions with the disulfide of bis(2,4,4-trimethylpentyl)dithiophosphinic acid (L) in toluene is described in this work. Based on the analysis of the extraction data, it was concluded that silver extraction is due to the formation of the compound AgCl.2L in the organic phase. An increase in the concentration of hydrochloric acid in the aqueous phase leads to a decrease in AgCl extraction because of the formation of non-extractable anionic complexes of silver. Solvent extraction efficiency decreases in the series octanol decane chloroform toluene, which is due to the preferential solvation of the extracted complex by the solvent. A significant increase in the extraction of silver chloride with disulfide in the presence of octanol is caused by the strong interaction of the extracted compound and the alcohol, due to the chloride ion solvation by octanol. The possibility of using the disulfide for silver extraction from hydrochloric acid solutions containing metal impurities (Ni, Cu, Co, Zn, Fe (III), and Na) has been demonstrated. The degree of silver recovery in one stage was 98.62%, while the extractant showed high selectivity toward silver: the separation factors of silver over metal ((Ag)/(Me)) ranged from 9000 to 30,000. Almost complete silver stripping from the organic phase was achieved when using a mixture of thiourea and sulfuric acid solutions. The extraction characteristics of the disulfide are much better as compared to that of the well-known commercially available extractant triisobutylphosphine sulfide. The disulfide of bis(2,4,4-trimethylpentyl)dithiophosphinic acid can be used for efficient extraction of silver from industrial hydrochloric acid solutions of different origin.
机译:在这项工作中描述了与甲苯中双(2,4,4-三甲基戊基)二硫膦酸(L)二硫化二硫化二硫代二硫膦酸(L)的盐酸溶液中的银萃取。基于对萃取数据的分析,得出结论,银萃取是由于在有机相中形成化合物AgCl.21。由于银银可萃取的阴离子复合物的形成,水相中盐酸酸浓度的增加导致AgCl提取的降低。辛糖醇和GT系列溶剂萃取效率降低;癸烷&氯仿和GT;甲苯,这是由于溶剂萃取的复合物的优先溶解。由于辛醇的氯离子溶剂,所提取的化合物和醇的强相互作用,在辛醇存在下,在辛醇存在下,在辛醇存在下萃取氯化硼的氯化酰氯化物的显着增加。已经证实了使用含有金属杂质的盐酸溶液(Ni,Cu,Co,Zn,Fe(III)和Na)的盐酸溶液中银萃取二硫化物的可能性。一个阶段中的银回收率为98.62%,而萃取剂对银具有高选择性:银金属上的分离因子((Ag)/(Me))的范围为9000至30,000。当使用硫脲和硫酸溶液的混合物时,实现了从有机相的几乎完全的银剥离。与众所周知的市售萃取剂三异戊基膦硫化物相比,二硫化物的提取特性好得多。双(2,4,4-三甲基戊基)二硫代磷酸二硫化二磷酸可用于从不同来源的工业盐酸溶液中有效提取银。

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