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Cementation of rhodium from waste chloride solutions using copper powder

机译:使用铜粉将氯化物废液中的铑胶结

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This work investigated the cementation of rhodium from waste chloride solutions using metallic copper powder. The effects on the rhodium precipitation (%) caused by the quantity of copper, reaction temperature and reaction time were explored in detail. In addition, the cementation kinetics of rhodium were studied, and the activation energy was determined to be 64.48 kJ/mol, which indicates that the reaction is chemically controlled. It was demonstrated that less than 40% of the rhodium could be precipitated using excessive quantities of copper powder (e.g., stoichiometric ratio of Cu/Rh = 40.3) at room temperature for 1 h, which resulted in a cementation reaction that was too slow. Increasing the reaction temperature to 55 resulted in almost 99% cementation after 1 h, even using stoichiometric ratio of Cu/Rh = 16.1. After a detailed observation of the dissolution behavior of the copper powder during the cementation process, it was demonstrated that most of the copper is preferentially consumed by free acid, a finding corroborated by pH measurements.
机译:这项工作研究了使用金属铜粉从氯化物废液中铑的胶结。详细探讨了铜含量,反应温度和反应时间对铑沉淀率(%)的影响。此外,研究了铑的胶结动力学,确定活化能为64.48 kJ / mol,表明该反应是化学控制的。已证明在室温下使用过量的铜粉(例如,Cu / Rh的化学计量比为40.3)使用过量的铜粉可沉淀出不到40%的铑,这导致胶凝反应太慢。即使使用Cu / Rh = 16.1的化学计量比,将反应温度提高到55也会导致1 h后几乎99%的胶结。在对铜粉在胶结过程中的溶解行为进行了详细观察之后,证明了大多数铜优先被游离酸消耗,这一点通过pH测量得到了证实。

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