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Cu adsorption behaviours onto chelating resins from glycine-cyanide solutions: Isotherms, kinetics and regeneration studies

机译:来自甘氨酸 - 氰化物溶液中螯合树脂的Cu吸附行为:等温,动力学和再生研究

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A method is presented to remove and recover copper from copper-gold glycinate solutions using an iminodiacetic functionalized resin with subsequent regeneration. The adsorption/desorption approach was evaluated for a glycine leaching process which was shown to be effective for the dissolution of gold and copper from different gold-copper ores and concentrates. In this process, glycine is the lixiviant in the presence of very low cyanide concentration as a synergistic reagent. The copper species in glycine-cyanide process are mainly present as cupric glycinate and a low concentration of cuprous dicyanide and no free cyanide. While cupric glycinate does not load well onto activated carbon, cuprous dicyanide is problematic due to its high carbon affinity and co-loading with gold onto activated carbon, thereby requiring the removal of most of the copper prior to the gold recovery. In this study, the use of ion-exchange resins as one of the possible downstream recovery processes for gold and copper from glycine-cyanide solutions was tested. The isotherms and kinetics of gold and copper (cupric copper (Cu2+)) adsorb onto the chelating resin (Puromet MTS9300) from their alkaline glycinate and cyanide complexes were studied. Results show that the [CNT-]: [Cu-T] molar ratio has significant effects on the adsorption of Cu-T, due to the change in Cu2+/Ce+ ratio in the solutions, where [CNT-] is the total cyanide in the system (free cyanide being zero). The results show that the chelating resin is selectively adsorbed cupric (Cu2+) over cuprous (Cu+) ions. The adsorption results were fitted to both the Freundlich and Langmuir isotherm models, while the Langmuir model shows a better correlation. The adsorption kinetic data of Cu2+ is well fitted to the pseudo-second-order model. Alkaline glycine solutions in the presence of NaCl was selected as the main eluent for the resin elution study. The multi-cycle adsorption/desorption tests showed that the resin adsorption and regeneration efficiencies are not significantly changed after five cycles of adsorption/desorption. Microscopic visual analysis by using scanning electron microscopy (SEM) showed that there is no significant change in shape and size of the resins, although more cracks were observed after the 5 cycles of adsorption/desorption.
机译:提出了一种方法,以使用随后再生的含氧型官能化树脂从铜金甘油酸溶液中除去和回收铜。评估吸附/解吸方法对甘氨酸浸出过程,其显示为来自不同金 - 铜矿和浓缩物的金和铜的溶解是有效的。在该过程中,甘氨酸是在非常低的氰化物浓度下作为协同试剂存在的唇振。甘氨酸 - 氰化物工艺中的铜物种主要以铜甘油和低浓度的二氰基二氰基含量呈现,并且没有游离氰化物。虽然铜甘油酸铜含量不升高到活性炭上,但由于其高碳亲和力和用金在活性炭上,亚磺酰乙酸亚氰化物是有问题的,从而需要在金回收率之前去除大多数铜。在该研究中,测试了离子交换树脂作为来自甘氨酸 - 氰化物溶液的可能下游回收过程之一。研究了从碱性甘氨酸和氰化物复合物中吸附到螯合树脂(utmometMTS9300)上的金和铜(Cupric铜(Cu2 +))的等温线和动力学。结果表明,由于溶液中Cu2 + / Ce +的比例的变化,[CNT-]:[Cu-T]摩尔比对Cu-T的吸附具有显着影响,其中[CNT-]是氰化物的总氰化物系统(自由氰化物为零)。结果表明,螯合树脂在亚铜(Cu +)离子上选择性地吸附了铜(Cu2 +)。吸附结果适用于Freundlich和Langmuir等温线模型,而Langmuir模型显示出更好的相关性。 Cu2 +的吸附动力学数据适合于伪二阶模型。选择NaCl存在下的碱性甘氨酸溶液作为树脂洗脱研究的主要洗脱液。多循环吸附/解吸试验表明,在吸附/解吸的五个循环后,树脂吸附和再生效率不会显着改变。通过使用扫描电子显微镜(SEM)的微观视觉分析表明树脂的形状和尺寸没有显着变化,尽管在吸附/解吸的5个循环后观察到更大的裂缝。

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