Zhou Qiang, Fan Yunchang, Zhang Sheli
College of Chemistry and Chemical Engineering, Henan Polytechnic University, Jiaozuo 454003, China.
School of Science and Technology, Jiaozuo Teachers College, Jiaozuo 454000, China.
Molecules. 2024 Jun 4;29(11):2659. doi: 10.3390/molecules29112659.
Thiosulfate leaching has been regarded as a promising alternative to cyanidation, but it still faces the challenge of the recovery of low content of gold from high concentrations of thiosulfate solutions. Liquid-liquid extraction is a method to address this issue but is still limited by the use of volatile and toxic organic solvents. To overcome this limitation, this work synthesized some functionalized dicationic ionic liquids (DILs) to serve as extraction solvents for the recovery of the gold-thiosulfate complex, [Au(SO)], from thiosulfate solutions. Experimental results indicated that the DILs showed higher extraction rates toward [Au(SO)] compared with their monocationic-based counterparts, likely due to the stronger electrostatic interaction between the dications of the ILs and [Au(SO)]. The transfer of [Au(SO)] from the water phase to the IL phase was identified as an anion exchange and endothermic process. The rate of extraction was limited by the anion exchange process occurring at the IL-water interface. The extraction ability of ILs highly depended on the type of anion; specifically, the ILs with anions that had strong hydrogen-bonding ability exhibited high extraction ability toward [Au(SO)]. Finally, DILs proved effective in the recovery of [Au(SO)] from an actual gold leaching solution and exhibited high selectivity toward coexisting ions, indicating their potential as environmentally friendly solvents for gold recovery.
硫代硫酸盐浸出被认为是一种很有前景的氰化替代方法,但它仍面临着从高浓度硫代硫酸盐溶液中回收低含量金的挑战。液 - 液萃取是解决这个问题的一种方法,但仍受到挥发性和有毒有机溶剂使用的限制。为了克服这一限制,本研究合成了一些功能化的双阳离子离子液体(DILs),用作从硫代硫酸盐溶液中回收金 - 硫代硫酸盐配合物[Au(SO)]的萃取溶剂。实验结果表明,与基于单阳离子的对应物相比,DILs对[Au(SO)]表现出更高的萃取率,这可能是由于离子液体的双阳离子与[Au(SO)]之间更强的静电相互作用。[Au(SO)]从水相转移到离子液体相被确定为一个阴离子交换和吸热过程。萃取速率受离子液体 - 水界面处发生的阴离子交换过程限制。离子液体的萃取能力高度依赖于阴离子的类型;具体而言,具有强氢键能力阴离子的离子液体对[Au(SO)]表现出高萃取能力。最后,DILs被证明在从实际金浸出溶液中回收[Au(SO)]方面是有效的,并且对共存离子表现出高选择性,表明它们作为用于金回收的环境友好溶剂的潜力。