Nag Abhijit, Morrison Carole A, Love Jason B
EaStCHEM School of Chemistry, University of Edinburgh, Edinburgh, EH9 3FJ, UK.
ChemSusChem. 2024 Jul 22;17(14):e202301695. doi: 10.1002/cssc.202301695. Epub 2024 Mar 13.
The dissolution of elemental gold is a fundamental step in its recycling by hydrometallurgy but has a significant environmental impact due to the use of strong acids or highly toxic reagents. Herein, it is shown that mixtures of acetyl halides and hydrogen peroxide in alcohols promote the rapid room-temperature dissolution of gold by halogenation to form Au(III) metalates. After leaching, distillation of the alcohol and re-dissolution in dilute HCl, the gold was refined through its precipitation by a simple diamide ligand; this method was also applied to separate gold from a mixture of metals. The leaching process is rapid, avoids the use of highly toxic materials and corrosive acids, and can be integrated into selective separation processes, so has the potential to be used in the purification of gold from ores, spent catalysts, and electronic and nano-waste.
元素金的溶解是其通过湿法冶金进行回收利用的一个基本步骤,但由于使用强酸或剧毒试剂,会对环境产生重大影响。在此表明,乙酰卤化物与过氧化氢在醇类中的混合物通过卤化作用促进金在室温下快速溶解,形成金(III)金属酸盐。浸出后,蒸馏醇类并重新溶解于稀盐酸中,通过一种简单的二酰胺配体沉淀来提纯金;该方法还应用于从金属混合物中分离金。浸出过程快速,避免使用剧毒材料和腐蚀性酸,并且可以整合到选择性分离过程中,因此有潜力用于从矿石、废催化剂以及电子和纳米废物中提纯金。