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使用一种简单且可回收的二酰胺通过选择性沉淀实现金的可调分离。

Tuneable separation of gold by selective precipitation using a simple and recyclable diamide.

作者信息

Kinsman Luke M M, Ngwenya Bryne T, Morrison Carole A, Love Jason B

机构信息

EaStCHEM School of Chemistry, University of Edinburgh, Edinburgh, EH9 3FJ, UK.

School of Geosciences, University of Edinburgh, Edinburgh, EH9 3FE, UK.

出版信息

Nat Commun. 2021 Oct 29;12(1):6258. doi: 10.1038/s41467-021-26563-7.

Abstract

The efficient separation of metals from ores and secondary sources such as electronic waste is necessary to realising circularity in metal supply. Precipitation processes are increasingly popular and are reliant on designing and understanding chemical recognition to achieve selectivity. Here we show that a simple tertiary diamide precipitates gold selectively from aqueous acidic solutions, including from aqua regia solutions of electronic waste. The X-ray crystal structure of the precipitate displays an infinite chain of diamide cations interleaved with tetrachloridoaurate. Gold is released from the precipitate on contact with water, enabling ligand recycling. The diamide is highly selective, with its addition to 29 metals in 2 M HCl resulting in 70% gold uptake and minimal removal of other metals. At 6 M HCl, complete collection of gold, iron, tin, and platinum occurs, demonstrating that adaptable selective metal precipitation is controlled by just one variable. This discovery could be exploited in metal refining and recycling processes due to its tuneable selectivity under different leaching conditions, the avoidance of organic solvents inherent to biphasic extraction, and the straightforward recycling of the precipitant.

摘要

从矿石和电子垃圾等二次资源中高效分离金属对于实现金属供应的循环利用至关重要。沉淀工艺越来越受欢迎,并且依赖于设计和理解化学识别以实现选择性。在此,我们展示了一种简单的叔二酰胺能从酸性水溶液中选择性沉淀金,包括从电子垃圾的王水溶液中。沉淀物的X射线晶体结构显示出由二酰胺阳离子与四氯合金酸盐交错排列形成的无限链。沉淀物与水接触时金会从中释放出来,从而实现配体循环利用。该二酰胺具有高度选择性,将其添加到含有29种金属的2 M盐酸溶液中,能摄取70%的金,而其他金属的去除量极少。在6 M盐酸中,能完全收集金、铁、锡和铂金属,这表明仅通过一个变量就能控制适应性选择性金属沉淀。由于其在不同浸出条件下具有可调的选择性、避免了双相萃取中固有的有机溶剂以及沉淀剂回收简单,这一发现可应用于金属精炼和回收过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e73c/8556376/5b935aeb3fdc/41467_2021_26563_Fig1_HTML.jpg

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