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新型高效吸附剂从电子废弃物中选择性回收金

Selective Recovery of Gold from Electronic Waste by New Efficient Type of Sorbent.

作者信息

Wójcik Grzegorz, Górska-Parat Magdalena, Hubicki Zbigniew, Zinkowska Karolina

机构信息

Department of Inorganic Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Skłodowska University, Maria Curie-Skłodowska Sq. 2, 20-031 Lublin, Poland.

出版信息

Materials (Basel). 2023 Jan 18;16(3):924. doi: 10.3390/ma16030924.

Abstract

Modular connectors are applied by computer users, and they can be metallic secondary sources containing metals such as gold and copper. Because gold is a micro-component, the solution obtained after the pin digestion contains a low concentration of gold(III) ions, and efficient and selective sorbent should be used for gold(III) ion recovery. The selective removal of small amounts of gold(III) from 0.001-6 M hydrochloric acid solutions using pure and solvent-impregnated macroporous polystyrene crosslinked with divinylbenzene sorbents (Purolite MN 202 and Cyanex 272) is presented. Gold(III) ions were recovered effectively from the chloride solution after the digestion of the modular connector RJ 45 (8P8C) using Purolite MN 202 after the impregnation process. The dependence of the recovery percentage (R%) of gold(III) on the contact time was determined. The highest value of gold(III) ion sorption capacity (259.45 mg·g) was obtained in 0.001 M HCl for Purolite MN202 after the Cyanex 272 impregnation. The results can be applied to gold recovery from e-waste. The presented method of gold recovery does not generate nitrogen oxides and does not require the use of cyanides.

摘要

模块化连接器由计算机用户使用,它们可能是含有金和铜等金属的金属二次来源。由于金是一种微量元素,引脚消解后得到的溶液中金(III)离子浓度较低,因此应使用高效且选择性的吸附剂来回收金(III)离子。本文介绍了使用纯的和浸渍了溶剂的、与二乙烯基苯交联的大孔聚苯乙烯吸附剂(Purolite MN 202和Cyanex 272)从0.001 - 6 M盐酸溶液中选择性去除少量金(III)的方法。在浸渍过程后,使用Purolite MN 202从模块化连接器RJ 45(8P8C)消解后的氯化物溶液中有效地回收了金(III)离子。测定了金(III)的回收率(R%)对接触时间的依赖性。在Cyanex 272浸渍后,Purolite MN202在0.001 M HCl中获得了最高的金(III)离子吸附容量值(259.45 mg·g)。该结果可应用于从电子废物中回收金。所提出的金回收方法不会产生氮氧化物,也不需要使用氰化物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9270/9917452/2cfc792bd4f9/materials-16-00924-g001.jpg

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