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用于从模拟氯化物溶液中去除贵金属离子的浸渍聚合物吸附剂及RAM模块。

Impregnated Polymeric Sorbent for the Removal of Noble Metal Ions from Model Chloride Solutions and the RAM Module.

作者信息

Zinkowska Karolina, Hubicki Zbigniew, Wójcik Grzegorz

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). 2024 Mar 7;17(6):1234. doi: 10.3390/ma17061234.

Abstract

Nowadays, there is a need for new sources of noble metals due to their dwindling natural resources. This paper presents studies on the sorption of noble metals such as Au(III), Pt(IV), Pd(II) and Rh(III) from model chloride solutions on a newly prepared Amberlite XAD-16-Aliquat 336 sorbent. A "warm impregnation" method without the use of toxic organic solvents was applied to impregnate the polymer matrix. The influence of such factors as hydrochloric acid concentration, sorbent mass and phase contact time was investigated. Kinetic as well as adsorption isotherm studies were carried out. The sorption capacity of the synthesized sorbent was Au(III)-94.34 mg/g, Pt(IV)-45.35 mg/g and Pd(II)-46.03 mg/g. Based on thermodynamic considerations, their sorption proved to be endothermic, as the values of ΔH° > 0. Sorption was spontaneous and favourable (ΔG° < 0). After leaching the RAM module, there was obtained a real solution, in which the metal contents were determined: 38.10 mg/g of gold and 1.76 mg/g of palladium. Totals of 99.9% of gold and 45.4% of palladium were removed from the real leaching solution, with other elements in the solution.

摘要

如今,由于贵金属自然资源日益减少,需要寻找新的贵金属来源。本文介绍了在新制备的Amberlite XAD - 16 - Aliquat 336吸附剂上,从模拟氯化物溶液中吸附Au(III)、Pt(IV)、Pd(II)和Rh(III)等贵金属的研究。采用“温热浸渍”法,不使用有毒有机溶剂来浸渍聚合物基体。研究了盐酸浓度、吸附剂质量和相接触时间等因素的影响。进行了动力学以及吸附等温线研究。合成吸附剂对Au(III)的吸附容量为94.34 mg/g,对Pt(IV)为45.35 mg/g,对Pd(II)为46.03 mg/g。基于热力学考虑,由于ΔH°> 0,其吸附过程为吸热过程。吸附是自发且有利的(ΔG°< 0)。浸出RAM模块后,得到了一种实际溶液,测定了其中的金属含量:金含量为38.10 mg/g,钯含量为1.76 mg/g。从实际浸出溶液中去除了99.9%的金和45.4%的钯以及溶液中的其他元素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c85/10972195/680ce88d397d/materials-17-01234-g001.jpg

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