聚烯丙胺硫氨基衍生物从硫代硫酸盐氨浸出液中回收金和银

IF 1.5 Q3 Materials Science Nonferrous Metals Pub Date : 2018-06-27 DOI:10.17580/NFM.2018.01.03
Y. Privar, Y. Azarova, S. Bratskaya, A. Pestov
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引用次数: 3

摘要

由于俄罗斯和世界上河段砂金矿床的数量不断减少,人们对从黄金工业废料中回收细金越来越感兴趣[1]。通常,重力分离在这类原料中的应用效率较低,而氰化物浸出受到难熔矿物存在的限制[2]。此外,对金浸出生态安全的严重关注促进了人们对无氰化物替代品的兴趣,首先是对氨硫代硫酸盐浸出的兴趣[3-6]。与氰化物相比,硫代硫酸盐是可生物降解的,毒性低,适用于现场地下和堆浸。此外,在含铜、铅和锌的碳质矿石和矿石中,硫代硫酸盐更便宜、更有效[4]。根据原料类型和浸出液组成的不同,硫代硫酸铵浸出的效率达到50–95%[7]。然而,由于涉及硫代硫酸盐的氧化和歧化的副反应数量众多,浸出条件的优化相当复杂[5]。从硫代硫酸铵溶液中回收金也不简单。由于铜和其他金属的共沉淀,胶结并不有效[8]。由于沉积电位的差异,电积原则上允许铜和金分离[9],但在大多数情况下,会获得低纯度的产品,此外,低电流效率会显著增加能耗[6]。高效(高达97%)的有机溶剂萃取金[10]是一种昂贵且适用性有限的技术。从氰化物浸出液中吸附金是最简单、经济实惠的方法,然而,从硫代硫酸铵浸出液中回收金和银的聚烯丙基胺的硫代氨基甲酰基衍生物*
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Thiocarbamoyl derivatives of polyallylamine for gold and silver recovery from ammonia-thiosulfate leachates
Due to the decreasing number of reach placer gold deposits in Russia and in the world, there is growing interest to the recovery of fine gold from wastes of gold industry [1]. Typically, application of gravitation separation to this type of raw materials is of low efficacy, while cyanide leaching is limited by the presence of refractory minerals [2]. Besides, serious concern regar ding ecological safety of gold leaching promotes interest to cyanide-free alternatives, first of all, to ammoniathiosulfate leaching [3–6]. In contrast to cyanides, thiosulfates are biodegradable and low toxic that makes them applicable in-situ underground and heap leaching, moreover, they are cheaper and more efficient in case of carbonaceous ores and ores, containing copper, lead and zinc [4]. Depending on the type of raw material and leaching solution composition efficacy of ammonia-thiosulfate leaching reaches 50–95% [7]. However, optimization of leaching conditions is rather complicated due to the number of side reactions of oxidation and disproportionation involving thiosulfates [5]. Recovery of gold from ammonia-thiosulfate solutions is also not simple. Cementation is not efficient due to coprecipitation of copper and other metals [8]. Electrowinning allows in principle separation of copper and gold due to the difference in deposition potentials [9], but, in most cases, low purity product is obtain, moreover, low current efficiency markedly increases energy consumption [6]. Organic solvents extraction of gold with high efficacy (up to 97%) [10] is an example of expensive and limitedly applicable technology. Sorption of gold from cyanide leaching solution is the most simple and economically sound method, however, Thiocarbamoyl derivatives of polyallylamine for gold and silver recovery from ammonia-thiosulfate leachates*
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来源期刊
Nonferrous Metals
Nonferrous Metals METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.50
自引率
0.00%
发文量
7
期刊介绍: Its thematic plan covers all directions of scientific and technical development in non-ferrous metallurgy. The main journal sections include scientific-technical papers on heavy and light non-ferrous metals, noble metals and alloys, rare and rare earth metals, carbon materials, composites and multi-functional coatings, radioactive elements, nanostructured metals and materials, metal forming, automation etc. Theoretical and practical problems of ore mining and mineral processing, production and processing of non-ferrous metals, complex usage of ores, economics and production management, automation of metallurgical processes are widely observed in this journal. "Non-ferrous Metals" journal publishes the papers of well-known scientists and leading metallurgists, elucidates important scientific-technical problems of development of concentrating and metallurgical enterprises, scientific-research institutes and universities in the field of non-ferrous metallurgy, presents new scientific directions and technical innovations in this area. The readers can find in this journal both the articles with applied investigations and with results of fundamental researches that make the base for new technical developments. Publishing according to the approach APC (Article processing charge).
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