Technology for increasing the precious metals content in copper concentrate obtained by flotation

IF 1.3 4区 工程技术 Q4 CHEMISTRY, PHYSICAL
M. Panayotova, V. Panayotov
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引用次数: 0

Abstract

In the established technologies, the use of classic depressants of pyrite, such as lime represents one of the main problems in the flotation of gold-bearing copper (Cu) ores. Lime addition leads to the depression of the noble metals - gold (Au) and silver (Ag) that end up in tailings. Thus, the operator incurs economic losses. The current paper presents research aimed at replacing in flotation of copper pyrite ore, bearing gold and silver, the classical depressor lime with catholyte, i. e. with solution obtained during the electrolysis of water (pure or aqueous solutions) using a diaphragm electrolyser. Data from the conducted research show an increase in the content of precious metals in the obtained copper concentrate - from 148. 04 g/Mg Au and 112. 8 g/Mg Ag achieved by classical process to 216.45 g/Mg Au and 174.03 g/Mg Ag obtained by the proposed treatment. At the same time the Cu recovery increased by 3 % and the grade of Cu concentrate was 27.5 % Cu (compared to 16.2 % in the classical process). It seems that the main parameter influencing the selection separation process is the catholyte pH value.
提高浮选铜精矿中贵金属含量的工艺
在现有技术中,使用典型的黄铁矿抑制剂,如石灰,是含金铜矿石浮选的主要问题之一。石灰的添加会导致最终进入尾矿的贵金属金(Au)和银(Ag)的减少。因此,运营商会遭受经济损失。本文旨在用阴极电解液,即用隔膜电解槽电解水(纯溶液或水溶液)过程中获得的溶液,代替含金和银的黄铁矿矿石浮选中的经典降压石灰。所进行研究的数据显示,所获得的铜精矿中贵金属含量从148种增加。04g/Mg-Au和112。通过经典工艺获得的8g/Mg-Ag与通过所提出的处理获得的216.45g/Mg-Au和174.03g/Mg-Ag。同时,铜回收率提高了3%,铜精矿品位为27.5%Cu(而传统工艺为16.2%)。影响选择分离过程的主要参数似乎是阴极电解液的pH值。
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来源期刊
Physicochemical Problems of Mineral Processing
Physicochemical Problems of Mineral Processing CHEMISTRY, PHYSICAL-MINING & MINERAL PROCESSING
自引率
6.70%
发文量
99
期刊介绍: Physicochemical Problems of Mineral Processing is an international, open access journal which covers theoretical approaches and their practical applications in all aspects of mineral processing and extractive metallurgy. Criteria for publication in the Physicochemical Problems of Mineral Processing journal are novelty, quality and current interest. Manuscripts which only make routine use of minor extensions to well established methodologies are not appropriate for the journal. Topics of interest Analytical techniques and applied mineralogy Computer applications Comminution, classification and sorting Froth flotation Solid-liquid separation Gravity concentration Magnetic and electric separation Hydro and biohydrometallurgy Extractive metallurgy Recycling and mineral wastes Environmental aspects of mineral processing and other mineral processing related subjects.
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