用压力发生器进行矿浆微曝气的选别法从低硫化物含金矿中提金

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING Kompleksnoe Ispolzovanie Mineralnogo Syra Pub Date : 2022-11-28 DOI:10.31643/2023/6445.19
G. Toktar, D. Magomedov, A.K. Коizhanova, N. Abdyldaev, A.N. Bakraeva
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引用次数: 2

摘要

介绍了东哈萨克斯坦矿床低硫化物含金矿石物质组成的研究成果。原样及选矿产品的主要非金属矿物有石英、绿泥石(斜绿石)、碳酸盐(方解石、白云石)。黄铁矿主要以立方晶体的形式存在,有时以团簇的形式存在。晶粒尺寸为0.03 ~ 0.0.4 mm,团簇尺寸达数mm。氧化铁(针铁矿、水针铁矿)在黄铁矿上形成,可能有磁铁矿和钛铁矿。经分析检测,样品中Au含量为6.04 g/t, Ag含量为7.9 g/t。硫化物矿物含量为11.81%。大部分金(85.51%)以微细浸染态存在于硫化物中,1.22%存在于造岩矿物中。本文介绍了采用重选工艺对金矿石进行选矿试验研究的结果。重力富集试验在实验室设备上进行:Knelson KS-MD 3离心式选矿机、SKO-05浓度表、双室隔膜跳汰机(OML TsNIGRI型(中央有色贵金属地质研究所跳汰机))。精矿选别结果表明,可获得金品位为48.9 g/t、金回收率为40.08%的重精矿。在跳汰机上分离重精矿时,金的提取率为31.6%,金的含量为51.4 g/t。结果表明,采用离心选矿厂单段选矿方案,可获得含金量为58.3 g/t、回收率为80.6%的含金精矿。给出了重精矿中金的提取率及其含量对Knelson离心选矿厂产量的依赖关系。矿石浮选选矿结果表明,有可能获得金品位为0.8 g/t的废级浮选尾矿。该组合精矿的金提取率为88.88%,金含量为49.7 g/t。
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Extraction of gold from low-sulfide gold-bearing ores by beneficiating method using a pressure generator for pulp microaeration
Research results on the study of the material composition of low-sulfide gold-bearing ore from the East Kazakhstan deposit are presented. The main non-metallic minerals of the original sample and beneficiation products include quartz, chlorite (clinochlore), carbonates (calcite and dolomite). Pyrite is present predominantly in the form of cubic crystals, sometimes in the form of clusters. The grain size is from 0.03 to 0.40.5 mm, the size of the clusters reaches several mm. Iron oxides (goethite, hydrogoethite) were formed on pyrite, possibly magnetite and ilmenite. The assay test found that the test sample contains 6.04 g/t Au and 7.9 g/t Ag. The content of sulfide minerals is 11.81%. A significant part of gold (85.51%) is in a finely disseminated state in sulfides, as well as in rock-forming minerals 1.22%. The paper presents the results of laboratory studies of the gold- ore beneficiation ability using gravity concentration processes. Gravity enrichment tests were performed on laboratory equipment: Knelson KS-MD 3 centrifugal concentrator, SKO-05 concentration table, and a two-chamber diaphragm jig (OML TsNIGRI type (jig of Central Geological Research Institute for Nonferrous and Precious Metals)). The obtained results of ore beneficiation on the concentration table show the possibility of obtaining a gravity concentrate with a gold grade of 48.9 g/t with a gold recovery of 40.08%. When separating the gravity concentrate on a jig, the gold extraction was 31.6% at a content of 51.4 g/t. It was found that that according to a single-stage beneficiation scheme in a centrifugal concentrator, a gold-bearing concentrate with a gold content of 58.3 g/t was obtained with a recovery of 80.6%. The dependence of the gold extraction and its content in the gravity concentrate on the output at the Knelson centrifugal concentrator is shown. The results of ore flotation beneficiation show the possibility of obtaining waste grade flotation tailings with a gold grade of 0.8 g/t. The extraction of gold into the combined concentrate, with a gold content of 49.7 g/t, is 88.88%.
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