阿克托别矿床难熔含金矿石物质成分研究

M. Barmenshinova, I. Motovilov, Sh. Telkov, R. Omar
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摘要

对含金矿石物质成分的研究包括确定定量的化学和矿物成分、贵金属形态、粒度成分以及物理和机械性能,从而为开发有效的复合富集技术选择方向。这项工作致力于研究阿克托别矿床难熔含金矿石的物质成分。经测定,金的含量为 1.55-1.6 克/吨,银的质量分数为 42-43 克/吨,硫含量较低,分别为 1-1.1%。有色金属中,锌的含量为 0.17%,铅的含量为 0.15%,有害杂质锑和砷的含量微乎其微,分别为 0.01%和 0.05%。矿石样本的矿物成分相对不复杂:以石英、钾长石、方解石和云母为代表的成岩矿物占绝大多数。矿石矿物中黄铁矿占 10%,褐铁矿占 0.5%,方铅矿占 0.15%-0.2%,闪锌矿占 0.17%-0.2%,还有金。对矿石的物理和机械性能进行了测定。根据压碎性类别,该矿石属于中等硬度类别。根据邦德法,确定了初始矿石的球磨 "网络 Wi 指数 "为 19.3 kW∙h/t∙μm0.5。根据获得的材料成分研究数据,进一步的研究将针对重力富集和浮选富集。
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Study of the material composition of refractory gold-bearing ore from the Aktobe deposit
The study of the material composition of gold-bearing ores includes the determination of quantitative chemical and mineral composition, forms of noble metals, granulometric composition, and physical and mechanical properties to choose the direction for the development of an effective technology of their complex enrichment. This work is devoted to the study of the material composition of refractory gold-bearing ore of Aktobe deposit. It was determined that the content of gold is 1.55-1.6 g/t, the mass fraction of silver is 42-43 g/t, and the content of sulphur is low and is 1-1.1% respectively. Of non-ferrous metals, zinc 0.17%, and lead 0.15% are present in insignificant amounts, and the content of harmful impurities antimony and arsenic are insignificant and amounted to 0.01 and 0.05%. The ore sample has a relatively uncomplicated mineral composition: rock-forming minerals represented by quartz, potassium feldspar, calcite, and mica predominate significantly. Ore minerals are represented by pyrite up to 10 %, limonite up to 0.5 %, galena 0.15-0.2 %, sphalerite 0.17-0.2 % and gold. Physical and mechanical properties of the ore were determined. According to the category of crushability, the ore belongs to the category of medium hardness. According to Bond's method, the "index of network Wi" of ball milling was determined for the initial ore, which was 19.3 kW∙h/t∙μm0.5. Based on the obtained data on the study of material composition, further research will be directed to the study of gravity and flotation enrichment.
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