哈萨克斯坦有前景的铜矿石矿物组成研究

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING
S. Kvon, V. I. Nesterova, A. Omarova, V. Kulikov, Y. Chsherbakova
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引用次数: 0

摘要

本文简要概述了哈萨克斯坦铜生产中存在的问题。研究表明,目前我国铜冶炼生产的主要问题是矿物组成复杂的低品位矿石的掺入。现有技术主要针对铜含量较高的矿石,有必要对现有富集冶炼技术进行调整。为了确定哈萨克斯坦共和国一些有希望的含铜矿石样品的矿物组成,进行了x射线相分析。利用DIFFRAC进行了矿物含量的鉴定和定量计算。EVA和DIFFRAC。TOPAS的程序。结果表明,样品中主要含铜矿物为黄铜矿、斑铜矿、黄铜矿- 1族;孔雀石、青金石、无孔石、假孔雀石、绿橄榄石-第2组。废岩主要矿物有:石英、白云母(云母)、绿泥石(层状硅酸盐)、钠长石(长石)、黄铁矿、方解石、钠长石(长石)和石膏。在此基础上,确定了所研究样品的矿物组成,并得出矿石的优势性质。结果表明,3个样品的优势性质为硫化物,1个样品的优势性质为氧化物。获得的矿物组成和矿石性质的结果使我们能够就最有效的矿石富集和进一步处理方案提出实际建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of the mineral composition of promising copper ores of the Republic of Kazakhstan
The article provides a brief overview of the problems of copper production in Kazakhstan. It is shown that the main current problem of copper-smelting production is the involvement of low-grade ores of complex mineral composition. Existing technologies are focused on the processing of ore with higher copper content, accordingly, it is necessary to adjust the existing enrichment and smelting technologies. To determine the mineral composition of some samples of promising copper-bearing ores of the Republic of Kazakhstan, an X-ray phase analysis was carried out. The identification and quantitative calculation of the mineral content were carried out using the DIFFRAC.EVA and DIFFRAC.TOPAS programs. It was shown that the main copper-bearing minerals in the samples are: chalcopyrite, bornite, chalcosiderite - group 1; malachite, lapis lazuli, atacamite, pseudomalachite, brochantite - group 2. The waste rock is represented by the following minerals: quartz, muscovite (mica), chlorite (layered silicate), albite (feldspar), pyrite, calcite, sodalite (feldspathoid), and gypsum. Based on the analysis, the mineral composition of the studied samples was established and a conclusion was made about the dominant nature of the ore. It is shown that in three samples the predominant nature of the ore is sulfide, in one sample it is oxide. The obtained results of the mineral composition and nature of the ore allow us to make practical recommendations on the most effective scheme for ore enrichment and further processing.
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