新疆阿尔泰地区某花岗伟晶岩型高纯石英资源工艺矿物学特征

Characteristics on process mineralogy of a granitic pegmatite−type high purity quartz resource in Altai region, Xinjiang

  • 摘要: 以新疆阿尔泰地区某花岗伟晶岩型石英样品为研究对象,借助光学显微镜、化学分析、矿物自动图像分析系统(MLA)等分析测试手段,对该样品开展了详细的工艺矿物学研究,查明了样品的物质组成及含量、结构构造、主要矿物粒级分布、主要杂质元素含量以及石英颗粒内部的包裹体特征等内容,旨在为该地区花岗伟晶岩型石英资源的综合利用提供支撑。结果表明,该样品中石英矿物含量为36.38%,主要脉石矿物为钠长石,其次为白云母。钠长石粒级分布与石英十分相似,是后续选矿作业中需主要分离去除的矿物。白云母的粒级分布较石英更细,在后续选矿中不易与石英分离,需设计必要的分离手段针对性去除。石英颗粒内部可见流体包裹体和少量矿物包裹体,流体包裹体以气液两相类型为主。该样品经选矿提纯后可获得SiO2含量为99.9978%(4N7)的产品,达到高纯石英矿规定的纯度要求,其主要杂质元素为Al、Ti和Na,其次为Li、B、Ca和K。

     

    Abstract: A detailed process mineralogical study was conducted on a granitic pegmatite−type quartz sample from the Altai region of Xinjiang, by means of optical microscopy, chemical analysis, and mineral liberation analyser (MLA). The material composition and content, textural and structural characteristics, grain size distribution of major minerals, content of main impurity elements, and characteristics of inclusions in quartz were determined, aiming to service for the comprehensive utilization of granitic pegmatite−type quartz resources in the region. The results showed that the mineral content of quartz in the sample was 36.38%. The main gangue mineral is albite, followed by muscovite. The grain size distribution of albite is very similar to that of quartz, so it is the main mineral that needs to be separated and removed in subsequent beneficiation operations. The grain size distribution of muscovite is finer than that of quartz, thus they are difficult to separate from quartz in subsequent beneficiation. Therefore, necessary separation methods need to be designed for targeted removal. Fluid inclusions and a small amount of mineral inclusions can be observed inside the quartz, and the fluid inclusions are mainly of gas−liquid two−phase type. After mineral processing and purification, the product with a SiO2 content of 99.9978% (4N7) can be obtained, which meets the requirement in purity for high−purity quartz ore. The main impurity elements are Al, Ti, and Na, followed by Li, B, Ca, and K.

     

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