钛原料的一种新型成因——钛曼伪四元-亮色烯-石英矿石:工业发展前景

IF 0.8 Q3 ENGINEERING, PETROLEUM Georesursy Pub Date : 2023-09-30 DOI:10.18599/grs.2023.3.10
Alexander B. Makeyev, Sergey G. Skublov, Olga L. Galankina, Evgeny A. Vasiliev, Anna O. Krasotkina
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引用次数: 0

摘要

俄罗斯最大的两个矿床——亚列格斯科耶和皮切姆斯科耶属于同一成因类型;热液变质原生矿床。它们位于同一个提曼结构中,彼此之间的距离不超过230公里。根据钛白粉的总核准储量和预测资源量,它们接近全俄的60%,并将在不久的将来形成俄罗斯工业钛原料的基础。从工艺矿物学的角度,详细研究了两种主要钛矿相亮色辉石和假绿辉石的形态特征、内部结构、颗粒化学组成、TiO2多晶物及其矿物微包裹体的组成。在中国科学院前寒武纪地质年代学研究所,用SEM-EDS方法分析了亮绿辉石和假绿辉石抛光制剂中所有矿物相的组成,在(3µk)处获得了147个化学分析结果,并在(20×20µk)处扫描了许多锐钛矿、亮绿辉石和假绿辉石抛光颗粒的图像。在亮辉石颗粒本身中,以包裹体的形式诊断和表征了12个矿物相:假辉石、金红石、锐钛矿、石英、水白云母-伊利石、高岭石、菱铁矿、锆石、xenotime、黄铁矿、萤光石、独居石和kularite。通过拉曼光谱和x射线衍射分析验证了TiO2的多晶态。新的证据表明钛铁矿通过中间相铁金红石和伪金红石发生水热转化为亮辉石;亮绿石颗粒本身的金红石晶体增大;研究颗粒内存在菱铁矿、萤光石等次生晶体。
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Pseudorutile-leucoxene-quartz ores of Timan ‒ a new genetic type of titanium raw materials: prospects for industrial development
The two largest deposits of Russia – Yaregskoye and Pizhemskoye belong to the same genetic type; hydrothermal-metamorphic indigenous deposits. They are located in the same Timan structure at a distance of no more than 230 km from each other. According to the total approved reserves and forecast resources of titanium dioxide, they are approaching 60% of the all-Russian and will form the basis of industrial titanium raw materials used in Russia in the near future. In the interests of technological mineralogy, morphological features, internal structure, chemical composition of grains of the two main titanium mineral phases ‒ leucoxene and pseudorutile, TiO2 polymorphs, as well as the composition of mineral microinclusions in these phases have been studied in detail. The compositions of all mineral phases in polished preparations of leucoxene and pseudorutile were analyzed by SEM-EDS method at the Institute of Geology and Geochronology of the Precambrian of the RAS, 147 chemical analyses were obtained at the point (3 µk) and many images of polished grains of anatase, leucoxene and pseudorutile were scanned over the area (20×20 µk). In the leucoxene grains themselves, 12 mineral phases were diagnosed and characterized in the form of inclusions: pseudorutile, rutile, anatase, quartz, hydromuscovite-illite, kaolinite, siderite, zircon, xenotime, pyrite, florencite, monazite and kularite. TiO2 polymorphs are verified by Raman spectroscopy and X-ray diffraction analysis. New evidence has been obtained that the transformation of ilmenite into leucoxene occurs hydrothermally through intermediate phases ‒ Fe-rutile and pseudorutile; the enlargement of rutile crystals in the leucoxene grain itself is shown; the presence of secondary crystals of siderite, florencite and others inside the studied grains.
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来源期刊
Georesursy
Georesursy ENGINEERING, PETROLEUM-
CiteScore
1.50
自引率
25.00%
发文量
49
审稿时长
16 weeks
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