Potentiality of Obtaining Mica Flotation Concentrate from Kaolinised Granite

IF 1.2 4区 工程技术 Q3 MINING & MINERAL PROCESSING Archives of Mining Sciences Pub Date : 2023-07-20 DOI:10.24425/AMS.2019.129365
Ž. Sekulić, Slavica Mihajlović, J. Stojanovic, Branislav Ivošević, Vladan Kašić, M. Ignjatović
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引用次数: 2

Abstract

This study shows the results of flotation concentration of mica minerals from kaolinised granite taken from the “Bašića bare” deposit – Kobaš, Srbac, The Republic of Srpska (B&H). Mineralogical composition of kaolinised granite is as follows: kaolinite, feldspar, quartz, and mica. After separating >0.630 mm, and <0.043 mm size class where kaolinite is concentrated, the rest is –0.630+0.043 mm class containing quartz, feldspar and mica. The mica concentrate was obtained by the flotation concentration, while feldspar and quartz were in the flotation underflow. According to the mineralogical analysis, the most abundant minerals are mica and chlorite/clays, while quartz and feldspar occur much less, and accessory minerals are represented in trace. The semi-quantitative mineralogical analysis obtained by the X-ray powder diffraction (XRPD) method of the mica concentrate amount to: mica ≈55%, chlorite/clays ≈35%, quartz ≈5%, feldspars (plagioclase and K-feldspars combined) ≈5%.
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从高岭土花岗岩中获得云母浮选精矿的潜力
本研究显示了从“Bašića裸”矿床——塞族共和国(B&H)Srbac Kobaš的高岭土化花岗岩中浮选富集云母矿物的结果。高岭土化花岗岩的矿物组成如下:高岭石、长石、石英和云母。在高岭石集中的0.630 mm和0.043 mm粒级分离后,其余为–0.630+0.043 mm级,包含石英、长石和云母。云母精矿是通过浮选浓缩获得的,长石和石英则在浮选底流中。根据矿物学分析,最丰富的矿物是云母和绿泥石/粘土,而石英和长石的含量要少得多,副矿物以微量存在。通过X射线粉末衍射(XRPD)方法获得的云母精矿的半定量矿物学分析结果为:云母≈55%,绿泥石/粘土≈35%,石英≈5%,长石(斜长石和钾长石组合)≈5%。
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来源期刊
Archives of Mining Sciences
Archives of Mining Sciences 工程技术-矿业与矿物加工
CiteScore
2.40
自引率
16.70%
发文量
0
审稿时长
20 months
期刊介绍: Archives of Mining Sciences (AMS) is concerned with original research, new developments and case studies in mining sciences and energy, civil engineering and environmental engineering. The journal provides an international forum for the publication of high quality research results in: mining technologies, mineral processing, stability of mine workings, mining machine science, ventilation systems, rock mechanics, termodynamics, underground storage of oil and gas, mining and engineering geology, geotechnical engineering, tunnelling, design and construction of tunnels, design and construction on mining areas, mining geodesy, environmental protection in mining, revitalisation of postindustrial areas. Papers are welcomed on all relevant topics and especially on theoretical developments, analytical methods, numerical methods, rock testing, site investigation, and case studies.
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