The content of natural radionuclides Ra226, Th232, K40 in titanium ores and host rocks of the Pizhemskoye deposit

A. Makeyev
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Abstract

Background. The value of natural radionuclide content in ores is a fundamental characteristic of any ore deposit, determining the possibility of studying, developing and enriching these ores, as well as manufacturing commercial products on their basis.Aim. To evaluate the content of natural radionuclides in the rocks and ores of the Pizhem titanium deposit and to determine their mineral concentrators.Materials and methods. A study of 15 core samples from wells within the Pizhem titanium deposit was carried out in the laboratories of IGEM RAS and VIMS using an “Ortec-65195-P/DSPecPlus” semiconductor gamma spectrometer.Results. For the first time, a radiation safety assessment was carried out and the concentration of Ra226, Th232 and K40 natural radionuclides in the titanium ores and host rocks of the Pizhemskoye deposit (the Middle Timan) was determined. The mineral concentrators for Ra226, Th232 and K40 were found to be zircon, monazite (kularite) and hydromuscovite-illite, respectively. The lowest content of radionuclides was established for quartz (D2pz) and quartz-kaolinite (PR3mr3) sandstones of glass quality. The titanium ores of the deposit belong to the I class of mineral raw materials (Aeff < 0.74 kBq/kg), thereby being completely harmless to humans.Conclusion. The low content of radionuclides in the studied ores allows them to be safely enriched, and the overburden sandstones of glass quality to be used without restrictions.
皮切姆斯科耶矿床钛矿石及寄主岩中天然放射性核素Ra226、Th232、K40的含量
背景。矿石中天然放射性核素含量的价值是任何矿床的一个基本特征,决定了研究、开发和富集这些矿石的可能性,以及在此基础上制造商业产品的可能性。评价皮泽姆钛矿岩石和矿石中天然放射性核素的含量,确定其矿物富集物。材料和方法。利用“Ortec-65195-P/DSPecPlus”半导体伽马能谱仪,在IGEM RAS和VIMS实验室对Pizhem钛矿床内15口井的岩心样品进行了研究。首次进行了放射性安全评价,测定了中提曼地区皮切姆斯科耶矿床钛矿石和承载岩中天然放射性核素Ra226、Th232和K40的浓度。Ra226、Th232和K40的选矿物分别为锆石、独居石(库拉石)和水白云母伊利石。玻璃质石英(D2pz)和石英-高岭石(PR3mr3)砂岩的放射性核素含量最低。该矿床的钛矿石属于I类矿物原料(Aeff < 0.74 kBq/kg),对人体完全无害。所研究的矿石中放射性核素含量低,可以安全富集,玻璃质覆层砂岩可以不受限制地使用。
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