ENVIRONMENT PROTECTION TECHNOLOGY | |
ArticleName | Sphene concentrate cleaning from radioactive nuclides in beneficiation stage |
ArticleAuthor | Nikolayev А. I., Melnik N. А., Chekanova Yu. V., Petrov V. B., Dmitriyev S. V. |
ArticleAuthorData | I. V. Tananaev Institute of Chemistry and Technology of Rare Elements and Mineral Raw Materials, Kola Science Center of RAS (Russia): Nikolayev А. I., Deputy Director on Scientific Work, Corresponding Member of RAS, Professor, nikol_ai@chemy.kolasc.net.ru
REC «Mekhanobr-Tekhnika» (Russia): |
Abstract | The issues related to decrease of sphene concentrate radioactive nuclides content in beneficiation stage are considered, the main radioactive nuclide being thorium-232. Sphene concentrate from apatite-nepheline ores mined in the Kola Peninsula is distinguished by increased concentration of radioactive nuclides, limiting its application in welding materials and for other purposes. The source of radioactive nuclides in concentrate is perovskite mineral impurity. Decrease in radioactive nuclides content in beneficiation stage was traced by means of mineralogical, radiometric and X-ray phase analyses methods. Dry electromagnetic separation and coronatype electrostatic separation application at increased temperatures permitted to decrease effective radioactivity of concentrate to acceptable level, allowed for application in welding materials. Sphene total losses at the stage of concentrate cleaning from perovskite amounted to 10.6 %. The achieved results require further optimization of electrostatic separation operations regimes. Considering feed material fine size (99 % of size fraction minus 0.2 mm), the results of dry electromagnetic separation and electrostatic separation may be considered wholly satisfactory. This opens a prospect for further improvement of indices in sphene concentrate dry cleaning from radioactive nuclides, as well as commercial implementation of this technology. |
keywords | Apatite-nepheline ores, sphene concentrate, perovskite, radioactive nuclides, electromagnetic separation, corona-type electrostatic separation |
References | 1. Pleshakov Yu. V., Alekseev A. I., Brylyakov Yu. Ye., Nikolayev A. I. Obogashchenie Rud, 2004, No. 2, pp. 15–17. |
Language of full-text | russian |
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