Журналы →  Obogashchenie Rud →  2018 →  №3 →  Назад

BENEFICIATION TECHNOLOGY
Название Resource-saving dressing technology for apatite-nepheline ores of the Khibiny massif
DOI 10.17580/or.2018.03.06
Автор Tereshchenko S. V., Marchevskaya V. V., Shibaeva D. N., Aminov V. N.
Информация об авторе

Mining Institute of the Kola Science Centre of the Russian Academy of Sciences (Apatity, Murmansk region, Russia:

Tereshchenko S. V., Head of Laboratory, Doctor of Engineering Sciences, tereshchenko@goi.kolasc.net.ru
Marchevskaya V. V., Leading Researcher, Candidate of Engineering Sciences, Associate Professor, vvm@goi.kolasc.net.ru
Shibaeva D. N., Researcher, Candidate of Engineering Sciences

 

Petrozavodsk State University (Petrozavodsk, Russia):
Aminov V. N., Head of Chair, Doctor of Engineering Sciences

Реферат

The example of apatite-nepheline ores of the Oleniy Ruchey deposit is used to demonstrate the environmental and process-design advantages of the technology that envisages the application of the quality management method for ores entering the concentrating plant based on the principle of separation. It is shown that the use of radiometric coarse separation at the initial processing stage ensures removal of over 30 % of rock refuse of increased strength from the ore mass of both low-grade and run-of-mine apatite-nepheline ores. It was found that removal of barren rock containing less than 1% of phosphorus pentoxide during the X-ray luminescence separation process, as compared to the existing basic option, allows reducing the energy consumption for crushing and grinding processes by 40 % and 5 %, respectively, per 1 ton of ore processed; increasing the content of phosphorus pentoxide in the ore by 1.5 and increasing the ratio of the contents of apatite and other calcium-containing minerals by 1.8, which contributes to increased selectivity of apatite flotation; improving the yield of apatite concentrate by 39–55 % rel. and reducing the amount of flotation tailings by 5–19 % rel. per 1 ton of ore processed; as well as extending the service life of the tailings storage facility by 1.4–1.9, depending on the production output. It is shown that coarse rock tailings sorted out in the process of X-ray luminescence separation may be disposed of as rubble in the construction of bases for permanent road surfaces, pavements and bases for pedestrian roads and grounds, as well as in landscaping and land improvement.

Ключевые слова Environmental problems of the Arctic region, separation principle in ore quality management, preliminary dressing, X-rayluminescent separation, flotation, process indicators, tailings storage facility
Библиографический список

1. Sokolov Yu. I. Arctic: to the problem of accumulated environmental damage. Arktika: Ekologiya i Ekonomika. 2013. No. 2 (10). pp. 18–27.
2. Dodin D. A. Mineral resources of the Arctic. Moscow: Geoinformmark, 2005. 176 p.
3. Slavikovskiy O. V., Slavikovskaya Yu. O. The main directions of development of physical and technical geotechnologies. Izvestiya Vysshikh Uchebnykh Zavedeniy. Gornyi Zhurnal. 2002. No. 3. pp. 111–116.
4. Chanturiya V. А., Vaisberg L. A., Kozlov А. P. Promising trends in investigations aimed at all-round utilization of mineral raw materials. Obogashchenie Rud. 2014. No. 2. pp. 3–9. DOI: 10.17580/or.2014.02.01.
5. Anufrieva S. I., Bronitskaya E. S., Litvintsev E. G., Ozhogina E. G., Petrova N. V., Rogozhin A. A., Sokolova V. N. Experiments and prospects of modern technologies application of hard concentrating ores processing. Razvedka i Okhrana Nedr. 2011. No. 5, pp. 70–75.
6. Chanturiya V. A. Perspectives of sustainable development of the Russian mining industry. Progressive technologies of the complex mineral raw materials processing. Under ed. of V. A. Chanturiya. Moscow, «Ruda i Metally» Publishing House, 2008. pp. 5–22.
7. Kamnev E. N., Seleznev A. V., Rubtsov S. K., Silkin A. A. Contribution of Design-Prospecting and Scientific-Research Institute of Industrial Technology in development and optimization of technological processes at Navoi Mining and Metallurgical Combinat. Gornyi Zhurnal. 2011. No. 8. pp. 38–43.
8. Novikov V. V., Rudakov V. V. Radiometric technologies application between ore mining and ore processing stages. Obogashchenie Rud. 2014. No 4. pp. 8–13.
9. Dehler M. Optical sorting of quartz gravel to reduce the iron content. Aufbereitungs Technik. 2006. Vol. 47, No. 8–9. pp. 6–8.
10. Knapp H., Neudert K., Schropp C., Wotruba H. Viable application of sensor based sorting for the processing of mineral resource. ChemBioEng Reviews. 2014. Vol. 1, No. 3. pp. 86–95.
11. Broicher H. F. Ore and waste identification and quality control by means of laser induced fluorescence. The Canadian Mining and Metallurgical Bulletin. 1999. Vol. 92, No. 1034. pp. 59–63.
12. TOMRA mineral and ore sorting equipment for more profit [Electronic resource]. URL: https://www.tomra.com/en/sorting/mining/mining-technology (accessed: 19.03.2018).
13. Tereshchenko S. V., Marchevskaya V. V., Chernousenko E. V., Rukhlenko E. D., Pavlishina D. N., Smolnyakov А. А. Complex ore pretreatment in technology of low grade apatite-nepheline ore concentration. Gornyi Informatsionnoanaliticheskiy Byulleten. 2015. No. 1. pp. 35–41.
14. New Khibiny apatite deposits. Under ed. of E. A. Kamenev, D. A. Mineev. Moscow: Nedra, 1982. 182 p.
15. Tereshchenko S. V., Denisov G. A., Marchevskaya V. V. Radiometric methods of mineral raw materials sampling and separation. St. Petersburg: MANEB Publ., 2005. 264 p.
16. Zhuravleva N. V., Ismagilov Z. R., Ivanykina O. V. Integrated assessment of the toxicity of mining waste using chemical, physicochemical and biological methods. Gornyi Informatsionno-analiticheskiy Byulleten. 2014. No. 7. pp. 352–361.
17. Grekhnev N. I. Mineral waste of mining enterprises — economic and environmental problems of subsoil use in the Far East region. Gornyi Informatsionno-analiticheskiy Byulleten. 2014. No. 7. pp. 337–343.
18. Funderatov Yu. V., Svinin V. S. Industrial safety, rational use and protection of subsoil in JSC «Apatit». Gornyi Zhurnal. 2004. No. 11. pp. 7–11.
19. Razumov K. A., Perov V. A. Designing of dressing plants. Moscow: Nedra, 1982. 504 p.

Language of full-text русский
Полный текст статьи Получить
Назад