| ArticleName |
Optical control of the copper-nickel matte conversion process using exhaust gas spectrometry |
| ArticleAuthorData |
PJSC MMC Norilsk Nickel, Norilsk, Russia
P. G. Paymushkin, Chief Manager of the Department of Technological Planning and Control of the Scientific and Technical Department, e-mail: PaymushkinPG@nornik.ru A. D. Kharin, Chief Manager of the Innovation Department, e-mail: KharinAD@nornik.ru
Ltd Datana, Moscow, Russia К. Yu. Pirozhenko, Business Analyst, e-mail: kpirozhenko@datana.ru R. D. Doronin, Business Analyst, e-mail: rdoronin@datana.ru |
| References |
1. Krupnov L. V., Midyukov D. O., Malakhov P. V. Ways to cover the raw material demand in the copper-nickel sector. Obogashchenie Rud. 2022. No. 2. pp. 37–41. 2. Krupnov L. V., Midyukov D. O., Datsiev M. S., Ilin V. B. Change in mineral resource supplies in production of heavy nonferrous metals in terms of copper and nickel. Gornyi Zhurnal. 2024. No. 3. pp. 10–16. 3. Krupnov L. V., Tsymbulov L. B., Malakhov P. V., Ozerov S. S. Operation of autogenous smelters at Nornickel’s Polar Division when processing raw materials with low energy potential. Tsvetnye Metally. 2022. No. 2. pp. 40–48. 4. Krupnov L. V., Malakhov P. V., Ozerov S. S., Midyukov D. O. Justification of the choice of technology for processing low-energy raw materials. Metallurgy of non-ferrous, rare and precious metals : Proceedings of the XV International Conference named after Corresponding Member of the Russian Academy of Sciences G. L. Pashkov. Krasnoyarsk : Nauchno-innovatsionniy tsentr, 2022. pp. 237–242. 5. Krupnov L. V., Rumyantsev D. V., Tsemekhman L. Sh., Ozerov S. S., Malakhov P. V. Investigation of the conditions for the formation of an intermediate layer in Vanyukov furnaces. Modern technologies for the production of non-ferrous metals : proceedings of the International Scientific Conference dedicated to the memory of S. S. Naboychenko. Yekaterinburg : Ural Federal University, 2023. pp. 52–61. 6. Krupnov L. V., Rumyantsev D. V., Popov V. A., Malakhov P. V., Kaverzin A. V. Technical solutions to improve the operating conditions of Vanyukov furnaces for processing man-made raw materials. Metallurg. 2024. No. 4. pp. 106–111. DOI: 10.52351/00260827_2024_4_106 7. Krupnov L. V., Pakhomov R. A., Kaverzin A. V., Kosov YA. I., Malakhov P. V. Study of the properties of the intermediate layer of Vanyukov furnaces in the processing of copper-nickel-containing raw materials. Non-ferrous metals and Minerals-2024 : Proceedings of the XII International Congress. Krasnoyarsk : Nauchno-innovatsionniy tsentr, 2024. pp. 883–888. 8. Krupnov L. V., Parkhomenko I. Yu. The use of SWOT analysis to select the technology for melting copper-nickel sulfide raw materials, taking into account various factors. Metallurgy of non-ferrous, rare and precious metals : Proceedings of the XVI International Conference named after Corresponding Member of the Russian Academy of Sciences G. L. Pashkov. Krasnoyarsk : Public institution Krasnoyarsk Regional House of Science and Technology of the Russian Union of Scientific and Engineering Public Associations, 2023. pp. 412–421. DOI: 10.47813/sfu.mnfrpm.2023.412-421 9. Itskovich E. L. Methods of rational production automation. Moscow : Infra-Inzheneriya, 2009. 256 p. 10. Krupnov L. V., Malakhov P. V., Ozerov S. S., Pakhomov R. A. Analyzing Russian cobalt metallurgy and ways to raise recovery. Tsvetnye Metally. 2023. No. 7. pp. 25–33. 11. Malakhov P. V., Krupnov L. V., Pakhomov R. A., Ozerov S. S., Rumyantsev D. V. Increased cobalt recovery during conversion to coppernickel matte. Metallurgy of non-ferrous, rare and precious metals : Proceedings of the XVI International Conference named after Corresponding Member of the Russian Academy of Sciences G. L. Pashkov. Krasnoyarsk : Public institution Krasnoyarsk Regional House of Science and Technology of the Russian Union of Scientific and Engineering Public Associations, 2023. pp. 301–317. DOI: 10.47813/sfu.mnfrpm.2023.301-317 12. Pakhomov R. A., Malakhov P. V., Krupnov L. V., Dymov I. M. Improving cobalt extraction through oxidative blowing of copper-nickel matte. 12th International Conference of Molten Slags, Fluxes and Salts (MOLTEN 2024): Proceedings. pp. 1187–1193. DOI: 10.62053/zfvs9836 13. Malakhov P. V., Pakhomov R. A., Yanbekova O. YU., Milichenko V. P. Application of quartzite in pyrometallurgical production of copper-nickel matte. Non-ferrous metals and Minerals – 2024 : Proceedings of the XII International Congress. Krasnoyarsk : Nauchno-innovatsionniy tsentr, 2024. pp. 918–922. 14. Vanyukov A. V., Utkin N. I. Complex processing of copper and nickel raw materials: a textbook for universities specializing in Metallurgy of non-ferrous metals. Chelyabinsk : Metallurgiya : Chelyabinsk otdelenie, 1988. 431 p. 15. Bezuidenhout G. A., Eksteen J. J., Akdogan G., Van Beek B. et al. Implementation of flame optical emission spectroscopy system for converter Fe end-point control associated with Ni – Cu – S – PGM converter mattes. Minerals Engineering. 2017. Vol. 100. pp. 132–143. DOI: 10.1016/j.mineng.2016.10.024 16. Rigby Joe. Controlling the processing parameters affecting the refractory requirements for Peirce-Smith converters and anode refining vessels. TMS Annual Meeting. 2005. Available at: https://www.researchgate.net/publication/215453242_Controlling_the_processing_parameters_affecting_the_refractory_requirements_for_Peirce-Smith_converters_and_anode_refining_vessels 17. Prietl T., Filzwieser A., Wallner S. Productivity increase in a Peirce-Smith converter using the COP KIN and OPC system. 13th TMS Annual Meeting, San Francisco. 2005. pp. 177–190. 18. Vásquez A., Pérez F., Roa M., Sanhueza I. et al. A radiometric technique for monitoring the desulfurization process of blister copper. Sensors. 2021. Vol. 21, Iss. 3. 842. DOI: 10.3390/s21030842 19. Myakalwar A. K., Sandoval C., Velásquez M., Sbarbaro D. et al. LIBS as a spectral sensor for monitoring metallic molten phase in metallurgical applications – a review. Minerals. 2021. Vol. 11, Iss. 10. 1073. DOI: 10.3390/min11101073 20. Wendt W., Alden M., Persson W. Application of emission and absorption spectroscopy for characterization of a copper converting process. Applied Spectroscopy. 1988. Vol. 42, Iss. 1. pp. 128–133. 21. Arias L., Torres S., Toro C., Balladares E. et al. Flash smelting copper concentrates spectral emission measurements. Sensors. 2018. Vol. 18, Iss. 7. DOI: 10.3390/s18072009 22. Toro C., Torres S., Parra V., Fuentes R. et al. On the detection of spectral emissions of iron oxides in combustion experiments of pyrite concentrates. Sensors. 2020. Vol. 20, Iss. 5. DOI: 10.3390/s20051284 23. Angus W. R. The identification of molecular spectra. Nature. 1941. Vol. 148. p. 240. DOI: 10.1038/148240A0 24. Mputu Kanyinda Jean-Noël, Kaniki Tshamala Arthur, Baele Jean-Marc. LIBS technology and its application: overview of the different research areas. Journal of Environmental Science and Public Health. 2020. Vol. 4. pp. 134–149. DOI: 10.26502/jesph.96120090 |