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Determination of optimal technological modes for obtaining manganese alloys from poor carbonate and oxide ores in a jet-emulsion unit

https://doi.org/10.17073/0368-0797-2022-8-531-538

Abstract

The paper presents the results of development and research of a new resource-saving technology for processing poor oxide and carbonate manganese ores in a unit of jet-emulsion type. The basic principles of creating a jet unit and the technology of processing pulverized manganese ores are considered. For the preliminary reduction of manganese from higher oxides or carbonates decomposition, as well as the removal of moisture from the ore, it is proposed to use a reducing gas, which is a product of the implementation of manganese reduction technology in jet-emulsion unit. Thus, the authors propose to close the process, that is, to create a consistent flow of substance and energy passing through the main jet-emulsion unit and the preparatory unit of the fluidized bed. The main task of calculating the proposed technology is to determine the consumption of crude ore in the fluidized bed unit in order to obtain a given yield of the intermediate product and at the same time to ensure the possibility of complete conversion of high oxides or carbonates of crude ore into lower oxides by reducing gas produced in the main unit. To solve this problem, an optimization task was set and implemented. The first stage is selection of composition and consumption of the reducing gas and determination of consumption of the initial manganese ore, which provides the output of a given amount of the intermediate product. The second stage is solution of the optimization problem for output and composition of the gas, which should ensure the recovery process in the second unit. The paper presents the results of calculating the processing technology in the jet-emulsion unit for oxide ore of the Selezen’skoe and carbonate ore of the Usinskoe deposits. A comparative analysis of two options for processing manganese ores by the proposed technology and by the technology without preliminary recovery and roasting was carried out. The proposed technology of processing manganese ores in a closed-cycle jet-emulsion unit allows one to significantly reduce the specific costs of materials, increase productivity, and significantly reduce the energy intensity of the process compared to the technology of processing poor manganese ores without preliminary reduction or roasting.

About the Authors

I. A. Rybenko
Siberian State Industrial University
Russian Federation

Inna A. Rybenko, Dr. Sci. (Eng.), Prof., Head of the Chair of Applied Information Technology and Programming

42 Kirova Str., Novokuznetsk, Kemerovo Region – Kuzbass 654007, Russian Federation



F. Kongoli
FLOGEN Technologies Inc.
United States

Florian Kongoli, Doctor of Philosophy, President

3422 Old Capitol Trail No. 791 Wilmington, DE USA, 19808-6192



References

1. Smirnov L.A., Tigunov L.P. Manganese in his fatherland. Metally Evrazii. 1999, no. 6, pp. 20−23. (In Russ.).

2. Emlin B.I., Gasik M.I. Handbook of Electrothermal Processes. Moscow: Metallurgiya, 1978, 288 p. (In Russ.).

3. Tolstoguzov N.V. Theoretical Foundations and Technology of Melting of Siliceous and Manganese Alloys. Moscow: Metallurgiya, 1992, 239 p. (In Russ.).

4. Dedov P.I., Svitov V.S. Processing Plant of Carbonate Manganese Ores. Sverdlovsk: izd. Uralmekhanobr, 2004, 400 p. (In Russ.).

5. Nokhrina O.I., Rozhikhina I.D., Proshunin I.E. Obtaining High-Quality Concentrates during Manganese Ores Dressing. Novokuznetsk: izd. SibSIU, 2019, 182 p. (In Russ.).

6. Litvintseva E.G., Tigunov L.P., Bronitskaya E.S., etc. Development of effective methods of dressing and processing of oxidized and carbonate ores from Russian manganese deposits. In: State of Russian Manganese Ore Base and Issues of Providing the Industry with Manganese. Krasnoyarsk: KNIIGiMS, 2001, pp. 138–143. (In Russ.).

7. Ding P., Liu Q.J., Pang W.H. A review of manganese ore beneficiation situation and development. Applied Mechanics and Materials. 2013, vol. 380-384, pp. 4431–4433. https://doi.org/10.4028/www.scientific.net/AMM.380-384.4431

8. Wang Z., Yang D., Yang K., Guo L., Tan J. A green enriching process of Mn from low grade ore of manganese carbonate. Applied Mechanics and Materials. 2014, vol. 644-650, pp. 5427–5430. https://doi.org/10.4028/www.scientific.net/AMM.644-650.5427

9. Tsymbal V.P., Kozhemyachenko V.I., Rybenko I.A., Padalko A.G. Olennikov A.A. Usage of the principles of self-organization and dissipative structures in a new jet-emulsion metallurgical process. Izvestiya. Ferrous Metallurgy. 2015, vol. 45, no. 8, pp. 572−577. https://doi.org/10.17073/0368-0797-2015-8-572-577

10. Tsymbal V.P., Kozhemyachenko V.I., Rybenko I.A., Mochalov S.P., Padalko A.G., Kalashnikov S.N., Krasnoperov S.Yu., Ermakova L.A., Olennikov A.A. Background and principles of self-organizing jet-emulsion metallurgical unit. IOP Conference Series: Materials Science and Engineering. 2016, vol. 150, article 012018. https://doi.org/10.1088/1757-899X/150/1/012018

11. Rybenko I.A. The optimization of the technologies in the jetemulsive metallurgical plant with the use of the methodology and instrumented system of the simulation. Ferrous Metallurgy. Bulletin of Scientific, Technical and Economic Information. 2017, no. 3, pp. 60−66. (In Russ.).

12. Rybenko I.A. Development of theoretical foundations and resource-saving technologies for direct reduction of metals using the method and instrumental system of modeling and optimization: Extended Abstract of Dr. Sci. Diss. Novokuznetsk, 2018, 40 p. (In Russ.).

13. Nicolis G., Prigogine I. Self-Organization in Non-Equilibrium Systems. New York: Wiley, 1977, 491 p.

14. Haken H. Synergetics. An Introduction. Berlin: Springer-Verlag, 1978, 351 p.

15. Prigogine I., Stengers I., Toffler A. Order Out of Chaos. Man’s New Dialogue with Nature. London: Heinemann, 1984.

16. Kondepudi D., Prigogine I. Modern Thermodynamics. John Wiley & Sons, Ltd, 2015, 523 р.

17. Gladyshev G.P. Hierarchical thermodynamics rules the world to the extent of its applicability. Norwegian Journal of Development of the International Science. 2019, no. 27, pp. 60−65.

18. Tsymbal V.P., Mochalov S.P., Shakirov K.M., Aizatulov R.S., Kustov B.A., Mikheev N.I., Toropov A.I. Process and unit for continuous metal refinement. Pat. USA 5.558.695. 1995.

19. Yashin V.D., Kolpak V.P., Dmitrienko V.I., etc. Selezenskaya area of manganese ore manifestations and prospects for their use at JSC Zapsibmetkombinat. In: State of Russian Manganese Ore Base of Russia and Issues of Providing the Industry with Manganese. Krasnoyarsk: KNIIGiMS, 2001, pp. 44–45. (In Russ.).


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For citations:


Rybenko I.A., Kongoli F. Determination of optimal technological modes for obtaining manganese alloys from poor carbonate and oxide ores in a jet-emulsion unit. Izvestiya. Ferrous Metallurgy. 2022;65(8):531-538. (In Russ.) https://doi.org/10.17073/0368-0797-2022-8-531-538

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ISSN 0368-0797 (Print)
ISSN 2410-2091 (Online)