Investigation of the possibility of using depleted bauxite in alumina production at the Pavlodar aluminum plant

Authors

  • G.K. Abikenova LLP «Scientific and Research Engineering Center ERG»
  • D.D. Dauletov LLP "Scientific and Research Engineering Center ERG"
  • S.A. Tverdokhlebov LLP "Scientific and Research Engineering Center ERG"
  • I.S. Danchenko LLP "Scientific and Research Engineering Center ERG"

DOI:

https://doi.org/10.31643/2025/6445.20

Keywords:

depleted bauxite, alumina production, sintering process.

Abstract

The topic of processing low-grade or low-quality bauxite is highly relevant in modern conditions due to the gradual depletion of high-quality bauxite reserves. Consequently, there is an increasing need to explore alternative sources of raw materials for aluminum production and its derivatives. Processing low-quality bauxite ores can become an effective solution, reducing dependence on limited high-quality resources and ensuring production stability in the long term. Such research has significant potential for developing technologies capable of optimizing aluminum production processes and enhancing its competitiveness in the global market. Bauxites from the Krasnooktyabrsky bauxite ore management with low aluminum oxide content (37 – 40% by mass) and a silicon module up to 2.0 are considered as potential blending materials for sintering bauxite in alumina production due to the depletion of high-quality bauxite reserves. This article presents the results of research on their processing into alumina at the Pavlodar Aluminum Plant. Laboratory and pilot-scale studies were conducted to assess the feasibility of using low-quality bauxite in alumina production and to determine the techno-economic indicators of processing. The research results confirmed the technological feasibility of processing depleted bauxites with a silicon module of 1.95 - 2.0 in the sintering section while maintaining the quality of sinter and extracting useful components. The maximum proportion of blending of depleted bauxites with the main bauxite was determined not to exceed 50%.

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Author Biographies

G.K. Abikenova, LLP «Scientific and Research Engineering Center ERG»

Candidate of Technical Sciences, Acting General Director LLP «Scientific Research Center ERG», Industrial zone East, Building 65, 140000, Pavlodar, Kazakhstan.

D.D. Dauletov, LLP "Scientific and Research Engineering Center ERG"

Master's degree in the field of enrichment, Head of the laboratory,  LLP «Scientific Research Center ERG», Industrial zone East, Building 65, 140000, Pavlodar, Kazakhstan.

S.A. Tverdokhlebov, LLP "Scientific and Research Engineering Center ERG"

Engineer – chemical technologist, LLP «Scientific Research Center ERG», Industrial zone East, Building 65, 140000, Pavlodar, Kazakhstan.

I.S. Danchenko, LLP "Scientific and Research Engineering Center ERG"

Engineer – chemical technologist, engineer – technologist, LLP «Scientific Research Center ERG», Industrial zone East, Building 65, 140000, Pavlodar, Kazakhstan.

References

Golik VI, Razorenov YuI, Zakharov EI, Abramkin NI. Osvoyeniye zabalansovykh zapasov metallicheskikh rud [Development of off-balance reserves of metal ores]. Zhurnal «Izvestiya Tul'skogo gosudarstvennogo universiteta». Nauki o Zemle. Tul'skiy gosudarstvennyy universitet geonauk [Magazine "Izvestia Tula State University". Earth Sciences. Tula State University of Geosciences]. 2018; 3:150-162. (in Russ).

Chen Y, Zhang T, Lv G, Yang X. Extraction and utilization of valuable elements from bauxite and bauxite residue. A review. 2022; 109:228-237. http://dx.doi.org/10.1007/s00128-022-03502-w

Qi H, Gong N, Zhang SQ, Li J, Yuan GL, Liu XF. Research progress on the enrichment of gallium in bauxite. Ore Geology reviews. 2023, 160:105609. https://doi.org/10.1016/j.oregeorev.2023.105609

Abzhapparov A. Physico-chemical fundamentals and technology for complex processing of low-quality alumina - containing. 1998. https://www.elibrary.ru/item.asp?id=30167495

Akhmadiyeva N, Abdulvaliyev R, Abikak Y, Manapova A, Gladyshev S, Ruzakhunova G, Sukurov B. Kaolinite clay as a raw material for erbium extraction. Heliyon. 2023; 9:e14280. https://doi.org/10.1016/j.heliyon.2023.e14280

Akhmadiyeva N, Gladyshev S, Abdulvaliyev R, Sukurov B, Amanzholova L. Selective extraction of potassium from raw nepheline materials. Heliyon. 2024; 10:e29461. https://doi.org/10.1016/j.heliyon.2024.e29461

Delitsyn LM, Kulumbegov RV, Popel OS, Sulman MG. Obtaining alumina from the ash of coal-fired power plants. Thermal engineering. 2022; 69(12):933-941. https://doi.org/10.1134/S0040601522120023

Kirpal GR. Mestorozhdeniya boksitov Kazakhstana [Bauxite deposits of Kazakhstan]. Мoscow: Bosom. 1976, 205. (in Russ).

Abzhapparov A. Integrated use of low-quality alumina-containing raw materials in Kazakhstan. 1998. https://library.tou.edu.kz/fulltext/buuk/b3129.pdf

Shoppert A, Valeev D, Loginova I, Pankratov D. Low-Temperature Treatment of Boehmitic Bauxite Using the Bayer Reductive Method with the Formation of High-Iron Magnetite Concentrate. Materials. 2023; 16(13):4678. https://doi.org/10.3390/ma16134678

Ibragimov AT, Budon S V. Razvitiye tekhnologii proizvodstva glinozema iz boksitov Kazakhstana [Development of technology for the production of alumina from bauxite in Kazakhstan]. Pavlodar: House of Printing LLP. 2010, 299. (in Russ).

Hansen AM, Larsen SV, Steenholdt NC, Aaen SB, Graugaard ND, Kollias K. Social impact of bauxite mining and refining: A review. The extractive industries and society. 2023; 14:101264. https://doi.org/10.1016/j.exis.2023.101264

Layner AI. Proizvodstvo glinozema [Alumina production] Moscow: Gosudarstvenoye nauchno – tekhnicheskoye izdatelstvo literatury po chernoy i tsvetnoy metallurgii. 1961, 619. (in Russ).

Polucheniye glinozema shchelochnym sposobom spekaniya. 2016. https://www.tdsm.ru/article/view/glava-vi-polucenie-glinozema-iz-boksitov-selocnym-sposobom-spekania

Abzhapparov A. Kompleksnoye ispolzovaniye nizkokachestvennogo glinozemsoderzhashchego Syria Kazakhstana [Integrated use of low-quality alumina - containing raw materials in Kazakhstan]. Almaty: Gylym. 1998, 177. (in Russ).

Loginova IV, Kyrchikov AV, Penyugalova NP. Tekhnologiya proizvodstva glinozema [Alumina production technology]. Uchebnoye posobiye. Ekaterinburg: Ural University Publishing House. 2015, 329. (in Russ).

Shemyakin VS, Shemyakin AV, Skopov SV. Radiometricheskoye obogashcheniye boksitov Timana. III Mezhdunarodnaya nauchno-tekhnicheskaya konferentsiya "Metallurgiya legkikh i tugoplavkikh metallov". [III International Scientific and Technical Conference Metallurgy of Light and Refractory Metals]. Ekaterinburg, Russia. 2014, 42-46. (in Russ).

Dubovikov OA. Yaskelyaynen EE. Processing of low-quality bauxite feedstock by thermochemistry-Bayer method. Zapiski gornogo instituta = Notes of the Mining Institute. 2016; 221:668-674. https://doi.org/10.18454/PMI.2016.5.668

Loginova IV. Fiziko-khimicheskiye osnovy tekhnologii kompleksnoy pererabotki boksitovogo syr'ya v kontsentrirovannykh shchelochnykh sredakh [Physico-chemical foundations of the technology for complex processing of bauxite raw materials in concentrated alkaline media]. 2016. (in Russ).

Pat. 2111059 RU. Kombinirovannyy bezotkhodnyy sposob pererabotki boksitov [Combined waste-free method of bauxite processing]. Kirpishchikov SP, Topchayev VP, Arsenyev VA, Gurova LK, Gusev SS, Ulitenko KYa. 20.05.1998. (in Russ).

Pat. 2193525 RU. Sposob gidrokhimicheskoy pererabotki alyumosilikatnogo Syria [Method of hydrochemical processing of aluminosilicate Syria]. Medvedev VV, Kiselev AI, Akhmedov SN, Druzhinin AV, Gromov BS, Gromov SB, Pak RV. Opubl. 27.11.2002, 33.

Mirsaidov UM, Mirzoyev DKh, Boboyev KhE. Kompleksnaya pererabotka argillitov i kaolinovykh glin Tadzhikistana [News of the Academy of Sciences of the Republic of Tajikistan]. Dushanbe: publishing house Donish. 2016, 92. (in Russ).

Vinogradov S A. Development of an effective technology for complex processing of nephelines with bauxite additives. 2009. (accessed 13.05.2024) https://www.elibrary.ru/item.asp?id=15947685

Shepelev IN, Sakhachev AYu, Zhizhayev AM, Dashkevich RYa, Golovnykh NV. Izvlecheniye tsennykh komponenntov iz alyumosilikatnykh prirodnykh i tekhnogennykh materialov pri poluchenii glinozema sposobom spekaniya [Extraction of valuable components from aluminosilicate natural and man-made materials when producing alumina by sintering]. Vestnik Irkutskogo gosudarstvennogo tekhnicheskogo universiteta [Bulletin of Irkutsk State Technical University]. 2018; 22;4:203-214. (in Russ). https://dx.doi.org/10.21285/1814-3520-2018-4-202-214

Prokopov IV. Proizvodstvo glinozema [Alumina production]. М.: ADD prodaks. 2016, 304. (in Russ).

Osnovy protsessa spekaniya [Basics of the sintering process]. Pavlodar. 2002, 145. (in Russ).

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Published

2024-06-07

How to Cite

Abikenova, G., Dauletov, D., Tverdokhlebov, S., & Danchenko, I. (2024). Investigation of the possibility of using depleted bauxite in alumina production at the Pavlodar aluminum plant. Kompleksnoe Ispolzovanie Mineralnogo Syra = Complex Use of Mineral Resources, 333(2), 80–88. https://doi.org/10.31643/2025/6445.20