Труды КНЦ (Технические науки вып.4/2025(16))

3. Hassan E. S. R., Chen Y., Abdel-Khalek N. A., Elbendari A. M. Enhanced tantalum and niobium recovery from fine-grained low-grade Abu Dabbab ore using Falcon concentration and magnetic separation. Sci. Rep., 2025, vol. 15, no. 1, p. 10432. 4. Simco M. M., Bradshaw R. C., Hyers R. W. Recovery of Rhenium from Superalloy Swarf, Grindings, Turnings, and Scrap. TMS Annual Meeting & Exhibition. Cham, Springer Nature Switzerland, 2025, pp. 165-173. 5. Leszczynska-Sejda K., Malarz J., Ciszewski M., Kopyto D., Goc K., Grzybek A., Benke G. Hydrometallurgical Technology for Producing Rhenium (VII) and Cobalt (II) from Waste. Crystals, 2024, vol. 14, no. 9, p. 783. 6. Ferron C. J., Peer J., Andrews J., Fleming C. A. Hydrometallurgical Production of High-Purity Ammonium Perrhenate from Superalloy Scrap. Conference o f Metallurgists. Cham, Springer Nature Switzerland, 2024, pp. 1217-1223. 7. Kowalik P., Kopyto D., Benke G., Ciszewski M., Grzybek A., Malarz J., Leszczynska-Sejda K. Application of Electrodialysis to Production of High-Purity Perrhenic Acid. Separations, 2024, vol. 11, no. 9, p. 253. 8. Li X. T., Li J., Liu S. Q., Du S. H., Wang S. J., Chen J., Cheng S. B. Dual External Field Strategy in Regulating the Superhalogen Characteristics of the Non-Noble Metal Constituted Tantalum Oxide Clusters. J. Phys. Chem. A, 2024, vol. 128, no. 27, pp. 5298-5306. 9. Moradizadeh L., Johar M., Chellehbari Y. M., Li X., Shahgaldi S. Optimized tantalum interlayer thickness for PTLs: Enhancing PEMWE performance, stability, and reducing precious metal loading. J. Power Sources , 2025, vol. 647, p. 237360. 10. Watanabe Y., Tange M., Kanaya Y., Okuyama H., Tanaka S. Tantalum Processing Development for Medical Applications Insights from Relationship of Thermal Processes and Mechanical Properties by LMM -based AM and MIM. J. Japan Soc. Powder Metall., 2025, vol. 72, suppl., pp. S1099-S1102. 11. Yuan J., Wang Y., Hou X., Zhong J., Tan D. The influence of low degree of deformation on the corrosion resistance of pure tantalum in corrosive media. Int. J. Refract. Met. Hard Mater., 2024, vol. 125, p. 106899. 12. Targanov I. E., Bardysh A. V., Troshkina I. D. Sorption of Rhenium from Cobalt-Nickel Mother Liquors Formed in Complex Processing of Rhenium-Containing Superalloy Waste. Russ. J. Appl. Chem., 2022, vol. 95, no. 11, pp. 1715-1722. 13. Targanov I. E., Solodovnikov M. A., Troshkina I. D. Oxidative leaching of rhenium from grinding waste of rhenium-containing superalloys. Izv. Non-Ferr. Metall., 2023, vol. 29, pp. 25-33. 14. Liu J., Tang J., Sun Y., Zhou Y., Shi F. Recovery of Ni and Co elements from superalloy leaching solution by sodium roasting and water leaching. JOM, 2024, vol. 76, no. 7, pp. 3393-3401. 15. Кузнецова О. Г., Левин А. М., Севостьянов М. А. Электрохимическая переработка отходов тяжелых вольфрамовых сплавов в аммиачно-карбонатных растворах под действием постоянного и переменного тока // Тр. Кольск. науч. центра РАН. Сер.: Техн. науки. 2022. Т. 13, № 1. С. 155-159. 16. Chen X., Sun Y., Wang L., Qu X., Zhao Y., Xie H. W., Yin H. Y. Electrochemically recycling degraded superalloy and valorizing CO2 in the affordable borate-modified molten electrolyte. Tungsten, 2024, vol. 6, no. 2, pp. 382-393. 17. Рузиев У. Н., Гуро В. П., Шарипов Х. Т., Каюмов Б. Б. У., Ниязматов А. А. Сырье для модифицированных твердых сплавов на основе карбида вольфрама // Хим. журн. Казахстана. 2022. № 1(77). С. 37-50. 18. Panova Y., Aubakirov Y., Arbag H. Selection of sorption materials for the extraction of nickel and cobalt from the ore of the Gornostaevskoye deposit. Chem. Bull. Kazakh Nation. Univ., 2021, vol. 102, no. 3, pp. 4-12. 19. Vodolazov L., Shvab A. Mathematical modeling of the kinetics of ion exchange of tantalum and niobium. Dokl. Akad. Nauk SSSR, 1981, vol. 261, no. 5, p. 1183. 20. de Souza Gongalves G. A., de Carvalho T. C., Garjulli F., de Carvalho M. S., Espinosa D. C. R. Adsorption of niobium and tantalum contained in tin slag by ion-exchange resins: Equilibrium isotherms, kinetic and thermodynamic studies. Zh. Ustoich. Metall., 2023, vol. 9, no. 3, pp. 1329-1343. 21. Warshawsky A. Solvent impregnated resins. Ion Exch. Solvent Extr., 1981, vol. 8, p. 229. 22. Ezzati R., Ezzati S., Azizi M. Exact solution of the Langmuir rate equation: New Insights into pseudo-first-order and pseudo-second-order kinetics models for adsorption. Vacuum, 2024, vol. 220, p. 112790. 23. Taraba B., Bulavova P. Second or pseudo-second-order model for adsorption kinetics? Sep. Sci. Technol., 2022, vol. 57, no. 10, pp. 1558-1562. 24. El-Kamash A. M. Evaluation of zeolite A for the sorptive removal of Cs+ and Sr2+ ions from aqueous solutions using batch and fixed bed column operations. J. Hazard. Mater., 2008, vol. 151, no. 2-3, pp. 432-445. 25. Turkowska M., Karon K., Milewski A., Jakobik-Kolon A. Solvent-impregnated sorbents for tantalum from niobium separation using a fixed-bed column. Materials, 2022, vol. 15, no. 4, p. 1513. Труды Кольского научного центра РАН. Серия: Технические науки. 2025. Т. 16, № 4. С. 142-149. Transactions of the Kola Science Centre of RAS. Series: Engineering Sciences. 2025. Vol. 16, No. 4. P. 142-149. © Солодовников М. А., Трошкина И. Д., 2025 147

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