| Название |
Thermodynamic substantiation of selective purification of iron oxide pigment from
arsenic obtained from bioxidative solutions |
| Информация об авторе |
Almalyk State Technical Institute, Almalyk, Republic of Uzbekistan
Sh. T. Khojiev, Dr. Eng., Acting Associate Prof., Dept. of Metallurgy, e-mail: hojiyevshohruh@yandex.ru R. E. Toshkodirova, Dr. Eng., Associate Prof., Dept. of Metallurgy, e-mail: zumrad291014@mail.ru S. A. Kenjayeva, Doctoral Candidate, Assistant Prof., Dept. of Metallurgy, e-mail: yuldashevasevara0@gmail.com |
| Библиографический список |
1. Lottermoser B. G. Mine wastes: characterization, treatment and environmental impacts. Berlin : Springer, 2010. 399 p. 2. Johnson D. B. Biomining technologies for metal recovery. Current Opinion in Biotechnology. 2014. Vol. 30. pp. 24–31. 3. Dutrisac J. Behavior of arsenic in hydrometallurgical processes. Hydrometallurgy. 1992. Vol. 29. pp. 1–20. 4. Kuskov V. B., Kuskova Ya. V., Mikheev A. I. Obtaining iron oxide pigments from oxidized ore materials. CIS Iron and Steel Review. 2009. No. 1. pp. 7–8. 5. Motovilov I. Yu., Luganov V. A., Mishra B. Obtaining oxide powders from iron chloride solutions. CIS Iron and Steel Review. 2018. Vol. 15. pp. 28–32. 6. Kuskov V. B., Lvov V. V., Yushina T. I. Extraction of iron and production of pigments from beneficiation tailings. CIS Iron and Steel Review. 2021. Vol. 21. pp. 4–8. 7. Li G., Dai P., Yang F. Arsenic removal using iron oxides. Journal of Hazardous Materials. 2020. Vol. 391. pp. 122–135. 8. Bagilli G. I., Abbazova K. M. Biological leaching by Thiobacillus spp bacteria. Omsk : Izdatelstvo OmGTU, 2019. 112 p. 9. Miterev G. A., Cherkinsky S. N. Sanitary protection of water bodies from pollution by wastewater. Moscow: Medgiz, 1954. 240 p. 10. Rai D., Sass B. M., Moore D. A. Chromium(III) hydrolysis constants and solubility. Inorganic Chemistry. 1987. Vol. 26. pp. 345–349. 11. Gaiseler J., Driessen P. Treatment of metallurgical dusts for iron recovery. Steel Research. 1989. Vol. 60. pp. 21–27. 12. Korkishko A. G., Surovtsev Yu. A., Koval A. A. Thermodynamics of reactions of arsenates with sulfur reagents. Tsvetnye Metally. 2018. No. 4. pp. 45–53. 13. Khojiev Sh. T., Sultonov Kh. Sh., Kadirov N. A., Gaibnazarov S. B. Improving the technology of producing iron ore agglomerate using polyethylene waste. Chernye Metally. 2024. No. 10. pp. 4–9. 14. Yusupkhodzhaev A. A., Khozhiev Sh. T., Akramov U. A. Use of non-traditional reducing agents to expand the resource base of OJSC Uzmetkombinat. Chernye Metally. 2021. No. 4. pp. 4–11. 15. Khojiev Sh. T., Kholikulov D. B., Mutalibkhonov S. S. Comparative thermodynamic analysis of fluxing additives Na2O and CaO in iron recovery from silicate slag of ferrous metallurgy. Chernye Metally. 2025. No. 9. pp. 12–19. 16. Chen Z., Wang X., Ge Q., Guo G. Iron oxide red wastewater treatment and recycling of iron containing sludge. Journal of Cleaner Production. 2015. Vol. 87. pp. 558–566. 17. Zhao Z., Huang F., Liu Z., Yang J., Wang Y., Wang P., Xiao R. Quantifying arsenic adsorption mechanisms by goethite-modified biochar in aqueous solution. Environmental Science and Pollution Research. 2023. Vol. 30. No. 33. pp. 77610–77626. 18. Lakshmipathiraj P., Narasimhan B. R., Prabhakar S., Raju G. B. Adsorption of arsenate on synthetic goethite from aqueous solutions. Journal of Hazardous Materials. 2006. Vol. 136, No. 2. pp. 281–287. 19. Dzhubari M., Alekseeva N., Baziyani G., Taha V. Methods for removing pigments from wastewater. Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov. 2021. Vol. 332. No. 7. pp. 54–64. 20. Kopylov A. N., Kudryavtseva Ya. V., Tereshko A. E. Obtaining iron oxide pigments from metallurgical waste. Ot khimii k tekhnologii shag za shagom. 2024. Vol. 5. Iss. 3. pp. 37–43. 21. Wu F., Zhao Ch., Qu G., Yan Zh., Zeng Y., Chen B., Hu Y., Ji W., Li Y., Tang H. Adsorption of arsenic from aqueous solution using a zero-valent iron material modified by the ionic liquid [Hmim] SbF6. RSC Advances. 2021. Vol. 11. No. 12. pp. 6577–6585. 22. Xiong H., Xu S., Zhu S. Adsorption removal of arsenic from aqueous solutions and groundwater by isomeric FeOOH. Water Science and Technology. 2022. Vol. 86. No. 7. pp. 1653–1667. 23. Samimi M., Nouri J. Optimized removal of trivalent arsenic from aquatic environments using Prosopis juliflora seed biomass. Global Journal of Environmental Science and Management. 2025. Vol. 11. No. 2. pp. 391–402. 24. Parga J. R., Vazquez V., Moreno H. Thermodynamic studies of the arsenic adsorption on iron species generated by electrocoagulation. Journal of Metallurgy. 2009. 134137. 6 p. 25. Yang X. et al. Adsorption of As(III) on porous hematite: kinetics, isotherms and thermodynamics. Chemosphere. 2017. Vol. 168. pp. 1009–1016. 26. GOST 31649–2012. Decorative cosmetic products on fatty and waxy basis. General specifications. Introduced: 01.07.2013. |