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dc.contributor.authorShoppert, A.en
dc.contributor.authorLoginova, I.en
dc.contributor.authorNapol’skikh, J.en
dc.contributor.authorValeev, D.en
dc.date.accessioned2022-05-12T08:28:31Z-
dc.date.available2022-05-12T08:28:31Z-
dc.date.issued2022-
dc.identifier.citationHigh‐Selective Extraction of Scandium (Sc) from Bauxite Residue (Red Mud) by Acid Leaching with MgSO4 / A. Shoppert, I. Loginova, J. Napol’skikh et al. // Materials. — 2022. — Vol. 15. — Iss. 4. — 1343.en
dc.identifier.issn1996-1944-
dc.identifier.otherAll Open Access, Gold, Green3
dc.identifier.urihttp://elar.urfu.ru/handle/10995/112104-
dc.description.abstractBauxite residue, also known as red mud (RM), from alumina production is the most promising technogenic material for the production of scandium (Sc) and other rare earth elements (REEs). Conveniently, RM is processed by using a strong acid (pH < 2.5), which lead to co‐dissolution of iron and other undesirable major components. In this work, for the first time, the possibility of selective extraction of scandium from red mud by using highly diluted acid (pH > 4) in the presence of MgSO4 was shown. The effect of temperature (40–80 °C), time (0–60 min), pH (2–5), and the MgSO4 concentration (12–36 g L−1) on Sc extraction efficiency was evaluated. It was shown that Sc extraction was higher than 63% even at a pH of 4, at 80 °C, after 1 h, while more than 80% could be extracted at a pH of 2. Iron extraction reduced from 7.7 to 0.03% by increasing the pH from 2 to 4. The kinetics study using the shrinking core model (SCM) has shown that diffusion through a product layer is a rate‐limiting stage of the process at high temperatures (>60 °C) and low pH (<3), whereas, at lower temperatures and higher pH values, the leaching rate is limited by diffusion through the liquid film. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.en
dc.description.sponsorshipThis work was funded by State Assignment, grant no. 075-03-2021-051/5 (FEUZ-2021-0017). The method for determining the content of REEs in the solution after leaching by ICP-MS was funded by the Project of the State Assignment (Vernadsky Institute of Geochemistry and Analytical Chemistry of Russian Academy of Sciences, № FMUS-2019-24).en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherMDPIen1
dc.publisherMDPI AGen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceMater.2
dc.sourceMaterialsen
dc.subjectACID LEACHINGen
dc.subjectKINETICSen
dc.subjectMAGNESIUM SULPHATEen
dc.subjectRARE EARTH ELEMENTSen
dc.subjectRED MUDen
dc.subjectSELECTIVITYen
dc.subjectWASTE UTILIZATIONen
dc.subjectALUMINAen
dc.subjectALUMINUM OXIDEen
dc.subjectEXTRACTIONen
dc.subjectIRONen
dc.subjectLEACHINGen
dc.subjectLIQUID FILMSen
dc.subjectMAGNESIUM COMPOUNDSen
dc.subjectRARE EARTHSen
dc.subjectSCANDIUMen
dc.subjectACID LEACHINGen
dc.subjectALUMINA PRODUCTIONen
dc.subjectBAUXITE RESIDUEen
dc.subjectCO DISSOLUTIONen
dc.subjectEFFECTS OF TEMPERATUREen
dc.subjectRED MUDen
dc.subjectSELECTIVE EXTRACTIONen
dc.subjectSELECTIVITYen
dc.subjectSTRONGEST ACIDen
dc.subjectTECHNOGENIC MATERIALSen
dc.subjectSULFUR COMPOUNDSen
dc.titleHigh‐Selective Extraction of Scandium (Sc) from Bauxite Residue (Red Mud) by Acid Leaching with MgSO4en
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.3390/ma15041343-
dc.identifier.scopus85124695902-
local.contributor.employeeShoppert, A., Laboratory of Advanced Technologies in Non‐Ferrous and Ferrous Metals Raw Materials Processing, Ural Federal University, Yekaterinburg, 620002, Russian Federation, Department of Non‐Ferrous Metals Metallurgy, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Loginova, I., Department of Non‐Ferrous Metals Metallurgy, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Napol’skikh, J., Department of Non‐Ferrous Metals Metallurgy, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Valeev, D., Laboratory of Sorption Methods, Vernadsky Institute of Geochemistry and Analytical Chemistry of the Russian Academy of Sciences, Moscow, 119991, Russian Federationen
local.issue4-
local.volume15-
dc.identifier.wos000778142400001-
local.contributor.departmentLaboratory of Advanced Technologies in Non‐Ferrous and Ferrous Metals Raw Materials Processing, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Department of Non‐Ferrous Metals Metallurgy, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Laboratory of Sorption Methods, Vernadsky Institute of Geochemistry and Analytical Chemistry of the Russian Academy of Sciences, Moscow, 119991, Russian Federationen
local.identifier.pure29639491-
local.description.order1343-
local.identifier.eid2-s2.0-85124695902-
local.identifier.wosWOS:000778142400001-
local.fund.feuzFEUZ-2021-0017-
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