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Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings

The slag from the extraction processes of metals from their ores may contain valuable components that, if adequately recovered, can be reintroduced in the technological life cycle. This is the case for the material obtained in Penouta mines in the North of Spain. These mineral sites are a main sourc...

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Autores principales: Rodríguez, Olga, Alguacil, Francisco J., Baquero, Esther Escudero, García-Díaz, Irene, Fernández, Paloma, Sotillo, Belén, López, Félix A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054369/
https://www.ncbi.nlm.nih.gov/pubmed/35518734
http://dx.doi.org/10.1039/d0ra03331f
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author Rodríguez, Olga
Alguacil, Francisco J.
Baquero, Esther Escudero
García-Díaz, Irene
Fernández, Paloma
Sotillo, Belén
López, Félix A.
author_facet Rodríguez, Olga
Alguacil, Francisco J.
Baquero, Esther Escudero
García-Díaz, Irene
Fernández, Paloma
Sotillo, Belén
López, Félix A.
author_sort Rodríguez, Olga
collection PubMed
description The slag from the extraction processes of metals from their ores may contain valuable components that, if adequately recovered, can be reintroduced in the technological life cycle. This is the case for the material obtained in Penouta mines in the North of Spain. These mineral sites are a main source of tin obtained from cassiterite. The mineral is submitted to a pyrometallurgical process to separate tin, however cassiterite is not the only mineral present in the veins, and large amounts of other minerals are normally discarded, constituting the slag. In the present case, besides cassiterite, one of the most abundant minerals in the ore is columbo tantalite, the source of the strategic coltan. In this work the raw material (slag) has been treated by acid leaching, using HF/H(2)SO(4) as the leaching agent. Then liquid–liquid extraction of Nb and Ta was performed, with Cyanex®923 extractant, so that both metals were obtained separately. Then they were precipitated from the corresponding aqeuous solution, and calcined in order to yield Nb(2)O(5) of 98.5% purity and tantalum salt, after calcination and purification, of 97.3% purity. The process described in this work opens a possibility to produce high quality materials that are considered critical by the EU from alternative sources exempt of criticality factors.
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spelling pubmed-90543692022-05-04 Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings Rodríguez, Olga Alguacil, Francisco J. Baquero, Esther Escudero García-Díaz, Irene Fernández, Paloma Sotillo, Belén López, Félix A. RSC Adv Chemistry The slag from the extraction processes of metals from their ores may contain valuable components that, if adequately recovered, can be reintroduced in the technological life cycle. This is the case for the material obtained in Penouta mines in the North of Spain. These mineral sites are a main source of tin obtained from cassiterite. The mineral is submitted to a pyrometallurgical process to separate tin, however cassiterite is not the only mineral present in the veins, and large amounts of other minerals are normally discarded, constituting the slag. In the present case, besides cassiterite, one of the most abundant minerals in the ore is columbo tantalite, the source of the strategic coltan. In this work the raw material (slag) has been treated by acid leaching, using HF/H(2)SO(4) as the leaching agent. Then liquid–liquid extraction of Nb and Ta was performed, with Cyanex®923 extractant, so that both metals were obtained separately. Then they were precipitated from the corresponding aqeuous solution, and calcined in order to yield Nb(2)O(5) of 98.5% purity and tantalum salt, after calcination and purification, of 97.3% purity. The process described in this work opens a possibility to produce high quality materials that are considered critical by the EU from alternative sources exempt of criticality factors. The Royal Society of Chemistry 2020-06-05 /pmc/articles/PMC9054369/ /pubmed/35518734 http://dx.doi.org/10.1039/d0ra03331f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Rodríguez, Olga
Alguacil, Francisco J.
Baquero, Esther Escudero
García-Díaz, Irene
Fernández, Paloma
Sotillo, Belén
López, Félix A.
Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings
title Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings
title_full Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings
title_fullStr Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings
title_full_unstemmed Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings
title_short Recovery of niobium and tantalum by solvent extraction from Sn–Ta–Nb mining tailings
title_sort recovery of niobium and tantalum by solvent extraction from sn–ta–nb mining tailings
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054369/
https://www.ncbi.nlm.nih.gov/pubmed/35518734
http://dx.doi.org/10.1039/d0ra03331f
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