Indium Leaching with Pyrophosphate from Industrial Jarosite

Jarosite is naturally produced in humid environments in the presence of sulfides; It is also produced in the form of a precipitate in some metallurgical processes as a treatment method for some solutions to control the iron present in acid solutions; the precipitate formed as jarosite has contents o...

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Autores principales: Calla Choque, Dandy, Rodríguez-Aragón, José María
Formato: Online
Lenguaje:spa
Publicado: Universida de Sonora 2023
Acceso en línea:https://epistemus.unison.mx/index.php/epistemus/article/view/272
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spelling oai:http:--epistemus.unison.mx:article-2722023-08-22T17:57:53Z Indium Leaching with Pyrophosphate from Industrial Jarosite Lixiviación de indio con pirofosfato a partir de una jarosita industrial Calla Choque, Dandy Rodríguez-Aragón, José María Indium Pyrophosphate Hydrometallurgy Leaching Indio Pirofosfato Hidrometalurgia Lixiviación Jarosite is naturally produced in humid environments in the presence of sulfides; It is also produced in the form of a precipitate in some metallurgical processes as a treatment method for some solutions to control the iron present in acid solutions; the precipitate formed as jarosite has contents of some metals of interest such as gold, silver, and indium. This work presents the effect of pH, pyrophosphate concentration, and leaching time in order to recover the indium contained in industrial jarosite at room temperature La jarosita es producida en la naturaleza en ambientes húmedos en presencia de sulfuros; además es producida en forma de precipitado en algunos procesos metalúrgicos como método de tratamiento de algunas soluciones para el control de hierro presente en las soluciones ácidas; el precipitado formado como jarosita tiene contenidos de algunos metales de interés como el oro, la plata, y el indio. En este trabajo se presenta el efecto del pH, concentración de pirofosfato y tiempo de lixiviación con la finalidad de recuperar el indio contenido en una jarosita industrial a temperatura ambiente Universida de Sonora 2023-04-25 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion CienTecYSoc CienTecYSoc application/pdf https://epistemus.unison.mx/index.php/epistemus/article/view/272 10.36790/epistemus.v17i34.272 EPISTEMUS; Vol. 17 No. 34 (2023): Issue No. 34 EPISTEMUS; Vol. 17 Núm. 34 (2023): Revista No. 34 2007-8196 2007-4530 spa https://epistemus.unison.mx/index.php/epistemus/article/view/272/354 Derechos de autor 2023 EPISTEMUS https://creativecommons.org/licenses/by-nc-sa/4.0
institution Epistemus
collection OJS
language spa
format Online
author Calla Choque, Dandy
Rodríguez-Aragón, José María
spellingShingle Calla Choque, Dandy
Rodríguez-Aragón, José María
Indium Leaching with Pyrophosphate from Industrial Jarosite
author_facet Calla Choque, Dandy
Rodríguez-Aragón, José María
author_sort Calla Choque, Dandy
title Indium Leaching with Pyrophosphate from Industrial Jarosite
title_short Indium Leaching with Pyrophosphate from Industrial Jarosite
title_full Indium Leaching with Pyrophosphate from Industrial Jarosite
title_fullStr Indium Leaching with Pyrophosphate from Industrial Jarosite
title_full_unstemmed Indium Leaching with Pyrophosphate from Industrial Jarosite
title_sort indium leaching with pyrophosphate from industrial jarosite
description Jarosite is naturally produced in humid environments in the presence of sulfides; It is also produced in the form of a precipitate in some metallurgical processes as a treatment method for some solutions to control the iron present in acid solutions; the precipitate formed as jarosite has contents of some metals of interest such as gold, silver, and indium. This work presents the effect of pH, pyrophosphate concentration, and leaching time in order to recover the indium contained in industrial jarosite at room temperature
publisher Universida de Sonora
publishDate 2023
url https://epistemus.unison.mx/index.php/epistemus/article/view/272
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AT rodriguezaragonjosemaria indiumleachingwithpyrophosphatefromindustrialjarosite
AT callachoquedandy lixiviaciondeindioconpirofosfatoapartirdeunajarositaindustrial
AT rodriguezaragonjosemaria lixiviaciondeindioconpirofosfatoapartirdeunajarositaindustrial
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