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Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes

Environmental pollution today is a latent risk for humanity, here the need to recycle waste of all kinds. This work is related to the kinetic study of the leaching of gold and copper contained in waste electrical and electronic equipment (WEEE) and silver contained in mining wastes (MW), using the O...

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Autores principales: Cerecedo-Sáenz, Eduardo, Cárdenas-Reyes, Edgar A., Rojas-Calva, Abner H., Reyes-Valderrama, Ma. Isabel, Rodríguez-Lugo, Ventura, Toro, Norman, Gálvez, Edelmira, Acevedo-Sandoval, Otilio A., Hernández-Ávila, Juan, Salinas-Rodríguez, Eleazar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658093/
https://www.ncbi.nlm.nih.gov/pubmed/34885483
http://dx.doi.org/10.3390/ma14237329
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author Cerecedo-Sáenz, Eduardo
Cárdenas-Reyes, Edgar A.
Rojas-Calva, Abner H.
Reyes-Valderrama, Ma. Isabel
Rodríguez-Lugo, Ventura
Toro, Norman
Gálvez, Edelmira
Acevedo-Sandoval, Otilio A.
Hernández-Ávila, Juan
Salinas-Rodríguez, Eleazar
author_facet Cerecedo-Sáenz, Eduardo
Cárdenas-Reyes, Edgar A.
Rojas-Calva, Abner H.
Reyes-Valderrama, Ma. Isabel
Rodríguez-Lugo, Ventura
Toro, Norman
Gálvez, Edelmira
Acevedo-Sandoval, Otilio A.
Hernández-Ávila, Juan
Salinas-Rodríguez, Eleazar
author_sort Cerecedo-Sáenz, Eduardo
collection PubMed
description Environmental pollution today is a latent risk for humanity, here the need to recycle waste of all kinds. This work is related to the kinetic study of the leaching of gold and copper contained in waste electrical and electronic equipment (WEEE) and silver contained in mining wastes (MW), using the O(2)-thiosemicarbazide system. The results obtained show that this non-toxic leaching system is adequate for the leaching of said metals. Reaction orders were found ranging from 0 (Cu), 0.93 (Ag), and 2.01 (Au) for the effect of the reagent concentration and maximum recoveries of 77.7% (Cu), 95.8% (Au), and 60% (Ag) were obtained. Likewise, the activation energies found show that the leaching of WEEE is controlled by diffusion (Cu Ea = 9.06 and Au Ea = 18.25 kJ/Kmol), while the leaching of MW (Ea = 45.55 kJ/Kmol) is controlled by the chemical reaction. For the case of stirring rate, it was found a low effect and only particles from WEEE and MW must be suspended in solution to proceed with the leaching. The pH has effect only at values above 8, and finally, for the case of MW, the O(2) partial pressure has a market effect, going the Ag leaching from 33% at 0.2 atm up to 60% at a 1 atm.
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spelling pubmed-86580932021-12-10 Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes Cerecedo-Sáenz, Eduardo Cárdenas-Reyes, Edgar A. Rojas-Calva, Abner H. Reyes-Valderrama, Ma. Isabel Rodríguez-Lugo, Ventura Toro, Norman Gálvez, Edelmira Acevedo-Sandoval, Otilio A. Hernández-Ávila, Juan Salinas-Rodríguez, Eleazar Materials (Basel) Article Environmental pollution today is a latent risk for humanity, here the need to recycle waste of all kinds. This work is related to the kinetic study of the leaching of gold and copper contained in waste electrical and electronic equipment (WEEE) and silver contained in mining wastes (MW), using the O(2)-thiosemicarbazide system. The results obtained show that this non-toxic leaching system is adequate for the leaching of said metals. Reaction orders were found ranging from 0 (Cu), 0.93 (Ag), and 2.01 (Au) for the effect of the reagent concentration and maximum recoveries of 77.7% (Cu), 95.8% (Au), and 60% (Ag) were obtained. Likewise, the activation energies found show that the leaching of WEEE is controlled by diffusion (Cu Ea = 9.06 and Au Ea = 18.25 kJ/Kmol), while the leaching of MW (Ea = 45.55 kJ/Kmol) is controlled by the chemical reaction. For the case of stirring rate, it was found a low effect and only particles from WEEE and MW must be suspended in solution to proceed with the leaching. The pH has effect only at values above 8, and finally, for the case of MW, the O(2) partial pressure has a market effect, going the Ag leaching from 33% at 0.2 atm up to 60% at a 1 atm. MDPI 2021-11-30 /pmc/articles/PMC8658093/ /pubmed/34885483 http://dx.doi.org/10.3390/ma14237329 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cerecedo-Sáenz, Eduardo
Cárdenas-Reyes, Edgar A.
Rojas-Calva, Abner H.
Reyes-Valderrama, Ma. Isabel
Rodríguez-Lugo, Ventura
Toro, Norman
Gálvez, Edelmira
Acevedo-Sandoval, Otilio A.
Hernández-Ávila, Juan
Salinas-Rodríguez, Eleazar
Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes
title Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes
title_full Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes
title_fullStr Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes
title_full_unstemmed Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes
title_short Use of the O(2)-Thiosemicarbazide System, for the Leaching of: Gold and Copper from WEEE & Silver Contained in Mining Wastes
title_sort use of the o(2)-thiosemicarbazide system, for the leaching of: gold and copper from weee & silver contained in mining wastes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658093/
https://www.ncbi.nlm.nih.gov/pubmed/34885483
http://dx.doi.org/10.3390/ma14237329
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