Cargando…

Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems

Marmatite and bornite are commonly associated together in nature, and their interactions in an acidic environment are vital for both (bio)hydrometallurgy and acid mine drainage (AMD) production. In this work, dissolution experiments (marmatite : bornite = 2 : 0, 3 : 1, 1 : 1, 1 : 3 and 0 : 2) accomp...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Yanjun, Zhao, Hongbo, Zhang, Yisheng, Qian, Lu, Zhang, Luyuan, Meng, Xiaoyu, Lv, Xin, Abhilash, Janjua, Hussnain Ahned, Qiu, Guanzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9070442/
https://www.ncbi.nlm.nih.gov/pubmed/35528562
http://dx.doi.org/10.1039/c9ra03658j
_version_ 1784700640418594816
author Zhang, Yanjun
Zhao, Hongbo
Zhang, Yisheng
Qian, Lu
Zhang, Luyuan
Meng, Xiaoyu
Lv, Xin
Abhilash,
Janjua, Hussnain Ahned
Qiu, Guanzhou
author_facet Zhang, Yanjun
Zhao, Hongbo
Zhang, Yisheng
Qian, Lu
Zhang, Luyuan
Meng, Xiaoyu
Lv, Xin
Abhilash,
Janjua, Hussnain Ahned
Qiu, Guanzhou
author_sort Zhang, Yanjun
collection PubMed
description Marmatite and bornite are commonly associated together in nature, and their interactions in an acidic environment are vital for both (bio)hydrometallurgy and acid mine drainage (AMD) production. In this work, dissolution experiments (marmatite : bornite = 2 : 0, 3 : 1, 1 : 1, 1 : 3 and 0 : 2) accompanied by analytic techniques such as electrochemical methods, Raman spectroscopy and synchrotron radiation-XRD (SR-XRD) were utilized to interpret the interactions between marmatite and bornite in acidic abiotic and biotic systems. The dissolution experiments showed that marmatite can significantly accelerate the oxidative dissolution of bornite, especially in the abiotic system. On the contrary, bornite inhibited the oxidative dissolution of marmatite when the percentage of bornite was high. Electrochemical measurements proved that the galvanic interactions between marmatite and bornite were slight and should not be the main cause for the interactions. Combined with the dissolution experiments, analytic techniques and previous references, it could be speculated that marmatite accelerated bornite dissolution mainly by providing an iron source, which acted as the energy source for microorganisms and oxidants. Bornite affected the dissolution of marmatite mainly by Cu(2+) ions dissolving from bornite. Bornite inhibited the oxidative dissolution of marmatite mainly because a high Cu(2+) concentration could significantly hinder marmatite dissolution. In addition, the formation of elemental sulfur or jarosite was also one important cause. Bornite intensified marmatite dissolution when the percentage of bornite or the Cu(2+) concentration was extremely low and then, a synergic dissolution process occurred.
format Online
Article
Text
id pubmed-9070442
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90704422022-05-05 Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems Zhang, Yanjun Zhao, Hongbo Zhang, Yisheng Qian, Lu Zhang, Luyuan Meng, Xiaoyu Lv, Xin Abhilash, Janjua, Hussnain Ahned Qiu, Guanzhou RSC Adv Chemistry Marmatite and bornite are commonly associated together in nature, and their interactions in an acidic environment are vital for both (bio)hydrometallurgy and acid mine drainage (AMD) production. In this work, dissolution experiments (marmatite : bornite = 2 : 0, 3 : 1, 1 : 1, 1 : 3 and 0 : 2) accompanied by analytic techniques such as electrochemical methods, Raman spectroscopy and synchrotron radiation-XRD (SR-XRD) were utilized to interpret the interactions between marmatite and bornite in acidic abiotic and biotic systems. The dissolution experiments showed that marmatite can significantly accelerate the oxidative dissolution of bornite, especially in the abiotic system. On the contrary, bornite inhibited the oxidative dissolution of marmatite when the percentage of bornite was high. Electrochemical measurements proved that the galvanic interactions between marmatite and bornite were slight and should not be the main cause for the interactions. Combined with the dissolution experiments, analytic techniques and previous references, it could be speculated that marmatite accelerated bornite dissolution mainly by providing an iron source, which acted as the energy source for microorganisms and oxidants. Bornite affected the dissolution of marmatite mainly by Cu(2+) ions dissolving from bornite. Bornite inhibited the oxidative dissolution of marmatite mainly because a high Cu(2+) concentration could significantly hinder marmatite dissolution. In addition, the formation of elemental sulfur or jarosite was also one important cause. Bornite intensified marmatite dissolution when the percentage of bornite or the Cu(2+) concentration was extremely low and then, a synergic dissolution process occurred. The Royal Society of Chemistry 2019-08-27 /pmc/articles/PMC9070442/ /pubmed/35528562 http://dx.doi.org/10.1039/c9ra03658j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Yanjun
Zhao, Hongbo
Zhang, Yisheng
Qian, Lu
Zhang, Luyuan
Meng, Xiaoyu
Lv, Xin
Abhilash,
Janjua, Hussnain Ahned
Qiu, Guanzhou
Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
title Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
title_full Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
title_fullStr Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
title_full_unstemmed Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
title_short Interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
title_sort interactions between marmatite and bornite during the oxidative dissolution process in abiotic and biotic systems
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9070442/
https://www.ncbi.nlm.nih.gov/pubmed/35528562
http://dx.doi.org/10.1039/c9ra03658j
work_keys_str_mv AT zhangyanjun interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT zhaohongbo interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT zhangyisheng interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT qianlu interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT zhangluyuan interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT mengxiaoyu interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT lvxin interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT abhilash interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT janjuahussnainahned interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems
AT qiuguanzhou interactionsbetweenmarmatiteandborniteduringtheoxidativedissolutionprocessinabioticandbioticsystems