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An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite

Bibliography: leaves 70-79.

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Main Author: Jeevaratnam, Elizabeth Geethika
Other Authors: Hansford, Geoffrey Spearing
Format: Thesis
Language:English
Published: Centre for Bioprocess Engineering Research 2015
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access_status_str Open Access
author Jeevaratnam, Elizabeth Geethika
author2 Hansford, Geoffrey Spearing
author_browse Hansford, Geoffrey Spearing
Jeevaratnam, Elizabeth Geethika
author_facet Hansford, Geoffrey Spearing
Jeevaratnam, Elizabeth Geethika
author_sort Jeevaratnam, Elizabeth Geethika
collection Thesis
description Bibliography: leaves 70-79.
format Thesis
id oai:open.uct.ac.za:11427/13957
institution University of Cape Town (South Africa)
language eng
last_indexed 2026-06-10T12:31:26.417Z
license_str Not specified — see source repository
provenance_str_mv Harvested via OAI-PMH from UCTD — University of Cape Town Open Access Repository
publishDate 2015
publishDateRange 2015
publishDateSort 2015
publisher Centre for Bioprocess Engineering Research
publisherStr Centre for Bioprocess Engineering Research
record_format dspace
source_str UCTD — University of Cape Town Open Access Repository
spelling oai:open.uct.ac.za:11427/13957 An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite Jeevaratnam, Elizabeth Geethika Hansford, Geoffrey Spearing Bioprocess Engineering Bibliography: leaves 70-79. The current focus of research in the UCT Minerals Bioprocessing Research Unit is to develop an understanding of the chalcopyrite bioleaching sub-processes. This thesis forms part of the greater study on bioleaching, investigating the ferric leaching subprocess. The objective of this thesis was two-folds. Firstly, a detailed literature review was undertaken to develop a better understanding of the ferric leaching of chalcopyrite and the cause of passivation during chalcopyrite leaching. Secondly, leach experiments on pyrite were used to establish the applicability and reproducibility of measuring the rate of ferric leaching at a constant redox potential, using the methodology developed by Kametani and Aoki (1985). Following this, chalcopyrite ferric leach experiments were conducted to obtain the redox potential range where chalcopyrite leaching occurs. The rate of chalcopyrite leaching in a sulfate media decreases with time due to the formation of a passivating layer. This has been described by many researchers as parabolic kinetics (Dutrizac, 1982; Beckstead et al., 1976; Munoz et al., 1979 and Dutrizac and Mac Donald, 1974). The nature of the passivating layer is still under considerable debate. Current theories of passivation include either the formation of jarosite, ferric hyroxy sulfate, sulfur or iron deficient polysulfide like covellite (Klauber et al. , 2001 , Parker et al., 1981 , Munoz et al, 1976, Warren et al., 1985 and Parker et al., 1981). Recent research has suggested that different passivating layers are formed during the various stages of chalcopyrite leaching. These include a ferric hydroxy sulfate layer followed by jarosite over extended period of time (Klauber etal., 2001 and Parker et al., 2001 ). Current investigations are underway to establish whether semiconductor properties of the mineral affects the type of passivating layer formed. To date, most of the work has been performed at temperatures higher than those at which chalcopyrite bioleaching occurs and with varying pH and redox potentials. There has been little consideration of the potential difference between the suspended particles surface and the solution. This problem can be overcome by conducting experiments at a constant solution redox potential. Kametani and Aoki (1985) first presented a method of maintaining a constant redox potential by using potassium permanganate as an oxidant to continuously re-oxidise ferrous-iron to ferric-iron. This method was then adopted by our research group to determine the initial rates of chalcopyrite leaching. Preliminary rates of chalcopyrite leaching were presented in the thesis by Furamera (2000). Further work was required to firmly establish the rates of chalcopyrite leaching and the optimal redox potential range within which chalcopyrite leach occurs. This involved optimising the redox potential control system to obtain better redox potential control during the chalcopyrite leach experiment. 2015-09-15T10:20:43Z 2015-09-15T10:20:43Z 2001 Master Thesis Masters MSc http://hdl.handle.net/11427/13957 eng application/pdf Centre for Bioprocess Engineering Research Faculty of Engineering and the Built Environment University of Cape Town
spellingShingle Bioprocess Engineering
Jeevaratnam, Elizabeth Geethika
An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite
thesis_degree_str Master's
title An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite
title_full An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite
title_fullStr An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite
title_full_unstemmed An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite
title_short An investigation into the ferric leaching of chalcopyrite : a sub-process in the bioleaching of chalcopyrite
title_sort investigation into the ferric leaching of chalcopyrite a sub process in the bioleaching of chalcopyrite
topic Bioprocess Engineering
url http://hdl.handle.net/11427/13957
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