An integrated approach to AMD mitigation through sulfide removal from tailings
Includes bibliographical references (leaves 67-73). === The formation of acid mine drainage (AMD) from the microbial oxidation of sulfides in mineral waste deposits is one of the major challenges facing the mining industry worldwide. Growing environmental awareness and subsequent changes in legislat...
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ndltd-netd.ac.za-oai-union.ndltd.org-uct-oai-localhost-11427-112802021-01-25T05:11:31Z An integrated approach to AMD mitigation through sulfide removal from tailings Hesketh, Alexander H Broadhurst, Jennifer Lee Harrison, STL Bioprocess Engineering Includes bibliographical references (leaves 67-73). The formation of acid mine drainage (AMD) from the microbial oxidation of sulfides in mineral waste deposits is one of the major challenges facing the mining industry worldwide. Growing environmental awareness and subsequent changes in legislation has focused research in addressing the prevention of pollution by AMD. Current waste management approaches focus on deposition techniques to control AMD formation and on remediation. However, these approaches do not remove the risk of AMD generationand are yet to be proven effective in mitigating long-term acid generating potential. Incompliance with the principles of pollution prevention, addressing waste at its source,the aim of this work is to remove the risk of AMD generation by focusing on theremoval of sulfides from potentially acid generating tailings prior to disposal. 2015-01-04T14:38:00Z 2015-01-04T14:38:00Z 2010 Master Thesis Masters MSc http://hdl.handle.net/11427/11280 eng application/pdf University of Cape Town Faculty of Engineering and the Built Environment Centre for Bioprocess Engineering Research |
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NDLTD |
language |
English |
format |
Dissertation |
sources |
NDLTD |
topic |
Bioprocess Engineering |
spellingShingle |
Bioprocess Engineering Hesketh, Alexander H An integrated approach to AMD mitigation through sulfide removal from tailings |
description |
Includes bibliographical references (leaves 67-73). === The formation of acid mine drainage (AMD) from the microbial oxidation of sulfides in mineral waste deposits is one of the major challenges facing the mining industry worldwide. Growing environmental awareness and subsequent changes in legislation has focused research in addressing the prevention of pollution by AMD. Current waste management approaches focus on deposition techniques to control AMD formation and on remediation. However, these approaches do not remove the risk of AMD generationand are yet to be proven effective in mitigating long-term acid generating potential. Incompliance with the principles of pollution prevention, addressing waste at its source,the aim of this work is to remove the risk of AMD generation by focusing on theremoval of sulfides from potentially acid generating tailings prior to disposal. |
author2 |
Broadhurst, Jennifer Lee |
author_facet |
Broadhurst, Jennifer Lee Hesketh, Alexander H |
author |
Hesketh, Alexander H |
author_sort |
Hesketh, Alexander H |
title |
An integrated approach to AMD mitigation through sulfide removal from tailings |
title_short |
An integrated approach to AMD mitigation through sulfide removal from tailings |
title_full |
An integrated approach to AMD mitigation through sulfide removal from tailings |
title_fullStr |
An integrated approach to AMD mitigation through sulfide removal from tailings |
title_full_unstemmed |
An integrated approach to AMD mitigation through sulfide removal from tailings |
title_sort |
integrated approach to amd mitigation through sulfide removal from tailings |
publisher |
University of Cape Town |
publishDate |
2015 |
url |
http://hdl.handle.net/11427/11280 |
work_keys_str_mv |
AT heskethalexanderh anintegratedapproachtoamdmitigationthroughsulfideremovalfromtailings AT heskethalexanderh integratedapproachtoamdmitigationthroughsulfideremovalfromtailings |
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