A review of the effects of grinding media and chemical conditions on the flotation of pyrite in refractory gold operations
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作者:
Rabieh, A.
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Curtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, AustraliaCurtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, Australia
Rabieh, A.
[1
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Albijanic, B.
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Curtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, AustraliaCurtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, Australia
Albijanic, B.
[1
]
Eksteen, J. J.
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Curtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, AustraliaCurtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, Australia
Eksteen, J. J.
[1
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机构:
[1] Curtin Univ, Western Australia Sch Mines, Dept Min Engn & Met Engn, GPO Box U1987, Perth, WA 6845, Australia
Flotation performance of gold-bearing pyrite in refractory gold ores depend upon the interplay among process water chemistry, grinding chemistry, and ore mineralogy. The nature of pyrite itself (finely disseminated reactive pyrite vs. low reactivity) also plays a role in its surface reactivity. This paper reviews the experimental studies examining the interactions between grinding media, gold bearing pyrites and process water occurring during grinding of refractory gold ores and the effect of these interactions on flotation response of pyrite. The literature review reveals that the interactions are highly convoluted. It appears that the galvanic interactions between forged steel media and sulfide minerals ores are particularly significant after grinding of massive sulfide ores. Process water chemistry can also have an amplifying effect, as the process water becomes more laden with cyanide species and other ionic species. This paper should contribute an improved understanding of electrochemical and chemical processes occurring during the grinding of refractory gold ores, which is essential to improve flotation performance of pyrite. Judgement is reserved with regards to the overall economics associated with the use of various grinding media. Media consumption due to wear will have to be balanced against flotation recovery of gold bearing sulfides and whole circuit behaviour where gold in tailing may also be further recovered through leach processes. (C) 2016 Elsevier Ltd. All rights reserved.
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource TechnologyHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Lucas Pereira
Nathalie Kupka
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource TechnologyHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Nathalie Kupka
Duong Huu Hoang
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Maelgwyn Mineral Services LtdHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Duong Huu Hoang
Bruno Michaux
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource TechnologyHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Bruno Michaux
Sondos Saquran
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource TechnologyHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Sondos Saquran
Doreen Ebert
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource TechnologyHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
Doreen Ebert
Martin Rudolph
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Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource TechnologyHelmholtz-Zentrum Dresden-Rossendorf, Helmholtz Institute Freiberg for Resource Technology
机构:
E China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R ChinaE China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R China
Wang, Hong
Zhang, Xu
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E China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R ChinaE China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R China
Zhang, Xu
Zhu, Minglong
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E China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R ChinaE China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R China
Zhu, Minglong
Tan, Wensong
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E China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R ChinaE China Univ Sci & Technol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R China