Other language title :
ﺗﻮﺳﻌﻪ ﺷﺎﺧﺺﻫﺎي ژﺋﻮﻣﺘﺎﻟﻮرژﯾﮑﯽ ﺑﺮاي ﺧﺮداﯾﺶ ﻧﯿﻤﻪﺧﻮدﺷﮑﻦ در ﻣﻌﺪن ﻣﺲ ﭘﻮرﻓﯿﺮي ﺳﺮﭼﺸﻤﻪ
Title of article :
Development of Geometallurgical Indices for Semi-Autogenous Grinding at Sarcheshmeh Porphyry Copper Mine
Author/Authors :
Mohammadi, S Department of Mining and Metallurgy Engineering - Amirkabir University of technology - Tehran, Iran , Rezai, B Department of Mining and Metallurgy Engineering - Amirkabir University of technology - Tehran, Iran , Abdollahzadeh, A.A Department of Mining Engineering - Faculty of Engineering - University of Kashan - Kashan, Iran
Abstract :
Geometallurgy tries to predict the instability the behavior of ores caused by variability in
the geological settings, and to optimize the mineral value chain. Understanding the ore
variability and subsequently the process response are considered to be the most important
functions of an accurate geometallurgical study. In this paper, the geometallurgical index
is presented as a new tool to optimize the mining activities. Geometallurgical index is
described as any geological feature that makes a footprint on the process performance of
ores. In a comprehensive research work at the Sarcheshmeh porphyry copper mine, the
geological features that affect the main process responses including the product grade and
recovery and plant’s throughput are subjected to investigation. In the current report, the
rock hardness variability in terms of semi-autogenous grinding power index (SPI) and its
effects on the mill throughput and energy consumption are presented. Ninety samples are
collected based on the geological features including lithology, hydrothermal alteration,
and geological structures. The samples are mineralogically characterized using XRD,
XRF, and electron and optical microscopy. The Starkey laboratory mill, commercialized
by Minnovex, is used to perform the SPI comminution test. The SPI results show a wide
range of hardness, varying from 12 to 473 minutes. The correlation between the SPI
results and the geological features show that lithology is a key geological feature that
defines the hardness variability. In addition, the hydrothermal alteration would be an
effective parameter in the period that the plant is fed with a single lithology.
Farsi abstract :
ژﺋﻮﻣﺘﺎﻟﻮرژي ﺑﻪ ﻓﺮآﯾﻨﺪ ﭘﯿﺶﺑﯿﻨﯽ ﻧﺎﭘﺎﯾﺪاري رﻓﺘﺎر ﻓﺮآوري ﻣﻮاد ﻣﻌﺪﻧﯽ )ﻧﺎ ﺷﯽ از ﺗﻐﯿﯿﺮﭘﺬﯾﺮي ﻣﻮﻟﻔﻪﻫﺎي زﻣﯿﻦ ﺷﻨﺎ ﺳﯽ( و ﺑﻪ دﻧﺒﺎل آن ﺑﻬﯿﻨﻪﮐﺮدن زﻧﺠﯿﺮه ارزش ﻣﻮاد ﻣﻌﺪﻧﯽ ﮔﻔﺘﻪ ﻣﯽﺷﻮد. ﺷﻨﺎﺧﺖ ﺗﻐﯿﯿﺮﭘﺬﯾﺮي ﮐﺎﻧﺴﻨﮓ و در ﻧﺘﯿﺠﻪ ﭘﯿﺶﺑﯿﻨﯽ ﭘﺎﺳﺦ ﻓﺮآوري ﮐﺎﻧﺴﻨﮓ ﺑﻪ ﻋﻨﻮان ﻣﻬﻢﺗﺮﯾﻦ ﮐﺎرﮐﺮدﻫﺎي ﯾﮏ ﻣﻄﺎﻟﻌﻪ ژﺋﻮﻣﺘﺎﻟﻮرژﯾﮑﯽ دﻗﯿﻖ در ﻧﻈﺮ ﮔﺮﻓﺘﻪ ﻣﯽﺷﻮد. در اﯾﻦ ﻣﻘﺎﻟﻪ ﺷﺎﺧﺺ ژﺋﻮﻣﺘﺎﻟﻮرژﯾﮑﯽ ﺑﻪ ﻋﻨﻮان ﻣﻮﻟﻔﻪ ﻧﻮﯾﻨﯽ ﺑﺮاي ﺑﻬﯿﻨﻪﺳﺎزي ﻓﻌﺎﻟﯿﺖﻫﺎي ﻣﻌﺪﻧﯽ اراﺋﻪ ﺷﺪه اﺳﺖ. ﺷﺎﺧﺺ ژﺋﻮﻣﺘﺎﻟﻮرژﯾﮑﯽ ﺑﻪ ﻫﺮ وﯾﮋﮔﯽ زﻣﯿﻦﺷﻨﺎﺳﯽ ﮐﻪ ﺑﺮ روي ﻋﻤﻠﮑﺮد ﻓﺮآوري ﻣﻮاد ﻣﻌﺪﻧﯽ ﺗﺎﺛﯿﺮﮔﺬار ﺑﺎﺷﺪ، اﻃﻼق ﺷﺪه اﺳﺖ. در ﯾﮏ ﻣﻄﺎﻟﻌﻪ ﺟﺎﻣﻊ در ﻣﻌﺪن ﻣﺲ ﭘﻮرﻓﯿﺮي ﺳﺮﭼﺸﻤﻪ وﯾﮋﮔﯽﻫﺎي زﻣﯿﻦﺷﻨﺎﺳﯽ ﻣﻮﺛﺮ ﺑﺮ ﭘﺎﺳﺦﻫﺎي اﺻﻠﯽ ﻓﺮآوري ﺷﺎﻣﻞ ﻋﯿﺎر و ﺑﺎزﯾﺎﺑﯽ ﻣﺤﺼﻮل و ﻇﺮﻓﯿﺖ ﮐﺎرﺧﺎﻧﻪ ﻣﻮرد ﺑﺮرﺳﯽ ﻗﺮار ﮔﺮﻓﺖ. در اﯾﻦ ﮔﺰارش ﺗﻐﯿﯿﺮﭘﺬﯾﺮي ﺳﺨﺘﯽ ﮐﺎﻧﺴﻨﮓ ﺑﺎ اﺳﺘﻔﺎده از ﺷﺎﺧﺺ ﺧﺮداﯾﺶ ﺧﻮدﺷﮑﻨﯽ )SPI( و اﺛﺮات آن ﺑﺮ روي ﻇﺮﻓﯿﺖ ﮐﺎرﺧﺎﻧﻪ و اﻧﺮژي ﻣﺼﺮﻓﯽ اراﺋﻪ ﺷﺪه اﺳﺖ. ﺗﻌﺪاد ﻧﻮد ﻧﻤﻮﻧﻪ ﺑﺮ اﺳﺎس وﯾﮋﮔﯽﻫﺎي زﻣﯿﻦ ﺷﻨﺎﺳﯽ ﺷﺎﻣﻞ ﻟﯿﺘﻮﻟﻮژي )ﻧﻮع ﺳﻨﮓ(، دﮔﺮﺳﺎﻧﯽ ﮔﺮﻣﺎﺑﯽ و ﺳﺎﺧﺘﺎرﻫﺎي زﻣﯿﻦﺷﻨﺎﺳﯽ ﺑﺮداﺷﺖ ﺷﺪ. ﺧﻮاصﺳﻨﺠﯽ ﮐﺎﻧﯽﺷﻨﺎﺳﯽ ﻧﻤﻮﻧﻪﻫﺎ ﺑﺎ اﺳﺘﻔﺎده از XRF ،XRD و ﻣﯿﮑﺮوﺳﮑﻮپ ﻧﻮري و اﻟﮑﺘﺮوﻧﯽ ﺻﻮرت ﮔﺮﻓﺖ. از آﺳﯿﺎي آزﻣﺎﯾﺸﮕﺎﻫﯽ اﺳﺘﺎرﮐﯽ )ﺗﺠﺎريﺳﺎزي ﺷﺪه ﺗﻮﺳﻂ ﺷﺮﮐﺖ ﻣﯿﻨﻮوﮐﺲ( ﺑﺮاي اﻧﺠﺎم آزﻣﺎﯾﺶﻫﺎي ﺧﺮداﯾﺶ ﻧﯿﻤﻪ ﺧﻮدﺷــﮑﻦ اﺳــﺘﻔﺎده ﺷــﺪ. ﻧﺘﺎﯾﺞ آزﻣﺎﯾﺶ SPI ﺑﯿﺎﻧﮕﺮ داﻣﻨﻪ ﮔﺴــﺘﺮده ﺳــﺨﺘﯽ از 12 ﺗﺎ 473 دﻗﯿﻖ ﻣﯽﺑﺎﺷــﺪ. ارﺗﺒﺎط ﺑﯿﻦ ﻧﺘﺎﯾﺞ آزﻣﺎﯾﺶ ﺧﺮداﯾﺶ و وﯾﮋﮔﯽﻫﺎي زﻣﯿﻦ ﺷــﻨﺎﺳــﯽ ﻧﺸــﺎن ﻣﯽدﻫﺪ ﮐﻪ ﻟﯿﺘﻮﻟﻮژي ﯾﮏ وﯾﮋﮔﯽ ﮐﻠﯿﺪي ﺗﻌﯿﯿﻦﮐﻨﻨﺪه ﺗﻐﯿﯿﺮﭘﺬﯾﺮي ﺳــﺨﺘﯽ ﺧﺮداﯾﺶ ﻣﯽﺑﺎﺷــﺪ. ﻋﻼوهﺑﺮ اﯾﻦ، دﮔﺮﺳــﺎﻧﯽ ﮔﺮﻣﺎﺑﯽ ﯾﮏ ﻣﻮﻟﻔﻪ ﻣﻮﺛﺮ ﺑﺮ ﺧﺮداﯾﺶ در ﺑﺎزهﻫﺎي زﻣﺎﻧﯽ ﮐﻪ ﮐﺎرﺧﺎﻧﻪ ﺻﺮﻓﺎ ﺑﺎ ﯾﮏ ﻧﻮع ﻟﯿﺘﻮﻟﻮژي ﺧﺎص ﺑﺎردﻫﯽ ﻣﯽﺷﻮد، ﺧﻮاﻫﺪ ﺑﻮد.
Keywords :
Porphyry copper , Geometallurgy , Geometallurgical index , Ore variability , SPI
Journal title :
Journal of Mining and Environment