Simulation of the Mineração Serra Grande Industrial Grinding Circuit

Abstract Increasing throughput during the mining cycle operation frequently generates significant capital gains for a company. However, it is necessary to evaluate plant capacity and expand it for obtaining the required throughput increase. Therefore, studies including different scenarios, installat...

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Main Authors: Thiago Oliveira Nunan, Homero Delboni Junior
Format: Article
Language:English
Published: Fundação Gorceix
Series:REM: International Engineering Journal
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2017000300347&lng=en&tlng=en
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spelling doaj-cdb86fa53cdf480e82b0271ea89f1e262020-11-24T23:27:54ZengFundação GorceixREM: International Engineering Journal2448-167X70334735510.1590/0370-44672016700114S2448-167X2017000300347Simulation of the Mineração Serra Grande Industrial Grinding CircuitThiago Oliveira NunanHomero Delboni JuniorAbstract Increasing throughput during the mining cycle operation frequently generates significant capital gains for a company. However, it is necessary to evaluate plant capacity and expand it for obtaining the required throughput increase. Therefore, studies including different scenarios, installation of new equipment and/or optimization of existing ones are required. This study describes the sampling methodology, sample characterization, modeling and simulation of Mineração Serra Grande industrial grinding circuit, an AngloGold Ashanti company, located in Crixás, State of Goiás, Brazil. The studied scenarios were: (1) adding a third ball mill in series with existing two ball mills, (2) adding a third ball mill in parallel with existing mills, (3) adding a vertical mill in series with existing mills and (4) adding high pressure grinding rolls to existing mills. The four simulations were carried out for designing the respective circuit, assessing the interference with existing equipment and installations, as well as comparing the energy consumption among the selected expansion alternatives. Apart from the HPGR alternative, all other three simulations resulted in the required P80 and capacity. Among the three selected simulations, the Vertimill alternative showed the smallest installed power.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2017000300347&lng=en&tlng=enmodelinggrindingball millingvertical millingsimulations
collection DOAJ
language English
format Article
sources DOAJ
author Thiago Oliveira Nunan
Homero Delboni Junior
spellingShingle Thiago Oliveira Nunan
Homero Delboni Junior
Simulation of the Mineração Serra Grande Industrial Grinding Circuit
REM: International Engineering Journal
modeling
grinding
ball milling
vertical milling
simulations
author_facet Thiago Oliveira Nunan
Homero Delboni Junior
author_sort Thiago Oliveira Nunan
title Simulation of the Mineração Serra Grande Industrial Grinding Circuit
title_short Simulation of the Mineração Serra Grande Industrial Grinding Circuit
title_full Simulation of the Mineração Serra Grande Industrial Grinding Circuit
title_fullStr Simulation of the Mineração Serra Grande Industrial Grinding Circuit
title_full_unstemmed Simulation of the Mineração Serra Grande Industrial Grinding Circuit
title_sort simulation of the mineração serra grande industrial grinding circuit
publisher Fundação Gorceix
series REM: International Engineering Journal
issn 2448-167X
description Abstract Increasing throughput during the mining cycle operation frequently generates significant capital gains for a company. However, it is necessary to evaluate plant capacity and expand it for obtaining the required throughput increase. Therefore, studies including different scenarios, installation of new equipment and/or optimization of existing ones are required. This study describes the sampling methodology, sample characterization, modeling and simulation of Mineração Serra Grande industrial grinding circuit, an AngloGold Ashanti company, located in Crixás, State of Goiás, Brazil. The studied scenarios were: (1) adding a third ball mill in series with existing two ball mills, (2) adding a third ball mill in parallel with existing mills, (3) adding a vertical mill in series with existing mills and (4) adding high pressure grinding rolls to existing mills. The four simulations were carried out for designing the respective circuit, assessing the interference with existing equipment and installations, as well as comparing the energy consumption among the selected expansion alternatives. Apart from the HPGR alternative, all other three simulations resulted in the required P80 and capacity. Among the three selected simulations, the Vertimill alternative showed the smallest installed power.
topic modeling
grinding
ball milling
vertical milling
simulations
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2017000300347&lng=en&tlng=en
work_keys_str_mv AT thiagooliveiranunan simulationofthemineracaoserragrandeindustrialgrindingcircuit
AT homerodelbonijunior simulationofthemineracaoserragrandeindustrialgrindingcircuit
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