Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto

Mining currently has encountered great difficulties in obtaining high-grade ores due to depletion of mineral reserves. Conventional methods of extraction of metals (pyrometallurgy) present high energy costs and are unfriendly to the environment (e.g SO2 emissions). For this reason, alternative metho...

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Autores principales: Firmino, Stella Maris, Rosa, Tahuany, Bevilaqua, Denise
Formato: Objeto de conferencia
Lenguaje:Portugués
Publicado: 2012
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/26430
http://www.congresos.unlp.edu.ar/index.php/CCMA/7CCMA/paper/viewFile/901/324
Aporte de:
id I19-R120-10915-26430
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Portugués
topic Ecología
medio ambiente
Minería
Metales
Bacterias
biolixiviação
micro-organismos
bioleaching
micro-organisms
spellingShingle Ecología
medio ambiente
Minería
Metales
Bacterias
biolixiviação
micro-organismos
bioleaching
micro-organisms
Firmino, Stella Maris
Rosa, Tahuany
Bevilaqua, Denise
Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto
topic_facet Ecología
medio ambiente
Minería
Metales
Bacterias
biolixiviação
micro-organismos
bioleaching
micro-organisms
description Mining currently has encountered great difficulties in obtaining high-grade ores due to depletion of mineral reserves. Conventional methods of extraction of metals (pyrometallurgy) present high energy costs and are unfriendly to the environment (e.g SO2 emissions). For this reason, alternative methods to minimize operating costs and the environmental impacts have been required. Thus, the use of bacteria as catalyst for the leaching of low-grade ores is an interesting alternative for mining companies. The main bacterium involved in bioleaching is Acidithiobacillus ferrooxidans, a microorganism chemolitotrofic and acidophilic that obtains energy through oxidation of ferrous ions and reduced sulfur compounds. This study used different strains of A. ferrooxidans from the collection belonging to the Biohydrometallurgy laboratory (IQUNESP) and strain ATCC 23270. For this purpose, the mentioned strains were used for kinetic studies of oxidation of ferrous ions in the presence of different concentrations of chloride ions (mmol L-1): 0, 50, 100, 200, 400 e 500. Respirometric studies were also done in the presence of 50 mmol. L-1 of chloride ions, since this was the concentration in which all strains showed no significant inhibition. In kinetic studies the most tolerant strain was the AMF. Analyzing the respirometric data a crescent order of inhibition was proposed: (AMF ≈ LR ≈ V3) > ATCC> PCEL> SJ22> S> SSP> CMV> PCE.
format Objeto de conferencia
Objeto de conferencia
author Firmino, Stella Maris
Rosa, Tahuany
Bevilaqua, Denise
author_facet Firmino, Stella Maris
Rosa, Tahuany
Bevilaqua, Denise
author_sort Firmino, Stella Maris
title Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto
title_short Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto
title_full Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto
title_fullStr Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto
title_full_unstemmed Biossolubilização da calcopirita (cufes<SUB>2</SUB>) na presença de íons cloreto
title_sort biossolubilização da calcopirita (cufes<sub>2</sub>) na presença de íons cloreto
publishDate 2012
url http://sedici.unlp.edu.ar/handle/10915/26430
http://www.congresos.unlp.edu.ar/index.php/CCMA/7CCMA/paper/viewFile/901/324
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AT bevilaquadenise biossolubilizacaodacalcopiritacufessub2subnapresencadeionscloreto
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