A bioelectrochemical study of charge transfer in the biofilm–chalcopyrite interface was performed to investigate the effect of surficial reduced sulfur species (RSS), in the form of non-stochiometric compounds or polysulfides (Sn2−) and elemental sulfur (S0) on a biofilm structure, during the earliest stages (1, 12 and 24 h) of chalcopyrite biooxidation by Acidithiobacillus thiooxidans alone and adding Leptospirillum sp. The surface of massive chalcopyrite electrodes was exposed to the bacteria, which were analyzed electrochemically, spectroscopically, and microscopically. At the studied earlier times, charge transfer and significant differences in the biofilm structure were detected, depending on the presence of Leptospirillum sp. acting o...
Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cell...
Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cell...
The microbiological leaching of chalcopyrite (CuFeS2) is of great interest because of its potential ...
A bioelectrochemical study of charge transfer in the biofilm–chalcopyrite interface was performed to...
"A bioelectrochemical study of charge transfer in the biofilm-chalcopyrite interface was performed t...
Adhesion of Thiobacillus ferrooxidans to pyrite and chalcopyrite in relation to its importance in bi...
Thiobacillus ferrooxidans cells grown on sulfur, pyrite, and chalcopyrite exhibit greater hydrophobi...
To obtain a fundamental understanding of the population behaviour of Acidithiobacillus ferrooxidans ...
Thiobacillus ferrooxidans cells grown on sulfur, pyrite, and chalcopyrite exhibit greater hydrophobi...
Thiobacillus ferrooxidans cells grown on sulfur, pyrite, and chalcopyrite exhibit greater hydrophobi...
Direct contact mechanism in bioleaching implies prior mineral adhesion of Acidithiobacillus ferrooxi...
The catalytic influence of Sulfolobus metallicus in the bioleaching of chalcopyrite at 70 degrees C ...
To obtain a fundamental understanding of the population behaviour of Acidithiobacillus ferrooxidans ...
The effect of the surface microstructure and chemical speciation of chalcopyrite on the attachment b...
The effect of the surface microstructure and chemical speciation of chalcopyrite on the attachment b...
Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cell...
Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cell...
The microbiological leaching of chalcopyrite (CuFeS2) is of great interest because of its potential ...
A bioelectrochemical study of charge transfer in the biofilm–chalcopyrite interface was performed to...
"A bioelectrochemical study of charge transfer in the biofilm-chalcopyrite interface was performed t...
Adhesion of Thiobacillus ferrooxidans to pyrite and chalcopyrite in relation to its importance in bi...
Thiobacillus ferrooxidans cells grown on sulfur, pyrite, and chalcopyrite exhibit greater hydrophobi...
To obtain a fundamental understanding of the population behaviour of Acidithiobacillus ferrooxidans ...
Thiobacillus ferrooxidans cells grown on sulfur, pyrite, and chalcopyrite exhibit greater hydrophobi...
Thiobacillus ferrooxidans cells grown on sulfur, pyrite, and chalcopyrite exhibit greater hydrophobi...
Direct contact mechanism in bioleaching implies prior mineral adhesion of Acidithiobacillus ferrooxi...
The catalytic influence of Sulfolobus metallicus in the bioleaching of chalcopyrite at 70 degrees C ...
To obtain a fundamental understanding of the population behaviour of Acidithiobacillus ferrooxidans ...
The effect of the surface microstructure and chemical speciation of chalcopyrite on the attachment b...
The effect of the surface microstructure and chemical speciation of chalcopyrite on the attachment b...
Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cell...
Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cell...
The microbiological leaching of chalcopyrite (CuFeS2) is of great interest because of its potential ...