© 2018 Elsevier B.V. Electrochemical experiments with a chalcopyrite rotating disk electrode were carried out in alkaline glycine solutions. This showed no apparent passivation behaviour during anodic dissolution that is observed in acid solutions. The current increased with applied potential from the open circuit potential with no resemblance to the passivation region seen in acid solutions. A loosely held porous layer developed on the surface consisting largely of iron oxyhydroxides that had a limited effect on the anodic current. Elemental sulfur and a disulfide species were detected using XPS and Raman spectroscopy but did not passivate the surface as has been proposed for acid solutions. The disulfide species is sometimes used to infer...
The mechanism of dithiophosphinate (DTPI) adsorption on chalcopyrite was investigated by diffuse ref...
The electrochemical behavior of chalcopyrite and pyrite in acidic ferric solutions was investigated ...
Chalcopyrite accounts for about 70% of all known copper deposits. Low-grade chalcopyrite deposits ma...
A detailed study has been undertaken into the electrochemistry of the leaching of chalcopyrite in ac...
The surface chemical information of massive chalcopyrite electrode during electrochemical oxidation ...
This paper summarizes the results of a voltammetric study of the anodic characteristics of chalcopyr...
The passivity of iron in borate buffer solutions and its breakdown in presence of sulfide ions was s...
Cyclic voltammetry and potentiodynamic polarization analyses were utilized to investigate the mechan...
The dissolution of chalcopyrite has been studied from an integrated point of view where the thermod...
Ammoniacal solutions are an effective lixiviant for the oxidative dissolution of some mineral sulphi...
Chalcopyrite in contact with water is thermodynamically unstable in the presence of oxygen. Oxidatio...
The oxidative behavior of chalcopyrite and enargite in acidic ferric solutions was studied using sur...
The anodic dissolution of chalcopyrite has been examined in chloride and sulphate solutions from 20°...
This paper presents voltammetric and electrochemical impedance studies of the anodic oxidation of ch...
The current work investigates the dissolution of chalcopyrite (CuFeS₂) under two different leaching ...
The mechanism of dithiophosphinate (DTPI) adsorption on chalcopyrite was investigated by diffuse ref...
The electrochemical behavior of chalcopyrite and pyrite in acidic ferric solutions was investigated ...
Chalcopyrite accounts for about 70% of all known copper deposits. Low-grade chalcopyrite deposits ma...
A detailed study has been undertaken into the electrochemistry of the leaching of chalcopyrite in ac...
The surface chemical information of massive chalcopyrite electrode during electrochemical oxidation ...
This paper summarizes the results of a voltammetric study of the anodic characteristics of chalcopyr...
The passivity of iron in borate buffer solutions and its breakdown in presence of sulfide ions was s...
Cyclic voltammetry and potentiodynamic polarization analyses were utilized to investigate the mechan...
The dissolution of chalcopyrite has been studied from an integrated point of view where the thermod...
Ammoniacal solutions are an effective lixiviant for the oxidative dissolution of some mineral sulphi...
Chalcopyrite in contact with water is thermodynamically unstable in the presence of oxygen. Oxidatio...
The oxidative behavior of chalcopyrite and enargite in acidic ferric solutions was studied using sur...
The anodic dissolution of chalcopyrite has been examined in chloride and sulphate solutions from 20°...
This paper presents voltammetric and electrochemical impedance studies of the anodic oxidation of ch...
The current work investigates the dissolution of chalcopyrite (CuFeS₂) under two different leaching ...
The mechanism of dithiophosphinate (DTPI) adsorption on chalcopyrite was investigated by diffuse ref...
The electrochemical behavior of chalcopyrite and pyrite in acidic ferric solutions was investigated ...
Chalcopyrite accounts for about 70% of all known copper deposits. Low-grade chalcopyrite deposits ma...