The surface oxidation and hydrophobicity of natural enargite (Cu 3AsS4) and the formation of oxidation species at the mineral surface have been examined by a novel experimental approach that combines electrochemical techniques and atomic force microscopy (AFM). This approach allows for in-situ, synchronized electrochemical control and examination of the oxidative surface morphology of enargite. Combined with ex-situ cryo X-ray photoelectron spectroscopy surface analysis, the surface speciation of enargite surface oxidation has been obtained, comparing the newly fractured natural enargite surface with those that have been electrochemically oxidized at pHs 4 and 10. At pH 4, surface layer formations consisting of metal-deficient sulfide and e...
The surface oxidation of sulfide minerals in aqueous solutions is an important sub-process in sulfid...
Raman spectroscopy has been a useful technology for fundamental studies in the mining industry. Surf...
In previous study, the promising results of separating enargite from non-arsenic copper sulfides wer...
The surface oxidation and hydrophobicity of natural enargite (Cu<sub>3</sub>AsS<sub>4</sub>) and the...
Enargite is a significant penalty mineral in the copper industry and its separation from many copper...
Enargite, a copper arsenic sulfide having the formula Cu3AsS4, is a source of arsenic and may cause ...
Enargite surface reactivity in acidic ferric solutions simulating the acid mine drainage (AMD) envir...
We previously investigated oxidation of the surface of natural enargite (Cu3AsS4) under potentiostat...
In this work, the microbe-mediated oxidative dissolution of enargite surfaces (Cu3AsS4) was studied ...
The surface chemical state and composition of natural and synthetic enargite samples were characteri...
Enargite, Cu3AsS4, is common in some deposit types, e.g. porphyry systems and high sulphidation epit...
Enargite (Cu3AsS4) is a common penalty mineral in the copper mining industry. Different treatment me...
The surface oxidation of sulfide minerals, such as galena (PbS), in aqueous solutions is of critical...
Biooxidation processes (oxidation mediated by microorganisms) of sulfide minerals are particularly s...
The oxidative behavior of chalcopyrite and enargite in acidic ferric solutions was studied using sur...
The surface oxidation of sulfide minerals in aqueous solutions is an important sub-process in sulfid...
Raman spectroscopy has been a useful technology for fundamental studies in the mining industry. Surf...
In previous study, the promising results of separating enargite from non-arsenic copper sulfides wer...
The surface oxidation and hydrophobicity of natural enargite (Cu<sub>3</sub>AsS<sub>4</sub>) and the...
Enargite is a significant penalty mineral in the copper industry and its separation from many copper...
Enargite, a copper arsenic sulfide having the formula Cu3AsS4, is a source of arsenic and may cause ...
Enargite surface reactivity in acidic ferric solutions simulating the acid mine drainage (AMD) envir...
We previously investigated oxidation of the surface of natural enargite (Cu3AsS4) under potentiostat...
In this work, the microbe-mediated oxidative dissolution of enargite surfaces (Cu3AsS4) was studied ...
The surface chemical state and composition of natural and synthetic enargite samples were characteri...
Enargite, Cu3AsS4, is common in some deposit types, e.g. porphyry systems and high sulphidation epit...
Enargite (Cu3AsS4) is a common penalty mineral in the copper mining industry. Different treatment me...
The surface oxidation of sulfide minerals, such as galena (PbS), in aqueous solutions is of critical...
Biooxidation processes (oxidation mediated by microorganisms) of sulfide minerals are particularly s...
The oxidative behavior of chalcopyrite and enargite in acidic ferric solutions was studied using sur...
The surface oxidation of sulfide minerals in aqueous solutions is an important sub-process in sulfid...
Raman spectroscopy has been a useful technology for fundamental studies in the mining industry. Surf...
In previous study, the promising results of separating enargite from non-arsenic copper sulfides wer...