Electrochemistry plays an important role in the flotation of base metal sulphide minerals. During grinding a galvanic interaction occurs between minerals and grinding media and controls the iron contamination on mineral surfaces, which depresses mineral flotation significantly. In this study, the galvanic interaction was quantified by measuring the iron oxidation species originated from grinding media by ethylene diamine-tetra acid (EDTA) extraction in single mineral and mixed mineral systems. It was found that the extent of galvanic interaction between minerals and grinding media was intimately associated with the electrochemical reactivity of minerals. The nobler the mineral, the stronger the galvanic interaction with grinding media, and ...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
Electrochemistry plays an important role in the flotation of base metal sulphide minerals. During gr...
In a previous study, it was found that iron contamination from grinding media played a dominant role...
The Magotteaux Mill® system was used to quantify the galvanic interaction between four types of grin...
A specialized grinding system linked to an electrochemical analysis set was used to quantify galvani...
The effect of galvanic interactions among sulphide minerals such as chalcopyrite, galena and sphaler...
The effect of galvanic interactions among sulphide minerals such as chalcopyrite, galena and sphaler...
The effect of galvanic interactions among sulphide minerals such as chalcopyrite, galena and sphaler...
Galvanic interaction between electrically conducting minerals may affect the mineral surface and inf...
Galvanic interaction between electrically conducting minerals may affect the mineral surface and inf...
Galvanic interaction between electrically conducting minerals may affect the mineral surface and inf...
Metal sulphides are usually semiconductor and their electrical conductivity is low; therefore they a...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
Electrochemistry plays an important role in the flotation of base metal sulphide minerals. During gr...
In a previous study, it was found that iron contamination from grinding media played a dominant role...
The Magotteaux Mill® system was used to quantify the galvanic interaction between four types of grin...
A specialized grinding system linked to an electrochemical analysis set was used to quantify galvani...
The effect of galvanic interactions among sulphide minerals such as chalcopyrite, galena and sphaler...
The effect of galvanic interactions among sulphide minerals such as chalcopyrite, galena and sphaler...
The effect of galvanic interactions among sulphide minerals such as chalcopyrite, galena and sphaler...
Galvanic interaction between electrically conducting minerals may affect the mineral surface and inf...
Galvanic interaction between electrically conducting minerals may affect the mineral surface and inf...
Galvanic interaction between electrically conducting minerals may affect the mineral surface and inf...
Metal sulphides are usually semiconductor and their electrical conductivity is low; therefore they a...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...
The formation of hydrogen peroxide (H2O2), an oxidizing agent stronger than oxygen, by sulphide mine...