A novel ore pre-concentration technique using high voltage pulses is proposed in this study. The technique utilises metalliferous grain-induced selective breakage, under a controlled pulse energy loading, and size-based screening to separate the feed ore into body breakage and surface breakage products for splitting of ores by grade. Four copper ore samples were tested to demonstrate the viability of this technique. This study consists of two parts: Part 1 presents the principle, the validation and the major findings; Part 2 discusses the new opportunities and challenges for the mining and mineral industry to take up this technique
In the current energy-sensitive world, sustainable development in the mineral industry will require ...
International audienceElectric pulse fragmentation (EPF) is an innovative technology that uses high-...
Results of comparative liberation tests on electrically disintegrated and mechanically comminuted ox...
High Voltage Pulse (HVP) comminution has the potential to be used in ore pre-concentration. Minerali...
A new comminution method has been developed by applying high voltage pulses at specific energy 1-3 k...
High voltage pulse (HVP) selective breakage followed by screen separation has been shown to have the...
The recent progress in electrical comminution using high-voltage pulses and the technical challenges...
This paper introduces the research progress of pretreatment of ore by high voltage electric pulse te...
Laboratory study has identified a new application of high voltage electrical pulse technology for pr...
High-voltage electrical pulses (HVEP) technology was applied in grinding of a magnetite ore as a com...
SELFRAG AG has developed a flexible pilot scale Pre-Weakening Testing Station (PWTS) using high volt...
The effect of spatial arrangement of feed sample on the breakage degree of high voltage pulse breaka...
Part 1 of this study presented evidence of high voltage pulse (HVP) selective breakage induced by me...
The surface chemistry and mineral liberation changes of a porphyry copper ore after high voltage pul...
Currently the effect of the pre-weakening of ore particles by high voltage pulses is evaluated by th...
In the current energy-sensitive world, sustainable development in the mineral industry will require ...
International audienceElectric pulse fragmentation (EPF) is an innovative technology that uses high-...
Results of comparative liberation tests on electrically disintegrated and mechanically comminuted ox...
High Voltage Pulse (HVP) comminution has the potential to be used in ore pre-concentration. Minerali...
A new comminution method has been developed by applying high voltage pulses at specific energy 1-3 k...
High voltage pulse (HVP) selective breakage followed by screen separation has been shown to have the...
The recent progress in electrical comminution using high-voltage pulses and the technical challenges...
This paper introduces the research progress of pretreatment of ore by high voltage electric pulse te...
Laboratory study has identified a new application of high voltage electrical pulse technology for pr...
High-voltage electrical pulses (HVEP) technology was applied in grinding of a magnetite ore as a com...
SELFRAG AG has developed a flexible pilot scale Pre-Weakening Testing Station (PWTS) using high volt...
The effect of spatial arrangement of feed sample on the breakage degree of high voltage pulse breaka...
Part 1 of this study presented evidence of high voltage pulse (HVP) selective breakage induced by me...
The surface chemistry and mineral liberation changes of a porphyry copper ore after high voltage pul...
Currently the effect of the pre-weakening of ore particles by high voltage pulses is evaluated by th...
In the current energy-sensitive world, sustainable development in the mineral industry will require ...
International audienceElectric pulse fragmentation (EPF) is an innovative technology that uses high-...
Results of comparative liberation tests on electrically disintegrated and mechanically comminuted ox...