This study investigates the influence of the morphology of concentrate on the oxidation and sintering rates of magnetite pellets during induration and its impact on the indurated pellets' quality. Various morphologies of concentrates were obtained by ball milling (BM) and high-pressure grinding rolls (HPGR). Pelletizing and induration processes were carried out at different temperatures and times. After a comparative study of the physical characteristics of concentrate powders, the effect of morphology was evaluated through thermal behavior during induration. The physical, microstructural, and strength properties of pellets were also investigated. The HPGR concentrate had angular and elongated-shaped particles with a broad particle size dis...
The quality of magnetite pellet is primarily determined by the physico-chemical changes the pellet u...
The quality of product pellets is a result of the physico-chemical phenomena involved in the indurat...
Oxidation is a vital phenomenon for magnetite pellets in their excursion through the furnace during ...
In Europe, Sweden has the richest magnetite ore deposits. The mined magnetite ore is ground, benefic...
The induration of magnetite pellets is a complex physico-chemical process that involves oxidation, s...
One of the measures of development and economy of a nation is its per capita consumption of steel, a...
Induration of magnetite pellet is a complex physico-chemical process involving oxidation, sintering ...
Induration of magnetite pellet involves three important phenomena, namely oxidation, sintering and a...
Iron ore concentrate pellets are now sintered (induration heat hardened) under oxidizing conditions....
In the era of globalization with increasing environmental awareness, sustainable utilization of the ...
Pelletization is by far the leading agglomeration technique practiced in Sweden and also across the ...
Magnetite iron ore green pellets are produced by balling moist concentrates to green pellets, which ...
Haematite ore pellets require very high induration temperature (>1573 K) while, magnetite ore pellet...
The quality of magnetite pellet is primarily determined by the physico-chemical changes the pellet u...
The quality of product pellets is a result of the physico-chemical phenomena involved in the indurat...
Oxidation is a vital phenomenon for magnetite pellets in their excursion through the furnace during ...
In Europe, Sweden has the richest magnetite ore deposits. The mined magnetite ore is ground, benefic...
The induration of magnetite pellets is a complex physico-chemical process that involves oxidation, s...
One of the measures of development and economy of a nation is its per capita consumption of steel, a...
Induration of magnetite pellet is a complex physico-chemical process involving oxidation, sintering ...
Induration of magnetite pellet involves three important phenomena, namely oxidation, sintering and a...
Iron ore concentrate pellets are now sintered (induration heat hardened) under oxidizing conditions....
In the era of globalization with increasing environmental awareness, sustainable utilization of the ...
Pelletization is by far the leading agglomeration technique practiced in Sweden and also across the ...
Magnetite iron ore green pellets are produced by balling moist concentrates to green pellets, which ...
Haematite ore pellets require very high induration temperature (>1573 K) while, magnetite ore pellet...
The quality of magnetite pellet is primarily determined by the physico-chemical changes the pellet u...
The quality of product pellets is a result of the physico-chemical phenomena involved in the indurat...
Oxidation is a vital phenomenon for magnetite pellets in their excursion through the furnace during ...