Magnetite iron ore green pellets are produced by balling moist concentrates to green pellets, which are then dried, oxidized to hematite, sintered, cooled and transported to steelmaking plants. The existing theory for balling is based on the capillary theory, but its applicability under industrial balling conditions is unclear. The aim of this study has been to clarify the principal mechanisms controlling the properties of iron ore green pellets. Special attention has been paid to studying how variations in raw material fineness influence green pellets behaviour during balling, oxidation and sintering. This knowledge of the principal mechanisms is needed to provide a sound basis for a successful process control strategy. The applied approac...
In order to meet the future demand of pellets for the blast furnace, the output of the grinding circ...
Recently, the grade of iron ore deposits has deteriorated and further development of low grade depos...
Pellet in duration at high temperature for its hardening is an energy intensive process. Especially...
Magnetite iron ore green pellets are produced by balling moist concentrates to green pellets, which ...
Now-a-days, the most of the entrepreneurs and industrialists are looking forward to the value added ...
In Europe, Sweden has the richest magnetite ore deposits. The mined magnetite ore is ground, benefic...
In order to establish the pelletizing characteristics of different types of fine raw materials repre...
One of the measures of development and economy of a nation is its per capita consumption of steel, a...
In the era of globalization with increasing environmental awareness, sustainable utilization of the ...
This study investigates the influence of the morphology of concentrate on the oxidation and sinterin...
Pelletization is by far the leading agglomeration technique practiced in Sweden and also across the ...
The present paper deals with the general rule for pelletizng of the different types of fine iron ore...
Blaine fineness is one of the most important parameters in pelletising. While the lower Blaine finen...
Bentonite and calcium hydroxide are the widely used binding materials in iron ore pelletizing plants...
Iron ore pellets are largely characterized by inherent physical and chemical properties of ore as we...
In order to meet the future demand of pellets for the blast furnace, the output of the grinding circ...
Recently, the grade of iron ore deposits has deteriorated and further development of low grade depos...
Pellet in duration at high temperature for its hardening is an energy intensive process. Especially...
Magnetite iron ore green pellets are produced by balling moist concentrates to green pellets, which ...
Now-a-days, the most of the entrepreneurs and industrialists are looking forward to the value added ...
In Europe, Sweden has the richest magnetite ore deposits. The mined magnetite ore is ground, benefic...
In order to establish the pelletizing characteristics of different types of fine raw materials repre...
One of the measures of development and economy of a nation is its per capita consumption of steel, a...
In the era of globalization with increasing environmental awareness, sustainable utilization of the ...
This study investigates the influence of the morphology of concentrate on the oxidation and sinterin...
Pelletization is by far the leading agglomeration technique practiced in Sweden and also across the ...
The present paper deals with the general rule for pelletizng of the different types of fine iron ore...
Blaine fineness is one of the most important parameters in pelletising. While the lower Blaine finen...
Bentonite and calcium hydroxide are the widely used binding materials in iron ore pelletizing plants...
Iron ore pellets are largely characterized by inherent physical and chemical properties of ore as we...
In order to meet the future demand of pellets for the blast furnace, the output of the grinding circ...
Recently, the grade of iron ore deposits has deteriorated and further development of low grade depos...
Pellet in duration at high temperature for its hardening is an energy intensive process. Especially...