A typical high-alumina containing iron ore slime from the eastern Indian sector containing 58.13% Fe, 6.48% SiO2, 4.9% Al2O3, and 5.35% LOI, have been evaluated to find out whether grinding of the slimes will be beneficial or not for upgrading the slime to generate pellet-grade concentrate with >64% Fe. Liberation studies indicated that there is significant interlocking between the minerals above 0.074 mm and hence grinding was adopted to liberate the minerals. It is found that by one-stage grinding, followed by hydrocycloning and magnetic separation by wet high intensity magnetic separator (WHIMS) can produce desired concentrate with >64% Fe with an yield over 60%
Typical Indian iron ore slime in a steel plant contains 56% iron, 6.78% Al(2)O(3) and 5.8% SiO(2). V...
In India, the beneficiation of high grade and medium grade iron ore is limited to mainly washing scr...
A sub grade iron ore sample from SJH mine, Sandur, Karnataka state was received for evolving a proce...
India is endowed with large reserves of high grade hematitic iron ores. However, steady depletion of...
In India iron ores processing industries play a vital role in Indian economy. During washing and pro...
The generation of iron ore slimes in India is estimated to be 10-15% by weight of the total iron ore...
Detailed characterization followed by beneficiation of low-grade iron ore slime from Jilling Langalo...
Indian iron ore is generally friable in nature that results in generation of significant quantity of...
The Iron ore processing plants have been invariably generating slimes in the range of 10 – 15 % of t...
Beneficiation of iron ore slimes has been studied. Three different iron ore slimes from chitradurga,...
Indian iron ore industry is one of the world’s largest and growing at a rapid pace. Approximately 15...
Iron ore slime is a waste material generated after beneficiation of iron ores. Due to limited iron ...
India has extensive reserves of iron ore. Due to the high quality of iron ore available in India, la...
Physical processing of low grade (28% Fe) iron ore slime from Krivoy Rog province of Ukraine is inve...
India occupies sixth position in the world's Iron-ore reserves and is one of the major Iron-ore p...
Typical Indian iron ore slime in a steel plant contains 56% iron, 6.78% Al(2)O(3) and 5.8% SiO(2). V...
In India, the beneficiation of high grade and medium grade iron ore is limited to mainly washing scr...
A sub grade iron ore sample from SJH mine, Sandur, Karnataka state was received for evolving a proce...
India is endowed with large reserves of high grade hematitic iron ores. However, steady depletion of...
In India iron ores processing industries play a vital role in Indian economy. During washing and pro...
The generation of iron ore slimes in India is estimated to be 10-15% by weight of the total iron ore...
Detailed characterization followed by beneficiation of low-grade iron ore slime from Jilling Langalo...
Indian iron ore is generally friable in nature that results in generation of significant quantity of...
The Iron ore processing plants have been invariably generating slimes in the range of 10 – 15 % of t...
Beneficiation of iron ore slimes has been studied. Three different iron ore slimes from chitradurga,...
Indian iron ore industry is one of the world’s largest and growing at a rapid pace. Approximately 15...
Iron ore slime is a waste material generated after beneficiation of iron ores. Due to limited iron ...
India has extensive reserves of iron ore. Due to the high quality of iron ore available in India, la...
Physical processing of low grade (28% Fe) iron ore slime from Krivoy Rog province of Ukraine is inve...
India occupies sixth position in the world's Iron-ore reserves and is one of the major Iron-ore p...
Typical Indian iron ore slime in a steel plant contains 56% iron, 6.78% Al(2)O(3) and 5.8% SiO(2). V...
In India, the beneficiation of high grade and medium grade iron ore is limited to mainly washing scr...
A sub grade iron ore sample from SJH mine, Sandur, Karnataka state was received for evolving a proce...