Iron ore beneficiation technologies in Russia and ways to improve their efficiency
Технологии обогащения железных руд в России и пути повышения их эффективности
2022-11-10
SCID: 54.1/qau422p9
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dry magnetic separationgrinding circuit optimizationhematite-magnetite oresiron ore beneficiationtitanomagnetite ores
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Abstract (AI)
Increasing the efficiency of crushing circuits is associated with a decrease in the particle size of finely crushed ore and the use of dry magnetic separation of crushed ore. Reducing grinding costs is achieved by using drum mills jointly with mills of other designs. The use of automation systems, slurry demagnetization, technologies with staged concentrate separation, and beneficiation and fine screening in a closed grinding cycle lead to a reduction in grinding costs. The main industrial technology for improving the quality of concentrate is its additional beneficiation using regrinding, fine screening, flotation, and magnetic-gravity separators. Increasing the integrated use of iron ore raw materials is associated with an increase in the yield of iron concentrate and the production of hematite concentrate during the beneficiation of hematite-magnetite ores and ilmenite concentrate during the beneficiation of titanomagnetite ores. Incremented concentrate yield is possible by using magnetic separators with an increased magnetic induction up to 0.25-0.5 T in the first stages of beneficiation. To obtain hematite and ilmenite concentrates, combined technologies can be used, including fine screening, high-gradient magnetic, gravity, flotation, and electrical separation.
Key Findings
1
Concentrate quality is primarily improved through additional beneficiation involving regrinding, fine screening, flotation, and magnetic-gravity separation.
2
Crushing efficiency can be improved by producing finer crushed ore and applying dry magnetic separation before grinding.
3
Grinding costs can be reduced through combined use of drum mills and other mill designs, alongside automation, slurry demagnetization, staged separation, and closed-cycle fine screening.
4
More complete utilization of iron ore resources requires increasing iron concentrate yield and recovering hematite from hematite-magnetite ores and ilmenite from titanomagnetite ores.
5
Using magnetic separators with magnetic induction of 0.25–0.5 T in initial beneficiation stages can increase concentrate yield; hematite and ilmenite recovery requires combined separation technologies.
Research Object
Iron ore beneficiation technologies and iron ore raw materials in Russia
Research Subject
Efficiency improvement through crushing, grinding, separation, concentrate upgrading, and integrated utilization of iron ores
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2022-11-10
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