A low-cost beneficiation process for high-silicon and high-calcium magnesite
A high-calcium magnesite and low-cost technology, applied in solid separation, chemical instruments and methods, wet separation, etc., can solve the problems of fragile equipment, large floor area, small processing capacity, etc., to save basic investment, The effect of small footprint and small size
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Embodiment 1
[0029] The present invention is a low-cost beneficiation process for high-silicon and high-calcium magnesite. The main chemical components of the processed high-silicon and high-calcium magnesite raw ore are: 46.20% of magnesium oxide, 2.28% of silicon dioxide, and 1.92% of calcium oxide. High-pressure roller mill, to obtain medium crushing products with a particle size of less than 2mm, and feed the medium crushed products with a particle size of less than 2mm into a first-stage grid-type ball mill for grinding, and the particle size of the first-stage grid-type ball mill is -0.076mm 40%, the particle size of the first-stage grid ball mill is -0.076mm, accounting for 40%, and the grinding products are fed into the closed-circuit grinding operation composed of the second-stage grid-type ball mill and the spiral classifier, and the particle size of the second-stage grid-type ball mill is -0.076mm 70-80% of the overflow product enters the next process of flotation, and the spiral...
Embodiment 2
[0031] The present invention is a low-cost beneficiation process for high-silicon and high-calcium magnesite. The main chemical components of the processed high-silicon and high-calcium magnesite raw ore are: 45.80% of magnesium oxide, 2.28% of silicon dioxide, and 1.50% of calcium oxide. High-pressure roller mill, the product particle size is below 2mm, and the medium crushing product with a product particle size below 2mm is obtained, and the medium crushing product with a particle size below 2mm is fed into a first-stage grid-type ball mill for grinding, and the grinding product of the first-stage grid-type ball mill The particle size is -0.076mm, which accounts for 45%, and the particle size of the first-stage grid type ball mill is -0.076mm, which accounts for 45%. The ball mill particle size is -0.076mm, accounting for 70-80% of the overflow product enters the next process of flotation, and the spiral classifier returns to the second-stage ball mill; the second-stage latt...
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