Silicon-magnesium laterite-nickel ore cold sintering ball and preparation method thereof
A technology for laterite nickel ore and laterite nickel, which is applied to the field of silicon-magnesium laterite nickel ore cold nodule and its preparation, can solve the problems of complex process, low recovery rate and high nickel content, and achieves uniform combustion, good furnace condition and slag content. The effect of low nickel content
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Embodiment 1
[0018] In the present embodiment, the laterite ore has a moisture content of 33.5%, and the weight ratio of other main components except water is 1.69% Ni, 14.96% Fe, 28.41% SiO 2 , 18.28% MgO, 0.05% Co, 1.12% Cr 2 o 3 .
[0019] Get 150 parts by weight of the laterite ore, dry it to make the moisture (including crystal water and free water) equal to or less than 20%; crush the silicon-magnesium laterite-nickel ore with a block diameter less than 30 mm and a block diameter greater than 60 mm until the particle size is equal to or less than 0.5mm; then mix the silicon magnesium laterite with 18.3 parts by weight of a consolidation agent with a particle size equal to or less than 0.5mm—sawdust; use a ball forming machine to cold-press the mixture into a diameter of 50mm and a strength of 200kg / cm 2 Si-magnesium laterite nickel ore cold nodules.
[0020] The furnace charge is composed of 150 parts by weight of laterite cold pellets and 4.0 parts by weight of limestone.
[002...
Embodiment 2
[0035] In the present embodiment, the laterite ore has a moisture content of 35.5%, and the weight ratio of other main components except water is 1.73% Ni, 10.13% Fe, 30.13% SiO 2 , 20.15% MgO, 0.03% Co, 1.36% Cr 2 o 3 .
[0036] Get the laterite ore R of 155 weight parts 2Dry it to make the moisture (including crystal water and free water) equal to or less than 20%; grind the silicon magnesium laterite nickel ore with a block diameter of less than 30mm and greater than 60mm to a particle size equal to or less than 0.5mm; The ore is mixed with 20.3 parts by weight of a consolidation agent with a particle size equal to or less than 0.5mm—sawdust; the mixture is cold-pressed into a diameter of 50mm with a ball forming machine and the strength is 200kg / cm 2 Si-magnesium laterite nickel ore cold nodules.
[0037] The furnace charge is composed of 155 parts by weight of laterite cold balls and 0.7 parts by weight of slagging agent-limestone.
[0038] During smelting, the charg...
Embodiment 3
[0050] In the present embodiment, the laterite ore has a moisture content of 32.4%, and the weight ratio of other main components except water is 1.78% Ni, 12.75% Fe, 31.13% SiO 2 , 13.13% MgO, 0.02% Co, 1.28% Cr 2 o 3 .
[0051] Get the laterite ore R of 148 weight parts 2 Dry it to make the moisture (including crystal water and free water) equal to or less than 20%; grind the silicon magnesium laterite nickel ore with a block diameter of less than 30mm and greater than 60mm to a particle size equal to or less than 0.5mm; The ore is mixed with a consolidation agent with a particle size equal to or less than 0.5mm—11.5 parts by weight of sawdust; the mixture is cold-pressed into a diameter of 50mm with a ball forming machine and the strength is 200kg / cm 2 Si-magnesium laterite nickel ore cold nodules.
[0052] The furnace charge is composed of 148 parts by weight of laterite ore and 13.1 parts by weight of slagging agent—limestone.
[0053] During smelting, the charge is ...
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