Method for producing high-purity magnesium oxide through utilizing low-grade magnesium oxide and magnesite
A magnesium oxide, low-grade technology, applied in the direction of magnesium oxide, etc., can solve problems such as magnesium chloride pollution, achieve the effects of solving environmental pollution, considerable economic and social benefits, and reducing production costs
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Embodiment 1
[0016] Implementation example 1 (production of high-purity MgO ceramics)
[0017] (1) Preparation of raw materials
[0018] The fused magnesium was pulverized and passed through a 100-mesh sieve.
[0019] (2) Mixing and ball milling
[0020] Fused magnesium and a certain proportion of MgF 2 , rosin and alcohol are mixed, the content of magnesium oxide in fused magnesium is 94.0%-97.5% (mass percentage), MgF 2 The addition amount of fused magnesium is 0.1-15.0% (mass percentage).
[0021] After stirring evenly, perform ball milling, and pass the ball-milled slurry through a 200-mesh sieve.
[0022] (3) drying
[0023] The ball-milled slurry is dried to form a slurry block, and the drying temperature is less than 100°C.
[0024] (4) Crushing and spray granulation
[0025] The dried powder is pulverized and passed through a 100-mesh sieve, sprayed and granulated, and then the powder is passed through a 60-mesh and 100-mesh sieve, and the powder in between is taken, ...
Embodiment 2
[0034] Implementation example 2 (production of high-purity MgO ceramics)
[0035] (1) Preparation of raw materials
[0036] The fused magnesium was pulverized and passed through a 100-mesh sieve.
[0037] (2) Mixing and ball milling
[0038] Mix fused magnesia with a certain proportion of magnesium chloride, rosin and alcohol produced in the process of producing sponge titanium. The content of magnesium oxide in fused magnesia is 94.0%-97.5% (mass percentage), and the content of magnesium oxide produced in the process of producing sponge titanium The added amount of magnesium chloride is 0.1-15.0% (mass percentage) of the fused magnesium.
[0039] After stirring evenly, perform ball milling, and pass the ball-milled slurry through a 200-mesh sieve.
[0040] (3) drying
[0041] The ball-milled slurry is dried to form a slurry block, and the drying temperature is less than 100°C.
[0042] (4) Crushing and spray granulation
[0043] The dried powder is pulverized and...
Embodiment 3
[0052] Implementation example 3 (production of high-purity MgO sand, powder)
[0053] (1) Preparation of raw materials
[0054] The fused magnesia is pulverized and passed through a 100-mesh sieve, and the content of magnesium oxide in the fused magnesia is 94.0%-97.5% (mass percentage).
[0055] (2) Mixing and ball milling
[0056] Fused magnesium and a certain proportion of MgF 2 For mixing, MgF 2 The addition amount of fused magnesium is 0.1-15.0% (mass percentage).
[0057] After stirring, ball milling was performed.
[0058] (3) Carry out calcination and heat preservation treatment at 300-1600°C, so that impurities such as Fe, Si and Ti in fused magnesium can be mixed with MgF 2 Fully react and evaporate.
[0059] (4) Cooling and crushing
[0060]After one hour of heat preservation, the high-purity magnesium oxide is cooled and then crushed and classified. The content of the prepared magnesium oxide is 98.0-99.5%.
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