Anion composite powder suitable for building materials
A composite powder and negative ion technology, applied in the field of composite powder, can solve the problems of low negative ion concentration and poor efficacy durability, and achieve the effects of low price, air purification and simple production process
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Embodiment example 1
[0020] Weigh 30 parts of black tourmaline powder with a particle size of 30 μm, 20 parts of red zinc ore powder with a particle size of 40 μm, 1 part of calcium stearate, 1 part of zinc oxide, 1 part of cerium oxide, and 1 part of ferric oxide. 1 part of stone powder, 1-8 parts of sodium hexametaphosphate, mixed evenly by a dry powder mixer, can obtain negative oxygen ion composite powder.
Embodiment example 2
[0022] Weigh 80 parts of black tourmaline powder with a particle size of 20 μm, 40 parts of red zinc ore powder with a particle size of 25 μm, 8 parts of calcium stearate, 5 parts of zinc oxide, 8 parts of cerium oxide, 30 parts of rare earth, ferric oxide 30 parts, 8 parts of monazite powder, and 8 parts of sodium hexametaphosphate are mixed evenly by a dry powder mixer to obtain negative oxygen ion composite powder.
Embodiment example 3
[0024] Weigh 40 parts of black tourmaline powder with a particle size of 10 μm, 30 parts of red zinc ore powder with a particle size of 15 μm, 4 parts of calcium stearate, 3 parts of zinc oxide, 4 parts of cerium oxide, 16 parts of rare earth, ferric oxide 15 parts, 5 parts of monazite powder, and 5 parts of sodium hexametaphosphate, mixed evenly by a dry powder mixer, can obtain negative oxygen ion composite powder.
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