Preparation method for potassium titanate crystal whisker or potassium titanate granule based on disintegration effect
A technology of potassium titanate whiskers and potassium titanate, which is applied in the field of nano and micro material preparation, can solve the problems of corrosion loss, high energy consumption, high calcination temperature, etc., and achieve the advantages of short production cycle, low production cost and low calcination temperature Effect
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Embodiment 1
[0061] Embodiment 1 directly disintegrates synthetic nanometer K 2 Ti 6 o 13 Whiskers (as shown in Figure 2)
[0062] (1) Titanium dioxide (TiO 2 ) (its particle size is 100-300nm, average 200nm) is mixed with industrial potassium carbonate in a molar ratio of 3:1;
[0063] (2) The mixed powder is calcined at 950° C. for 1 hour in a rapid disintegration calciner;
[0064] (3) Nano K was obtained after washing and drying 2 Ti6 o 13 Whiskers (less than 100 nm in diameter).
Embodiment 2
[0065] Example 2 Indirect disintegration and series-parallel combination into micron K 2 Ti 6 o 13 Whiskers (as shown in Figure 5d)
[0066] (1) Titanium dioxide (particle size 100-300nm, average 200nm) is dry mixed with industrial potassium carbonate in a molar ratio of 4:1.
[0067] (2) The mixed powder is calcined at 950° C. for 0.5 hour in a rapid disintegration calciner.
[0068] (3) Continue calcining at 1050° C. for 1 hour.
[0069] (4) Micron K obtained after washing and drying 2 Ti 6 o 13 Whiskers (greater than 100 nm in diameter).
Embodiment 3
[0070] Example 3 Indirect disintegration and series-parallel combination into micron K 2 Ti 6 o 13 Whiskers (as shown in Figure 5c)
[0071] (1) Titanium dioxide (particle size 100-300nm, average 200nm) is dry mixed with industrial potassium carbonate in a molar ratio of 5:1.
[0072] (2) The mixed powder is calcined at 1000° C. for 2 hours in a rapid disintegration calciner.
[0073] (3) Micron K obtained after washing and drying 2 Ti 6 o 13 Whiskers (greater than 100 nm in diameter).
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