A kind of preparation method of acicular alumina and alumina
A kind of alumina and needle-shaped technology, which is applied in the field of preparation of needle-shaped high-purity alumina, can solve the problems of not meeting the application requirements of high-purity ceramics and low purity, achieve small and uniform grain size, reduce particle agglomeration, prevent Add an uneven effect
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Embodiment 1
[0029] Weigh 230kg of aluminum isopropoxide with a purity of 99.999% and dissolve it in 300L of isopropanol to prepare a solution. Mix 50.74kg of pure water with 280L of isopropanol and 3121mL of nitric acid to prepare a mixed solution; add 100L of isopropoxide to the reactor Propanol was used as the bottom solution, and the water bath was turned on to heat the temperature in the kettle to 75°C; the two solutions were added to the reaction kettle at a rate of 1.2L / min and 1L / min respectively, and the temperature in the kettle was kept at 75°C, and Stir continuously, aluminum isopropoxide molecules react with water molecules to form hydrated alumina nanoparticles; after the solution is added dropwise, continue to stir at 75°C for 30 minutes; then, filter the reacted mixture through a filter press to obtain hydrated aluminum oxide nanoparticles. Alumina filter cake, recovering isopropanol at the same time; then, put the hydrated alumina filter cake in a vacuum rake drying oven, a...
Embodiment 2
[0031] Weigh 300kg of liquid high-purity aluminum isopropoxide and dissolve it in 400L of isopropanol to prepare a solution, mix 74.12kg of pure water with 320L of isopropanol and 4178mL of nitric acid to prepare a mixed solution; add 200L of isopropanol to the reaction kettle As the bottom liquid, turn on the water bath and heat until the temperature in the kettle is 70°C; add the two solutions into the reaction kettle at a dropping rate of 2.0L / min and 1.5L / min respectively, keep the temperature in the kettle at 70°C, and continuously After stirring, aluminum isopropoxide molecules react with water molecules to form hydrated alumina nanoparticles; after the solution is added dropwise, continue to stir at 70°C for 30 minutes; then, filter the reacted mixture through a filter press to obtain hydrated alumina nanoparticles. aluminum filter cake, while recovering isopropanol; then, put the hydrated alumina filter cake in a vacuum rake drying oven, and dry it at 150°C until there ...
Embodiment 3
[0033] Weigh 420kg of liquid high-purity aluminum isopropoxide and dissolve it in 600L of isopropanol to make a solution, mix 118.18kg of pure water with 320L of isopropanol and 5400mL of nitric acid to make a mixed solution; add 200L of isopropanol to the reaction kettle Make the bottom solution, and turn on the water bath to heat the temperature in the kettle to 60°C; add the two solutions into the reaction kettle at a rate of 2.0L / min and 1.5L / min respectively, keep the temperature in the kettle at 60°C, and continuously After stirring, aluminum isopropoxide molecules react with water molecules to form hydrated alumina nanoparticles; after the solution is added dropwise, continue to stir at 60°C for 30 minutes; then, filter the reacted mixture through a filter press to obtain hydrated alumina nanoparticles. aluminum filter cake, while recovering isopropanol; then, put the hydrated alumina filter cake in a vacuum rake drying oven, and dry it at 100°C until there is no isoprop...
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