Preparation method of skeleton silicon-rich Y-shaped molecular sieve
A technology of molecular sieves and skeletons, applied in the field of molecular sieves, to achieve the effects of improving the shrinkage level of unit cells, high B acid content, and high infrared acid content
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Embodiment 1
[0028] Put 5 g of solid sodium hydroxide into 495 g of distilled water and stir to dissolve, then raise the temperature of the alkali solution to 65°C. Weigh 100g NaY molecular sieve (mass on dry basis, crystallinity 95%, silicon-aluminum ratio 6.2) into the above alkali solution, keep stirring and alkali treatment at 65°C for 2h. After the alkali treatment is completed, the slurry is filtered, and the obtained molecular sieve filter cake is washed until the pH of the filtrate=9.
[0029] Mix the alkali-treated NaY molecular sieve filter cake (dry basis) with ammonium chloride and distilled water in a mass ratio of 1:1:10 and beat evenly, stir at 90°C for ammonium exchange for 1 hour, filter and repeat the above ammonium exchange process Twice, NH 4 NaY molecular sieve.
[0030] Weigh 9.12 g of ammonium fluorosilicate solid and dissolve it in 250 g of distilled water to prepare an ammonium fluorosilicate solution with a concentration of about 0.2 mol / L for later use. Put 12...
Embodiment 2
[0035] Put 10 g of solid sodium hydroxide into 490 g of distilled water and stir to dissolve, then raise the temperature of the alkali solution to 65°C. Weigh 100g NaY molecular sieve (mass on dry basis, crystallinity 95%, silicon-aluminum ratio 6.2) into the above alkali solution, stir evenly and maintain the reaction at 65°C for 3h to implement alkali treatment. After the alkali treatment is completed, the slurry is filtered, and the obtained molecular sieve filter cake is washed until the pH of the filtrate=9.
[0036] Mix the alkali-treated NaY molecular sieve filter cake (dry basis) with ammonium nitrate and distilled water at a ratio of 1:1:10 and beat evenly. After stirring for ammonium exchange at 90°C for 1 hour, filter and repeat the above exchange process twice to prepare Get NH 4 NaY molecular sieve.
[0037] Weigh 9.12 g of ammonium fluorosilicate solid and dissolve it in 250 g of distilled water to prepare an ammonium fluorosilicate solution with a concentratio...
Embodiment 3
[0039] Put 10 g of potassium hydroxide solid into 490 g of distilled water and stir to dissolve, then raise the temperature of the alkali solution to 45°C. Weigh 100g NaY molecular sieve (mass on dry basis, crystallinity 95%, silicon-aluminum ratio 6.2) into the above alkaline solution, stir evenly and maintain 45°C for reaction (alkali treatment) for 2h. After the alkali treatment is completed, the slurry is filtered, and the obtained molecular sieve filter cake is washed until the pH of the filtrate=9.
[0040] Mix the alkali-treated NaY molecular sieve filter cake (dry basis) with ammonium chloride and distilled water in a ratio of 1:1:10 and beat evenly. After stirring for ammonium exchange at 90°C for 1 hour, filter and repeat the above exchange process twice. Produce NH 4 KNaY molecular sieve.
[0041] Weigh 9.12 g of ammonium fluorosilicate solid and dissolve it in 250 g of distilled water to prepare an ammonium fluorosilicate solution with a concentration of about 0....
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