Synthetic method of chabasite
A synthesis method and chabazite technology are applied in the direction of crystalline aluminosilicate zeolite, etc., can solve the problems of no application prospect, environmental pollution, low crystallinity, etc., and achieve the effect of broad application prospect and simple implementation conditions
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Embodiment 1
[0016] At room temperature, take 0.120 g of aluminum foil, add 0.68 ml of 13 mol / L potassium hydroxide solution, stir and mix well, add 0.693 g of thin layer chromatography silica gel, then add 9.32 ml of water, continue to stir, and finally add 0.069 G seed crystals and stir for half an hour. Transfer to a 20ml stainless steel reactor containing polytetrafluoroethylene, under autogenous pressure, crystallize at 150 degrees Celsius for 2 days. After quenching, washing, filtering, and natural drying, the original molecular sieve powder is obtained.
Embodiment 2
[0018] At room temperature, take 0.120 g of aluminum foil, add 0.68 ml of 13 mol / L potassium hydroxide solution, stir and mix well, add 0.693 g of white carbon black, then add 9.32 ml of water, continue to stir, and finally add 0.173 g of crystal Seed and stir for half an hour. Transfer to a 20ml stainless steel reactor containing polytetrafluoroethylene and crystallize at 85 degrees Celsius for 6 days under autogenous pressure. After quenching, washing, filtering, and natural drying, the original molecular sieve powder is obtained.
Embodiment 3
[0020] At room temperature, take 0.062 g of aluminum foil, add 3.47 ml of 10 mol / L potassium hydroxide solution, stir and mix well, add 2.222 g of white carbon black, then add 6.53 ml of water, continue to stir, and finally add 0.111 g of crystal Seed and stir for half an hour. Transfer to a 20ml stainless steel reactor containing polytetrafluoroethylene and crystallize at 110 degrees Celsius for 3 days under autogenous pressure. After quenching, washing, filtering, and natural drying, the original molecular sieve powder is obtained.
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