Solid-liquid separation method of nanometer material
A nano-material, solid-liquid separation technology, applied in the direction of spray evaporation, crystalline aluminosilicate zeolite, borocarbane silicone crystalline aluminosilicate zeolite, etc., can solve problems such as complex technical process and achieve good technical effects
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Embodiment 1
[0015] According to the method for preparing ZSM-5 in document CN200810043303.6 [Example 1], 50 grams of slurry is obtained, and the pH value of the slurry is 13. Add 1.5 mol / liter of nitric acid solution, and the pH is 8, then add water, and finally the weight of ZSM-5 in the slurry is The content is 21%. Under stirring conditions, the slurry is pumped into the atomizing disc through the feed pipe, the atomizing disc rotates at 5000 rpm, the temperature of the hot air entering the tower body is 200°C, and the temperature of the hot air leading out of the tower body is 100°C. The material is solid with a grain size of 460 nm.
Embodiment 2
[0017] According to the method of preparing ZSM-11 in document CN201110045540.8 [Example 11], 50 grams of slurry was obtained, and the pH value of the slurry was 13. Add 1 mol / L citric acid solution, the pH was 8, and then add water, and finally ZSM-11 in the slurry The weight content is 15%. Under stirring conditions, the slurry is pumped into the atomizing disc through the feed pipe, the atomizing disc rotates at 10,000 rpm, the temperature of the hot air entering the tower body is 220°C, and the temperature of the hot air leading out of the tower body is 140°C. The material is solid with a grain size of 100 nm.
Embodiment 3
[0019] According to the method of document ZL00107486.5 [Example 1] to prepare β molecular sieves, 50 grams of slurry is obtained, and the pH value of the slurry is 13. Add 1 mol / liter of oxalic acid solution, the pH is 7, and then add water. Finally, the weight content of β molecular sieves in the slurry is twenty four%. Under stirring conditions, the slurry is pumped into the atomizing disc through the feed pipe, the atomizing disc rotates at 12000 rpm, the temperature of the hot air entering the tower body is 220°C, and the temperature of the hot air leading out of the tower body is 120°C. The material is solid with a grain size of 50 nm.
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