A kind of method for preparing propyl silicate
A technology of propyl silicic acid and silicate, applied in the direction of silicon organic compounds, etc., can solve the problems of low production efficiency, inability to industrialize production, low product yield, etc., and achieve high production efficiency, moderate size, and improved reaction yield. Effect
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Embodiment 1
[0028] (1) A 1000ml four-necked flask is equipped with stirring, a thermometer, a condenser and a constant pressure dropping funnel. Under stirring, add 400g of water and 400g of sodium-type cation exchange resin into the four-necked flask, and control the temperature at 55 ℃, and then add 100g of propyltrichlorosilane into the constant pressure dropping funnel and drop it into a four-neck flask for hydrolysis reaction. The time for adding propyltrichlorosilane is 2 hours. After the addition, keep the temperature and continue the reaction for 15 minutes , The upper layer of the reaction solution was filtered to obtain propyl silicic acid particles with an average particle diameter of 3.1 mm.
[0029] (2) The propyl silicic acid particles obtained in step (1) were washed with water until the pH was 6, and 64 g of propyl silicic acid granules were obtained.
[0030] (3) Add the propylsilicic acid particles obtained by washing in step (2), 32g of water and 50g of sodium hydroxide...
Embodiment 2
[0032](1) A 1000ml four-necked flask is equipped with stirring, a thermometer, a condenser and a constant pressure dropping funnel. Under stirring, add 300g of water and 400g of sodium-type cation exchange resin into the four-necked flask, and control the temperature at 65 ℃, then add 100g of propyltrichlorosilane into the constant pressure dropping funnel and drop it into a four-neck flask for hydrolysis reaction. The time for adding propyltrichlorosilane is 1.5 hours. After the addition, keep the temperature and continue the reaction for 15 minutes , The upper layer of the reaction solution was filtered to obtain propyl silicic acid particles with an average particle diameter of 4 mm.
[0033] (2) The propyl silicic acid particles obtained in the step (1) were washed with water until the pH was 8, and 78 g of propyl silicic acid particles were obtained.
[0034] (3) Add the propylsilicic acid particles obtained by washing in step (2), 63g of water and 78g of potassium hydrox...
Embodiment 3
[0036] (1) A 1000ml four-necked flask is equipped with stirring, a thermometer, a condenser and a constant pressure dropping funnel. Under stirring, add 500g of water and 350g of sodium-type cation exchange resin into the four-necked flask, and control the temperature at 45 ℃, and then add 100g of propyltrichlorosilane into the constant pressure dropping funnel and drop it into a four-neck flask for hydrolysis reaction. The time for adding propyltrichlorosilane is 2.5 hours. After the addition, keep the temperature and continue the reaction for 15 minutes , and filter the upper layer of the reaction solution to obtain propyl silicic acid particles with an average particle diameter of 2 mm.
[0037] (2) The propyl silicic acid particles obtained by washing in step (1) were washed with water until the pH was 5, and 74 g of propyl silicic acid granules were obtained.
[0038] (3) Add the propylsilicic acid particles obtained in step (2), 74g of water and 90g of sodium hydroxide i...
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