Preparation method of carbon nitride/microporous molecular sieve composite material
A technology of microporous molecular sieves and composite materials, which is applied in the field of preparation of solid inorganic composite materials, can solve the problems of high cost, low shape-selective performance, cumbersome preparation of shape-selective catalysts, etc., and achieve improved mass ratio and high shape-selective performance , The effect of improving the shape selection performance
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Embodiment 1
[0012] Mix 0.4 g of melamine and 1.0 g of microporous molecular sieve MCM-22, grind them thoroughly until they are evenly mixed; then put the well-mixed mixture of melamine and microporous molecular sieves into a tube furnace, and pass nitrogen gas at a flow rate of 20 mL / min at room temperature After purging for 30 min, the nitrogen flow rate was adjusted to 1 mL / min, the temperature was raised to 550 °C at a rate of 1 °C / min, and then lowered to room temperature to obtain the carbon nitride / microporous molecular sieve composite material CN / MCM-22 (1).
Embodiment 2
[0014] Mix 0.4 g of melamine and 1.0 g of microporous molecular sieve MCM-22, grind them thoroughly until they are evenly mixed; then put the well-mixed mixture of melamine and microporous molecular sieves into a tube furnace, and pass nitrogen gas at a flow rate of 20 mL / min at room temperature After purging for 30 min, the nitrogen flow rate was adjusted to 1 mL / min, the temperature was raised to 550 °C at a rate of 5 °C / min, and then lowered to room temperature to obtain the carbon nitride / microporous molecular sieve composite material CN / MCM-22 (2).
Embodiment 3
[0016] Mix 0.4 g of melamine and 1.0 g of microporous molecular sieve MCM-22, grind them thoroughly until they are evenly mixed; then put the well-mixed mixture of melamine and microporous molecular sieves into a tube furnace, and pass nitrogen gas at a flow rate of 20 mL / min at room temperature After purging for 30 min, the nitrogen flow rate was adjusted to 1 mL / min, the temperature was raised to 550 °C at a rate of 10 °C / min, and then lowered to room temperature to obtain the carbon nitride / microporous molecular sieve composite material CN / MCM-22 (3).
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