Preparation method and application of silazane modified mesoporous molecular sieve/PDMS (polydimethylsiloxane) hybridized composite membrane
A mesoporous molecular sieve and hybrid composite technology, applied in the field of membrane separation, can solve the problem of less application of silazane, achieve the effect of increasing selectivity, simple process, and improving permeation flux
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Embodiment 1
[0024] (1) Weigh a certain amount of mesoporous molecular sieve MCM-41 and spread it on a porcelain boat, place it in a muffle furnace, program the temperature up to 200°C for 2 hours, keep it warm for 1 hour, and cool to remove the moisture in the molecular sieve. Weigh 2.0 g of dehydrated mesoporous molecular sieves, disperse them in ethanol, and ultrasonicate for 30 minutes to fully disperse them. The suspension was poured into the reaction flask, nitrogen gas was introduced for 15-30min, and the air in the flask was discharged. Stir, heat, condense and reflux, and raise the temperature to 80°C. After stabilization, add 0.5g of 1,1,3,3-tetramethyldisilazane and react for 8h. After the reaction, the suspension containing the modified molecular sieve is poured out, and the modified mesoporous molecular sieve is washed repeatedly with ethanol to remove the unreacted silazane coupling agent. Dry in an oven at 50°C and grind.
[0025] (2) After cleaning the industrialized PS m...
Embodiment 2
[0034] (1) Weigh a certain amount of mesoporous molecular sieve MCM-41 and spread it on a porcelain boat, place it in a muffle furnace, program the temperature up to 200°C for 2 hours, keep it warm for 1 hour, and cool to remove the moisture in the molecular sieve. Weigh 2.0 g of dehydrated mesoporous molecular sieves, disperse them in n-heptane, and ultrasonicate for 30 minutes to fully disperse them. The suspension was poured into the reaction, nitrogen gas was introduced for 15-30min, and the air in the flask was discharged. Stir, heat, condense and reflux, and raise the temperature to 100°C. After stabilization, add 1.0g of 1,3-di-n-octyltetramethylsilazane and react for 10h. After the reaction is completed, the suspension containing the modified molecular sieve is poured out, and the modified mesoporous molecular sieve is repeatedly washed with n-heptane to remove the unreacted silazane coupling agent. Dry in an oven at 50°C and grind.
[0035] (2) After washing the ind...
Embodiment 3
[0041] (1) Weigh a certain amount of mesoporous molecular sieve SBA-15-1 and lay it flat on a porcelain boat, place it in a muffle furnace, program the temperature for 2 hours to 200°C, keep it warm for 1 hour, cool down, and remove the moisture in the molecular sieve. Weigh 2.0 g of dehydrated mesoporous molecular sieves, disperse them in ethanol, and ultrasonicate for 30 minutes to fully disperse them. The suspension was poured into the reaction flask, nitrogen gas was introduced for 15-30min, and the air in the flask was discharged. Stir, heat, condense and reflux, and raise the temperature to 80°C. After stabilization, add 1.0 g of 1,3-dioctyltetramethylsilazane and react for 8 hours. After the reaction, the suspension containing the modified molecular sieve is poured out, and the modified mesoporous molecular sieve is washed repeatedly with ethanol to remove the unreacted silazane coupling agent. Dry in an oven at 50°C and grind.
[0042] (2) After washing the industria...
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