A method for directly preparing supported solid superacid catalyst by microwave method
A solid superacid and catalyst technology, applied in chemical instruments and methods, catalyst activation/preparation, physical/chemical process catalysts, etc., can solve the problems of complex preparation, long time, poor thermal stability, etc., and achieve hydrogenation conversion efficiency and Improved selectivity, stable effective components, and good thermal stability
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Embodiment 1
[0023] Embodiment 1: the preparation method of supported solid superacid catalyst, operating conditions and performance index and catalytic effect of catalyst:
[0024] 1. Preparation of catalyst:
[0025] (1) NaHCO with a weight of 1g and a weight concentration of 1% 3 Fully mix and stir with carbon nanotubes with a weight of 500g, and place the mixed material in a microwave reactor with a power of 300W, and maintain the temperature heated by microwave radiation in a nitrogen flow at 220 ° C for 10 minutes to obtain a supported Na catalyst carrier.
[0026] (2) Place 100 g of the prepared Na catalyst carrier prepared above in a flask in a microwave reactor. Under 100W power microwave irradiation, the temperature heated by microwave radiation in a nitrogen flow is at 50°C, and add to the flask drop by drop. SbCl with a total weight of 200 g and a volume ratio of 1:2 5 and F 3 CSO 3 Si(CH 3 ) 3 After mixing the solution, the system was fully stirred, impregnated and main...
Embodiment 2
[0032] Embodiment 2: the preparation method of supported solid superacid catalyst, operating conditions and performance index and catalytic effect of catalyst:
[0033] 1. Preparation of catalyst:
[0034] (1) NaHCO with a weight of 1g and a weight concentration of 8‰ 3 Fully mix and stir with carbon nanotubes with a weight of 500g, and place the mixed material in a microwave reactor with a power of 300W, and maintain the temperature heated by microwave radiation in a nitrogen flow at 200 ° C for 20 minutes to obtain a supported Na catalyst carrier.
[0035] (2) Place 200g of the Na catalyst carrier prepared above in a flask in a microwave reactor, and add it dropwise to the flask under 100W power microwave irradiation and microwave radiation heating temperature in a nitrogen flow at 30°C. SbCl with a total weight of 500 g and a volume ratio of 1:4 5 and F 3 CSO 3 Si(CH 3 ) 3 After mixing the solution, the system was fully stirred, impregnated and maintained for 15 minu...
Embodiment 3
[0041] Embodiment 3: the preparation method of supported solid superacid catalyst, operating conditions and performance index and catalytic effect of catalyst:
[0042] 1. Preparation of catalyst:
[0043] (1) NaHCO with a weight of 1g and a weight concentration of 4‰ 3 Fully mix and stir with carbon nanotubes with a weight of 500g, and place the mixed material in a microwave reactor with a power of 300W, and maintain the temperature heated by microwave radiation in a nitrogen flow at 200 ° C for 20 minutes to obtain a supported Na catalyst carrier.
[0044] (2) Place 150g of the prepared Na-loaded catalyst carrier in the flask in the microwave reactor. Under 120W power microwave irradiation, the temperature heated by microwave radiation in a nitrogen stream is at 40°C, and add it dropwise to the flask. SbCl with a total weight of 600 g and a volume ratio of 1:1 5 and F 3 CSO 3 Si(CH 3 ) 3 Mix the solution, the system is fully stirred, impregnated and maintained for 20 ...
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