Preparation method of shape-selective isomerization catalyst based on * BEA type structure molecular sieve
A molecular sieve and catalyst technology, which is used in the preparation of shape-selective isomerization catalysts, can solve the problems of catalyst activity and isomer selectivity reduction, achieve high activity and isomer yield, improve product performance, and shorten pore channels. depth effect
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Embodiment 1
[0035] Put 20g of BETA molecular sieve raw powder containing template agent in a quartz tube, bake at 250°C for 4 hours in an air atmosphere, and cool naturally to room temperature to obtain a BETA molecular sieve carrier whose micropores are partially filled with carbon deposits. The carbon deposit content in the molecular sieve carrier is 13.4%, and the micropore volume is 0.013cm 3 / g. With 5.0mL containing Pt 0.001g / mL of H 2 PtCl 6 The solution impregnates 5 g of the above-mentioned molecular sieve carrier. The impregnated sample was dried at 120°C for 2h, and at 200°C, the hydrogen flow rate was controlled at 5mL / min / g 催化剂 , and reduced for 4h to obtain 0.5wt.% Pt / BETA catalyst. The carbon content in the catalyst is 13.4%, and the micropore volume is 0.013cm 3 / g. The characterization results of catalyst carbon content and micropore volume are shown in Table 1, and the evaluation results of catalytic reaction are shown in Table 2.
Embodiment 2
[0037] Put 20g of BETA molecular sieve raw powder containing template agent in a quartz tube, bake at 320°C for 4 hours in a nitrogen atmosphere, and cool naturally to room temperature to obtain a BETA molecular sieve carrier whose micropores are partially filled with carbon deposits. The carbon deposit content in the molecular sieve carrier is 8.5%, and the micropore volume is 0.048cm 3 / g. With 5.0mL containing Pt 0.001g / mL of H 2 PtCl 6 The solution impregnates 5 g of the above-mentioned molecular sieve carrier. The impregnated sample was dried at 120°C for 2 hours, and at 300°C, the hydrogen flow rate was controlled at 20mL / min / g 催化剂 , and reduced for 4h to obtain 0.5wt.% Pt / BETA catalyst. The carbon content in the catalyst is 8.5%, and the micropore volume is 0.048cm 3 / g. The characterization results of catalyst carbon content and micropore volume are shown in Table 1, and the evaluation results of catalytic reaction are shown in Table 2.
Embodiment 3
[0039] Put 20g of BETA molecular sieve raw powder containing template agent in a quartz tube, bake at 400°C for 4 hours in an air atmosphere, and cool naturally to room temperature to obtain a BETA molecular sieve carrier whose micropore channels are partially filled with carbon deposits. The carbon deposit content in the molecular sieve carrier is 1.9%, and the micropore volume is 0.104cm 3 / g. With 5.0mL containing Pt 0.001g / mL of H 2 PtCl 6 The solution impregnates 5 g of the above-mentioned molecular sieve carrier. The impregnated sample was dried at 120°C for 2 hours, and at 400°C, the hydrogen flow rate was controlled at 40mL / min / g 催化剂 , and reduced for 4h to obtain 0.5wt.% Pt / BETA catalyst. The carbon content in the catalyst is 1.4%, and the micropore volume is 0.110cm 3 / g. The characterization results of catalyst carbon content and micropore volume are shown in Table 1, and the evaluation results of catalytic reaction are shown in Table 2.
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Abstract
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