Cracking catalyst
A technology of catalyst and cracking activity, which is applied in the field of fluidized catalytic cracking catalysts to achieve the effects of improved hydrothermal activity stability, low wear index, and reduced heavy oil yield
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Embodiment 1
[0028] The mesoporous silicon-aluminum material adopts the mesoporous silicon-aluminum material SA-1 of Example 1 in CN1565733A, and the chemical composition of SA-1 is 0.12 Na 2 O 73.7 Al 2 o 3 26.2 SiO2 2 , with a specific surface area of 362m 2 / g, the pore volume is 1.19ml / g, the average pore diameter is 12.8nm, and the most probable pore diameter is 10nm. Prepare SA-1 into a slurry, add 36% hydrochloric acid (chemically pure, produced by Beijing Chemical Plant) at 60°C for acidification, the acid-aluminum ratio is 0.20, the acidification time is 1.5 hours, and the acidified medium is obtained after filtration. Porous silicon-aluminum material, code number SH-SA-1.
[0029] Pseudoboehmite (solid content 65.8% by weight, produced by Shandong Aluminum Factory) was added to quantitative deionized water, after stirring evenly, adding hydrochloric acid with a concentration of 36% for acidification treatment, the acid-aluminum ratio was controlled at 0.15-0.2, at this time...
Embodiment 2~4
[0043] Examples 2-4 are used to illustrate the effects of different substitution amounts of acidified mesoporous silica-alumina materials on the physicochemical properties and cracking properties of catalysts.
[0044] After acidifying pseudo-boehmite, add kaolin slurry, aluminum sol and acidified mesoporous silica-alumina material SH-SA-1, stir for 20 minutes, then add REHY molecular sieve to the mixed slurry, stir for 20 minutes and then spray Form microsphere catalysts, and obtain catalysts C-2-4 after roasting, washing and drying, in which the acidified mesoporous silica-alumina material SH-SA-1 is used in amounts of 8%, 12% and 16% respectively.
[0045] The composition of catalyst C-2 is: REHY 35.0%, kaolin 28.0%, pseudoboehmite 22.0%, aluminum sol 7.0%, SH-SA-1 8.0%.
[0046] The composition of catalyst C-3 is: REHY 35.0%, kaolin 28.0%, pseudo-boehmite 18.0%, aluminum sol 7.0%, SH-SA-1 12.0%.
[0047] The composition of catalyst C-4 is: REHY 35.0%, kaolin 25.0%, pseudo...
Embodiment 5~7
[0058] Examples 5-7 illustrate the effect of substituting the acidified mesoporous silica-alumina material SH-SA-1 for different components in the catalyst on the physical and chemical properties and cracking performance of the catalyst.
[0059] The specific process of spraying the catalyst is the same as in Example 1, but in the preparation process, the acidified mesoporous silica-alumina material SH-SA-1 is used to replace one or two or three of the active component molecular sieve, kaolin and binder. The mixture of catalysts C-5-7 was prepared.
[0060] The composition of catalyst C-5 is: 30.0% of REHY, 28.0% of kaolin, 25.0% of pseudoboehmite, 7.0% of aluminum sol, and 10.0% of acidified mesoporous silica-alumina material SH-SA-1.
[0061] The composition of catalyst C-6 is: 35.0% REHY, 23.0% kaolin, 25.0% pseudo-boehmite, 7.0% aluminum sol, and 10.0% acidified mesoporous silica-alumina material SH-SA-1.
[0062] The composition of catalyst C-7 is: 30.0% REHY, 26.0% kaol...
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