Catalyst suitable for two-stage catalytic cracking reaction, and preparation method and application thereof
A catalytic cracking and catalyst technology, used in catalytic cracking, physical/chemical process catalysts, molecular sieve catalysts, etc., can solve the problems of high yield of coke and dry gas, low yield of light hydrocarbons in products, weakening of catalyst acid centers, etc. , to achieve the effect of improving distribution and properties, strong conversion of heavy oil, and low sulfur and olefins
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Embodiment 1
[0022] 300 grams of kaolin (industrial product, Suzhou Kaolin Company), 20 grams of magnesium lignosulfonate (industrial product, Tianjin Yezi Chemical Technology Co., Ltd., 55% by weight), 300 grams of pseudo-boehmite (industrial product, Shandong Aluminum Produced by the factory, with a solid content of 67% by weight), 160 grams of hydrochloric acid (chemically pure, Beijing Reagent Company, 30% by weight) and 3 liters of water are added to the gelatinizer for 30 minutes, and after 30 minutes at 70°C, 70 grams of phosphorus-containing HZSM-5 molecular sieve (industrial product, Nankai University catalyst factory, silicon to aluminum ratio 30, P 2 O 5 3 wt%), 350 grams of rare earth USY molecular sieve (same as above, unit cell 2.456 nm, rare earth oxide 6.0 wt%), 0.5 liters of aluminum sol (industrial product, produced by Sichuan Shenghe Rare Earth Co., Ltd., Al 2 O 3 20% by weight) continue to beating for 15 minutes, then use a high-shear mixing emulsifier (MBE-100L, manufact...
Embodiment 2
[0030] Combine 300 grams of kaolin (same as above), 20 grams of carboxymethyl cellulose (industrial product, Xinfeng Cellulose Factory, Dacheng County, Hebei Province, purity 90%), 300 grams of pseudo-boehmite (same as above), and 90 grams of hydrochloric acid (same as above) After beating with 3 liters of water for 30 minutes, add 65 grams of phosphorus-containing rare earth ZSM-5 molecular sieve (same as above, the ratio of silicon to aluminum is 50, P 2 O 5 2% by weight, 2% by weight of rare earth oxides), 330 grams of rare earth HY molecular sieve (same as above, unit cell 2.458 nm, rare earth oxide 8.0% by weight), 0.5 liters of aluminum sol (same as above), beating for 10 minutes, emulsify with high shear mixing The machine (same as above) was beaten and homogenized for 40 minutes, and then the catalyst of Example 2 was prepared on a small spray dryer in the laboratory (same as above). The pore volume was 0.28 ml / g, of which five-membered ring micropores and twelve-membere...
Embodiment 3
[0032] Combine 300 grams of kaolin (same as above), 20 grams of microcrystalline cellulose (industrial product, Wuhan Fresh Biochemical Technology Co., Ltd., 97%), 300 grams of pseudo-boehmite (same as above), 150 grams of hydrochloric acid (same as above) and 3 liters of water After beating for 30 minutes and 50 minutes at 65°C, add 30 grams of NH4ZSM-5 (same as above, silicon to aluminum ratio of 25), 30 grams of rare earth ZSM-5 molecular sieves (same as above, silicon to aluminum ratio of 50), and 320 grams of rare earth Y molecular sieve (same as above, , Unit cell 2.468 nanometers, rare earth oxide 14% by weight), 0.5 liters of sol (same as above), beating for 15 minutes, using a high-shear mixing emulsifier (same as above), beating and homogenizing for 50 minutes in the laboratory with a small spray dryer ( Same as above) The catalyst of Example 3 was prepared above, with a pore volume of 0.27 ml / g, in which the pore volume ratio of five-membered ring micropores, twelve-m...
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