Claims
- 1. A fluid catalytic cracking process comprising:
(a) contacting a FCC feed with a catalytic cracking catalyst in a first catalytic cracking stage under catalytic cracking conditions to produce cracked products; (b) separating at least a cycle oil fraction from the cracked products, said cycle oil fraction comprising aromatics; (c) hydrogenating at least a fraction of said aromatics in at least a portion of said cycle oil fraction in the presence of a hydrogenating catalyst under hydrogenation conditions to form a hydrogenated cycle oil; and, (d) contacting said hydrogenated cycle oil with a catalytic cracking catalyst under catalytic cracking conditions in a second fluid catalytic cracking stage to form a second cracked product, said second fluid catalytic cracking stage being separate from said first second fluid catalytic cracking stage, wherein the catalyst of the second fluid catalytic cracking stage comprises between about 50 and about 95 wt. % of a catalyst containing a shape-selective zeolite, and between about 5 and about 50 wt. % of a catalyst containing a large-pore zeolite having a pore diameter greater than or equal to about 0.7 nm.
- 2. The process according to claim 1 wherein said hydrogenated cycle oil comprises less than about 5 wt. % aromatics.
- 3. The process according to claim 1 wherein the hydrogenated cycle oil comprises less than about 1 wt. % 2-ring or larger aromatic species.
- 4. The process according to claim 2 wherein said shape-selective zeolite is ZSM-5.
- 5. The process according to claim 4 wherein said large-pore zeolite is zeolite Y.
- 6. The process according to claim 5 wherein said zeolite Y has a unit cell size less than or equal to about 24.33 Å.
- 7. The process according to claim 6 wherein said zeolite Y has a unit cell size of less than or equal to about 24.27 Å.
- 8. The process according to claim 7 wherein the catalyst of the second catalytic cracking stage comprises between about 80 and about 95 wt. % of a catalyst containing ZSM-5.
- 9. The process according to claim 7 wherein the catalyst of the second catalytic cracking stage comprises about 90 wt. % of a catalyst containing ZSM-5.
- 10. The process according to claim 1 wherein the temperature within the first catalytic cracking stage is between about 500° C. and about 650° C.
- 11. The process according to claim 10 wherein the residence time within the first catalytic cracking stage is between about 1 and about 10 seconds.
- 12. The process according to claim 11 wherein the temperature within the second catalytic cracking stage is between about 495° C. and about 700° C.
- 13. The process according to claim 12 wherein the residence time within the second catalytic cracking stage is between about 1 and about 10 seconds.
- 14. The process according to claim 1 further comprising the step of separating propylene from the second cracked product and polymerizing the propylene to form polypropylene.
- 15. The process according to claim 1 wherein said hydrogenating catalyst comprises at least one Group VIII metal and at least one Group VI metal on at least one refractory support.
- 16. The process according to claim 15 wherein said Group VIII metal is selected from the group consisting of Pt, Pd, and Ir.
- 17. A process for catalytically cracking a cycle oil to selectively increase the yield of light olefins comprising the steps of:
(a) contacting a FCC feed with a catalytic cracking catalyst under catalytic cracking conditions in a first FCC reactor to form a first cracked product, said cracked product comprising a cycle oil fraction comprising aromatic species; (b) separating said first cracked product from the catalyst of the first FCC reactor; (c) stripping the catalyst of the first FCC reactor; (d) contacting the catalyst of the first FCC reactor with a gas comprising oxygen; (e) passing the catalyst of the first FCC reactor back to said first FCC reactor; (f) separating at least a portion of the cycle oil fraction from said first cracked product; (g) hydrogenating a substantial portion of the aromatic species in at least a portion of said cycle oil fraction in the presence of a hydrogenation catalyst under hydroprocessing conditions to form a substantially hydrogenated cycle oil, said hydrogenation catalyst comprising at least one Group VIII metal and at least one Group VI metal on at least one refractory support, said Group VI metal selected from the group consisting of Pt and Pd, wherein the weight of the aromatic species in the hydrogenated cycle oil is less than about 5% of the total weight of said hydrogenated cycle oil; and, (h) contacting said hydrogenated cycle oil with a catalytic cracking catalyst under catalytic cracking conditions in a separate second FCC reactor to form a second cracked product, wherein the catalyst used in the second FCC reactor comprises between about 80 and about 95 wt. % of a catalyst containing ZSM-5, and between about 5 and about 20 wt. % of a catalyst containing large-pore zeolite having a pore diameter greater than or equal to about 0.7 nm and a unit cell size less than 24.27 Å; (i) separating the second cracked product from the catalyst of the second FCC reactor; (j) stripping the catalyst of the second FCC reactor; (k) contacting the catalyst of the second FCC reactor with a gas comprising oxygen; and, (l) passing the catalyst of the second FCC reactor to said second FCC reactor back to the second FCC reactor.
- 18. The process according to claim 17 further comprising the step of separating propylene from the second cracked product and polymerizing the propylene to form polypropylene.
- 19. A fluid catalytic cracking process comprising:
(a) contacting a FCC feed with a catalytic cracking catalyst in a first catalytic cracking stage under catalytic cracking conditions to produce cracked products; (b) separating at least a cycle oil fraction from the cracked products, said cycle oil fraction comprising aromatics; (c) hydrogenating a substantial portion of said aromatics in at least a portion of said cycle oil fraction in the presence of a hydrogenating catalyst under hydrogenation conditions to form a substantially hydrogenated cycle oil; and, (d) contacting said hydrogenated cycle oil with a catalytic cracking catalyst under catalytic cracking conditions in a second fluid catalytic cracking stage to form a second cracked product, said second fluid catalytic cracking stage being separate from said first second fluid catalytic cracking stage, wherein the catalyst of the second fluid catalytic cracking stage comprises a shape-selective zeolite and a large-pore zeolite having a pore diameter greater than or equal to about 0.7 nm and a unit cell size less than about 24.27 Å on the same matrix material and wherein the shape-selective zeolite and large-pore zeolite comprise between about 10 and about 80 wt. % of the total weight of the catalyst and the weight ratio of shape-selective zeolite to large-pore zeolite is between about 1:1 and about 100:1, and wherein the matrix material has a surface area greater than 40 m2/g.
- 20. The process according to claim 19 wherein the weight ratio of shape-selective zeolite to large-pore zeolite is between about 3:1 and about 90:1.
- 21. The process according to claim 19 wherein the shape-selective zeolite is ZSM-5.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This patent application claims benefit of U.S. provisional patent applications Ser. Nos. 60/197,464 filed Apr. 17, 2000 and 60/206,410 filed May 23, 2000.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60197464 |
Apr 2000 |
US |
|
60206410 |
May 2000 |
US |