Claims
- 1. A gas-agitated reactor system for generating products from a reactant gas, comprising:
a first reaction zone; a second reaction zone; a first fluid flow passage providing fluid communication between said first and second reaction zones; a second fluid flow passage providing fluid communication between said first and second reaction zones; and at least one gas feed system for feeding a reactant gas into said first and second reaction zones at different superficial gas velocities.
- 2. The reactor system according to claim 1 wherein each reaction zone includes a liquid phase and a solid phase comprising a catalyst.
- 3. The reactor system according to claim 1 wherein one of the fluid flow passages passes fluid from the first reaction zone to the second reaction zone and the other fluid flow passage passes fluid from the second reaction zone to the first reaction zone.
- 4. The reactor system according to claim 3 wherein said fluid comprises a catalyst-containing slurry.
- 5. The reactor system according to claim 1 wherein said first fluid flow passage allows fluid communication between the upper half of said first reaction zone and the upper half of said second reaction zone and wherein said second fluid flow passage allows fluid communication between the lower half of said first reaction zone and the lower half of said second reaction zone.
- 6. The system according to claim 1 wherein the superficial gas velocities of gas flowing into the first and second reaction zones are such that fluid flows up through the first reaction zone, into the second reaction zone through said first fluid flow passage, down through the second reaction zone and into the first reaction zone via said second fluid passage.
- 7. The reactor system according to claim 1 wherein said first and second reaction zones are of substantially similar height.
- 8. The reactor system according to claim 1 wherein said first fluid flow passage is inclined at an angle from a horizontal plane, said angle being between 0 and 70 degrees.
- 9. The reactor system according to claim 1 wherein said second fluid flow passage is inclined at an angle from a horizontal plane, said angle between 0 and 70 degrees.
- 10. The reactor system according to claim 1, further comprising an external circulation loop.
- 11. The reactor system according to claim 10 wherein said external circulation loop comprises at least one slurry processing system selected from the group consisting of product recovery systems, byproduct removal systems, and catalyst regenerators.
- 12. The reactor system according to claim 1, further comprising a flow-controlling valve on at least one of said first and second fluid flow passages.
- 13. The reactor system according to claim 1 wherein the difference in superficial gas velocities is between 2 and 45 cm/s.
- 14. The reactor system according to claim 1 wherein at least one of said first and second fluid flow passages includes a turbulence-inducing internal structure.
- 15. The reactor system according to claim 1 wherein said first and second reaction zones are in separate housings.
- 16. The reactor system according to claim 1 wherein said first and second reaction zones comprise chambers in a single housing.
- 17. The reactor system according to claim 1 wherein said first and second reaction zones contain at least one reaction in common.
- 18. A reactor system for producing hydrocarbons from syngas in a three-phase catalytic system in which a catalyst is suspended in a slurry, comprising:
a first reaction zone containing a portion of said slurry; a second reaction zone containing a portion of said slurry; a lower fluid flow passage providing fluid communication between said first and second reaction zones; an upper fluid flow passage providing fluid communication between said first and second reaction zones; and at least one gas feed system for feeding syngas into said first and second reaction zones at different inlet superficial gas velocities.
- 19. The system according to claim 18 wherein the inlet superficial gas velocity in the first reaction zone is at least 2 cm/sec greater than the inlet superficial gas velocity in the second reaction zone.
- 20. The system according to claim 18 wherein the different inlet superficial gas velocities into the first and second reaction zones are such that the gas Peclet number in each zone is less than about 0.175.
- 21. The system according to claim 18 wherein the different inlet superficial gas velocities into the first and second reaction zones are such that the gas Peclet number in each reaction zone is less than about 0.175 and the liquid and solid Peclet numbers in each zone are each greater than about 0.2.
- 22. The system according to claim 18 wherein the different inlet superficial gas velocities into the first and second reaction zones are such that said slurry flows up through the first reaction zone, into the second reaction zone through the upper fluid flow passage, down through the second reaction zone and into the first reaction zone via the lower fluid passage.
- 23. The system according to claim 18, further including a water-stripping apparatus in fluid communication with at least one of said reaction zones.
- 24. The system according to claim 18, further including a liquid product removal system in fluid communication with at least one of said reaction zones.
- 25. The system according to claim 18, further including a gas collection system in fluid communication with said reaction zones.
- 26. A reactor system for producing hydrocarbons from syngas in a three-phase catalytic system in which a solid catalyst is suspended in a slurry, comprising:
a first reaction zone containing a portion of the slurry; a second reaction zone and containing a portion of the slurry; an upper fluid flow passage providing fluid communication between said first and second reaction zones, said upper flow passage having an inlet and an outlet; a lower fluid flow passage providing fluid communication between said first and second reaction zones, said lower flow passage having an inlet and an outlet; at least one gas feed system for feeding syngas into said first and second reaction zones at different inlet superficial gas velocities; a water-stripping apparatus in fluid communication with at least one of said reaction zones; a liquid product removal system in fluid communication with at least one of said reaction zones; and a gas collection system in fluid communication with said reaction zones.
- 27. The system according to claim 26 wherein the inlet superficial gas velocity in the first reaction zone is at least 2 cm/sec greater than the inlet superficial gas velocity in the second reaction zone.
- 28. The system according to claim 26 wherein the different inlet superficial gas velocities into the first and second reaction zones are such that the gas Peclet number in each reaction zone is less than about 0.175 and the liquid and solid Peclet numbers in each zone are each greater than about 0.2.
- 29. The system according to claim 26 wherein the different inlet superficial gas velocities of syngas into the first and second reaction zones are such that the slurry flows up through the first reaction zone, into the second reaction zone through the upper fluid flow passage, down through the second reaction zone and into the first reaction zone via the lower fluid passage.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of U.S. patent application Ser. No. 10/444,459, filed May 23, 2004 and entitled “Conjoined Reactor System,” which is incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10444459 |
May 2003 |
US |
Child |
10842171 |
May 2004 |
US |