IP Library › Granted Patent US 11,034,898
Granted Patent B2
US 11,034,898 · App. 16/591,193 · Granted Jun 15, 2021

Method and apparatus for preventing coke formation in the reactor vapor feed nozzle of a fluid catalytic cracking unit (FCCU) main fractionator column

Inventors: Scott William Golden (Phillips, ME); Anthony Frederick Barletta, Jr. (Houston, TX); Grant Joseph Niccum (Houston, TX)
Assignee: PROCESS CONSULTING SERVICES, INC.
C10G75/00B01D3/14B01D3/32B01D3/4294B01J4/002B01J4/005C10G11/20
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Quick Facts
Patent No.
US 11,034,898
App. No.
16/591,193
Granted
Jun 15, 2021
Kind
B2
Abstract

The present disclosure generally relates to method and apparatus for preventing coke formation in reactor vapor feed nozzle of a fractionator column of a fluid catalytic cracking unit. One or more baffles are positioned within the fractionator column to prevent effluent vapor that is directed by the reactor vapor feed nozzle into the feed zone from flowing back into the reactor vapor feed nozzle. The reactor vapor feed nozzle itself, or an internal nozzle coupled to the reactor vapor feed nozzle, may extend at least partially into the feed zone to similarly act as a baffle.

Claims (37)

1. An apparatus for fluid catalytic cracking, comprising:

a fractionator column having a feed zone;

a radially-oriented reactor vapor feed nozzle coupled to the fractionator column to direct fluid vapor flow into the feed zone, wherein a portion of the reactor vapor feed nozzle extends into the feed zone;

an annular lip formed on the reactor vapor feed nozzle at a perpendicular orientation to the fluid vapor flow through the reactor vapor feed nozzle to the feed zone; and

one or more baffles suspended within the fractionator column above the reactor vapor feed nozzle at a perpendicular orientation to the fluid vapor flow through the reactor vapor feed nozzle to the feed zone, wherein the portion of the reactor vapor feed nozzle that extends into the feed zone, the annular lip, and the one or more baffles are positioned relative to one another in a manner that prevents fluid vapor flow back into the reactor vapor feed nozzle.

2. The apparatus of claim 1 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are spaced a circumferential distance from the reactor vapor feed nozzle defined by a sweep angle of 5 degrees to 60 degrees.

3. The apparatus of claim 1 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are vertically oriented and extend into the feed zone in a radial direction.

4. The apparatus of claim 1 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are vertically oriented and extend into the feed zone in a direction offset from a radial line of the fractionator column by an angle that is between 0 degrees and 45 degrees.

5. The apparatus of claim 1 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are slanted from a vertical orientation relative to the reactor vapor feed nozzle.

6. The apparatus of claim 1 , further comprising:

a plurality of beams coupled to a support member disposed between the feed zone and one of one or more packed or tray sections positioned above the feed zone, wherein the one or more baffles are suspended from one or more of the plurality of beams.

7. An apparatus for fluid catalytic cracking, comprising:

a fractionator column having a feed zone;

a radially-oriented reactor vapor feed nozzle coupled to the fractionator column to direct fluid vapor flow into the feed zone;

a plurality of beams coupled to a support member disposed between the feed zone and one of one or more packed or tray sections positioned above the feed zone; and

one or more baffles suspended from at least one of the plurality of beams, wherein the one or more baffles are disposed perpendicular to the fluid vapor flow from the reactor vapor feed nozzle, wherein an entirety of the one or more baffles is disposed above the reactor vapor feed nozzle to prevent fluid vapor flow back into the reactor vapor feed nozzle.

8. The apparatus of claim 7 , wherein a portion of the reactor vapor feed nozzle extends into the feed zone.

9. The apparatus of claim 8 , further comprising:

an annular lip formed on the reactor vapor feed nozzle at a perpendicular orientation to the fluid vapor flow through the reactor vapor feed nozzle to the feed zone.

10. The apparatus of claim 7 , further comprising an internal nozzle coupled to the reactor vapor feed nozzle.

11. The apparatus of claim 10 , wherein an end of the internal nozzle comprises an annular lip formed at a perpendicular orientation to the flow of fluid vapor flow through the reactor vapor feed nozzle to the feed zone.

12. The apparatus of claim 7 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are spaced a circumferential distance from the reactor vapor feed nozzle defined by a sweep angle of 5 degrees to 60 degrees.

13. The apparatus of claim 7 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are vertically oriented and extend into the feed zone in a radial direction.

14. The apparatus of claim 7 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are vertically oriented and extend into the feed zone in a direction offset from a radial line of the fractionator column by an angle that is between 0 degrees and 45 degrees.

15. The apparatus of claim 7 , further comprising:

one or more additional baffles coupled to an inner surface of the fractionator column, wherein the one or more additional baffles are slanted from a vertical orientation relative to the reactor vapor feed nozzle.

16. The apparatus of claim 7 , wherein the one or more baffles are suspended from a center beam of the plurality of beams.

17. The apparatus of claim 7 , wherein the plurality of beams are disposed at a non-perpendicular angle relative to the fluid vapor flow from the reactor vapor feed nozzle to the feed zone.

18. The apparatus of claim 7 , wherein the plurality of beams are disposed at a perpendicular angle relative to the fluid vapor flow from the reactor vapor feed nozzle to the feed zone.

19. The apparatus of claim 7 , wherein the reactor vapor feed nozzle comprises a cylindrical internal nozzle having an annular lip and disposed within the reactor vapor feed nozzle that extends into the feed zone, and an insulating material disposed between cylindrical internal nozzle and the reactor vapor feed nozzle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2019
From: GOLDEN, SCOTT WILLIAM; BARLETTA, ANTHONY FREDERICK, JR; NICCUM, GRANT JOSEPH
To: PROCESS CONSULTING SERVICES, INC
Reel/Frame 050875/0570 →
Continuity (2)
Provisional Application 62740222 · Oct 2, 2018
Related Publication 20200102512A1 · Apr 2, 2020
Cited By (1)
US 12,723,204