Claims
- 1. A process for aromatization of a methane-containing feed, comprising:
a) contacting a feed stream comprising methane with an active catalyst in a reaction zone so as to produce a product stream, wherein the catalyst is deactivated to form spent catalyst; b) contacting at least a first portion of the spent catalyst with at least a first regeneration gas stream in at least a first regeneration zone so as to regenerate the first portion to reform at least a first portion of the active catalyst; and c) cycling between steps (a) and (b).
- 2. The process according to claim 1 wherein step (b) comprises selecting at least one of the percentage of the first portion of the spent catalyst and the composition of the first regeneration gas.
- 3. The process according to claim 1 wherein step (c) comprises maintaining conditions of heat balance.
- 4. The process according to claim 1 wherein the reaction zone comprises a fluidized bed.
- 5. The process according to claim 1 wherein the reaction zone comprises a riser reactor.
- 6. The process according to claim 1 wherein the reaction zone comprises a bubbling bed reactor.
- 7. The process according to claim 1 wherein the regeneration zone comprises a second fluidized bed.
- 8. The process according to claim 1 wherein the catalyst is deactivated by coking.
- 9. The process according to claim 1 wherein step (b) further comprises:
contacting a second portion of the spent catalyst with a second regeneration gas stream in the first regeneration zone or in a second regeneration zone so as to regenerate the second portion to reform a second portion of the active catalyst.
- 10. The process according to claim 9 wherein step (b) comprises selecting at least one of the percentage of the second portion of the spent catalyst and the composition of the second regeneration gas.
- 11. The process according to claim 9 wherein step (c) comprises maintaining conditions of heat balance.
- 12. The process according to claim 9 wherein step (b) further comprises
contacting a third portion of the spent catalyst with a third regeneration gas stream in the first regeneration zone or a third regeneration zone so as to regenerate the third portion to reform a third portion of the active catalyst.
- 13. The process according to claim 12 wherein step (b) comprises selecting at least one of the percentage of the third portion of the spent catalyst and the composition of the third regeneration gas.
- 14. The process according to claim 12 wherein step (c) comprises maintaining conditions of heat balance.
- 15. A method of supplying heat to a reactor system, the method comprising:
a) passing spent catalyst from the reactor system to a regeneration system, said spent catalyst comprising an active catalyst for the conversion of a light hydrocarbon to an aromatic hydrocarbon and coke deposited on the active catalyst; b) removing coke from the spent catalyst in the regeneration system to produce regenerated active catalyst, such that heat is generated and stored in said catalyst; and c) passing the regenerated active catalyst to the reactor system.
- 16. The method according to claim 15 wherein the active catalyst comprises a ZSM-5 molecular sieve.
- 17. The method according to claim 15 wherein the active catalyst comprises molybdenum.
- 18. The method according to claim 15 wherein the active catalyst comprises an aluminosilicate molecular sieve having a silica-to-alumina ratio of about 50:1.
- 19. The method according to claim 15 wherein step (b) comprises:
b1) contacting a first percentage of the spent catalyst with a first regeneration gas; b2) contacting a said second percentage of the spent catalyst with a second regeneration gas; and b3) selecting said first and second percentages to adjust the amount of heat supplied to the reactor system.
- 20. The method according to claim 19 wherein said first regeneration gas is a gas selected from the group consisting of an oxygen-containing gas and hydrogen gas.
- 21. The method according to claim 20 wherein said second regeneration gas is another gas selected from the group consisting of an oxygen-containing gas, hydrogen gas, and steam.
- 22. A circulating catalyst system, comprising:
a plurality of catalyst particles, said plurality forming a catalyst for the aromatization of a light hydrocarbon, said catalyst convertible between an active catalyst and a spent catalyst and maintained in a fluidized state; a reactor system comprising a reaction zone in which said catalyst is turned from said active catalyst into said spent catalyst; a regenerator system comprising a regeneration zone in which said spent catalyst contacts a regeneration gas and is turned from said spent catalyst into said active catalyst.
- 23. The circulating catalyst system according to claim 22 further comprising:
a distributor unit connected to said regenerator system, said distributor unit controlling the amount of said spent catalyst contacting said regeneration gas.
- 24. The circulating catalyst system according to claim 23 wherein said distribution unit selects said amount so as to achieve a condition of heat balance between said reactor system and said regenerator system.
- 25. The circulating catalyst system according to claim 23 wherein said distribution unit comprises a valve.
- 26. The circulating catalyst system according to claim 25 wherein said distribution unit comprises a microprocessor controlling the operation of said valve.
- 27. The circulating catalyst system according to claim 23 wherein said distribution unit controls passage of said spent catalyst to said regeneration zone.
- 28. The circulating catalyst system according to claim 27 wherein said distribution unit selects the amount said spent catalyst entering each of said regeneration zone so as to achieve a condition of heat balance between said reactor system and said regenerator system
- 29. The circulating catalyst system according to claim 27 wherein said regenerator system further comprises a second regeneration zone in which spent catalyst contacts a second regeneration gas; and wherein said distribution unit further controls passage of spent catalyst to said second regeneration zone.
- 30. The circulating catalyst system according to claim 29 wherein said distribution unit selects the amounts of said spent catalyst entering each of said regeneration zones to achieve a condition of heat balance between said reactor system and said regenerator system
- 31. The circulating catalyst system according to claim 29 wherein said regenerator system further comprises a third regeneration zone in which spent catalyst contacts a third regeneration gas; and wherein said distribution unit further controls passage of spent catalyst to said third regeneration zone.
- 32. The circulating catalyst system according to claim 31 wherein said distribution unit selects the amounts of said spent catalyst entering each of said regeneration zones to achieve a condition of heat balance between said reactor system and said regenerator system.
- 33. The circulating catalyst system according to claim 23 wherein said distribution unit controls passage of said regeneration gas to said regeneration zone.
- 34. The circulating catalyst system according to claim 33 wherein said distribution unit selects the amount of said regeneration gas entering said regeneration zone to achieve a condition of heat balance between said reactor system and said regenerator system.
- 35. The circulating catalyst system according to claim 33 wherein said distribution unit further controls passage of a second regeneration gas to said regeneration zone.
- 36. The circulating catalyst system according to claim 35 wherein said distribution unit selects the amounts of each of said regeneration gases entering said regeneration zone so as to achieve a condition of heat balance between said reactor system and said regenerator system.
- 37. The circulating catalyst system according to claim 35 wherein said distribution unit further controls passage of a third regeneration gas to said regeneration zone.
- 38. The circulating catalyst system according to claim 37 wherein said distribution unit selects the amounts of each of said regeneration gases entering said regeneration zone so as to achieve a condition of heat balance between said reactor system and said regenerator system.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of priority from U.S. Provisional Application Serial No. 60/299,545, filed Jun. 20, 2001, entitled “Circulating Catalyst System and Method for Conversion of Light Hydrocarbons to Aromatics”. Further, the present application is related to U.S. aplication Ser. No. 09/916,469, filed Jul. 27, 2001, which claims the benefit of priority from U.S. Provisional Application Serial No. 60/221,082, each entitled “Catalyst and Process for Aromatic Hydrocarbons Production from Methane”. Each of the above-listed applications is hereby incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60299545 |
Jun 2001 |
US |