Claims
- 1. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) hydrocracking a hydrocarbonaceous feedstock having a normal boiling range above about 180.degree. F. and below about 1200.degree. F.;
- (b) upgrading at least part of the effluent of said hydrocracking process through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said effluent part with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly spaced velocity in the range of from about 0.1 to 20, said effluent having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; and
- (c) etherating all or part of the portion of said process stream which boils below about 225.degree. F.
- 2. A process according to claim 1 wherein said etheration is performed by contacting said portion of said process stream with a C.sub.1 to C.sub.3 alcohol under etheration conditions.
- 3. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) upgrading a hydrocarbonaceous feed having a normal boiling range above about 180.degree. F. and below about 1200.degree. F., through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said feed with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said feed having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; and
- (b) recovering a jet fuel fraction from said process stream.
- 4. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) hydrocracking a hydrocarbonaceous feedstock having a normal boiling range above about 180.degree. F. and below about 1200.degree. F.;
- (b) upgrading at least part of the effluent of said hydrocracking process through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said effluent part with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said effluent having a content of a nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; and
- (c) forming aromatics from all or part of the fraction of said process stream which boils below about 400.degree. F.
- 5. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) upgrading a hydrocarbonaceous feed having a normal boiling range above about 180.degree. F. and below about 1200.degree. F., through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said feed with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said feed having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm;
- (b) hydrocracking at least part of said process stream; and
- (c) recovering a jet fuel fraction from the effluent of said hydrocracking step.
- 6. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) upgrading a hydrocarbonaceous feed having a normal boiling range above about 180.degree. F. and below about 1200.degree. F., through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said feed with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hoursly space velocity in the range of from about 0.1 to 20, said feed having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm;
- (b) hydrocracking at least part of said process stream; and
- (c) forming aromatics from at least part of the fraction of the effluent of said hydrocracking step which boils below about 400.degree. F.
- 7. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) upgrading a hydrocarbonaceous feed having a normal boiling range above about 180.degree. F. and below about 1200.degree. F., through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said feed with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said feed having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm;
- (b) separating said process stream into at least one lower fraction boiling below about 400.degree. F. and at least one higher fraction boiling above about 400.degree. F.;
- (c) recovering said lower fraction; and
- (d) hydrocracking at least part of said higher fraction.
- 8. A process according to claim 7 further comprising the step of etherating all or part of the portion of said lower fraction which boils below about 225.degree. F.
- 9. A process according to claim 8 wherein said etheration is performed by contacting said fraction with a C.sub.1 to C.sub.3 alcohol under etheration conditions.
- 10. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) hydrocracking a hydrocarbonaceous feedstock having a normal boiling range above about 180.degree. F. and below about 1200.degree. F.;
- (b) upgrading at least part of the effluent of said hydrocracking process through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said effluent part with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said effluent having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; wherein said upgrading process and hydrocracking step are operated in a recycle mode; and
- (c) recovering a jet fuel fraction from the effluent of said hydrocracking process.
- 11. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) hydrocracking a hydrocarbonaceous feedstock having a normal boiling range above about 180.degree. F. and below about 1200.degree. F.;
- (b) upgrading at least part of the effluent of said hydrocracking process through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said effluent part with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said effluent having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; wherein said upgrading process and hydrocracking step are operated in a recycle mode; and
- (c) forming aromatics from all or part of the fraction of the effluent of said hydrocracking step which boils below about 400.degree. F.
- 12. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) hydrocracking a hydrocarbonaceous feedstock having a normal boiling range above about 180.degree. F. and below about 1200.degree. F.;
- (b) upgrading at least part of the effluent of said hydrocracking process through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said effluent part with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said effluent having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; wherein said upgrading process and hydrocracking step are operated in a recycle mode; and further comprising separating said process stream into at least one lower fraction boiling below about 400.degree. F. and at least one higher fraction boiling above about 400.degree. F.; recovering said lower fraction; and feeding at least part of said higher fraction to said hydrocracking step.
- 13. A process according to claim 12 further comprising the step of etherating all or part of the portion of said lower fraction which boils below about 225.degree. F.
- 14. A process according to claim 13 wherein said etheration is performed by contacting said lower fraction with a C.sub.1 to C.sub.3 alcohol under etheration conditions.
- 15. A process according to claim 7 or 12 further comprising the step of forming aromatics from all or part of said lower fraction.
- 16. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) upgrading a hydrocarbonaceous feed having a normal boiling range above about 180.degree. F. and below about 1200.degree. F. through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said feed with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said feed having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; and
- (b) recovering from said process stream an olefinic fraction which contains C.sub.2 to C.sub.7 olefins.
- 17. A process according to claim 16, further comprising polymerizing all or part of the olefins contained in said olefinic fraction.
- 18. A process according to claim 16, further comprising aralkylating all or part of said olefinic fraction by contact with an aromatic compound under arylalkylation conditions.
- 19. A process according to claim 18, wherein said aromatic compound is a substituted or unsubstituted benzene compound.
- 20. A process according to claim 16, further comprising hydrating all or part of the olefins in said olefinic fraction.
- 21. A process for increasing the effectiveness of hydrocarbon processing, comprising:
- (a) upgrading a hydrocarbonaceous feed having a normal boiling range above about 180.degree. F. and below about 1200.degree. F. through use of an upgrading process comprising,
- (i) producing a process stream containing at least a substantial amount of C.sub.3 to C.sub.4 olefins by contacting said feed with a catalyst comprising a ZSM-5-type crystalline aluminosilicate zeolite in a form which is substantially free of hydrogenation activity, said contacting being under conditions including (a) a temperature in the range of from about 500.degree. F. to about 800.degree. F.; (b) a pressure below about 13 atmospheres gauge; and (c) a liquid hourly space velocity in the range of from about 0.1 to 20, said feed having a content of nitrogen-containing impurities, calculated by weight as nitrogen, below about 5 ppm; and
- (b) stabilizing at least part of said process stream to oxidation.
- 22. A process according to claim 21 wherein said stabilizing step comprises catalytic hydrofinishing.
- 23. A process according to claim 21 wherein said stabilizing step comprises chemical finishing.
- 24. A process according to claim 16 further comprising etherating all or part of the olefins in said olefinic fraction.
- 25. A process according to claim 24 wherein said etheration is performed by contacting said olefins with a C.sub.1 to C.sub.3 alkyl alcohol under etheration conditions.
- 26. A process according to claim 25 wherein said alcohol is methyl alcohol and said olefins comprise isobutene.
- 27. A process according to claim 25 further comprising recovering the ethers from the effluent of said etheration step and recycling all or part of the remainder of said effluent to said upgrading step.
- 28. A process according to claim 16, further comprising alkylating at least part of said olefinic fraction under alkylation conditions.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of our copending application Ser. No. 107,231 (now U.S. Pat. No. 4,251,348), filed Dec. 26, 1979, which is a continuation-in-part of our copending application Ser. No. 41,209, filed May 21, 1979 (now U.S. Pat. No. 4,282,085), which in turn is a continuation-in-part of our application Ser. No. 954,062, filed on Oct. 23, 1978, now U.S. Pat. No. 4,171,257, Oct. 16, 1979.
US Referenced Citations (8)
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
107231 |
Dec 1979 |
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Parent |
41209 |
May 1979 |
|
Parent |
954062 |
Oct 1978 |
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