Claims
- 1. In a process for the hydroconversion of a carbonaceous feed in the presence of molecular hydrogen wherein a hydroconversion effluent containing liquids and unconverted carbonaceous material is produced, and said effluent is subjected to one or more separation steps to remove lower molecular weight liquids from said effluent and thereby produce a heavy bottoms stream containing high molecular weight liquids and unconverted carbonaceous material, the improvement which comprises contacting the feed stream to said separation step or steps at a temperature between about 300.degree. F. and about 700.degree. F. with sufficient added ammonia gas such that the weight ratio of said ammonia gas to said feed stream rangers between about 0.01 and about 0.6 prior to or during said separation step or said separation steps, thereby reducing and controlling the viscosity of said heavy bottoms stream.
- 2. A process as defined by claim 1 wherein said carbonaceous feed comprises carbonaceous solids and said solids are hydroconverted in the presence of molecular hydrogen and a hydrocarbon solvent.
- 3. A process as defined by claim 2 wherein said carbonaceous solids comprise coal.
- 4. A process as defined by claim 1 wherein said carbonaceous feed comprises petroleum residuum.
- 5. A process as defined by claim 1 wherein said separation step or steps comprise distillations.
- 6. A process as defined by claim 1 wherein said feed stream to said separation step or steps is contacted with said ammonia gas during said separation step or steps.
- 7. A process as defined by claim 1 wherein said effluent is subjected to an atmospheric distillation followed by a vacuum distillation.
- 8. A process as defined by claim 7 wherein said effluent is contacted with said added ammonia gas during said atmospheric distillation and the resultant bottoms is treated with said added ammonia gas during said vacuum distillation to produce said heavy bottoms stream.
- 9. A process as defined by claim 1 wherein said carbonaceous feed comprises petroleum residuum and said residuum is hydroconverted in the presence of molecular hydrogen and a hydrocarbon solvent.
- 10. A process as defined by claim 9 wherein said solvent comprises a nonhydrogen-donor solvent and said residuum is hydroconverted in the presence of an added catalyst.
- 11. A process for the liquefaction of coal which comprises:
- (a) contacting said coal with a hydrocarbon solvent under liquefaction condition in the presence of molecular hydrogen in a liquefaction zone to produce a liquefaction effluent;
- (b) separating said liquefaction effluent into a vapor stream and a slurry stream, said slurry stream comprising a high molecular weight fraction including mineral matter, heavy liquids and unconverted carbonaceous constituents, and a lower molecular weight liquid fraction;
- (c) subjecting said slurry stream to an atmospheric distillation in the presence of added gaseous ammonia, thereby separating said slurry stream into one or more lower molecular weight liquid fractions and a higher molecular weight fraction containing said mineral matter, said heavy liquids and said unconverted carbonaceous constituents; and
- (d) subjecting said higher molecular weight fraction from step (c) to a vacuum distillation in the presence of added gaseous ammonia to produce a heavy bottoms stream having improved rheological properties and containing high molecular weight liquids, mineral matter, and unconverted carbonaceous constituents.
- 12. A process as defined by claim 11 wherein said hydrocarbon solvent comprises a hydrogen-donor solvent.
- 13. A process as defined by claim 11 wherein said solvent comprises a nonhydrogen-donor solvent and said liquefaction is carried out in the presence of an added catalyst.
- 14. A process as defined by claim 11 wherein said heavy bottoms stream produced in step (d) is contacted with added gaseous ammonia prior to being subjected to a subsequent processing step.
- 15. In a process for the hydroconversion of a carbonaceous feed in the presence of molecular hydrogen wherein a hydroconversion effluent containing liquids and unconverted carbonaceous material is produced, said effluent is subjected to one or more separation steps to remove lower molecular weight liquids from said effluent and thereby produce a heavy bottoms stream containing high molecular weight liquids and unconverted carbonaceous material, and said heavy bottoms is further processed to recover hydrocarbon values, the improvement which comprises contacting said heavy bottoms at a temperature above about 300.degree. F. with added ammonia gas prior to said further processing.
- 16. A process as defined by claim 15 wherein said carbonaceous feed comprises coal and said coal is hydroconverted in the presence of molecular hydrogen and a hydrocarbon solvent.
- 17. A process as defined by claim 15 wherein said carbonaceous feed comprises petroleum residuum.
- 18. A process as defined by claim 15 wherein the feed stream to said separation step or steps is contacted with added ammonia gas prior to or during said separation step or steps.
- 19. A process as defined by claim 15 wherein said heavy bottoms is contacted with said added ammonia gas at a temperature between about 300.degree. F. and about 700.degree. F.
- 20. A process as defined by claim 15 wherein said effluent is subjected to an atmospheric distillation followed by a vacuum distillation.
- 21. A process as defined by claim 20 wherein the feed streams to said atmospheric distillation and said vacuum distillation steps are contacted with added ammonia gas during said distillations.
Government Interests
The government of the United States of America has rights in this invention pursuant to Cooperative Agreement No.DE-FCO1-77-ET10069 (formerly Contract No. EF-77-A-01-2893) awarded by the U.S. Energy Research and Development Administration, now the U.S. Department of Energy.
US Referenced Citations (14)