Claims
- 1. A process for hydroprocessing hydrocarbonaceous feedstock using a catalyst prepared by:
- (a) preparing a catalyst precursor by reacting a Group VI-B metal compound with a sulfiding agent in an aqueous environment, substantially in the absence of oil, at a temperature of between 70.degree. and 350.degree. F. wherein the mole ratio of said sulfiding agent to said Group VI-B metal is greater than 2,
- (b) heating said precursor to hydroprocessing temperature for a time sufficient to convert said precursor to an active hydroprocessing catalyst, and
- (c) contacting said active hydroprocessing catalyst with a hydrocarbonaceous feedstock under hydroprocessing conditions.
- 2. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst, comprising:
- (a) preparing a catalyst precursor by reacting ammonia and a Group VI-B metal compound in water, to produce an aqueous environment containing an ammonium salt or ammonium salts of said Group VI-B metal, wherein the weight ratio of ammonia to Group VI-B metal is less than 0.6;
- (b) reacting said ammonium Group VI-B metal salt with a sulfiding agent in a low temperature sulfiding step at a temperature in the range of 70.degree. to 350.degree. F., substantially in the absence of oil, wherein the mole ratio of said sulfiding agent to said Group VI-B metal salt is greater than 2; and
- (c) passing said sulfided catalyst precursor to a hydroconversion zone with feed hydrocarbon oil and hydrogen, wherein said hydroconversion zone is operated at a temperature higher than the temperature of said sulfiding step, and which temperature and time of the precursor in the hydroconversion zone is sufficient to convert said precursor to an active hydroprocessing catalyst.
- 3. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst, comprising:
- (a) preparing a catalyst precursor by reacting an aqueous solution of an ammonium salt of a Group VI-B metal, said salt having an ammonia to metal ratio of less than 0.6, with a sulfiding agent in a low temperature sulfiding step at a temperature in the range of 70.degree. to 350.degree. F, substantially in the absence of oil, wherein the mole ratio of said sulfiding agent to said Group VI-B metal salt is greater than 2; and
- (b) passing said sulfided catalyst precursor to a hydroconversion zone with feed hydrocarbon oil and hydrogen, wherein said hydroconversion zone is operated at a temperature higher than the temperature in said sulfiding step, and which temperature and the time of the precursor in the hydroconversion zone is sufficient to convert said precursor to an active hydroprocessing catalyst.
- 4. The process of claim 1, 2 or 3 wherein said Group VI-B metal compound is selected from the group consisting of compounds of molybdenum and tungsten.
- 5. The process of claim 4 wherein said compound is molybdenum oxide.
- 6. The process of claim 1, 2 or 3 wherein said sulfiding agent is hydrogen sulfide.
- 7. The process of claim 1 wherein said step of reacting ammonia with said Group VI-B metal compound is performed at a temperature of 33.degree. to 350.degree. F.
- 8. The process of claim 7 wherein said step is performed at a temperature of 120.degree. to 180.degree. F.
- 9. The process of claim 2 wherein said step of reacting ammonia with said Group VI-B metal compound is performed at a pressure of 0 to 400 psig.
- 10. The process of claim 9 wherein said step is performed at a pressure of 0 to 10 psig.
- 11. The process of claim 2 wherein said step of reacting ammonia with said Group VI-B metal compound employs an NH.sub.3: metal weight ratio of 0.15 to 0.3.
- 12. The process of claim 1, 2 or 3 wherein in said sulfiding step the mole ratio of sulfiding agent to Group VI-B metal is greater than 3.
- 13. The process of claim 1, 2 or 3 wherein said sulfiding step employs a hydrogen/hydrogen sulfide blend.
- 14. The process of claim 1, 2 or 3 wherein the residence time of said catalyst in said sulfiding step is at least 0.2 hours.
- 15. The process of claim 1, 2 or 3 wherein the time sufficient to convert said precursor to an active hydroprocessing catalyst is at least 30 minutes.
- 16. The process of claims 1, 2 or 3 wherein said time is about 12 minutes.
- 17. The process of claims 1, 2 or 3 wherein said time is about 5 minutes.
- 18. The process of claim 12 wherein in said sulfiding step the hydrogen sulfide partial pressure is 3 to 400 psi.
- 19. The process of claim 18 wherein in said sulfiding step the hydrogen sulfide partial pressure is 150 to 250 psi.
- 20. The process of claim 1, 2 or 3 including continuous agitation to maintain solids in dispersion.
- 21. The process of claim 2 or 3 wherein ammonia is removed from the system prior to passing said sulfided catalyst to said hydroconversion zone.
- 22. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a Group VI-B metal compound in water to form an aqueous ammonium Group VI-B metal compounds, reacting said aqueous ammonium Group VI-B compounds with hydrogen sulfide essentially without feed oil in a low temperature sulfiding step at a temperature in the range 70.degree. to 350.degree. F., continuing the reaction of aqueous ammonium Group VI-B metal compound with hydrogen sulfide in an intermediate temperature sulfiding step at a temperature in the range 180.degree. to 700.degree. F. which is higher than the temperature in said low temperature sulfiding step and essentially without feed oil, withdrawing an aqueous effluent stream from said intermediate temperature sulfiding step, passing said effluent stream to a separator zone, removing ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil and hydrogen sulfide to a high temperature sulfiding step at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and withdrawing from said high temperature sulfiding step an aqueous oil slurry containing dispersed Group VI-B metal sulfide slurry catalyst.
- 23. The process of claim 22 wherein said feed oil is hydroprocessed in said high temperature sulfiding step.
- 24. The process of claim 22 including passing said aqueous oil slurry containing dispersed Group VI-B metal sulfide slurry catalyst to a hydroprocessing reactor.
- 25. The process of claim 24 wherein said hydroprocessing reactor is operated at a temperature higher than the temperature in said high temperature sulfiding step.
- 26. The process of claim 22 wherein said residence time, in each of said sulfiding steps is at least 0.3 hours.
- 27. The process of claim 22 wherein said residence time, in each of said sulfiding steps is at least 0.4 hours.
- 28. The process of claim 22 wherein said residence time, in each of said sulfiding steps is at least 0.5 hours.
- 29. The process of claim 22 wherein said feed oil is a crude oil.
- 30. The process of claim 22 wherein said feed oil is a heavy crude oil.
- 31. The process of claim 22 wherein said feed oil is a residual oil.
- 32. The process of claim 22 wherein said feed oil is a refractory heavy distillate.
- 33. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a Group VI-B metal compounds in water to form an aqueous ammonium Group VI-B metal compounds, reacting said aqueous ammonia Group VI-B metal compounds with hydrogen sulfide in a low temperature sulfiding step at a temperature in the range 70.degree. to 350.degree. F. substantially in the absence of feed oil, withdrawing an aqueous effluent stream from said low temperature sulfiding step, passing said aqueous effluent stream in a separator zone, removing ammonia from said effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to a high temperature sulfiding step operated at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said low temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.01 hours, and withdrawing an aqueous oil slurry containing dispersed Group VI-B metal sulfide slurry catalyst.
- 34. The process of claim 33 wherein said feed oil is hydroprocessed in said high temperature sulfiding step.
- 35. The process of claim 33 including passing said aqueous oil slurry containing-dispersed Group VI-B metal sulfide slurry catalyst to a hydroprocessing reactor.
- 36. The process of claim 35 wherein said hydroprocessing reactor is operated at a temperature higher than the temperature in said high temperature sulfiding step.
- 37. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting a thiosubstituted ammonium compound, of a Group VI-B metal water, and hydrogen sulfide substantially in the absence of feed oil in a zone at a relatively low temperature in the range 70.degree. to 350.degree. F., withdrawing an aqueous effluent stream from said relatively low temperature zone, passing said effluent stream to a separator zone, removing ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide in a high temperature sulfiding zone at a temperature in the range 500.degree. to 750.degree. F., the residence time in each of said sulfiding zones being at least 0.02 hours and removing an aqueous oil slurry containing dispersed Group VI-B metal sulfide catalyst.
- 38. The process of claim 37 wherein said feed oil is hydroprocessed in said high temperature sulfiding zone.
- 39. The process of claim 37 including passing said aqueous oil slurry containing dispersed Group VI-B metal sulfide slurry catalyst to a hydroprocessing reactor.
- 40. The process of claim 39 wherein said hydroprocessing reactor is operated at a temperature in the range 650.degree. to 950.degree. F. which is higher than the temperature in said high temperature sulfiding zone.
- 41. A process for the preparation of a dispersed molybdenum sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a molybdenum compound in water to form aqueous ammonium molybdates, reacting said aqueous ammonium molybdates with hydrogen sulfide essentially without feed oil in a low temperature sulfiding step at a temperature in the range of 70.degree. to 350.degree. F., continuing the reaction with hydrogen sulfide in an intermediate temperature sulfiding step at a temperature in the range 180.degree. to 700.degree. F. essentially without feed oil, said intermediate temperature sulfiding step operated at a temperature which is higher than the temperature in said low temperature sulfiding step, withdrawing an aqueous effluent stream from said intermediate temperature sulfiding step, passing said effluent stream to a separator zone, removing ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to a high temperature sulfiding step at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and withdrawing from said high temperature sulfiding step an aqueous oil slurry containing dispersed molybdenum sulfide slurry catalyst.
- 42. The process of claim 41 wherein said feed oil is hydroprocessed in said high temperature sulfiding step.
- 43. The process of claim 41 including passing said aqueous oil slurry containing dispersed molybdenum sulfide slurry catalyst to a hydroprocessing step.
- 44. The process of claim 43 wherein said hydroprocessing step is operated at a temperature higher than the temperature in said high temperature sulfiding step.
- 45. The process of claim 41 wherein said low temperature sulfiding step is operated at a temperature in the range 130.degree. to 180.degree. F.
- 46. The process of claim 41 wherein said intermediate temperature sulfiding step is operated at a temperature in the range 300.degree. to 550.degree. F.
- 47. The process of claim 41 wherein said residence time, in each of said sulfiding steps, is at least 0.1 hour.
- 48. The process of claim 41 wherein said hydroprocessing step is operated at a temperature in the range 650.degree. F. to 950.degree. F.
- 49. The process of claim 41 wherein said molybdenum compound is molybdenum oxide.
- 50. The process of claim 41 wherein said step of reacting ammonia with said molybdenum compound is performed at a temperature of 33.degree. to 350.degree. F.
- 51. The process of claim 41 wherein said step of reacting ammonia with said molybdenum compound is performed at a temperature of 120.degree. to 180.degree. F.
- 52. The process of claim 41 wherein said step of reacting ammonia with said molybdenum compound is performed at a pressure of 0 to 400 psig.
- 53. The process of claim 41 wherein said step of reacting ammonia with said molybdenum compound is performed at a pressure of 0 to 10 psig.
- 54. The process of claim 41 wherein said step of reacting ammonia with said molybdenum compound employs an NH.sub.3 /Mo weight ratio of 0.1 to 0.6.
- 55. The process of claim 41 wherein said step of reacting ammonia with said molybdenum compound employs an NH.sub.3 /Mo weight ratio of 0.15 to 0.3.
- 56. The process of claim 41 wherein said low temperature sulfiding step employs a hydrogen/hydrogen sulfide blend.
- 57. The process of claim 41 wherein in said low temperature sulfiding step the ratio of H.sub.2 S to Mo is greater than 2.7 SCF H.sub.2 S/lb. of Mo.
- 58. The process of claim 41 wherein in said low temperature sulfiding step the ratio of H.sub.2 S to Mo is greater than 12 SCF H.sub.2 S/lb of Mo.
- 59. The process of claim 41 wherein said residence time, in each of said sulfiding steps, is at least 0.2 hours.
- 60. The process of claim 41 wherein in said low temperature sulfiding step the hydrogen sulfide partial pressure is 3 to 400 psi.
- 61. The process of claim 41 wherein in said low temperature sulfiding step the hydrogen sulfide partial pressure is 150 to 250 psi.
- 62. The process of claim 41 wherein said ammonia separating step is performed by cooling and depressurizing said aqueous effluent stream.
- 63. The process of claim 45 wherein said dispersed molybdenum sulfide is molybdenum disulfide.
- 64. A process for the preparation of a dispersed molybdenum sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a molybdenum compound in water to form aqueous ammonium molybdate, reacting said aqueous ammonium molybdate with hydrogen sulfide in a low temperature sulfiding step at a temperature in the range 70.degree. to 350.degree. F. substantially in the absence of feed oil, withdrawing an aqueous effluent stream from said low temperature sulfiding step, passing said aqueous effluent stream to a separator zone, separating ammonia from said effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to a high temperature sulfiding step at a temperature between 50.degree. and 750.degree. F., the residence time in each of said sulfiding steps being at least 0.02 hour, and withdrawing an aqueous oil slurry containing dispersed molybdenum sulfide slurry catalyst.
- 65. The process of claim 64 wherein said low temperature sulfiding step is operated at a temperature in the range 130.degree. to 180.degree. F.
- 66. The process of claim 64 wherein said residence time, in each of said sulfiding steps, is at least 0.1 hours.
- 67. The process of claim 64 wherein said feed oil is hydroprocessed in said high temperature sulfiding step.
- 68. The process of claim 64 including passing said aqueous oil slurry containing dispersed molybdenum sulfide catalyst to a hydroprocessing step.
- 69. The process of claim 68 wherein said hydroprocessing step is operated at a temperature higher than the temperature of said high temperature sulfiding step.
- 70. The process of claim 64 wherein said molybdenum compound is molybdenum oxide.
- 71. A process for the preparation of a dispersed molybdenum sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting thiosubstituted ammonium molybdate, water, and hydrogen sulfide substantially without hydrocarbon oil in a relatively low temperature sulfiding step at a temperature in the range 180.degree. to 700.degree. F., withdrawing an aqueous effluent stream from said relatively low temperature sulfiding step, passing said effluent stream to a separator zone, separating ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to a relatively high temperature sulfiding step at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said low temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and recovering an aqueous oil slurry containing dispersed molybdenum sulfide catalyst.
- 72. The process of claim 71 wherein said thiosubstituted ammonium molybdate is an ammonium oxythiomolybdate.
- 73. The process of claim 71 wherein said thiosubstituted ammonium molybdate is ammonium tetrathiomolybdate.
- 74. The process of claim 71 wherein said molybdenum sulfide is molybdenum disulfide.
- 75. The process of claim 71 including passing said aqueous oil slurry containing dispersed molybdenum sulfide catalyst to a hydroprocessing step.
- 76. The process of claim 71 wherein said hydroprocessing step is operated at a temperature above the temperature of said high temperature sulfiding step.
- 77. The process of claim 71 wherein said ammonia separating step is performed by cooling and depressurizing said aqueous effluent stream.
- 78. A process for the preparation of a dispersed tungsten sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a tungsten compound in water to form aqueous ammonium tungstates, reacting said aqueous ammonium tungstates with hydrogen sulfide in a low temperature sulfiding step at a temperature in the range 70.degree. to 350.degree. F. essentially without feed oil, continuing the reaction with hydrogen sulfide in an intermediate temperature sulfiding step at a temperature in the range 180.degree. to 700.degree. F. essentially without feed oil, said intermediate temperature sulfiding step operated at a temperature higher than the temperature in said low temperature sulfiding step, withdrawing an aqueous effluent stream from said intermediate temperature sulfiding step, passing said effluent stream to a separator step, separating ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with hydrocarbon oil, hydrogen and hydrogen sulfide to a high temperature sulfiding step operated at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and withdrawing from said high temperature sulfiding step an aqueous oil slurry containing dispersed tungsten sulfide catalyst.
- 79. The process of claim 78 wherein said tungsten compound is tungsten oxide.
- 80. The process of claim 78 wherein said dispersed tungsten sulfide is tungsten disulfide.
- 81. The process of claim 78 wherein said step of reacting said ammonia with said tungsten compound is performed at a temperature of 33.degree. to 350.degree. F.
- 82. The process of claim 78 wherein said step of reacting ammonia with said tungsten compound is performed at a temperature of 120.degree. to 180.degree. F.
- 83. The process of claim 78 wherein said step of reacting ammonia with said tungsten compound is performed at a pressure of 0 to 400 psig.
- 84. The process of claim 78 wherein said step of reacting ammonia with said tungsten compound is performed at a pressure of 0 to 10 psig.
- 85. The process of claim 78 wherein said step of reacting ammonia with said tungsten compound employs an NH.sub.3 /W weight ratio of 0.03 to 0.35.
- 86. The process of claim 78 wherein said step of reacting ammonia with said tungsten employs an NH.sub.3 /W weight ratio of 0.05 to 0.25.
- 87. The process of claim 78 wherein said low temperature sulfiding step employs a hydrogen/hydrogen sulfide blend.
- 88. The process of claim 78 wherein in said low temperature sulfiding step the ratio of H.sub.2 S/W is greater than 1.4 SCF H.sub.2 S/lb W.
- 89. The process of claim 78 wherein in said low temperature sulfiding step the ratio of H.sub.2 S/W is greater than 6.3 SCF /lb W.
- 90. The process of claim 78 wherein in said low temperature sulfiding step the temperature is 130.degree. to 180.degree. F.
- 91. The process of claim 78 wherein said residence time is at least 0.2 hours.
- 92. The process of claim 78 wherein in said low temperature sulfiding step the hydrogen sulfide partial pressure is 3 to 400 psi.
- 93. The process of claim 78 wherein in said low temperature sulfiding zone the hydrogen sulfide partial pressure is 150 to 250 psi.
- 94. The process of claim 78 wherein said ammonia separating step is performed by cooling and depressurizing said aqueous effluent stream.
- 95. The process of claim 78 including continuous agitation to maintain solids in dispersion.
- 96. The process of claim 78 wherein said residence time is at least 0.3 hours.
- 97. The process of claim 78 including passing said aqueous oil slurry containing dispersed tungsten sulfide slurry catalyst with feed oil and hydrogen to a hydroprocessing step.
- 98. The process of claim 97 wherein said hydroprocessing step is operated at a temperature higher than the temperature in said high temperature sulfiding step.
- 99. A process for the preparation of a dispersed tungsten sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting thiosubstituted ammonium tungstate, water and hydrogen sulfide substantially without feed oil in a sulfiding step at a relatively low temperature in the range 180.degree. to 700.degree. F., withdrawing an aqueous effluent stream from said relatively low temperature sulfiding step, passing said effluent stream to a separator zone, separating ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue with feed hydrocarbon oil, hydrogen and hydrogen sulfide to a sulfiding step at a relatively high temperature in the range 500.degree. to 750.degree. F. which is above the temperature in said low temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and recovering an aqueous oil slurry containing dispersed tungsten sulfide catalyst.
- 100. The process of claim 99 wherein said thiosubstituted ammonium tungstate is an ammonium oxythiotungstate.
- 101. The process of claim 99 wherein said thiosubstituted ammonium tungstate is ammonium tetrathiotungstate.
- 102. The process of claim 99 wherein said tungsten sulfide is tungsten disulfide.
- 103. The process of claim 99 wherein said feed hydrocarbon oil is hydroprocessed in the presence of said dispersed tungsten sulfide slurry catalyst at substantially the temperature of said high temperature sulfiding step.
- 104. The process of claim 99 including passing said aqueous oil slurry containing dispersed tungsten sulfide catalyst to a hydroprocessing step.
- 105. The process of claim 104 wherein the temperature in said hydroprocessing step is above the temperature of said high temperature sulfiding step.
- 106. The process of claim 103 wherein said ammonia separating step is performed by cooling and depressurizing said aqueous effluent stream.
- 107. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a Group VI-B metal compound in water to form an aqueous ammonium Group VI-B metal compound, reacting said aqueous ammonia Group VI-B metal compound with hydrogen sulfide in a low temperature sulfiding step at a temperature in the range 70.degree. to 350.degree. F. substantially in the absence of feed oil, withdrawing an aqueous effluent stream from said low temperature sulfiding step, passing said aqueous effluent stream to a separator zone, removing ammonia from said effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to an intermediate temperature sulfiding step operated at a temperature in the range 180.degree. to 700.degree. F. which is higher than the temperature in said low sulfiding step and then to a high temperature sulfiding step at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and withdrawing an aqueous oil slurry containing dispersed Group VI-B metal sulfide slurry catalyst.
- 108. A process for the preparation of a dispersed Group VI-B metal sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting a Group VI-B ammonium compound, water and hydrogen sulfide substantially in the absence of feed oil in a sulfiding step at a relatively low its Affiliates in the range 70.degree. to 350.degree. F. withdrawing an aqueous effluent stream from said relatively low temperature zone, passing said effluent stream to a separator zone, removing ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to an intermediate temperature sulfiding step operated at a temperature in the range 180.degree. to 700.degree. F. which is higher than the temperature in said low temperature sulfiding step and then to a high temperature sulfiding step operated at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and removing an aqueous oil slurry containing dispersed Group VI-B metal sulfide catalyst.
- 109. A process for the preparation of a dispersed molybdenum sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonia and a molybdenum compound in water to form aqueous ammonium molybdate, reacting said aqueous ammonium molybdate with hydrogen sulfide in a low temperature sulfiding step in the range 70.degree. to 350.degree. F. substantially in the absence of feed oil, withdrawing an aqueous effluent stream from said low temperature sulfiding step, passing said aqueous effluent stream to a separator zone, separating ammonia from said effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to an intermediate temperature sulfiding step operated at a temperature in the range 180.degree. to 700.degree. F. which is higher than the temperature in said low temperature sulfiding step and then to a high temperature sulfiding step operated at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and withdrawing an aqueous oil slurry containing dispersed molybdenum sulfide slurry catalyst.
- 110. A process for the preparation of a dispersed molybdenum sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting ammonium molybdate, water and hydrogen sulfide substantially without hydrocarbon oil in a low temperature sulfiding step in the range 70.degree. to 350.degree. F., withdrawing an aqueous effluent stream from said relatively low temperature sulfiding step, passing said effluent stream to a separator zone, separating ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue together with feed hydrocarbon oil, hydrogen and hydrogen sulfide to an intermediate temperature sulfiding step operated at a temperature in the range 180.degree. to 700.degree. F. which is higher than the temperature in said low temperature sulfiding step and then to a high temperature sulfiding step operated at a temperature in the range 500.degree. to 750.degree. F. is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and recovering an aqueous oil slurry containing dispersed molybdenum sulfide catalyst.
- 111. A process for the preparation of a dispersed tungsten sulfide hydrocarbon oil hydroprocessing catalyst comprising reacting an ammonium tungstate compound water and hydrogen sulfide substantially without feed oil in a reactor at a low temperature sulfiding zone operated at a temperature in the range 70.degree. to 350 .degree. F., withdrawing an aqueous effluent stream from said relatively low temperature reactor, passing said effluent stream to a separator zone, separating ammonia from said aqueous effluent stream in said separator zone leaving a separator residue, passing said separator residue with feed hydrocarbon oil, hydrogen and hydrogen sulfide to an intermediate temperature sulfiding step operated at a temperature in the range 180.degree. to 700.degree. F. which is higher than the temperature in said low temperature sulfiding step and then to a high temperature sulfiding zone operated at a temperature in the range 500.degree. to 750.degree. F. which is higher than the temperature in said intermediate temperature sulfiding step, the residence time in each of said sulfiding steps being at least 0.02 hours, and recovering an aqueous oil slurry containing dispersed tungsten sulfide catalyst.
BACKGROUND OF THE INVENTION
This application is a continuation of application Ser. No. 252,839, filed Sep. 30, 1988, now abandoned which is a continuation-in-part of Ser. No. 941,456, filed Dec. 15, 1986, by J. Lopez and E. A. Pasek, now U.S. Pat. No. 4,857,496, which is a continuation-in-part of Ser. No. 767,767, filed Aug. 21, 1985, by J. Lopez and E. A. Pasek, now abandoned, which is a continuation-in-part of Ser. No. 527,414, filed Aug. 29, 1983, by J. Lopez, J. D. McKinney and E. A. Pasek now U.S. Pat. No. 4,557,821.
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Continuations (1)
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252839 |
Sep 1988 |
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Continuation in Parts (3)
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