Claims
- 1. A zeolite catalyst comprising:
(a) first crystals of a first zeolite, and (b) a non-continuous layer of second crystals of a second zeolite having an average particle size less than the average particle size of said first crystals and covering at least a portion of the external surface of said first crystals
- 2. The catalyst recited in claim 1, wherein said second crystals cover at least 50 percent of the external surface of said first crystals.
- 3. The catalyst recited in claim 2, wherein said second crystals have an average particle size that is at least 50% less than the average particle of the second crystals.
- 4. The catalyst recited in claim 3 wherein said second crystals are grown together.
- 5. The catalyst recited in claim 4, wherein the accessibility of reactants to the external acid sites of the first zeolite is reduced by at least 75 percent.
- 6. The catalyst recited in claim 3 wherein said first crystals have an average particle size of from about 0.1 to about 15 microns.
- 7. The catalyst recited in claim 6, wherein said second crystals have an average particle size of less than 1 micron.
- 8. The catalyst recited in claim 7, wherein said first zeolite and said second zeolite are independently a structure type selected from the group consisting of OFF, BEA, MAZ, MEI, FAU, EMT, LTL, MOR, MFI, MFS, MEL, MTW, MTT, FER, EUO, HEU, TON, CHA, ERI, KFI, LEV, and LTA.
- 9. The catalyst recited in claim 3 wherein said first zeolite and said second zeolite are intermediate pore size zeolites and each are independently a composition having the following molar relationship:
- 10. The catalyst recited in claim 9, wherein said second zeolite has lower acidity than said first zeolite.
- 11. The catalyst recited in claim 1, wherein the acidity of said second zeolite is higher than the acidity of said first zeolite.
- 12. The catalyst recited in claim 3, wherein said first zeolite and said second zeolite have a large pore size or an intermediate pore size.
- 13. The catalyst recited in claim 3, wherein said first zeolite and said second zeolite have an intermediate pore size or small pore size.
- 14. The catalyst recited in claim 8, wherein said first zeolite and said second zeolite are an aluminosilicate zeolite or a gallium silicate zeolite.
- 15. The catalyst recited in claim 14, wherein said second crystals are prepared by aging at elevated temperatures silica-coated first zeolite crystals in an aqueous ionic solution containing a source of hydroxy ions sufficient to convert the silica in the aggregate to the second zeolite.
- 16. The catalyst recited in claim 14, wherein said second zeolite has a silica to alumina mole ratio greater than about 200:1.
- 17. The catalyst recited in claim 16, wherein said first zeolite has a silica to alumina mole ratio of from about 20:1 to about 200:1.
- 18. The catalyst recited in claim 17, wherein said second zeolite has a silica to alumina mole ratio greater than 500:1.
- 19. The catalyst recited in claim 7, wherein said first crystals of said first zeolite have an average particle size of from about 1 to about 6 microns.
- 20. The catalyst recited in claim 19, wherein said second crystals of said zeolite have an average particle size of from about 0.1 to about 0.5 micron.
- 21. The catalyst recited in claim 3, wherein the pore size of said first zeolite is larger than the pore size of said second zeolite.
- 22. The catalyst recited in claim 3, wherein the pore size of said second zeolite is larger than the pore size of said first zeolite.
- 23. The catalyst recited in claim 5, wherein said catalyst further comprises a catalytically active metal.
- 24. The catalyst recited in claim 1, wherein said coated zeolite catalyst further comprises a binder.
- 25. The catalyst recited in claim 24, wherein binder comprises Silica.
- 26. The catalyst recited in claim 1, wherein said first crystals comprise at least 75% by weight of said coated zeolite catalyst based on weight of said first zeolite and said second zeolite.
- 27. The catalyst recited in claim 1, wherein said coating further comprises at least one additional zeolite
- 28. The catalyst recited in claim 27 further comprises a binder.
- 29. A process for converting hydrocarbons comprising contacting a hydrocarbon feedstream under hydrocarbon conversion conditions with a coated zeolite catalyst which comprises:
(a) first crystals of a first zeolite, and (b) a discontinuous layer of second crystals of a second zeolite having an average particle size less than the average particle size of said first crystals covering at least a portion of the external surface of said first crystals.
- 30. The process recited in claim 29 wherein said second crystals cover at least 50 percent of the external surface acid sites of said first crystals.
- 31. The process recited in claim 30, wherein said second crystals have an average particle size that is at least 50% less than the average particle size of said first crystals.
- 32. The process recited in claim 31 wherein said second crystals are grown together.
- 33. The process recited in claim 32, wherein the accessibility of reactants to the external acid sites of the first zeolite is reduced by about at least 75 percent.
- 34. The process recited in claim 31, wherein said first crystals have an average particle size of from about 0.1 to about 15 microns.
- 35. The process recited in claim 34, wherein said second crystals have an average particle size of less than 1 micron.
- 36. The process recited in claim 35, wherein said first zeolite and said second zeolite are independently a structure type selected from the group consisting of OFF, BEA, MAZ, MEI, FAU, EMT, LTL, MOR, MFI, MFS, MEL, MTW, MTT, FER, EUO, TON, CHA, ERI, KFI, LEV, and LTA.
- 37. The process recited in claim 36, wherein said first zeolite and said second zeolite have a different structure type.
- 38. The process recited in claim 32, wherein said coated zeolite catalyst further contains a non-zeolitic binder.
- 39. The process recited in claim 32, wherein the hydrocarbon conversion is selected from the group consisting of cracking of hydrocarbons, isomerization of alkyl aromatics, disproportionation of toluene, transalkylation of aromatics, alkylation of aromatics, reforming of naphtha to aromatics, conversion of paraffins and/or olefins to aromatics, conversion of oxygenates to hydrocarbon products, cracking of naphtha to light olefins, and dewaxing of hydrocarbons.
- 40. The process recited in claim 32, wherein said hydrocarbon conversion is shape selective.
- 41. The process of claim 39, wherein said hydrocarbon conversion is carried out at conditions comprising a temperature of from 100° C. to about 760° C., a pressure of 0.1 atmosphere to 100 atmospheres, a weight hourly space velocity of from about 0.08 hr−1 to about 200 hr−1.
- 42. The process recited in claim 41, wherein said second zeolite has lower acidity than said first zeolite.
- 43. The process recited in claim 41, wherein said second zeolite has higher acidity than said first zeolite.
- 44. The process recited in claim 41, wherein the pore size of said first zeolite is larger than the pore size of said second zeolite.
- 45. The process recited in claim 39, wherein the pore size of said first zeolite is smaller than the pore size of said second zeolite.
- 46. The process recited in claim 45, wherein said first zeolite and second zeolite are intermediate pore size zeolites.
- 47. The process recited in claim 46, wherein said first zeolite and said second zeolite are aluminosilicate zeolites or gallium silicate zeolites.
- 48. The process recited in claim 47, wherein said second zeolite is an aluminosilicate zeolite having a silica to alumina mole ratio greater than about 200:1.
- 49. The process recited in claim 48, wherein said first zeolite is an aluminosilicate zeolite having a silica to alumina mole ratio of from about 20:1 to about 200:1.
- 50. The process recited in claim 41, wherein said catalyst further contains a binder comprising silica.
- 51. The process recited in claim 31, wherein said coating further comprises at least one additional zeolite.
- 52. The process recited in claim 51 wherein said catalyst further comprises a binder.
- 53. A process of isomerizing a hydrocarbon feed containing an aromatic C8 stream comprising, xylene isomers or a mixture of xylene isomers and ethylbenzene comprising contacting said feed under isomerization conversion conditions with a coated zeolite catalyst which comprises:
(a) first crystals of a first zeolite selected from the group consisting of an intermediate pore size zeolite and a large pore zeolite, and (b) a discontinuous layer of second crystals of a second zeolite having an average particle size less than the average particle size of said first crystals covering at least a portion of the external surface of said first crystals
- 54. The process recited in claim 53, wherein said coated zeolite catalyst further comprises a catalytically active metal.
- 55. The process recited in claim 54, wherein said second crystals cover at least 50 percent of the external surface acid sites of said first crystals.
- 56. The process recited in claim 55, wherein said second crystals cover at least 50 percent of the external surface of said first crystals.
- 57. The process recited in claim 56 wherein said second crystals are grown together.
- 58. The process recited in claim 56, wherein the accessibility of reactants to the external acid sites of the first zeolite is reduced by at least 75 percent.
- 59. The process recited in claim 55 wherein said first crystals have an average particle size of from about 0.1 to about 15 microns.
- 60. The process recited in claim 59, wherein said second crystals have an average particle size of less than 1 micron.
- 61. The process recited in claim 60, wherein said second zeolite has less acidity than said first zeolite.
- 62. The process recited in claim 60, wherein said first zeolite and second zeolite are independently a structure type selected from the group consisting of MOR, BEA, FAU, MFI, MEL, MTW, EUO, MTT, FER, and TON.
- 63. The process recited in claim 62, wherein said second zeolite has the same structure type as said first zeolite.
- 64. The process recited in claim 62, wherein said first crystals of said first zeolite have an average particle size of from about 1 to 6 microns and said second crystals of said second zeolite have an average particle size of from about 0.1 to less than 0.5 microns.
- 65. The process recited in claim 62 wherein said first zeolite and said second zeolite are each intermediate pore size zeolites and independently comprise a composition having the following molar relationship:
- 66. The process recited in claim 65, wherein said first zeolite is an aluminosilicate zeolite having a silica to alumina mole ratio of from about 70:1 to about 700:1 or a gallosilicate zeolite having a silica to gallia mole ratio of from about 24:1 to about 500:1.
- 67. The process recited in claim 66, wherein said second zeolite is an aluminosilicate zeolite having a silica to alumina mole ratio greater than 200:1 or a gallosilicate zeolite having a silica to gallia mole ratio greater than about 100:1.
- 68. The process recited in claim 56, wherein said coating further comprises at least one additional zeolite.
- 69. The process recited in claim 68, wherein said catalyst further comprises a binder.
- 70. A process for cracking hydrocarbon compounds comprising contacting a hydrocarbon feed under catalytic cracking conditions with a coated zeolite catalyst which comprises:
(a) first crystals of a first zeolite, and (b) a discontinuous layer of second crystals of a second zeolite having an average particle size less than the average particle size of said first crystals covering at least a portion of the external surface of said first crystals.
- 71. The process recited in claim 70 wherein said second crystals cover at least 50 percent of the external surface acid sites of said first crystals.
- 72. The process recited in claim 71, wherein said second crystals cover at least 50 percent of the external surface of said first crystals.
- 73. The process recited in claim 72 wherein said second crystals are grown together.
- 74. The catalyst recited in claim 73, wherein the accessibility of reactants to the external acid sites of the first zeolite is reduced by at least 75 percent.
- 75. The process recited in claim 72 wherein said first crystals have an average particle size of from about 0.1 to about 15 microns.
- 76. The process recited in claim 75, wherein said second crystals have an average particle size of less than 1 micron.
- 77. The process recited in claim 76, wherein said first zeolite and said second zeolite are independently a structure type selected from the group consisting of OFF, BEA, MAZ, MEI, FAU, EMT, LTL, MOR, MFI, MFS, MEL, MTW, MTT, FER, EUO, TON, CHA, ERI, KFI, LEV, and LTA.
- 78. The process recited in claim 77, wherein said first zeolite and said second zeolite have a different structure type.
- 79. The process recited in claim 77, wherein said coated zeolite catalyst further contains a non-zeolitic binder.
- 80. The process recited in claim 77, wherein said first crystals have a particle size of from about 0.1 to 3 microns.
- 81. The process of claim 77, wherein said hydrocarbon feed comprises a C4+ naphtha feed.
- 82. The process recited in claim 77, wherein said second zeolite has higher acidity than said first zeolite.
- 83. The process recited in claim 77, wherein the acidity of said second zeolite is lower than the acidity of said first zeolite.
- 84. The process recited in claim 83, wherein said first zeolite and said second zeolite have a large pore size or an intermediate pore size.
- 85. The process recited in claim 77, wherein said first zeolite and said second zeolite have an intermediate pore size or small pore size.
- 86. The process recited in claim 77, wherein said first zeolite and said second zeolite are an aluminosilicate zeolite or a gallium silicate zeolite.
- 87. The process recited in claim 70, wherein said coating further comprises at least one additional zeolite.
- 88. The process recited in claim 87 wherein said catalyst further comprises a binder.
- 89. A process for the disproportionation of toluene comprising contacting a toluene stream under toluene disproportionation conditions with a coated zeolite catalyst which comprises
(a) first crystals of a first intermediate pore size zeolite, and (b) a discontinuous layer of second crystals of a second zeolite having an average particle size less than the average particle size of said first crystals covering at least a portion of the external surface of said first crystals
- 90. The process recited in claim 89 wherein said second crystals cover at least 50 percent of the external surface acid sites of said first crystals.
- 91. The process recited in claim 90, wherein said second crystals cover at least 50 percent of the external surface of said first crystals.
- 92. The process recited in claim 91 wherein said second crystals are grown together.
- 93. The process recited in claim 92, wherein the accessibility of reactants to the external acid sites of the first zeolite is reduced by at least 75 percent.
- 94. The process recited in claim 91 wherein said first crystals have an average particle size of from about 0.1 to about 15 microns.
- 95. The process recited in claim 94, wherein said second crystals have an average particle size of less than 1 micron.
- 96. The process recited in claim 95, wherein said second zeolite has less acidity than said first zeolite.
- 97. The process recited in claim 96, wherein said first zeolite and second zeolite are independently a structure type selected from the group consisting of MFI, MEL, MTW, EUO, MTT, FER, and TON.
- 98. The process recited in claim 97, wherein said second zeolite has the same structure type as said first zeolite.
- 99. The process recited in claim 98, wherein said first crystals of said first zeolite have an average particle size of from about 1 to 6 microns and said second crystals of said second zeolite have an average particle size of from about 0.1 to less than 0.5 microns.
- 100. The process recited in claim 99 wherein said first zeolite and said second zeolite independently comprise a composition having the following molar relationship:
- 101. The process recited in claim 100, wherein said first zeolite and said second zeolite have an MFI or MEL structure.
- 102. The process recited in claim 101, wherein said second zeolite is an aluminosilicate zeolite having a silica to alumina mole ratio greater than 200:1 or a gallosilicate zeolite having a silica to gallia mole ratio greater than about 100:1.
- 103. The process recited in claim 102, wherein said catalyst is preselectivated.
- 104. The process recited in claim 103, wherein said catalyst is preselectivated by contacting the catalyst with hydrocarbon stream at a temperature in the range of between 480° C. and 650° C. at a pressure within the range of from 1 to 100 atmospheres and a weight hourly space velocity in the range of 0.1 to 20, and wherein said hydrocarbon stream further contains hydrogen at a H2/toluene ratio of 0 to about 2.
- 105. The process recited in claim 104, wherein said toluene disproportionation conditions comprise contacting said toluene stream with said catalyst at a temperature in the range of between about 400° C. to 550° C., at a pressure in the range of from 1 to 100 atmospheres and at a weight hourly space velocity in the range of from about 0.5 to 50, and wherein said toluene stream further contains hydrogen at H2/toluene mole ratio in the range of from greater than 0 to about 10.
- 106. The process of claim 105, wherein hydrogen is present in said hydrocarbon feed at an H2/toluene mole ratio of from 0.1:1 to about 5:1.
- 107. The process recited in claim 106, wherein said first zeolite is in the acidic hydrogen form.
- 108. The process recited in claim 91, wherein said second zeolite is prepared by aging at elevated temperature silica-coated first zeolite crystals in an aqueous ionic solution containing a source of hydroxy ions sufficient to convert the silica in the aggregate to the second zeolite.
- 109. The process of claim 90, wherein said catalyst is a preselectivated catalyst containing from about 2 to 40% by weight of coke.
- 110. The process recited in claim 109, wherein said first zeolite is an aluminum silicate zeolite having a silica to alumina mole ratio of from 20:1 to about 150:1.
- 111. The process recited in claim 110, wherein said second zeolite is an aluminosilicate zeolite having a silica to alumina mole ratio greater than 200:1.
- 112. The process recited in claim 111, wherein said first zeolite and said second zeolite have a structure type selected from MFI an MEL.
- 113. The process recited in claim 112, wherein said second zeolite is silicalite or silicalite 2.
- 114. The process recited in claim 91, wherein said coating further comprises at least one additional zeolite
- 115. The process recited in claim 114 wherein said catalyst further comprises a binder.
Parent Case Info
[0001] This application claims priority to U.S. Provisional Patent Application No. 60/067,415, filed Dec. 3, 1997.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60067415 |
Dec 1997 |
US |
Divisions (1)
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Number |
Date |
Country |
Parent |
09204576 |
Dec 1998 |
US |
Child |
10309453 |
Dec 2002 |
US |