Claims
- 1. A catalyst comprising a support comprising a sulfated oxide or hydroxide of at least one of the elements of Group IVB (IUPAC 4) of the Periodic Table, having deposited thereon; a first component selected from the group consisting of a lanthanide element, yttrium, and mixtures thereof; and a second component comprising at least one platinum-group metal component.
- 2. The catalyst of claim 1 wherein the first component comprises from about 0.01 to 10 mass-%, on an elemental basis, of the catalyst.
- 3. The catalyst of claim 1 wherein the second component comprises from about 0.01 to 2 mass-%, on an elemental basis, of the catalyst.
- 4. The catalyst of claim 1 wherein the element of Group IVB (IUPAC 4) comprises zirconium.
- 5. The catalyst of claim 1 wherein the catalyst comprises from about 0.5 to 5 mass-% sulfur on an elemental basis.
- 6. The catalyst of claim 1 wherein the atomic ratio of the first component to the second component is at least about 2.
- 7. The catalyst of claim 1 further characterized in that it comprises from about 2 to 25 mass-% of a refractory inorganic-oxide binder.
- 8. The catalyst of claim 7 wherein the refractory inorganic-oxide binder comprises alumina.
- 9. The catalyst of claim 1 wherein the first component consists essentially of one single lanthanide element component or a yttrium component and the second component consists essentially of one single metal selected from the platinum-group metals.
- 10. The catalyst of claim 1 wherein the first component is selected from the group consisting of lutetium, ytterbium, thulium, erbium, holium, yttrium, terbium, and combinations thereof.
- 11. The catalyst of claim 10 wherein the first component is ytterbium.
- 12. The catalyst of claim I further comprising a third component selected from the group consisting of iron, cobalt, nickel, rhenium, and mixtures thereof.
- 13. The catalyst of claim 12 wherein the third component is iron in an amount from about 0.1 to about 5 wt. %.
- 14. The catalyst of claim I wherein the second component is platinum.
- 15. A hydrocarbon conversion catalyst comprising a support comprising a sulfated oxide or hydroxide of zirconium having deposited thereon; from about 0.01 to 10 mass-%, on an elemental basis, of a lanthanide component selected from the group consisting of ytterbium, lutetium, thulium, and mixtures thereof; and from about 0.01 to 2 mass-%, on an elemental basis, of a platinum component.
- 16. A process for the preparation of a catalyst suitable for hydrocarbon conversion comprising a sulfated support comprising at least one of the oxides and hydroxides of the elements of Group IVB (IUPAC 4) of the Periodic Table, a first component selected from the group consisting of a lanthanide-series element, yttrium, and mixtures thereof, and a second component selected from the group of platinum-group metals and mixtures thereof, the process comprising sulfating an oxide or hydroxide of at least one element of Group IVB (IUPAC 4) of the Periodic Table to form a sulfated support; depositing on the sulfated support, the first component; and then depositing the second component to form said catalyst.
- 17. A process for converting hydrocarbons by contacting a feed with a solid acid catalyst, comprising a support comprising a sulfated oxide or hydroxide of at least an element of Group IVB (IUPAC 4) of the Periodic Table, a first component selected from the group consisting of a lanthanide-series element, yttrium, and mixtures thereof, and a second component selected from the group of platinum-group metals and mixtures thereof, to give a converted product.
- 18. The process of claim 19 wherein the hydrocarbon conversion process is selected from the group consisting of cracking, hydrocracking, aromatic alkylation, isoparaffin alkylation, isomerization, polymerization, reforming, dewaxing, hydrogenation, dehydrogenation, transalkylation, dealkylation, hydration, dehydration, hydrotreating, hydrodenitrogenation, hydrodesulfurization, methanation, ring opening, and syngas shift.
- 19. A process for the isomerization of a paraffinic feedstock to obtain a product having an increased isoparaffin content comprising contacting the paraffinic feedstock in an isomerization zone maintained at isomerization conditions comprising a temperature of from 40 to 250° C., pressure of from 100 kPa to 10 MPa and liquid hourly space velocity of from 0.2 to 25 hr−1 with a solid acid isomerization catalyst, comprising a sulfated support comprising an oxide or hydroxide of elements of Group IVB (IUPAC 4) of the Periodic Table, a first component selected from the group consisting of a lanthanide-series element, yttrium, and mixtures thereof, and a second component selected from the group of platinum-group metals and mixtures thereof, and recovering an isoparaffin-rich product.
- 20. The process of claim 19 wherein free hydrogen is present in the isomerization zone in an amount from about 0.01 to about 20 moles per mole of C5+ hydrocarbons present in the zone.
- 21. The process of claim 19 wherein the isomerization conditions comprise a temperature from about 100 to about 200° C., a pressure from about 300 kPa to about 4 MPa, and a liquid hourly space velocity of from 0.5 to 15 hr, and wherein free hydrogen is present in the isomerization zone in an amount from about 0.05 to 5 moles per mole of C5+ hydrocarbons present in the zone.
- 22. The process of claim 19 wherein the isomerization catalyst further comprises a refractory inorganic-oxide binder.
- 23. The process of claim 22 wherein the refractory inorganic-oxide binder comprises alumina.
- 24. The process of claim 19 wherein the atomic ratio of the first component to the second component is at least about 2.
- 25. The process of claim 19 wherein the first component is selected from the group consisting of ytterbium, lutetium, thulium, or mixtures thereof and the second component is platinum.
- 26. The process of claim 19 wherein the catalyst further comprises a third component selected from the group consisting of iron, cobalt, nickel, rhenium, and mixtures thereof.
- 27. The process of claim 26 wherein the third component is iron in an amount from about 1 to about 5 wt. %.
- 28. The process of claim 19 further comprising using at least a portion of the isoparaffin-rich product to blend a gasoline product.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0001] This work was performed under the support of the U.S. Department of Commerce, National Institute of Standards and Technology, Advanced Technology Program, Cooperative Agreement Number 70NANB9H3035. The United States Government has certain rights in this invention.