Hydrocarbon conversion process
The present invention relates to a hydrocarbon conversion process comprising contacting a hydrocarbon feed stream with a hydrocarbon conversion catalyst, wherein the hydrocarbon conversion catalyst comprises a first composition comprising a dehydrogenation active metal on a solid support; and a second composition comprising a transition metal and a doping agent on an inorganic support, wherein the doping agent is selected from zinc, gallium, indium, lanthanum, and mixtures thereof.
1. A hydrocarbon conversion process comprising dehydrogenation and metathesis of a hydrocarbon feed stream, said process comprising contacting the hydrocarbon feed stream with a hydrocarbon conversion catalyst, wherein the hydrocarbon conversion catalyst comprises:
a first composition comprising a dehydrogenation active metal on a solid support, said solid support comprising aluminum oxide, silicon dioxide, zirconium dioxide, titanium dioxide magnesium oxide, calcium oxide, or a mixture of two or more thereof; and
a second composition comprising from 1 wt-% to 15 wt-% tungsten and a doping agent on an inorganic support, wherein the doping agent is selected from zinc, gallium, indium, lanthanum, and mixtures thereof,
wherein the solid support of the first composition is different from the inorganic support of the second composition, and
wherein the inorganic support of the second composition comprises silicon dioxide and further comprises a mixed magnesium-aluminum oxide or a mixed calcium-aluminum oxide.
2. The hydrocarbon conversion process according to claim 1 , wherein the dehydrogenation active metal is selected from platinum, palladium, iridium, chromium, and mixtures thereof.
3. The hydrocarbon conversion process according to claim 1 , wherein the inorganic support further comprises aluminum oxide, zirconium dioxide, titanium dioxide, zeolite, and mixtures thereof.
4. The hydrocarbon conversion process according to claim 1 , wherein the tungsten of the second composition is in the form of tungsten oxide and the inorganic support comprises said silicon dioxide and said mixed magnesium-aluminum oxide, in a physical mixture with Y-zeolite.
5. The hydrocarbon conversion process according to claim 1 , wherein the second composition contains 0.1 to 10 wt % of the doping agent based on the total weight of the second composition.
6. The hydrocarbon conversion process according to claim 1 , wherein the first composition and the second composition are physically mixed.
7. The hydrocarbon conversion process according to claim 1 , wherein the hydrocarbon feed stream comprises a paraffin selected from ethane, propane, butane, pentane, and mixtures thereof.
8. The hydrocarbon conversion process according to claim 1 , wherein the hydrocarbon conversion process is carried out at a temperature in a range of 200−800° C.
9. The hydrocarbon conversion process according to claim 1 , wherein the hydrocarbon conversion process is performed in a fixed bed of said hydrogen conversion catalyst.
10. The hydrocarbon conversion process according to claim 1 , wherein the hydrocarbon conversion catalyst is pretreated by contacting the hydrocarbon conversion catalyst with an inert gas, an oxidizing gas, a reducing gas, or mixtures thereof, at a temperature in a range of 250° C. to 850° C. prior to contacting the hydrocarbon feed stream with the hydrocarbon conversion catalyst.
11. The hydrocarbon conversion process according to claim 1 , wherein the hydrocarbon conversion process further comprises a regeneration step carried out by contacting a spent hydrocarbon conversion catalyst with an oxidizing gas at a temperature in a range of 200−700° C.
12. The hydrocarbon conversion process of claim 1 , wherein the solid support of the first composition comprises a mixture of silicon dioxide and zirconium dioxide, and the inorganic support of the second composition further comprises Y-zeolite.
13. The hydrocarbon conversion process of claim 1 , wherein the solid support of the first composition further comprises a mixed magnesium-aluminum oxide, and the inorganic support of the second composition further comprises Y-zeolite.
14. The hydrocarbon conversion process of claim 1 , wherein the first composition and the second composition are present together in a single form as a physical mixture, wherein the single form is selected from an extrudate, a sphere, a pellet, and a tablet.
15. The hydrocarbon conversion process of claim 14 , wherein the physical mixture comprises a powder of the first composition and a powder of the second composition.
16. The hydrocarbon conversion process of claim 1 , wherein the hydrocarbon feed stream comprises propane and the hydrocarbon conversion process produces a product comprising ethylene and butene resulting from the conversion of propane, and further wherein a selectivity to total olefins, including the ethylene and butene, is at least about 80% by weight.
17. The hydrocarbon conversion process of claim 1 , wherein the second composition comprises from 5 wt-% to 10 wt-% of said tungsten.
18. The hydrocarbon conversion process of claim 6 , wherein the first composition and the second composition are physically mixed in weight ratio of 1:10 to 10:1.
19. The hydrocarbon conversion process of claim 18 , wherein the first composition and the second composition are physically mixed in a weight ratio of 1:5 to 5:1.