Claims
- 1. A process for producing synthesis gas comprising:
contacting an H2S-containing light hydrocarbon stream, in the presence of O2, with a catalyst having activity for catalyzing the partial oxidation of said hydrocarbon to a product comprising CO and H2 and also having activity for catalyzing the partial oxidation of H2S to elemental sulfur and water, under reaction promoting conditions of temperature, flow rate, molar ratios of reactant gases, and reactant gas/catalyst contact time; maintaining said reaction promoting conditions such that the reactionsH2S+½O2→1/x Sx+H2O, where x equals 2, 6, or 8, and CH4+½O2→CO+2H2simultaneously occur and a process gas stream is obtained comprising CO, H2, gaseous elemental sulfur and steam; and condensing elemental sulfur from said process gas stream to provide a substantially desulfurized synthesis gas stream.
- 2. The process of claim 1 wherein said step of maintaining said reaction promoting conditions comprises contacting said catalyst with a portion of said H2S-containing light hydrocarbon stream for no more than about 10 milliseconds.
- 3. A process for producing synthesis gas comprising:
providing a first gas stream containing a C1-C4 alkane, or mixture thereof, and, optionally, H2S; optionally, mixing a second gas stream containing H2S with said first gas stream, such that a H2S-containing hydrocarbon feed gas stream is produced having a H2S :CH4 molar ratio of about 1:10 to about 2:3; mixing said H2S-containing hydrocarbon feed gas stream with an O2-containing stream to form a reactant gas stream, said reactant gas stream having a CH4:O2 molar ratio of about 1.5:1 to about 2.2:1; passing said reactant gas stream over a catalyst such that a portion of said reactant gas contacts said catalyst for no more than about 10 milliseconds, said catalyst being capable of catalyzing the partial oxidation of to CO and H2 and also capable of catalyzing the partial oxidation of H2S to elemental sulfur and water under reaction promoting conditions; maintaining reaction-promoting conditions of temperature, molar ratios of reactant gas components, and flow rate such that a gaseous product stream comprising CO, H2, 1/x Sx and H2O is obtained, wherein X=2, 6, or 8; cooling said gaseous product stream to the condensation temperature of elemental sulfur, or lower, such that elemental sulfur condenses from said product stream and an at least partially desulfurized gaseous product stream is obtained; optionally, recovering elemental sulfur product; optionally, removing a residual gaseous sulfur-containing component from said at least partially desulfurized gaseous product stream; and recovering synthesis gas from said product stream.
- 4. A method for improving the yield of a syngas generation system, comprising providing a first gas stream containing a light hydrocarbon, mixing a second gas stream containing H2S with the first gas stream to form a feed gas stream, mixing the feed gas stream with an oxygen containing stream to form a mixed feed stream, contacting the mixed feed stream with a hot catalyst to form a product stream, and removing syngas and elemental sulfur from the product stream.
- 5. The method according to claim 4 further comprising removing residual H2S from the product stream.
- 6. The method according to claim 4 wherein mixing a second gas stream comprising H2S with the first gas stream to form a feed gas stream is carried out at temperatures up to about 300° C.
- 7. The method according to claim 4 wherein contacting the feed gas stream with a hot catalyst to form a product stream is carried out at temperatures ranging from about 850 to about 1,500° C.
- 8. The method according to claim 4 wherein less than 10% of the carbon atoms in the light hydrocarbon molecules are converted to carbon dioxide.
- 9. The method according to claim 4 wherein the catalyst contact time is less than 10 milliseconds.
- 10. The method according to claim 4 wherein the catalyst is selected from the group consisting of: platinum, rhodium, iridium, nickel, palladium, iron, cobalt rhenium rubidium, Pd—La2O3, Pt/ZrO2, Pt/Al2O3 and combinations thereof.
- 11. A system for the partial oxidation of light hydrocarbons, comprising a hydrocarbon injection line, an H2S injection line in communication with said hydrocarbon injection line, an oxygen injection line in communication with said hydrocarbon injection line, a reaction zone receiving gases from said hydrocarbon, H2S and oxygen injection lines and including a catalyst suitable for catalyzing said hydrocarbon to form CO and H2.
- 12. The system according to claim 11 comprising a mixing zone upstream of said reaction zone, said mixing zone receiving gases from said hydrocarbon and said H2S lines, wherein the temperature of said mixing zone is up to about 300° C.
- 13. The system according to claim 12 comprising a thermal barrier between said mixing zone and said reaction zone.
- 14. The system according to claim 13 wherein said oxygen injection line communicates with said reaction zone.
- 15. The system according to claim 13 wherein said mixing zone receives oxygen from said oxygen injection line.
- 16. The system according to claim 12 wherein the temperature of said reaction zone is about 850-1,500° C.
- 17. The system according to claim 12 comprising at least one cooling zone downstream of said reaction zone.
- 18. The system according to claim 17 comprising at least one tailgas processing unit downstream of said cooling zone.
- 19. The system according to claim 12 wherein said catalyst is supported on a wire gauze.
- 20. The system according to claim 12 wherein the catalyst is selected from the group consisting of: platinum, rhodium, iridium, nickel, palladium, iron, cobalt rhenium rubidium, Pd—La2O3, Pt/ZrO2, Pt/Al2O3 and combinations thereof.
- 21. A method for improving the yield of a syngas generation process, comprising providing a first gas stream comprising a light hydrocarbon, mixing a second gas stream comprising H2S with the first gas stream to form a feed gas stream, while maintaining said feed gas stream below 500° C., contacting the feed gas stream with a hot catalyst, in the presence of O2 to form a product stream wherein less than 10% of the carbon atoms in the light hydrocarbon molecules are converted to carbon dioxide, and removing syngas and elemental sulfur from the product stream.
- 22. The method according to claim 21 comprising mixing O2 with the light hydrocarbon prior to contacting the feed gas stream with a hot catalyst.
- 23. The method according to claim 21 comprising mixing O2 with the light hydrocarbon during the contacting of the feed gas stream with a hot catalyst.
- 24. A catalyst having activity for concurrently catalyzing the partial oxidation of a light hydrocarbon and for catalyzing the partial oxidation of H2S to produce a product mixture comprising CO, H2, 1/x Sx and H2O, wherein x=2, 6 or 8, under reaction promoting conditions of temperature, flow rate, molar ratios of reactant gases, and reactant gas/catalyst contact time up to about 10 milliseconds, said catalyst comprising:
at least one metal chosen from the group consisting of platinum, rhodium, iridium, nickel, palladium, iron, cobalt, rhenium and rubidium, optionally, a lanthanide element or oxide thereof; and optionally, a catalyst support chosen from the group consisting of alumina, zirconia and partially stabilized (MgO) zirconia.
- 25. The catalyst of claim 24 comprising Pd—La2O3.
- 26. The catalyst of claim 24 comprising Pt/ZrO2.
- 27. The catalyst of claim 24 comprising Pt/Al2O3.
- 28. The catalyst of claim 24 comprising about 87-93 wt % Pt and about 7-13 wt % Rh.
- 29. The catalyst of claim 24 comprising rhodium and samarium on a support chosen from the group consisting of alumina and partially stabilized (MgO) zirconia.
- 30. The catalyst of claim 29 prepared by depositing about 4-6 wt % Rh onto a layer of about 5 wt % Sm that coats a PSZ monolith.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/625,710 filed Jul. 25, 2000, which claims the benefit of U.S. Provisional Application No. 60/146,635 filed Jul. 30, 1999.
Provisional Applications (1)
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Number |
Date |
Country |
|
60146635 |
Jul 1999 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09625710 |
Jul 2000 |
US |
Child |
09742999 |
Dec 2000 |
US |