Claims
- 1. A catalyst for the production of synthesis gas, the catalyst comprising a modified support, from about 0.1 to about 1.3% by weight of nickel, and a promoting agent.
- 2. The catalyst according to claim 1, wherein the modified support comprises a metal oxide and a modifying element.
- 3. The catalyst according to claim 2, wherein the metal oxide is selected from aluminum oxide, zirconium oxide, titanium oxide, magnesium oxide and silicon oxide.
- 4. The catalyst according to claim 3, wherein the aluminum oxide is selected from γ-Al2O3, Al(OH)3, AlO(OH) and (AlO(OH).xH2O).
- 5. The catalyst according to claim 2, wherein the modifying element is selected from the periodic table groups 1 to 12, 14, 15 and the rare earth elements.
- 6. The catalyst according to claim 5, wherein the modifying element is selected from magnesium, calcium, barium, titanium, zirconium, vanadium, cobalt, copper, zinc, silicon and phosphorus.
- 7. The catalyst according to claim 8, wherein the promoting agent comprises an element selected from boron and phosphorus.
- 8. The catalyst according to claim 1, wherein the promoting agent is present in an amount of about 0.5% or less by weight of catalyst.
- 9. The catalyst according to claim 1, which further comprises a dispersing agent.
- 10. The catalyst according to claim 9, wherein the dispersing agent comprises a rare earth element selected from the group consisting of La, Sm and Ce.
- 11. The catalyst according to claim 10, wherein the rare earth element is present in an amount of about 0.03% or less by weight of catalyst.
- 12. A process for preparing a catalyst comprising nickel, a modified support, and a promoting agent, which process comprises
a) calcining a mixture comprising a modified support and an amount of a nickel containing salt, the amount of the nickel containing salt being such that the nickel is present in the catalyst in an amount of from about 0.1 to about 1.3% by weight after calcination, and b) contacting the calcined mixture with the promoting agent.
- 13. The process according to claim 12, wherein the calcination is carried out at a temperature of from about 300° C. to about 650° C.
- 14. The process according to claim 12, wherein a dispersing agent is added to the mixture prior to the calcination.
- 15. The process according to claim 14, wherein the dispersing agent comprises a rare earth element selected from the group consisting of La, Sm and Ce.
- 16. The process according to claim 15, wherein the dispersing agent is in the form of a nitrate, a chloride or an acetate salt.
- 17. The process according to claim 16, wherein the dispersing agent is selected from La(NO3)3.9H2O and Ce(NO3)3.9H2O.
- 18. The process according to claim 15, wherein the dispersing agent is added in an amount suitable to give a catalyst having about 0.03% or less by weight of a rare earth element after calcination.
- 19. The process according to claim 12, wherein the promoting agent is in the form of a solution.
- 20. The process according to claim 12, wherein the promoting agent comprises an element selected from boron and phosphorus.
- 21. The process according to claim 20, wherein the promoting agent is selected from a borohydride salt and a hypophosphite salt.
- 22. The process according to claim 12, wherein the promoting agent is added in an amount suitable to give a catalyst having about 0.5% or less by weight of boron or phosphorus.
- 23. A process for the catalytic partial oxidation of a hydrocarbon, the process comprising contacting a catalyst with a gaseous mixture of oxygen and of a C1-C7 hydrocarbon, at a temperature of from about 500° C. to about 1200° C., the catalyst comprising a modified support, from about 0.1 to about 1.3% by weight of nickel, and a promoting agent.
- 24. The process according to claim 23, wherein the catalyst further comprises, as a dispersing agent, a rare earth element selected from La, Sm and Ce.
- 25. The process according to claim 23, wherein the catalyst is contacted with the gaseous mixture at a pressure of from about 1 bar to about 7 bar.
- 26. The process according to claim 23, wherein the gaseous mixture of oxygen and of a C1-C7 hydrocarbon has a ratio of oxygen to carbon of approximately 1:2.
- 27. The process according to claim 23, wherein the catalyst is contacted with a reductive atmosphere prior to contacting the gaseous mixture of oxygen and methane.
- 28. The process according to claim 27, wherein the reductive atmosphere comprises molecular hydrogen.
- 29. The process according to claim 27, wherein the catalyst is contacted with a reductive atmosphere at a temperature of from about 300° C. to about 1000° C.
- 30. The process according to claim 23, wherein the catalyst further comprises a dispersing agent selected from the group consisting of La, Sm and Ce, in an amount of about 0.03% or less by weight and a promoting agent selected from boron and phosphorus, in an amount of 0.5% or less by weight, and wherein the catalyst is contacted with a gaseous mixture comprising oxygen and methane in a molar ratio of 1:2, at a temperature of about 500° C. and under a pressure of about 7 bars.
- 31. A high-pressure micro-reactor comprising a stainless steel tube, a quartz tube fitted within the stainless steel tube, an entry port for the introduction of a gas into the quart tube at a first end of the micro-reactor and an exit port for the removal of the gas at a second, opposite end of the micro-reactor, wherein the stainless steel tube is slightly longer than the quartz tube so as to form a gap at the second end of the micro-reactor which permits gas flow from within the quartz tube to a space between the stainless steel tube and the quartz tube, whereby in use a pressure differential between the inside and the outside of the quartz tube caused by introduction of the gas is equilibrated by flow of the gas, through the gap, to the space between the stainless steel tube and the quartz tube.
CROSS-REFERENCE TO CORRESPONDING APPLICATIONS
[0001] This application is related to U.S. Provisional Patent Application Serial No. 60/387,599, filed Jun. 12, 2002, entitled “Supported Nickel Catalyst for Preparing Synthesis Gas via Catalytic Partial Oxidation of Light Paraffin and the Preparation Method Thereof”, the contents of which are hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
|
60387599 |
Jun 2002 |
US |