Claims
- 1. A method for performing a Fischer-Tropsch process comprising the steps of:
a) selecting a Fischer-Tropsch catalyst precursor, b) optionally reducing the Fischer-Tropsch catalyst precursor to form a Fischer-Tropsch catalyst, and c) performing a Fischer-Tropsch synthesis using the Fischer-Tropsch catalyst precursor according to step a) or the Fischer-Tropsch catalyst according to step b), wherein the Fischer-Tropsch catalyst precursor comprises an iron-containing layered material selected from the group consisting of layered materials in which iron is present in the layered structure as divalent and/or trivalent metal (group 1), iron-doped layered materials (group 2), calcined iron-doped layered materials (group 3), and calcined layered materials in which iron is present in the layered structure as divalent metal (group 4).
- 2. The method of claim 1 wherein the Fischer-Tropsch catalyst precursor comprises an iron-doped layered material (group 2) or a calcined iron-doped layered material (group 3).
- 3. The method of claim 2 wherein the iron-doped layered material is an iron-doped anionic clay.
- 4. The method of claim 2 wherein the iron-doped layered material is an iron-doped layered hydroxy salt.
- 5. The method according of claim 2 wherein the iron-doped layered material is an iron-doped cationic layered material.
- 6. The method for performing a Fischer-Tropsch process of claim 2 wherein the iron-doped layered material contains 1-35 wt % of iron calculated as Fe2O3 and based on the weight of the iron-doped layered material.
- 7. The method for performing a Fischer-Tropsch process of claim 1 wherein the Fischer-Tropsch catalyst precursor comprises a layered material in which iron is present in the layered structure as divalent metal (group 1a) or a calcined layered material in which iron is present in the layered structure as divalent metal (group 4).
- 8. The method for performing a Fischer-Tropsch process of claim 1 wherein the Fischer-Tropsch catalyst precursor comprises a layered material in which iron is present in the layered structure as trivalent metal (group 1b).
- 9. The method for performing a Fischer-Tropsch process of claim 7 wherein the layered material is an anionic clay.
- 10. The method for performing a Fischer-Tropsch process of claim 7 wherein the layered material is a layered hydroxy salt.
- 11. The method for performing a Fischer-Tropsch process of claim 7 wherein the layered material is a cationic layered material.
- 12. The method for performing a Fischer-Tropsch process of claim 8 wherein the layered material is an anionic clay.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from U.S. Provisional Patent Application No.: 60/402,379, which was filed Aug. 8, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60402379 |
Aug 2002 |
US |