Claims
- 1. An unsulfided hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component, wherein said catalyst is made by reduction and then treatment with a stream containing one or more oxygenates, and wherein the Group VIII metal is Pt, Pd, or mixtures thereof.
- 2. A catalyst according to claim 1 wherein said zeolite component is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57 or rare earth exchanged ferrierite.
- 3. A catalyst according to claim 2 wherein said zeolite component is ZSM-48.
- 4. A catalyst according to claim 3 wherein said oxygenates comprise one or more oxygen containing molecules, preferably one or more functional groups containing hydroxyl, mono and polyhydric alcohols, esters, ethers, ketones, aldehydes, carboxylic acids, and mixtures thereof.
- 5. A catalyst according to claim 4 wherein said one or more oxygenates are present in said stream in an amount of at least 100 wppm, measured as oxygen, preferably at least 200 wppm, measured as oxygen.
- 6. Use of the hydrodewaxing catalyst according to claim 5 in a process for hydrodewaxing waxy Fischer-Tropsch hydrocarbons, wherein said hydrocarbons have been produced over a cobalt catalyst.
- 7. A process for hydrodewaxing waxy Fischer-Tropsch hydrocarbons produced over a cobalt catalyst comprises contacting said hydrocarbons with hydrogen, in the presence of an unsulfided, treated hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component, at reaction conditions effective to hydrodewax said waxy hydrocarbons and reduce their pour and cloud points, wherein said catalyst has been reduced and then treated with a stream containing one or more oxygenates prior to said hydrodewaxing.
- 8. A process according to claim 7 wherein said zeolite component is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57 or rare earth exchanged ferrierite.
- 9. A process according to claim 8 wherein said zeolite component is ZSM-48.
- 10. A process according to claim 9 wherein said oxygenates comprise one or more oxygen containing molecules.
- 11. A process according to claim 10 wherein said oxygenates comprise one or more functional groups containing hydroxyl, mono and polyhydric alcohols, esters, ethers, ketones, aldehydes, carboxylic acids, and mixtures thereof.
- 12. A process according to claim 11 wherein said one or more oxygenates are present in said stream in an amount of at least 100 wppm, measured as oxygen.
- 13. A process according to claim 12 wherein said one or more oxygenates are present in an amount of at least 200 wppm, measured as oxygen.
- 14. A process according to claim 13 wherein said hydrodewaxed hydrocarbons comprise at least one of (a) a fuel stock and (b) a lubricant base stock.
- 15. A process according to claim 14 wherein said stock has been hydrofinished and optionally dehazed.
- 16. A process according to claim 15 wherein said stock comprises a lubricant base stock and wherein said lubricant base stock is combined with one or more lubricant additives to form a lubricant.
- 17. A process for synthesizing and hydrodewaxing waxy hydrocarbons comprises reacting H2 and CO in the presence of a non-shifting Fischer-Tropsch hydrocarbon synthesis catalyst having a cobalt catalytic component, at reaction conditions effective to form waxy hydrocarbons, hydrodewaxing at least a portion of said waxy hydrocarbons in the presence of hydrogen and an unsulfided hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component, at reaction conditions effective to hydrodewax said waxy hydrocarbons to reduce their pour and cloud points and produce one or more hydrodewaxed hydrocarbon fractions boiling in the fuel and/or lubricant oil range, and wherein said hydrodewaxing catalyst has been reduced and then treated with a stream containing one or more oxygenates prior to said hydrodewaxing.
- 18. A process according to claim 17 wherein said zeolite component is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57 or rare earth exchanged ferrierite.
- 19. A process according to claim 18 wherein said zeolite component is ZSM-48.
- 20. A process according to claim 19 wherein said oxygenates comprise one or more oxygen containing molecules.
- 21. A process according to claim 20 wherein said oxygenates comprise one or more functional groups containing hydroxyl, mono and polyhydric alcohols, esters, ethers, ketones, aldehydes, carboxylic acids, and mixtures thereof.
- 22. A process according to claim 21 wherein said hydrodewaxing produces a hydrodewaxing tail gas rich in hydrogen and wherein at least a portion of said tail gas is used for said hydrocarbon synthesis.
- 23. A process according to claim 22 wherein at least a portion of said one or more oxygenates are indigenous to said treating hydrocarbon and are present in an amount of at least 200 wppm, measured as oxygen.
- 24. A process according to claim 23 wherein at least a portion of said stream comprises Fischer-Tropsch waxy hydrocarbons to be hydrodewaxed.
- 25. A process according to claim 24 wherein said dewaxed hydrocarbons comprise one or more of a fuel and a lubricant base stock and wherein one or more stocks are hydrofinished and optionally dehazed.
- 26. A process according to claim 25 wherein said stock comprises a lubricant base stock which is combined with one or more lubricant additives to form a lubricant.
- 27. A process comprising (a) producing synthesis gas comprising a mixture of H2 and CO from natural gas, (b) contacting said synthesis gas with a non-shifting cobalt Fischer-Tropsch hydrocarbon synthesis catalyst at reaction conditions effective for said H2 and CO to react and form waxy hydrocarbons, including hydrocarbons boiling in the fuel and lubricant oil ranges, (c) passing at least a portion of said waxy hydrocarbons to a hydrodewaxing upgrading facility in which said waxy hydrocarbons are (i) hydrodewaxed in the presence of a hydrodewaxing catalyst and hydrogen over an unsulfided hydrodewaxing catalyst comprising a 10-ring, 1-dimensional zeolite component and a noble metal hydrogenation component, at reaction conditions effective to hydrodewax said waxy hydrocarbons to reduce their pour and cloud points and produce one or more hydrodewaxed hydrocarbon fractions boiling in the fuel and/or lubricant oil range, and wherein, prior to said hydrodewaxing, said hydrodewaxing catalyst has been (ii) reduced and then treated with a stream containing one or more oxygen containing molecules, said molecules comprising functional groups containing at least one of hydroxyl, mono and polyhydric alcohols, esters, ethers, ketones, aldehydes, carboxylic acids and mixtures thereof present in said treating hydrocarbon in an amount of at least 100 wppm, measured as oxygen, and (d) wherein said hydrodewaxing produces a hydrodewaxing tail gas rich in hydrogen, at least a portion of which is used for said hydrocarbon synthesis.
- 28. A process according to claim 27 wherein said waxy hydrocarbons formed in (b) are not hydroprocessed prior to being passed to said hydrodewaxing upgrading facility.
- 29. A process according to claim 28 wherein said zeolite component is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57 or rare earth exchanged ferrierite.
- 30. A process according to claim 29 wherein said zeolite component is ZSM-48.
- 31. A process according to claim 30 wherein said hydrogenation component comprises a Group VIII noble metal.
- 32. A process according to claim 31 wherein the noble metal is at least one of Pt or Pd.
- 33. A process for hydrodewaxing waxy Fischer-Tropsch hydrocarbons produced over a cobalt catalyst which comprises contacting said waxy hydrocarbons containing one or more oxygenates with hydrogen, in the presence of an unsulfided, treated hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component, at reaction conditions effective to hydrodewax said waxy hydrocarbons and reduce their pour and cloud points, wherein said hydrodewaxing catalyst has been reduced.
- 34. A process according to claim 33 wherein said zeolite component is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57 or rare earth exchanged ferrierite.
- 35. A process according to claim 34 wherein said zeolite component is ZSM-48.
- 36. A process according to claim 35 wherein said oxygenates comprise one or more oxygen containing molecules.
- 37. A process according to claim 36 wherein said oxygenates comprise one or more functional groups containing hydroxyl, mono and polyhydric alcohols, esters, ethers, ketones, aldehydes, carboxylic acids, and mixtures thereof.
- 38. A process according to claim 37 wherein said one or more oxygenates are present in an amount of at least 100 wppm, measured as oxygen.
- 39. A process for hydrodewaxing waxy Fischer-Tropsch hydrocarbons produced over a cobalt catalyst comprises contacting said hydrocarbons with hydrogen, in the presence of an unsulfided, treated hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component which is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57, SSZ-32 or rare earth exchanged ferrierite, at reaction conditions effective to hydrodewax said waxy hydrocarbons and reduce their pour and cloud points, wherein said catalyst has been reduced and then treated with a stream containing one or more oxygenates prior to said hydrodewaxing.
- 40. A process according to claim 39 wherein said one or more oxygenates are present in said stream in an amount of at least 100 wppm, measured as oxygen.
- 41. A process according to claim 40 wherein said zeolite component is ZSM-48.
- 42. A process for hydrodewaxing waxy Fischer-Tropsch hydrocarbons produced over a cobalt catalyst comprises contacting said hydrocarbons with hydrogen, in the presence of an unsulfided, treated hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component which is ZSM-48, at reaction conditions effective to hydrodewax said waxy hydrocarbons and reduce their pour and cloud points, wherein said catalyst has been reduced and then treated with a stream containing one or more oxygenates prior to said hydrodewaxing.
- 43. A process according to claim 42 wherein said one or more oxygenates are present in said stream in an amount of at least 100 wppm, measured as oxygen.
- 44. A process according to claims 7, 17, 27, 33, 39 or 42 wherein said reaction conditions effective to hydrodewax include temperatures of from 232-399° C., pressures of from 170-13891 kPa, liquid hourly space velocities of from 0.1-5.0 and hourly treat gas rates of 89-1789 m3/m3.
- 45. A process according to claims 7, 17, 27, 33, 39 or 42 wherein said hydrodewaxing catalyst further comprises an alumina or alumina-containing metal oxide binder.
- 46. A process for hydrodewaxing waxy Fischer-Tropsch hydrocarbons produced over a cobalt catalyst which comprises contacting said hydrocarbons with hydrogen, in the presence of an unsulfided, treated hydrodewaxing catalyst comprising a Group VIII metal component and a 10-ring, 1-dimensional zeolite component, at reaction conditions effective to hydrodewax said waxy hydrocarbons and reduce their pour and cloud points, wherein said catalyst has been reduced and then treated with water prior to said hydrodewaxing.
- 47. A process according to claim 46 wherein said water used for treatment further comprises a hydrocarbon.
- 48. A process according to claim 47 wherein said water used for treatment further comprises at least one oxygenate.
- 49. A process according to claim 48 wherein said oxygenate comprises one or more oxygen containing molecules.
- 50. A process according to claim 49 wherein said oxygenates comprise one or more functional groups containing hydroxyl, mono and polyhydric alcohols, esters, ethers, ketones, aldehydes, carboxylic acids, and mixtures thereof.
- 51. A process according to claim 46 wherein said zeolite component is at least one of ZSM-22, ZSM-23, ZSM-35, ZSM-48, ZSM-57 or rare earth exchanged ferrierite.
- 52. A process according to claim 51 wherein said zeolite component is ZSM-48.
- 53. A process according to claim 52 wherein water is present in an amount of at least 100 wppm, measured as oxygen.
- 54. A process according to claim 53 wherein said reaction conditions effective to hydrodewax include temperatures of from 232-399° C., pressures of from 170-13891 kPa, liquid hourly space velocities of from 0.1-5.0 and hourly treat gas rates of 89-1789 m3/m3.
- 55. A process according to claim 54 wherein said hydrodewaxing catalyst further comprises an alumina or alumina-containing metal oxide binder.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/416,951 filed Oct. 8, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60416951 |
Oct 2002 |
US |