Claims
- 1. A method of forming a hydrocarbon product comprising:
converting synthesis gas in a Fischer-Tropsch reaction to hydrocarbon products; and hydrotreating the hydrocarbon products to provide hydrotreated hydrocarbon products, the hydrotreated hydrocarbon products having an n-paraffin content of at least 50% by weight of the hydrotreated hydrocarbon products and branched paraffins, and wherein substantially all of the branched paraffins are monomethyl branched paraffins and the ratio of end-chain monomethyl branching to internal branching of the monomethyl branched paraffins is at least about 1:1.5.
- 2. The method of claim 1, wherein the n-paraffin content is greater than about 80% by weight of the hydrotreated hydrocarbon products.
- 3. The method of claim 1, wherein the n-paraffin content is greater than about 90% by weight of the hydrotreated hydrocarbon products.
- 4. The method of claim 1, wherein the n-paraffin content is greater than about 92% by weight of the hydrotreated hydrocarbon products.
- 5. The method of claim 1, wherein:
the ratio of end-chain monomethyl branching to internal branching of the monomethyl branched paraffins is at least about 1:1.
- 6. The method of claim 1, wherein:
the ratio of end-chain monomethyl branching to internal branching of the monomethyl branched paraffins is at least about 2:1.
- 7. The method of claim 1, further comprising:
forming an alkylaromatic product from at least a portion of the hydrotreated hydrocarbon products.
- 8. The method of claim 7, further comprising:
sulfonating at least a portion of the alkylaromatic product to form an alkylaromatic sulfonate product.
- 9. The method of claim 8, wherein:
the alkylaromatic sulfonate product has at least one of a biodegradability of at least 90% as determined by ASTM D2667-95(2001), a Krafft temperature of 50° C. or less, and a loss of alkylaromatic sulfonate product as surfactant in hard water of 40% or more.
- 10. The method of claim 8, wherein:
the alkylaromatic sulfonate product has a biodegradability of at least 90% as determined by ASTM D2667-95(2001).
- 11. The method of claim 8, wherein:
the alkylaromatic sulfonate product is an alkylbenzene sulfonate.
- 12. The method of claim 11, wherein:
the biodegradability of the alkylbenzene sulfonate is at least 90%, as determined by ASTM D2667-95(2001).
- 13. The method of claim 1, further comprising:
removing oxygenates from the hydrotreated hydrocarbon products by passing the hydrotreated hydrocarbon products over at least one of an alumina, silica or alumina-silica molecular sieve adsorbent so that the hydrotreated hydrocarbon products contain less than 20 ppm by weight of oxygenates.
- 14. The method of claim 1, wherein:
converting the synthesis gas includes introducing a synthesis gas feed containing from about 10 to 60% nitrogen by volume to a Fischer-Tropsch reactor.
- 15. A method of forming a hydrocarbon product comprising:
converting synthesis gas in a Fischer-Tropsch reaction to hydrocarbon products; hydrotreating the hydrocarbon products to provide hydrotreated hydrocarbon products, the hydrotreated hydrocarbon products having an initial n-paraffin content of greater than about 67% by weight of the hydrotreated hydrocarbon products and having branched paraffins; and separating at least a portion of at least one non-linear branched paraffin isomer from the hydrocarbon products through distillation to provide an n-paraffin product having an n-paraffin content percentage by weight of the n-paraffin product that is greater than the initial n-paraffin content.
- 16. The method of claim 15, wherein:
separating at least a portion of the at least one non-linear branched paraffin isomer includes separating a fraction containing the at least one non-linear branched paraffin isomer, and wherein the fraction contains at least 20% by weight of the at least one non-linear branched paraffin isomer.
- 17. The method of claim 15, wherein:
the n-paraffin product has an n-paraffin content percentage by weight of the n-paraffin product that is greater by at least 0.005% than the initial n-paraffin content.
- 18. The method of claim 15, further comprising:
the hydrotreated hydrocarbon products have an initial monomethyl branched paraffin content of greater than about 2% by weight of the hydrotreated hydrocarbon products without employing non-distillation separation techniques; and wherein separating at least a portion of at least one non-linear branched paraffin isomer includes separating at least one monomethyl branched paraffin isomer from the hydrocarbon products.
- 19. The method of claim 15, wherein the initial n-paraffin content is greater than about 80% by weight of the hydrocarbon products.
- 20. The method of claim 15, wherein the initial n-paraffin content is greater than about 90% by weight of the hydrocarbon products.
- 21. The method of claim 15, wherein the initial n-paraffin content is greater than about 94% by weight of the hydrocarbon products.
- 22. The method of claim 15, further comprising:
isolating C8 to C24 hydrocarbon products from the hydrocarbon products; and wherein the initial n-paraffin content is the initial n-paraffin content of the C8 to C24 hydrocarbon products.
- 23. The method of claim 15, further comprising:
forming an alkylaromatic product from at least a portion of the n-paraffin product.
- 24. The method of claim 23, further comprising:
sulfonating at least a portion of the alkylaromatic product to form an alkylaromatic sulfonate product; and wherein the alkylaromatic sulfonate product has at least one of a biodegradability of at least 90% as determined by ASTM D2667-95(2001), a Krafft temperature of 50° C. or less and a loss of alkylaromatic sulfonate product as surfactant in hard water of 40% or more.
- 25. The method of claim 24, wherein:
the alkylaromatic sulfonate product is an alkylbenzene sulfonate product.
- 26. The method of claim 25, wherein:
the alkylbenzene sulfonate product has at least one of a biodegradability of at least 90% as determined by ASTM D2667-95(2001), a Krafft temperature of 40° C. or less, a loss of alkylbenzene sulfonate product as surfactant in hard water of 40% or more.
- 27. The method of claim 22, wherein:
the C8 to C24 hydrocarbon products are C10 to C14 hydrocarbon products.
- 28. The method of claim 18, wherein:
separating the at least one monomethyl branched paraffin isomer includes separating a monomethyl fraction containing the at least one monomethyl branched paraffin isomer, and wherein the monomethyl fraction contains the at least one monomethyl branched paraffin isomer in an amount of at least 20% by weight of the monomethyl fraction.
- 29. The method of claim 28, further comprising:
forming an alkylaromatic product from the monomethyl fraction.
- 30. The method of claim 29, further comprising:
sulfonating at least a portion of the alkylaromatic product to form an alkylaromatic sulfonate product; and wherein the alkylaromatic sulfonate product has at least one of a biodegradability of at least 90% as determined by ASTM D2667-95(2001), a Krafft temperature of 50° C. or less, a loss of alkylaromatic sulfonate product as surfactant in hard water of 50% or less.
- 31. The method of claim 18, wherein:
at least 50% by weight of the monomethyl branched paraffins are end-chain monomethyl branched paraffins.
- 32. The method of claim 18, wherein:
at least 67% by weight of the monomethyl branched paraffins are end-chain monomethyl branched paraffins.
- 33. The method of claim 24, wherein:
the alkylaromatic sulfonate product is an alkylbenzene sulfonate.
- 34. The method of claim 30, wherein:
the alkylaromatic sulfonate product is an alkylbenzene sulfonate.
- 35. The method of claim 18, further comprising:
removing oxygenates from the hydrotreated hydrocarbon products by passing the hydrotreated hydrocarbon products over at least one of an alumina, silica or alumina-silica molecular sieve adsorbent so that the hydrotreated hydrocarbon products contain less than about 20 ppm by weight of oxygenates.
- 36. The method of claim 15, wherein:
converting the synthesis gas in a Fischer-Tropsch reaction to hydrocarbon products includes introducing a synthesis gas feed containing from about 10 to 60% nitrogen by volume to a Fischer-Tropsch reactor.
- 37. A method of treating a hydrotreated Fischer-Tropsch (F-T) product in the C5 to C24 range, the method comprising:
a) separating a lightest isomer paraffin and a heaviest isomer paraffin through distillation to provide a selected range of intermediate paraffins; b) separating at least one of a light n-paraffin isomer and a heavy n-paraffin isomer from the intermediate paraffins to provide a monomethyl isomer-rich stream, which includes at least one of a monomethyl isomer of one carbon more than the light n-paraffin isomer and a monomethyl isomer of the same carbon number of the heavy n-paraffin isomer, and a remaining intermediate paraffin stream from the intermediate paraffins through distillation; and c) repeating separation of at least one of a n-paraffin and monomethyl isomer-rich stream of step (b) from said remaining intermediate paraffin stream at least one or more times; and d) at least one of:
i) combining the n-paraffin isomers separated in steps (b) and (c) with the remaining intermediate paraffin stream to make a high n-paraffin product; and ii) combining the monomethyl isomer-rich streams separated in steps (b) and (c) to make a high monomethyl isomer-content product.
- 38. A method of forming hydrocarbon products comprising:
converting synthesis gas in a Fischer-Tropsch reaction to hydrocarbon F-T reaction products; hydrotreating the hydrocarbon F-T reaction products to form hydrocarbon products; isolating C8 to C24 hydrocarbons from the hydrocarbon products, the C8 to C24 hydrocarbons having an initial n-paraffin content greater than about 92% by weight of the hydrotreated hydrocarbon products and having an initial monomethyl branched paraffin content of greater than about 2% by weight of the C8 to C24 hydrocarbon products; separating at least a portion of at least one monomethyl branched paraffin isomer from the C8 to C24 hydrocarbon products through distillation to provide an n-paraffin product having an n-paraffin content percentage by weight of the n-paraffin product that is greater than the initial n-paraffin content.
- 39. The method of claim 38, further comprising:
forming an alkylaromatic product from at least a portion of the n-paraffin product.
- 40. The method of claim 39, further comprising:
sulfonating at least a portion of the alkylaromatic product to form an alkylaromatic sulfonate product having at least one of a biodegradability of at least 90% as determined by ASTM D2667-95(2001), a Krafft temperature of 50° C. or less, and a loss of alkylaromatic sulfonate product as surfactant in hard water of 40% or more.
- 41. The method of claim 40, wherein:
the alkylaromatic sulfonate product is an alkylbenzene sulfonate.
- 42. The method of claim 38, wherein:
the C8 to C24 hydrocarbon products are C10 to C14 hydrocarbon products.
- 43. The method of claim 38, wherein:
separating the at least one monomethyl branched paraffin isomer includes separating a monomethyl fraction containing the at least one monomethyl branched paraffin isomer, and wherein the monomethyl fraction contains the at least one monomethyl branched paraffin isomer in an amount of at least 20% by weight of the monomethyl fraction.
- 44. The method of claim 43, further comprising:
forming an alkylaromatic product from the monomethyl fraction.
- 45. The method of claim 44, further comprising:
sulfonating at least a portion of the alkylaromatic product to form an alkylaromatic sulfonate product; and wherein the alkylaromatic sulfonate product has at least one of a biodegradability of at least 90% as determined by ASTM D2667-95(2001), a Kraffi temperature of 50° C. or less, and a loss of alkylaromatic sulfonate product as surfactant in hard water of 50% or less.
- 46. The method of claim 38, wherein:
at least 40% by weight of the monomethyl branched paraffins are end-chain monomethyl branched paraffins.
- 47. The method of claim 38, wherein:
at least 67% by weight of the monomethyl branched paraffins are end-chain monomethyl branched paraffins.
- 48. The method of claim 40, wherein:
the alkylaromatic sulfonate product is an alkylbenzene sulfonate.
- 49. The method of claim 48, wherein:
the biodegradability of the alkylbenzene sulfonate is at least 90%, as determined by ASTM D2667-95(2001).
- 50. The method of claim 38, further comprising:
removing oxygenates from the hydrotreated hydrocarbon products by passing the hydrocarbon products over at least one of an alumina, silica or alumina-silica adsorbent so that the hydrocarbon products contain less than about 10 ppm by weight of oxygenates.
- 51. The method of claim 38, wherein:
converting the synthesis gas in a Fischer-Tropsch reaction to hydrocarbon products includes introducing a synthesis gas feed containing from about 10 to 60% nitrogen by volume to a Fischer-Tropsch reactor.
- 52. A method of forming a hydrocarbon product comprising:
converting synthesis gas in a Fischer-Tropsch reaction to hydrocarbon products; and hydrotreating at least a portion of the hydrocarbon products to provide hydrotreated hydrocarbon products; removing oxygenates from the hydrotreated hydrocarbon products by passing the hydrotreated hydrocarbon products over at least one of an alumina, silica or alumina-silica molecular sieve adsorbent so that the hydrotreated hydrocarbon products contain less than 20 ppm by weight of oxygenates, and wherein the hydrotreated hydrocarbon products contain from 50 to 500 ppm by weight oxygenates prior to the removal of oxygenates.
- 53. The method of claim 52, wherein:
wherein the oxygenates are predominantly non-alcohol oxygenates.
- 54. The method of claim 52, wherein:
oxygenates are removed by adsorption at a temperature of at least 20° C.
- 55. The method of claim 52, wherein:
the hydrotreated hydrocarbon products contain from 50 to 500 ppm by weight oxygenates prior to the removal of oxygenates.
- 56. The method of claim 52, wherein:
the hydrotreated hydrocarbon products include at least one of chemical naphtha for ethylene cracking in the C5 to C9 range, fuel cell feedstocks in the C4-C9 range, normal paraffin compounds in the C5-C30 range, isoparaffin compounds in the C5-C30 range, normal paraffin and isoparaffin drilling fluids in the C8-C25 range, lubricating fluids in the C5-C30 range, drilling fluids in the C5-C30 range, food grade solvents in the C5-C60 range, base oils in the C5-C60 range, solvents in the C5-C60 range, oils in the C5-C60 range, and functional fluids in the C5-C60 range.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/448,586, filed Feb. 20, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60448586 |
Feb 2003 |
US |