Claims
- 1. A fuel composition for internal combustion engines, said fuel composition comprising:
(a) at least about 5% of one or more fuel hydrocarbons; and (b) at least about 10 ppm of one or more nonlinear primary aliphatic alcohol derivatives, wherein the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives have at least about 11 carbon atoms.
- 2. The fuel composition according to claim 1 wherein:
(a) said one or more fuel hydrocarbons comprise at least two types of fuel hydrocarbons; and (b) wherein said one or more nonlinear primary aliphatic alcohol derivatives comprise a nonlinear primary aliphatic Oxo alcohol derivative, wherein at least about 0.6 weight fraction of the alcohol moiety of said one or more nonlinear primary aliphatic Oxo alcohol derivative comprises at least one C1-C3 alkyl substituent situated on a third or higher carbon atom counting from an Oxo alcohol moiety hydroxy group.
- 3. The fuel composition according to claim 2 wherein said at least two types of fuel hydrocarbons are differentiated in that a first type of fuel hydrocarbon is a FISCHER-TROPSCH Oxo hydrocarbon and a second type of fuel hydrocarbon is other than said first type of fuel hydrocarbon.
- 4. The fuel composition according to claim 1 comprising: from about 5% to about 99.9990% of said one or more fuel hydrocarbons and from about 10 ppm to about 95% of said one or more nonlinear primary aliphatic alcohol derivatives; wherein said one or more fuel hydrocarbons comprise FISCHER-TROPSCH Oxo hydrocarbons; and the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives have an average of from about 11 to about 21 carbon atoms; and wherein said composition further comprises a member selected from the group consisting of:
(c) linear long-chain monoalcohols , linear long-chain monoalcohol derivatives; (d) nonlinear diols, nonlinear diol derivatives; (e) linear diols, linear diol derivatives; and (f) mixtures of two or more of (c)-(e).
- 5. The fuel composition according to claim 4 wherein the fuel composition comprises components (b) and (c) at a (b):(c) ratio of at least about 2:1 by weight.
- 6. The fuel composition according to claim 1 wherein said fuel composition comprises said one or more nonlinear primary aliphatic alcohol derivatives selected from lubricating, pour-point depressing alcohol derivatives.
- 7. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives are present in a weight fraction sufficient to depress the additive pour point, APPl, of component (b) to at least 10° C. below the additive pour point APPR, of a reference alcohol composition consisting essentially of the corresponding linear primary aliphatic alcohol derivatives.
- 8. The fuel composition according to claim 1 comprising from about 20% to about 95% of said one or more nonlinear primary aliphatic alcohol derivatives; and wherein said one or more fuel hydrocarbons, (a), comprise:
(i) from about 5% to about 80% of a first type of fuel hydrocarbons selected from FISCHER-TROPSCH Oxo hydrocarbons; and wherein at least 0.8 weight fraction of said alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives comprises at least one C1-C3 alkyl substituent situated on a third or higher carbon atom counting from the alcohol moiety hydroxy group; and not more than about 0.01 weight fraction of the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives comprises a quaternary substituted carbon atom.
- 9. The fuel composition according to claim 1 comprising from about 0.1% to about 19% of said one or more nonlinear primary aliphatic alcohol derivatives; and wherein said one or more fuel hydrocarbons, (a), comprise:
(i) from about 0.05% to about 18% of a first type of fuel hydrocarbons selected from FISCHER-TROPSCH Oxo hydrocarbons; (ii) from about 80% to about 99% of a second type of fuel hydrocarbons selected from FISCHER-TROPSCH non-Oxo hydrocarbons; wherein at least 0.8 weight fraction of the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives comprises at least one C1-C3 alkyl substituent situated on a third or higher carbon atom counting from the alcohol moiety hydroxy group; and not more than about 0.001 weight fraction of the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives comprises a quaternary substituted carbon atom.
- 10. The fuel composition according to claim 9 having a ratio of said second type of fuel hydrocarbons to said first type of fuel hydrocarbons of at least about 10:1 by weight.
- 11. The fuel composition according to claim 9 wherein the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives and said second type of fuel hydrocarbons have independently varying numbers of carbon atoms and degrees of branching.
- 12. The fuel composition according to claim 9 wherein said second type of fuel hydrocarbons has a broader range of number of carbon atoms than the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives.
- 13. The fuel composition according to claim 9 wherein said second type of fuel hydrocarbon has a lesser degree of branching than the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives.
- 14. The fuel composition according to claim 3 having the form of a concentrated fuel additive, comprising from about 0.2% to about 19% of said one or more nonlinear primary aliphatic Oxo alcohol derivatives and from about 81% to about 99.8% of said one or more fuel hydrocarbons; and wherein the alcohol moieties of said one or more nonlinear primary aliphatic Oxo alcohol derivatives have an independently variable degree of branching, DOBa, which exceeds the degree of branching of said one or more fuel hydrocarbons, DOBF, according to the relation: DOBa=DOBF+0.3.
- 15. The fuel composition according to claim 1 comprising from about 0.01% to about 10% of said one or more nonlinear primary aliphatic alcohol derivatives; and wherein said one or more fuel hydrocarbons, (a), comprise:
(i) from about 0.005% to about 12% of a first type of fuel hydrocarbons selected from FISCHER-TROPSCH Oxo hydrocarbons; (ii) from 0% to about 99.8% of a second type of fuel hydrocarbons selected from FISCHER-TROPSCH non-Oxo hydrocarbons; and (iii) from about 0.1% to about 99.995% of at least one other type of fuel hydrocarbons selected from fuel hydrocarbons other than (i) and (ii); wherein at least 0.6 weight fraction of the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives, (b), comprises at least one C1-C3 alkyl substituent situated on a third or higher carbon atom counting from the alcohol moiety hydroxy group.
- 16. The fuel composition according to claim 15 wherein said third type of fuel hydrocarbon, (iii) is present and comprises at least 0.1 weight fraction saturated cyclic hydrocarbons; and all other types of fuel hydrocarbons present comprise less than about 0.05 weight fraction of saturated cyclic hydrocarbons.
- 17. The fuel composition according to claim 15 having a ratio of said other type, (iii), of fuel hydrocarbons to said first type of fuel hydrocarbons (i) of at least about 10:1 by weight.
- 18. A fuel composition for internal combustion engines, said fuel composition comprising:
(a) at least about 5% of fuel hydrocarbons comprising:
(i) from about 1 ppm to about 10% of a first type of fuel hydrocarbons having from about 10 to about 20 carbon atoms selected from FISCHER-TROPSCH Oxo hydrocarbons; (ii) optionally from 0% to about 99% of a second type of fuel hydrocarbons selected from FISCHER-TROPSCH non-Oxo hydrocarbons having at least about 5 carbon atoms and (iii) optionally from 0% to about 99% of at least one other type of fuel hydrocarbons having at least about 5 carbon atoms other than (a)(i) and (a)(ii), provided that the sum of (a)(ii) and (a)(iii) is at least about 80% by weight of the fuel hydrocarbons; (b) at least about 10 ppm of one or more nonlinear primary aliphatic alcohol derivatives, wherein the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives have at least about 11 carbon atoms wherein at least 0.6 weight fraction of the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives comprises at least one C1-C3 alkyl substituent situated on a third or higher carbon atom counting from the alcohol moiety hydroxy group; and not more than about 0.01 weight fraction of the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives comprise a quaternary substituted carbon atom; (c) at least about 0.001 ppm of linear primary Oxo alcohol derivatives having at least 11 carbon atoms; and wherein said fuel composition has:
(I) a ratio by weight {(a)(ii)+(a)(iii)}:(a)(i) of at least about 10:1; (II) a ratio by weight (b):(c) of at least about 1:10, and (III) from zero ppm to about 50 ppm of sulfur.
- 19. The fuel composition according to claim 18 wherein said fuel composition has an independence of the average number of carbon atoms of the alcohol moiety of component (b) as compared with {(a)(i)+(a)(ii)+(a)(iii)}; and wherein said fuel composition is produced by a process having at least one step of blending a pre-formed concentrated fuel additive comprising (a)(i), (b) and (c) with a portion of said one or more fuel hydrocarbons, said portion being selected from (a)(ii),(a)(iii) and (a)(ii)+(a)(iii).
- 20. The fuel composition according to claim 19 wherein said component, (a)(iii), comprises at least 0.1 weight fraction saturated cyclic hydrocarbons; whereas said components, (a)(i) and (a)(ii), each comprise less than 0.05 weight fraction of saturated cyclic hydrocarbons.
- 21. The fuel composition according to claim 18 wherein said combustion engine is a diesel engine; and said one or more fuel hydrocarbons comprise from about 10 to about 20 carbon atoms; wherein said fuel composition further comprises:
(a) at least about 90% of said one or more fuel hydrocarbons; and (b) from about 100 ppm to about 5% of said one or more nonlinear primary aliphatic alcohol derivatives, wherein the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives have from about 11 to about 21 carbon atoms.
- 22. The fuel composition according to claim 18; such that said fuel composition has
i) a flow point of −25 ° C. or below; ii) a sulfur content of less than about 50 ppm; and iii) a aromatic content of less than about 10%.
- 23. The fuel composition according to claim 18 wherein said combustion engine is a jet engine; said one or more fuel hydrocarbons comprise from about 9 to about 14 carbon atoms; and said fuel composition further comprises:
(a) at least about 90% of said one or more fuel hydrocarbons; and (b) from about 100 ppm to about 5% of said one or more nonlinear primary aliphatic alcohol derivatives, wherein the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives have from about 11 to about 17 carbon atoms.
- 24. The fuel composition according to claim 23 wherein said fuel composition has
i) a flow point of −47 ° C. or below; and ii) a smoke point of at least 18 mm wick.
- 25. The fuel composition according to claim 18, wherein said combustion engine is a new compact diesel or other nontraditional engine; said one or more fuel hydrocarbons comprise from about 5 to about 14 carbon atoms; the fuel composition further comprising:
(a) at least about 90% of said one or more fuel hydrocarbons; and (b) from about 100 ppm to about 10% of said one or more nonlinear primary aliphatic alcohol derivatives.
- 26. The fuel composition according to claim 25 wherein said fuel composition further has
i) a flow point of −10° C. or below, ii) a sulfur content of less than 50 ppm; and iii) an aromatics content of less than about 10%.
- 27. The fuel composition according to claim 1 having the form of a concentrated fuel additive comprising: from about 5% to about 90% of said one or more fuel hydrocarbons and from about 10% to about 95% of said one or more nonlinear primary aliphatic alcohol derivatives; wherein said one or more fuel hydrocarbons are derived from FISCHER-TROPSCH wax, petroleum wax and mixtures thereof; and the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives is in the form of a two-carbon alcohol cut selected from the group comprising a C12-C13 cut, a C14-C15 cut ,a C16-C17 cut.
- 28. The fuel composition according to claim 1 having the form of a concentrated fuel additive comprising: from about 5% to about 90% of said one or more fuel hydrocarbons and from about 10% to about 95% of said one or more nonlinear primary aliphatic alcohol derivatives; wherein said one or more fuel hydrocarbons are derived from FISCHER-TROPSCH wax, petroleum wax and mixtures thereof, and the alcohol moieties of said one or more nonlinear primary aliphatic alcohol derivatives is in the form of a four-carbon cut selected from a C14-C17 cut.
- 29. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives have the formula:
- 30. The fuel composition according to claim 28 wherein, when Q and R are selected from the group comprising methyl, ethyl, propyl, or butyl, and wherein Q and R are attached to different carbon atoms of said linear saturated hydrocarbyl.
- 31. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives have the general formula:
- 32. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives have the general formula:
- 33. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives have the general formula:
- 34. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives have the general formula:
- 35. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives have the general formula:
- 36. A branched alcohol derivative having the general formula:
- 37. A branched alcohol derivative having the general formula:
- 38. A branched alcohol derivative having the general formula:
- 39. A branched alcohol derivative having the general formula:
- 40. The fuel composition according to claim 4 wherein said nonlinear diol derivatives have the general formula:
- 41. The fuel composition according to claim 39 wherein said nonlinear diol derivatives are nonlinear Oxo diol derivatives, and wherein when Q and R are selected from the group comprising methyl, ethyl, propyl, butyl, or mixtures thereof, such that Q and R are attached to different carbon atoms of said linear saturated hydrocarbyl.
- 42. The fuel composition according to claim 40 wherein the ratio of said one or more nonlinear primary aliphatic alcohol derivatives, (b), to said nonlinear diol derivatives, (d), (b):(d), is from about 1000:1 to about 2:1 by weight.
- 43. The fuel composition according to claim 40 wherein said nonlinear diol derivatives are present at a level of from about 0.001 ppm to about 30% by weight.
- 44. A nonlinear diol derivative comprising a nonlinear diol derivative of claim 39.
- 45. A composition having the form of a fuel blend stock or finished fuel composition prepared by blending the composition of claim 8 with any fuel hydrocarbon, fuel blend stock or fuel not comprising said first type of fuel hydrocarbon.
- 46. The fuel composition according to claim 1 wherein said components (a) and (b) are cosynthesized.
- 47. The fuel composition according to claim 4 which is the product of blending said one or more fuel hydrocarbons and members of said one or more nonlinear primary aliphatic Oxo alcohol derivatives synthesized nonintegrally with components of said one or more fuel hydrocarbons, thereby achieving higher ratios, (b):(c), of said nonlinear primary aliphatic Oxo alcohol derivatives to linear Oxo alcohol derivatives than can be attained by known FISCHER-TROPSCH processes for making oxygenated fuels.
- 48. A fuel composition for use as jet or diesel fuel, said composition comprising:
(c) from about 90% to about 99.9% of fuel hydrocarbons having from about 9 to about 20 carbon atoms; and (d) from about 100 ppm to about 10% of one or more nonlinear primary aliphatic alcohol derivatives, wherein said alcohol derivatives are the product of a process comprising:
(V) at a first stage providing a member selected from the group comprising:
(A) FISCHER-TROPSCH wax; (B) conventional petroleum wax; (C) a fuel hydrocarbon distillation cut in the Jet/diesel range, said distillation cut comprising at least about 0.8 weight fraction of linear paraffins, mono-, di- or tri-C1-C3 branched acyclic paraffins, or mixtures thereof; (D) mixtures thereof; to form a first stage product; (VI) at a pre-Oxo stage comprising sequentially or concurrently delinearizing and preparing the first stage product for Oxo reaction, said pre-Oxo stage comprising two or more steps in any order selected from steps capable of effecting (i) chain-breaking, (ii) branch-forming and (iii) olefin-forming; to form a pre-Oxo stage product; (VII) at an Oxo/post-Oxo stage comprising converting the pre-Oxo stage product to a nonlinear Oxo alcohol, said Oxo/post-Oxo stage comprising at least one Oxo step, optionally comprising an Oxo aldehyde to alcohol conversion step and optionally a step of hydrogenation of residual olefins to paraffins; and (VIII) at a derivatizing stage derivatizing the nonlinear Oxo alcohol to a nonlinear alcohol derivative.
- 49. A fuel composition for use as jet or diesel fuel, said composition comprising the product of blending:
(a) from about 90% to about 99.9% of fuel hydrocarbons having from about 9 to about 20 carbon atoms; and (b) one or more nonlinear primary aliphatic alcohol derivatives, wherein said alcohol derivatives are the product of a process comprising:
(I) at a first stage providing a member selected from the group comprising: propylene/butylene monoolefin oligomers having from 0.5 to 2.0 methyl groups per chain, said oligomers being prepared using molecular sieves selected from ZSM-23 and functional equivalents thereof to form a first stage product; (II) at an Oxo/post-Oxo stage comprising at least one Oxo step, converting the first stage product to produce a nonlinear Oxo alcohol, optionally comprising an aldehyde to alcohol conversion step and optionally comprising a step of hydrogenation of residual olefins to paraffins; and (III) at a derivatizing stage derivatizing the nonlinear Oxo alcohol to a nonlinear alcohol derivative.
- 50. A dual-use jet/diesel concentrated additive comprising the fuel composition of claim 1.
- 51. A duel-use jet/diesel blend stock comprising the fuel composition of claim 1.
- 52. A method of using the fuel composition according to claim 1 comprising combusting said fuel composition in a compression ignition engine.
- 53. A method of using the fuel composition according to claim 1 comprising combusting said fuel composition in a vehicle having a power system comprising a 10,000 psi or greater, direct injection diesel engine.
- 54. A method of using the fuel composition according to claim 48 comprising combusting said fuel composition in a vehicle having a power system comprising said diesel engine and an electric motor.
- 55. A method according to claim 52 additionally comprising a step of storing said fuel composition in a tank and passing said fuel composition from said tank to said diesel engine, wherein said fuel composition able to be passed at temperatures down to about −25° C.
- 56. A method of using the fuel composition according to claim 1 comprising a step of passing said fuel composition from a fuel tank at temperatures down to about −47° C. to a jet engine, combusting said fuel composition in said jet engine at elevated altitudes.
- 57. A method of biodegrading a fuel comprising
(i) selecting the fuel composition according to claim 1; and (ii) disposing of said composition, optionally in presence of soils and/or microorganisms.
- 58. The fuel composition of claim 1 wherein said fuel composition is used in combination with an engine selected from the group comprising a two-cycle engine having a compression ratio of from 5:1 to 40:1, a four-cycle engine having a compression ratio of from 5:1 to 40:1, a jet engine, or a turbine engines utilizing flame or surface combustion.
- 59. The fuel composition according to claim 1 further comprising a at least one of the following components:
i) from about 1 ppm to about 3% olefins; ii) from about 1 ppm to about 15% monocyclic aromatics; iii)from about 1 ppm to about 2% C1-C9 carboxylates; and iv)from about 1 ppm to about 0.5% aldehydes.
- 60. The fuel composition according to claim 15 wherein:
(I) said first type of fuel hydrocarbons, (i), comprises from 0% to about 10% cyclic nonaromatics; (II) said second type of fuel hydrocarbons, (ii), comprises from 0% to about 10% cyclic nonaromatics; and (III) said other type of fuel hydrocarbons, (iii), comprises from about 5% to about 20% cyclic nonaromatics.
- 61. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives are substantially free from methyl butanol, methyl butanol derivatives, ethylhexanol, ethylhexanol derivatives, propylheptanols , propylheptanol derivatives, natural alcohol mixtures , natural alcohol mixture derivatives, aminoalcohols, amino alcohol derivatives, aromatic alcohols , aromatic alcohol derivatives, glycols having linear hydrocarbon chains, glycol derivatives having linear hydrocarbon chains, alcohols comprising the aldol condensation product of aldehydes, alcohol derivatives comprising the aldol condensation product of aldehydes; alcohols comprising the Oxo product of linear internal olefins, alcohol derivatives comprising the Oxo product of linear internal olefins, and alcohols comprising quaternized carbon and consisting of the Oxo product of acid-catalyzed propylene/butylenes oligomerization, and alcohol derivatives comprising quaternized carbon and consisting of the Oxo product of acid-catalyzed propylene/butylene oligomerization.
- 62. The fuel composition according to claim 1 having from 0 ppm to 10 ppm of sulfur, nitrogen, polycyclic aromatics as analyzed on a finished fuel basis.
- 63. The fuel composition according to claim 1 wherein said fuel composition has from 0 ppm to about 50 ppm of sulfur on a finished fuel basis.
- 64. The fuel composition according to claim 1 wherein said fuel composition has from 0 ppm to about 50 ppm of nitrogen on a finished fuel basis.
- 65. The fuel composition according to claim 1 wherein said fuel composition has from 0 ppm to about 50 ppm of polycyclic aromatics on a finished fuel basis.
- 66. The fuel composition according to claim 1 wherein said fuel composition is substantially free from olefins and C1-C9 carboxylates.
- 67. The fuel composition according to claim 1, wherein said one or more fuel hydrocarbons are substantially free from hydrocarbons other than FISCHER-TROPSCH-Oxo hydrocarbons.
- 68. The fuel composition according to claim 1 wherein said fuel composition is substantially free from native FISCHER-TROPSCH alcohols and/or their derivatives.
- 69. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohol derivatives are substantially the only lubricity-improving component.
- 70. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohols are monohydric.
- 71. The fuel composition according to claim 1 wherein said one or more nonlinear primary aliphatic alcohols are substantially free from diols and/or their derivatives.
- 72. The fuel composition according to claim 1 wherein said fuel composition further comprises:
(c) from about 0.001 ppm to about 30% of linear C11 to C21 alcohols, linear C11 to C21 alcohol derivatives, and mixtures thereof.
- 73. The fuel composition according to claim 1 further comprising:
(d) from about 0.001 ppm to about 30% of C12 to C22 nonlinear primary aliphatic diol derivatives.
- 74. The fuel composition according to claim 1 further comprising
(e) from about 0.0001 ppm to about 3% of C12 to C22 linear primary aliphatic diol derivatives.
- 75. The fuel composition according to claim 1 further comprising
(f) from about 0.001 ppm to about 30% of a mixture of members selected from: linear C11 to C21 alcohols, linear C11 to C21 alcohol derivatives; C12 to C22 nonlinear primary aliphatic diols, C12 to C22 nonlinear primary aliphatic diols derivatives; and C12 to C22 linear primary aliphatic diols, C12 to C22 linear primary aliphatic diol derivatives.
- 76. The fuel composition according to claim 1 further comprising:
(g) from about 0.001 ppm to about 10% of a fuel adjunct selected from the group comprising:
(I) diesel adjuncts comprising diesel ignition improvers, diesel stability improvers, diesel corrosion inhibitors, diesel detergent additives, diesel cold flow improvers, diesel combustion improvers, other conventional diesel adjuncts, and mixtures thereof; and (II) aviation fuel adjuncts comprising jet fuel ignition improvers, jet fuel stability improvers, jet fuel corrosion inhibitors, jet fuel detergent additives, jet fuel cold flow improvers, jet fuel combustion improvers, jet fuel luminosity reducers/radiation quenchers, jet fuel antimicrobial/antifungal adjuncts, jet fuel antistats, other conventional jet fuel adjuncts and mixtures thereof.
- 77. A method of transporting the fuel composition according to claim 1, comprising pumping said composition in a pipeline under low ambient temperature conditions.
- 78. A method according to claim 72, wherein said pumping is carried out batchwise and alternating with pumping of batches of conventional fuels in said pipeline.
- 79. A process for making a fuel composition, said process comprising a step of blending:
(c) from about 90% to about 99.9% of fuel hydrocarbons having from about 9 to about 20 carbon atoms; and (d) from about 100 ppm to about 10% of one or more nonlinear primary aliphatic alcohol derivatives, wherein said alcohol derivatives are produced:
(IV) at a first stage providing a member selected from the group comprising:
(A) FISCHER-TROPSCH wax; (B) conventional petroleum wax; (C) a fuel hydrocarbon distillation cut in the jet/diesel range, said distillation cut comprising at least about 0.8 weight fraction of linear paraffins, mono-, di- or tri-C1-C3 branched acyclic paraffins, or mixtures thereof; (D) mixtures thereof; to form a first stage product; (V) at a pre-Oxo stage sequentially or concurrently delinearizing and preparing the first stage product for Oxo reaction, said pre-Oxo stage comprising two or more steps to produce an pre-Oxo stage product selected from steps capable of effecting (i) chain-breaking, (ii) branch-forming and (iii) olefin-forming; (VI) at an Oxo/post-Oxo stage converting the pre-Oxo stage product to a nonlinear Oxo alcohol, said Oxo/post-Oxo stage comprising at least one Oxo step, optionally comprising an Oxo aldehyde to alcohol conversion step , optionally comprising a step of hydrogenation of residual olefins to paraffins; and (VII) a derivatizing stage derivatizing the nonlinear Oxo alcohol to form a nonlinear alcohol derivative.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 37 U.S.C. § 119(e) to U.S. Provisional Application Serial No. 60/331,825, filed Nov. 20, 2001 (Attorney Docket No. 8791PL).
Provisional Applications (1)
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Number |
Date |
Country |
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60331825 |
Nov 2001 |
US |