Claims
- 1. A process for enhanced oil recovery comprising, in combination, the steps of:
- (A) injecting at least one input well located in a petroleum-containing formation with an amount equal to about 1 to 50% pore volume of said formation of a micellar system comprised of a hydrocarbon, water and at least one petroleum sulfonate comprising on a 100 organic weight percent total weight basis:
- (1) from about 5 to 98 weight percent of monosulfonated hydrocarbon,
- (2) from about 0 to 50 weight percent of polysulfonated hydrocarbon, and
- (3) from about 2 to 90 weight percent of non-sulfonated petroleum, said composition having been prepared by:
- (I) intimately contacting a flowable liquid mixture with from about 5 to 40 parts by weight of a sulfur trioxide for each 100 parts by weight of said flowable liquid mixture at a temperature of about 77.degree. to 392.degree. F., said contacting being continued for a time at least sufficient to sulfonate at least about 10 weight percent of total sulfonatable components present in said flowable liquid mixture so as to attain a crude acidic sulfonation reaction mixture, and
- (II) intimately contacting said crude acidic reaction mixture with about 0.5% to 20% by weight, on a 100 weight percent total reaction mixture basis, of water and maintaining the so-attained mixture at a temperature of about 50.degree. to 150.degree. C. for period of time ranging from about one minute to about 60 minutes; and
- (III) nuetralizing the resultant crude acidic reaction mixture-water mixture with a sufficient amount of a base to attain a pH within the resultant mixture in the range of about 3 to 12;
- said flowable liquid mixture comprising on a 100 weight percent total mixture basis:
- (a) from about 85 to 99.5 weight percent of a petroleum oil feed stock, and
- (b) from about 0.5 to 15 weight percent of an additive,
- said petroleum oil feed stock being characterized by
- (a.sub.1) having an API gravity ranging from about 5.degree. to 60.degree. at 60.degree. F.,
- (a.sub.2) having a boiling point (corrected atmospheric) ranging from about -20.degree. to 1400.degree. F., and
- (a.sub.3) containing from about 10 to 95 weight percent (100 weight percent total stock basis) of sulfonatable components,
- said additive being characterized by
- (b.sub.1) being comprised of unsulfonatable organic radical portions possessing an average molecular weight range from about 55 to 6000,
- (b.sub.2) having a boiling point in the range from about 212.degree. to 932.degree. F. corrected atmospheric, and
- (b.sub.3) a preponderance of such radicals each having attached at least one proton replaceable by a sulfo group and at least one moiety selected from the group consisting of an aromatic nucleus, an olefinic carbon pair, and an oxygen atom directly bonded to a carbon atom by at least one bond, and
- (B) displacing said micellar system through said petroleum-containing formation so as to displace petroleum therefrom.
- 2. A method for subterranean oil recovery as defined in claim 1 including injecting said formation with a mobility control agent after injection of said micellar system in said formation.
- 3. A process as defined in claim 1 wherein the base-treated crude acidic reaction mixture-water mixture attained after step (III) is subjected to an extraction process with a hydrophilic solvent to remove salt and free oil from such mixture.
- 4. A process as defined in claim 1 wherein said nuetralizing in step (III) is sufficient to attain a pH within the resultant mixture in the range of about 6 to 11.
- 5. A process as defined in claim 1 wherein said micellar system contains about 0.001 to 30 percent by weight of said petroluem sulfonate.
- 6. A process as defined in claim 5 wherein said micellar system contains an amount of at least one compatible cosurfactant which is less than the amount of petroleum sulfonate in said system.
- 7. A process as defined in claim 1 wherein said intimate contact between sulfur trioxide and the flowable liquid mixture occurs in an enclosed heat-controllable reaction zone.
- 8. A process as defined in claim 7 wherein said flowable liquid mixture forms a film on reaction surfaces of said reaction zone and a continous process takes place.
- 9. A process as defined in claim 7 wherein said flowable liquid mixture is confined in a reaction vessel containing said reaction zone therein and batch reaction takes place.
- 10. A process as defined in claim 7 wherein said flowable liquid mixture is confined in a reaction vessel containing said reaction zone therein and a continous addition of reactants and a continous removal of reaction products takes place to effect a quasi-continous sulfonation process.
- 11. A process as defined in claim 1 wherein said petroleum oil feed stock includes aromatic portions which have a molecular weight in the range of about 200 through about 1000.
- 12. A process as defined in claim 1 wherein said additive includes at least one C.sub.2 to C.sub.30 main hydrocarbon chain.
- 13. A process as defined in claim 1 wherein said additive is selected from the group consisting of unsaturated aliphatic hydrocarbon compounds, substituted and unsubstituted aromatic compounds, olefinic compounds, oxygen-containing compounds, hydroxy-containing compounds, ester compounds, ether compounds, ester-ether compounds, ketone compounds, fatty acid compounds and mixtures thereof.
- 14. A process as defined in claim 1 wherein said additive is a C.sub.4 to C.sub.28 oxygen-containing compound.
- 15. A process as defined in claim 14 wherein said oxygen-containing compound is a hydroxy-containing compound.
- 16. A process as defined in claim 15 wherein said hydroxy-containing compound is a C.sub.6 to C.sub.28 alcohol.
- 17. A process as defined in claim 16 wherein said alcohol is selected from the group consisting of hexanol, octanol, nonanol, decanol, octadecanol, dodecanol, lauryl, myristyl, palmityl, stearyl and mixtures thereof.
- 18. A process as defined in claim 15 wherein said oxygen-containing compounds is an oxo alcohol still bottom.
- 19. A process as defined in claim 18 wherein said oxo alcohol still bottom is comprised of about 2 to 20% by weight of octyl alcohol, about 4 to 40% by weight of nonyl alcohol, about 25 to 90% by weight of decyl and higher boiling materials and about 20 to 80% by weight of esters.
- 20. A process as defined in claim 18 wherein said oxo alcohol still bottom is comprised of about 5% by weight of octyl alcohol, about 10% by weight of nonyl alcohol, about 35% by weight of decyl and higher boiling materials, about 45% by weight of esters and about 5% by weight of soaps.
- 21. A process as defined in claim 14 wherein said oxygen-containing compound is a phenolic compound.
- 22. A process as defined in claim 21 wherein said phenolic compound is selected from the group consisting of phenol, C.sub.1 to C.sub.16 alkyl phenols C.sub.1 to C.sub.16 alkyl C.sub.1 to C.sub.200 alkoxy phenols and mixtures thereof.
- 23. A process as defined in claim 14 wherein said oxygen-containing compound is a glycol compound.
- 24. A process as defined in claim 14 wherein said oxygen-containing compound is alkoxylated with about 1 to 200 mols of a C.sub.2 to C.sub.4 alkylene oxide per mol of oxygen-containing compound.
- 25. A process as defined in claim 14 wherein said oxygen containing compound is a tallow alcohol.
- 26. A process as defined in claim 1 wherein said additive is a C.sub.4 to C.sub.40 olefinic hydrocarbon.
- 27. A process as defined in claim 1 wherein said additive is a C.sub.6 to C.sub.40 aromatic.
- 28. A process as defined in claim 1 wherein said additive is a C.sub.4 to C.sub.6 ether.
- 29. A process as defined in claim 28 wherein said ether is selected from the group consisting of 4-methoxy butanol, 2-ethoxy ethanol, 2-propoxy ethanol, 2-butoxy ethanol, diethylene glycol, diethylene glycol monoethyl ether, diethylene glycol butyl ether and mixtures thereof.
- 30. A process as defined in claim 1 wherein said additive is a C.sub.4 to C.sub.6 hydrocarbon ether ester.
- 31. A process as defined in claim 30 wherein said ether ester is selected from the group consisting of acetate ester of diethylene glycol monoethyl ether, acetate ester of ethylene glycol monoethyl ether, acetate ester of butylene glycol monoethyl ether and mixtures thereof.
- 32. A process as defined in claim 1 wherein said additive is a C.sub.7 to C.sub.30 alkaryl compound.
- 33. A process as defined in claim 1 wherein said additive is a C.sub.1 to C.sub.4 alkyl ester of a C.sub.6 to C.sub.20 aliphatic acid.
- 34. A process as defined in claim 33 wherein said alkyl ester acid is a methyl ester of a C.sub.12 to C.sub.18 fatty acid.
- 35. A process as defined in claim 33 wherein said alkyl ester acid is a methyl ester of a C.sub.8 to C.sub.10 fatty acid.
- 36. A process as defined in claim 33 wherein said alkyl ester acid is a methyl ester of a C.sub.14 to C.sub.28 fatty acid.
- 37. A process as defined in claim 1 wherein said additive is a C.sub.6 to C.sub.28 alkyl ester of a C.sub.6 to C.sub.28 aliphatic alcohol.
- 38. A process as defined in claim 1 wherein said petroleum oil feed stock is selected from the group consisting of crude oil, topped crude oil and mixtures thereof.
- 39. A process as defined in claim 1 wherein said amount of the additive in said mixture ranges from about 0.5% to about 5% by weight of said petroleum oil feed stocks.
- 40. A process as defined in claim 1 wherein said amount of additive in said mixture ranges from about 2% to about 10% by weight of said petroleum oil feed stocks.
- 41. A process as defined in claim 1 wherein said additive is selected from the group consisting of oxo alcohol still bottoms, C.sub.4 to C.sub.28 aliphatic alcohols, alkoxylated phenols, diethylene glycol monoethyl ether, alkoxylated nonyl phenols, alkoxylated tallow alcohol, 2-butoxy ethanol, acetate ester of diethylene glycol monoethyl ether, C.sub.8 -C.sub.10 alcohols, C.sub.8 -C.sub.10 fatty acid methyl esters, isopropyl palmitate, hydrogenated C.sub.12 -C.sub.6 fatty acid methyl esters, acetate ester of ethylene glycol monobutyl ether, C.sub.8 to C.sub.10 fatty acids, branched chain C.sub.15 alkyl benzene, branched chain dodecylbenzene, palmitic acid, C.sub.14 -C.sub.18 .alpha.-olefins, mesityl oxide, acetate ester of ethylene glycol monoethyl ether, and mixtures thereof.
- 42. A process as defined in claim 1 wherein said petroleum sulfonate is further characterized by an average equivalent weight of from about 350 through about 550.
- 43. A process as defined in claim 1 wherein said micellar system contains a plurality of petroleum sulfonates, each having an equivalent weight different from other petroleum sulfonates in said system.
- 44. A process as defined in claim 1 wherein the water-treated crude acidic reaction mixture attained after step (II) is subjected to an extraction process with a hydrophilic solvent to remove salt and free oil from such mixture.
- 45. A process as defined in claim 1 wherein the water-treated crude acidic reaction mixture attained after step (II) is subjected to a deoiling process with a hydrophilic solvent to remove free oil from such mixture.
- 46. A process as defined in claim 1 wherein the base-treated crude acidic reaction mixture-water mixture attained after step (III) is subjected to a deoiling process with a hydrophilic solvent to remove free oil from such mixture.
- 47. A process as defined in claim 1 wherein said nuetralized crude acidic reaction mixture-water mixture attained after step (III) is subjected to a digestion process for a relatively brief period of time so as to reduce the concentration of any sulfur trioxide and sulfuric acid present in said mixture.
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a division of application Ser. No. 883,128, filed Mar. 3, 1978, now U.S. Pat. No. 4,177,207.
This is a continuation-in-part application of our U.S. Ser. No. 676,470, filed Apr. 13, 1976, (now U.S. Pat. No. 4,148,821) which in turn is a continuation-in-part of our U.S. Ser. No. 515,013, filed Oct. 16, 1974, now abandoned, which in turn is a continuation-in-part of our U.S. Ser. No. 432,439, filed Jan. 11, 1974 (now abandoned), which in turn is a continuation-in-part of our U.S. Ser. No. 9,065, filed Feb. 5, 1970 (now abandoned), all of which are incorporated herein by reference.
US Referenced Citations (4)
Number |
Name |
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Kind |
3887611 |
Sweeney et al. |
Jun 1975 |
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4147638 |
Plummer |
Apr 1979 |
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4148821 |
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Foreign Referenced Citations (1)
Number |
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971186 |
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CAX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
883128 |
Mar 1978 |
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Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
515013 |
Oct 1974 |
|
Parent |
432439 |
Jan 1974 |
|
Parent |
9065 |
Feb 1970 |
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