IP Library Granted Patent US 9,631,082
Granted Patent B2
US 9,631,082 · App. 15/212,612 · Granted Apr 25, 2017

Water-in-oil polyacrylamide-based microemulsions and related methods

Inventors: Franklin E. Sexton (Richmond, IL); Ryan T. Strash (Tevor, WI); Todd J. O'Connell (Wonder Lake, IL)
Assignee: Exacto, Inc.
C08L33/26A01N25/04C08K3/20C08K5/06C08K5/09C08K11/00C08L71/02C08L91/00C08K5/0058C08K5/101C08L2201/52
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Quick Facts
Patent No.
US 9,631,082
App. No.
15/212,612
Granted
Apr 25, 2017
Kind
B2
Abstract

A water-in-oil microemulsion, including a polyacrylamide, a fatty acid, a surfactant, an oil continuous phase, and an aqueous discontinuous phase in the oil continuous phase. The fatty acid includes a tall oil fatty acid, oleic acid, or a combination of a tall oil fatty acid and oleic acid. The water-in-oil microemulsion contains 6 to 48 parts by weight of the polyacrylamide, 30 to 62 parts by weight of the fatty acid, and 20 to 44 parts by weight of the surfactant per 100 parts by weight of the polyacrylamide, the fatty acid, and the surfactant combined.

Claims (45)

1. A water-in-oil microemulsion, comprising:

an anionic polyacrylamide;

a fatty acid comprising a tall oil fatty acid, oleic acid, or a combination of a tall oil fatty acid and oleic acid;

a surfactant;

an oil continuous phase; and

an aqueous discontinuous phase in the oil continuous phase,

wherein the water-in-oil microemulsion contains 6 to 48 parts by weight of the anionic polyacrylamide, 30 to 62 parts by weight of the fatty acid, and 20 to 44 parts by weight of the surfactant per 100 parts by weight of the anionic polyacrylamide, the fatty acid, and the surfactant combined.

2. The water-in-oil microemulsion of claim 1 , wherein the fatty acid comprises the tall oil fatty acid, and wherein the water-in-oil microemulsion contains 6 to 40 parts by weight of the anionic polyacrylamide, 30 to 62 parts by weight of the tall oil fatty acid, and 20 to 44 parts by weight of the surfactant per 100 parts by weight of the anionic polyacrylamide, the tall oil fatty acid, and the surfactant combined.

3. The water-in-oil microemulsion of claim 1 , wherein the fatty acid comprises the tall oil fatty acid, and wherein the water-in-oil microemulsion contains 8 to 32 parts by weight of the anionic polyacrylamide, 30 to 60 parts by weight of the tall oil fatty acid, and 24 to 43 parts by weight of the surfactant per 100 parts by weight of the anionic polyacrylamide, the tall oil fatty acid, and the surfactant combined.

4. The water-in-oil microemulsion of claim 1 , wherein the fatty acid comprises the oleic acid, and wherein the water-in-oil microemulsion contains 10 to 48 parts by weight of the anionic polyacrylamide, 30 to 60 parts by weight of the oleic acid, and 20 to 39 parts by weight of the surfactant per 100 parts by weight of the anionic polyacrylamide, the oleic acid, and the surfactant combined.

5. The water-in-oil microemulsion of claim 1 , wherein the fatty acid comprises the oleic acid, and wherein the water-in-oil microemulsion contains 16 to 32 parts by weight of the anionic polyacrylamide, 30 to 60 parts by weight of the oleic acid, and 24 to 38 parts by weight of the surfactant per 100 parts by weight of the anionic polyacrylamide, the oleic acid, and the surfactant combined.

6. The water-in-oil microemulsion of claim 1 , wherein the water-in-oil microemulsion is homogenously dispersible in water or water-based mixtures to form a diluted product completely free of solid agglomerates of the anionic polyacrylamide.

7. The water-in-oil microemulsion of claim 1 , further comprising an ethylene oxide/propylene oxide (EO/PO) block copolymer.

8. The water-in-oil microemulsion of claim 1 , wherein the surfactant is nonionic and has a hydrophilic-lipophilic balance of greater than 9.3.

9. The water-in-oil microemulsion of claim 1 , wherein the surfactant comprises an ethoxylate.

10. The water-in-oil microemulsion of claim 1 , wherein the anionic polyacrylamide is derived from acrylamide and sodium acrylate.

11. The water-in-oil microemulsion of claim 1 , wherein the water-in-oil microemulsion has a total weight, and wherein the anionic polyacrylamide constitutes up to about 15 percent by weight of the total weight.

12. The water-in-oil microemulsion of claim 1 , wherein:

the water-in-oil microemulsion has a total weight;

the anionic polyacrylamide constitutes up to about 15 percent by weight of the total weight;

the fatty acid constitutes about 2 percent to about 5 percent by weight of the total weight; and

the surfactant comprises a nonionic surfactant constituting about 9 to about 20 percent by weight of the total weight.

13. The water-in-oil microemulsion of claim 1 , wherein the oil continuous phase constitutes about 10 percent to about 55 percent by weight of a total weight of the water-in-oil microemulsion, and wherein the oil continuous phase comprises cottonseed oil, canola oil, soybean oil, corn oil, palm kernel oil, coconut oil, the methyl ester thereof, the ethyl ester thereof, or a combination thereof.

14. The water-in-oil microemulsion of claim 1 , wherein the oil continuous phase comprises a paraffinic oil, a naturally occurring oil, a derivative of naturally occurring oils, or a combination thereof.

15. The water-in-oil microemulsion of claim 1 , wherein the water-in-oil microemulsion is mixable with an aqueous medium to provide a dispersed solution with a range of 10 to 50 weight percent water, and wherein the dispersed solution has a maximum viscosity of not greater than 1000 cps in the range.

16. The water-in-oil microemulsion of claim 9 , wherein the ethoxylate comprises nonylphenol ethoxylate, an alcohol ethoxylate, a fatty acid ethoxylate, and combinations thereof.

17. A water-in-oil microemulsion comprising:

a polyacrylamide;

a fatty acid comprising a tall oil fatty acid, oleic acid, or a combination of a tall oil fatty acid and oleic acid;

a surfactant;

an oil continuous phase; and

an aqueous discontinuous phase in the oil continuous phase,

wherein the water-in-oil microemulsion contains 6 to 48 parts by weight of the polyacrylamide, 30 to 62 parts by weight of the fatty acid, and 20 to 44 parts by weight of the surfactant per 100 parts by weight of the polyacrylamide, the fatty acid, and the surfactant combined, and

wherein the oil continuous phase comprise a methylated soybean oil.

18. The water-in-oil microemulsion of claim 17 , wherein the water-in-oil microemulsion is made by combining a nanoemulsion of a polyacrylamide homopolymer, a polyacrylamide copolymer, a polyacrylamide terpolymer, or a combination of two or more of the polyacrylamide homopolymer, the polyacrylamide copolymer, and the polyacrylamide terpolymer with at least one of the oil, the fatty acid, and the surfactant.

19. The water-in-oil microemulsion of claim 17 , wherein the polyacrylamide comprises an anionic polyacrylamide.

20. A water-in-oil microemulsion comprising:

a polyacrylamide;

a fatty acid comprising a tall oil fatty acid, oleic acid, or a combination of a tall oil fatty acid and oleic acid;

a surfactant;

an oil continuous phase; and

an aqueous discontinuous phase in the oil continuous phase,

wherein the water-in-oil microemulsion contains 6 to 48 parts by weight of the polyacrylamide, 30 to 62 parts by weight of the fatty acid, and 20 to 44 parts by weight of the surfactant per 100 parts by weight of the polyacrylamide, the fatty acid, and the surfactant combined, and

wherein the polyacrylamide comprises a combination of a polyacrylamide homopolymer and a polyacrylamide copolymer.

21. The water-in-oil microemulsion of claim 20 , wherein the polyacrylamide comprises an anionic polyacrylamide.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2024
From: TRIA GLOBAL SOLUTIONS, LLC
To: EXACTO, LLC
Reel/Frame 069279/0420 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2024
From: EXACTO, INC.
To: TRIA GLOBAL SOLUTIONS, LLC
Reel/Frame 069244/0570 →
Continuity (4)
Continuation 14478777 · Sep 5, 2014
Continuation In Part 13091686 · Apr 21, 2011
Continuation In Part 12487710 · Jun 19, 2009
Related Publication 20160326359A1 · Nov 10, 2016