IP Library Granted Patent US 11,820,939
Granted Patent B2
US 11,820,939 · App. 17/847,161 · Granted Nov 21, 2023

Nanogels for delayed gelation

Inventors: Huili Guan (Lawrence, KS); Cory Berkland (Lawrence, KS); Ahmad Moradi-Araghi (Tulsa, OK); Jenn-Tai Liang (College Station, TX); Terry M. Christian (Bartlesville, OK); Riley B. Needham (Bartlesville, OK); Min Cheng (Bartlesville, OK); Faye Lynn Scully (Bartlesville, OK); James H. Hedges (Bartlesville, OK)
Assignees: CONOCOPHILLIPS COMPANY; UNIVERSITY OF KANSAS
C09K8/588C08L1/286C08L5/00
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Quick Facts
Patent No.
US 11,820,939
App. No.
17/847,161
Granted
Nov 21, 2023
Kind
B2
Abstract

The instant application relates to nanogels or compositions that hold multivalent metal ions until some level of nanogel degradation has occurred, then slowly release the multivalent metal ions for gelation with carboxylate containing polymers. Compositions comprising such nanogels, together with polymers that can be crosslinked with multivalent metal ions, allow the deployment of such mixtures in various applications, and greatly increased gelation times.

Claims (21)

1. A delayed gelling composition, comprising:

a) a degradable composition comprising a carboxyl group containing polymer complexed with a multivalent metal ion comprising chromium, zirconium, iron, aluminum, titanium or combinations thereof, a carboxyl group to multivalent metal ion ratio being 6:1, wherein said degradable composition lasts at least 10 days at 85° C. in a brine solution having 23 g/l NaCl, and thereafter degrades to release said multivalent metal ion;

b) an injection fluid; and

c) a swellable microparticle copolymer of acrylamide and sodium acrylate crosslinked with a labile crosslinker and with a stable crosslinker, said microparticle able to swell when said labile crosslinker breaks and thereafter able to be crosslinked by said released multivalent metal ion.

2. The delayed gelling composition of claim 1 , said carboxyl group containing polymer selected from polyaspartate (PASP), polyglutamate (PGLU), polyvinyl alcohol succinate (PVAS), or polyvinyl alcohol malate (PVAM).

3. The delayed gelling composition of claim 1 , said carboxyl group containing polymer selected from polyaspartate (PASP) or polyvinyl alcohol succinate (PVAS) and said multivalent metal ion comprising chromium or zirconium.

4. The delayed gelling composition of claim 1 , said multivalent metal ion comprising chromium or zirconium.

5. The delayed gelling composition of claim 1 , said labile crosslinker being a diacrylate and said stable crosslinker being a polyethlyene glycol.

6. The delayed gelling composition of claim 5 , said multivalent metal ion comprising chromium or zirconium.

7. The delayed gelling composition of claim 1 , said multivalent metal ion being at 50-5000 ppm on a weight/weight basis of said delayed gelling composition.

8. The delayed gelling composition of claim 1 , said swellable microparticle copolymer being at 0.5% concentration on a weight/weight basis of said delayed gelling composition.

9. A method of sweeping for oil or gas, said method comprising injecting the delayed gelling composition of claim 3 into a reservoir, aging said composition until a viscosity increases to at least 1000 cP, and thereafter sweeping the reservoir for oil or gas and producing said oil or gas.

10. The method of claim 9 , said multivalent metal ion being at 50-5000 ppm on a weight/weight basis of said delayed gelling composition.

11. The method of claim 9 , said swellable microparticle copolymer being at 0.5% concentration on a weight/weight basis of said delayed gelling composition.

12. A method of sweeping for oil or gas, said method comprising injecting the delayed gelling composition of claim 6 into a reservoir, aging said composition until a viscosity increases to at least 1000 cP, and thereafter sweeping the reservoir for oil or gas and producing said oil or gas.

13. A method of sweeping for oil or gas, said method comprising injecting the delayed gelling composition of claim 1 into a reservoir, aging said composition until a viscosity increases to at least 1000 cP, and thereafter sweeping the reservoir for oil or gas and producing said oil or gas.

14. The method of claim 2 , said carboxyl group containing polymer selected from polyaspartate (PASP) or polyglutamate (PGLU) or polyvinyl alcohol succinate (PVAS) or polyvinyl alcohol malate (PVAM).

15. The method of claim 2 , said multivalent metal ion comprising chromium or zirconium.

16. The method of claim 2 , said labile crosslinker being diacrylate and said stable crosslinker being polyethlyene glycol.

17. The method of claim 2 , said multivalent metal ion being at 50-5000 ppm on a weight/weight basis of said delayed gelling composition.

18. The method of claim 2 , said swellable microparticle copolymer being at 0.5% concentration on a weight/weight basis of said delayed gelling composition.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2022
From: MORADI-ARAGHI, AHMAD; CHENG, MIN; NEEDHAM, RILEY B; HEDGES, JAMES H; SCULLY, FAYE L; CHRISTIAN, TERRY M
To: CONOCOPHILLIPS COMPANY
Reel/Frame 060792/0840 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2022
From: GUAN, HUILI; BERKLAND, CORY; LIANG, JENN-TAI
To: UNIVERSITY OF KANSAS
Reel/Frame 060792/0889 →
Continuity (5)
Division 16938368 · Jul 24, 2020
Division 15708034 · Sep 18, 2017
Continuation 14143169 · Dec 30, 2013
Provisional Application 61754060 · Jan 18, 2013
Related Publication 20220325170A1 · Oct 13, 2022