IP Library Granted Patent US 10,239,960
Granted Patent B2
US 10,239,960 · App. 15/179,103 · Granted Mar 26, 2019

Phosphonated polysaccharides and gels and process for making same

Inventors: Laurianne Timbart (Bensalem, PA); Gilda Lizarraga (Chesterfield, NJ); Gary Woodward (Northwich Cheshire, GB); Subramanian Kesavan (East Windsor, NJ); David James Wilson (Coye la Forte, FR)
Assignee: Rhodia Operations
C08B37/00C08B37/0096C08L5/00C09K8/035C09K8/40C09K8/52C09K8/62C09K8/68C09K8/74C09K8/90E21B43/26C09K8/602C09K8/605C09K2208/20
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Quick Facts
Patent No.
US 10,239,960
App. No.
15/179,103
Granted
Mar 26, 2019
Kind
B2
Abstract

Products and processes that are related to phosphonated polysaccharide compositions, including phosphonated polysaccharide gels, having a substituent degree of substitution with a lower limit of 0.02 and an upper limit of 3, and having a weight average molecular weight with an upper limit of 5,000,000 g/mole, as well as to oil field application or fracturing fluid compositions comprising such phosphonated polysaccharide compositions.

Claims (20)

1. A polysaccharide composition comprising at least one phosphonated guar or at least one phosphonated guar derivative, having a substituent degree of substitution with a lower limit of 0.05 and an upper limit of 3, and having a weight average molecular weight with an upper limit of 5,000,000 g/mole; wherein the composition is cross-linked with a metal cation to form a phosphonated polysaccharide gel, wherein the metal cation is selected from compounds of iron and wherein the binding energy is at least 40 kJ/mol.

2. The composition of claim 1 wherein the lower limit of the substituent degree of substitution is 0.055.

3. The composition of claim 1 wherein the lower limit of the substituent degree of substitution is 0.07.

4. The composition of claim 1 wherein the lower limit of the substituent degree of substitution is 0.9.

5. The composition of claim 1 wherein the lower limit of the substituent degree of substitution is 1.

6. The composition of claim 1 wherein the lower limit of the substituent degree of substitution is 1.5.

7. The composition of claim 1 wherein the at least one phosphonated guar derivative is a phosphonated hydroxypropyl guar.

8. The composition of claim 1 wherein the at least one phosphonated guar derivative is selected from phosphonated carboxymethyl guar (CMG); phosphonated hydroxyethyl guar (HEG); phosphonated hydroxypropyl guar (HPG); phosphonated carboxymethylhydroxypropyl guar (CMHPG); phosphonated hydrophobically modified guar (HM guar); phosphonated hydrophobically modified carboxymethyl guar (HMCM guar); phosphonated hydrophobically modified hydroxyethyl guar (HMHE guar); phosphonated hydrophobically modified hydroxypropyl guar (HMHP guar); phosphonated hydrophobically modified carboxymethylhydroxypropyl guar (HMCMHP guar); or any combination thereof.

9. The composition of claim 1 wherein the at least one phosphonated guar derivative is selected from phosphonated cationic carboxymethyl guar (CMG), phosphonated cationic hydroxyethyl guar (HEG), phosphonated cationic hydroxypropyl guar (HPG), phosphonated cationic carboxymethylhydroxypropyl guar (CMHPG), phosphonated cationic hydrophobically modified hydroxypropyl guar (cationic HMHP guar), phosphonated hydrophobically modified cationic guar (HM cationic guar) or any combination thereof.

10. The composition of claim 1 further comprising one or more biocides, one or more surfactants, one or more scale inhibitors, one or more stabilizers or any of the foregoing.

11. The composition of claim 1 wherein the weight average molecular weight has an upper limit of 3,000,000 g/mole.

12. The composition of claim 1 wherein the weight average molecular weight has an upper limit of 2,000,000 g/mole.

13. The composition of claim 1 wherein the weight average molecular weight has an upper limit of 950,000 g/mole.

14. The composition of claim 1 wherein the weight average molecular weight has an upper limit of 800,000 g/mole.

15. The composition of claim 1 wherein the weight average molecular weight has a lower limit of 50,000 g/mole.

16. A method of treating a subterranean formation, comprising:

providing an oilfield application fluid comprising the phosphonated polysaccharide composition of claim 1 ; and

introducing the oilfield application fluid into a wellbore penetrating the subterranean formation.

17. The method of claim 16 wherein the step of introducing the oilfield application fluid into the wellbore penetrating the subterranean formation comprises introducing the oilfield application fluid at a pressure sufficient to create, expand or sustain a fracture in the subterranean formation.

18. The method of claim 16 wherein the oilfield application fluid further comprises one or more surfactants, one or more scale inhibitors, one or more stabilizers or any combination of the foregoing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2016
From: TIMBART, LAURIANNE; LIZARRAGA, GILDA; WOODWARD, GARY; KESAVAN, SUBRAMANIAN; WILSON, DAVID JAMES
To: RHODIA OPERATIONS
Reel/Frame 039001/0775 →
Continuity (2)
Provisional Application 62173437 · Jun 10, 2015
Related Publication 20160362502A1 · Dec 15, 2016