IP Library Granted Patent US 10,414,970
Granted Patent B2
US 10,414,970 · App. 14/493,349 · Granted Sep 17, 2019

Smart polymer flooding process

Inventors: Yousef Tamsilian (Tehran, IR); Ahmad Ramazani Saadatabadi (Tehran, IR)
C09K8/584C09K8/588C09K2208/10
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Quick Facts
Patent No.
US 10,414,970
App. No.
14/493,349
Granted
Sep 17, 2019
Kind
B2
Abstract

Design and preparation of a smart system, including a hydrophilic polymer nanoparticle as a core material and a hydrophilic-hydrophobic block copolymer as a coating nanolayer for use in a smart core-shell nanostructure flooding during enhanced oil recovery (EOR) process. The hydrophilic polymers are prepared by an inverse emulsion method. The central core of this nanostructure includes hydrophilic polymer. The nanolayer can be a surfmer. The binary properties of the shell and hydrophilic polymers increase the water viscosity in the water-oil interface and enhance oil recovery.

Claims (34)

1. A smart polymeric core-shell nanostructure comprising:

a core including a hydrophilic polymer nanoparticle, including hydrophilic polymeric chains with high molecular weight, the high molecular weight being weights between 5 million Dalton and 6.4 million Dalton; and

a coating shell around and chemically grafted to the hydrophilic polymeric chains, wherein:

the coating shell includes a hydrophilic portion and a hydrophobic portion.

2. The smart polymeric core-shell nanostructure according to claim 1 , wherein the hydrophilic polymer nanoparticle including the hydrophilic polymeric chains with the high molecular weight between 5 million Dalton and 6.4 million Dalton is structured to increase the viscosity of a water phase through an oil recovery process.

3. The smart polymeric core-shell nanostructure according to claim 2 , wherein the hydrophilic polymeric chains with high molecular weight include acrylamide-based polymers.

4. The smart polymeric core-shell nanostructure according to claim 1 , wherein the hydrophilic portion of the coating shell covers directly upon the hydrophilic polymer nanoparticle and is chemically grafted to the hydrophilic polymer nanoparticle.

5. The smart polymeric core-shell according to claim 1 , wherein the hydrophobic portion of the coating shell is atop at least one hydrophilic layer over the hydrophilic polymer nanoparticle.

6. The smart polymeric core-shell nanostructure according to claim 1 , wherein:

the hydrophobic portion of the coating shell includes hydrophobic tails,

the hydrophilic polymeric chains are structured to penetrate into a water phase and the hydrophobic tails are structured to penetrate into an oil phase through an oil recovery process after a pre-defined time, and to release the hydrophilic polymer nanoparticle in the water phase.

7. The smart polymeric core-shell nanostructure according to claim 6 , wherein the pre-defined time is defined through a synthesis process of the smart polymeric core-shell nanostructure.

8. The smart polymeric core-shell nanostructure according to claim 6 , wherein the hydrophilic polymer nanoparticle released in the water phase increases the viscosity of the water phase through an oil recovery process.

9. The smart polymeric core-shell nanostructure according to claim 6 , wherein the coating shell is structured to diffuse bilaterally in an interface between the oil phase and the water phase, in a manner that increases a local viscosity of the interface and then releases the hydrophilic polymer nanoparticle in the water phase through an oil recovery process.

10. The smart polymeric core-shell nanostructure according to claim 9 , wherein the interface between the oil phase and the water phase includes an oil-water interface or a water-oil interface.

11. The smart polymeric core-shell nanostructure according to claim 8 , wherein an aqueous solution of the smart polymeric core-shell nanostructure increases the viscosity of water, whereby oil contacted with the smart polymeric core-shell nanostructure is pushed to production wells through the oil recovery process.

12. The smart polymeric core-shell nanostructure according to claim 2 , wherein the hydrophilic polymer nanoparticle includes polyacrylamide.

13. The smart polymeric core-shell nanostructure according to claim 1 , wherein the coating shell includes a plurality of surfmers.

14. The smart polymeric core-shell nanostructure according to claim 1 , wherein the surfactant includes sodiumdodecylsulfate (SDS).

15. The smart polymeric core-shell nanostructure according to claim 14 , wherein the hydrophobic monomer includes styrene.

16. A smart polymeric core-shell nanostructure comprising:

a core including a hydrophilic polymer nanoparticle, and

a coating shell around the hydrophilic polymer nanoparticle, wherein the coating shell includes a layer with hydrophilic-hydrophobic binary properties, and wherein:

the coating shell includes a plurality of surfmers,

the plurality of surfmers is synthesized by binding a surfactant and a hydrophobic monomer, and

the surfactant includes sodiumdodecylsulfate (SDS).

17. The smart polymeric core-shell nanostructure according to claim 1 , wherein the coating shell includes a plurality of block copolymers, and wherein

the plurality of block copolymers include a copolymer of a hydrophilic polymer and a hydrophobic polymer.

18. The smart polymeric core-shell nanostructure according to claim 1 , wherein the coating shell includes:

a plurality of hydrophilic chains, the plurality of hydrophilic chains being chemically grafted to the hydrophilic polymeric chains of the core; and

a plurality of hydrophobic tails, the plurality of hydrophobic tails forming the outer layer of the coating shell.

19. The smart polymeric core-shell nanostructure according to claim 1 , wherein the coating shell includes:

a hydrophobic portion and a hydrophilic portion, and

the hydrophobic portion forms an external portion of the coating shell, farther from the core than the hydrophilic portion.

Continuity (2)
Provisional Application 61880989 · Sep 23, 2013
Related Publication 20150148269A1 · May 28, 2015