IP Library Granted Patent US 10,519,359
Granted Patent B2
US 10,519,359 · App. 16/230,246 · Granted Dec 31, 2019

Capsule design for the capture of reagents

Inventor: Elizabeth Q. Contreras (Houston, TX)
Assignee: SAUDI ARABIAN OIL COMPANY
C09K8/467C04B20/023C04B20/1037C04B28/02C04B28/04C04B40/0046C09K8/493C04B14/28C04B14/308C04B16/0625C04B16/0641C04B16/0666C04B16/0683C04B16/0691C04B22/002C04B2103/0006C04B2103/0014C04B2103/0058C04B2103/0068C04B2103/0086C04B2111/00034C09K2208/20
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Quick Facts
Patent No.
US 10,519,359
App. No.
16/230,246
Granted
Dec 31, 2019
Kind
B2
Abstract

A method of using a gas control additive to provide gas migration control in a wellbore includes the steps of mixing the gas control additive with a cement to form a cement slurry, where the gas control additive includes a semi-permeable membrane and a scrubbing agent, such that the semi-permeable membrane forms a shell around a core such that the scrubbing agent is in the core, introducing the cement slurry to the wellbore, and reacting the scrubbing agent with an antagonistic gas to produce a helper byproduct, where the antagonistic gas migrates from a hydrocarbon-bearing formation into the wellbore and permeates through the semi-permeable membrane to the core of the gas control additive.

Claims (20)

1. A method of using a gas control additive to provide gas migration control in a wellbore, the method comprising the steps of:

mixing the gas control additive with a cement to form a cement slurry, where the gas control additive comprises a semi-permeable membrane and a scrubbing agent, such that the semi-permeable membrane forms a shell around a core such that the scrubbing agent is in the core;

introducing the cement slurry into the wellbore; and

reacting the scrubbing agent with an antagonistic gas to produce a helper byproduct, where the antagonistic gas migrates from a hydrocarbon-bearing formation into the wellbore and permeates through the semi-permeable membrane to the core of the gas control additive,

where the scrubbing agent is selected from the group consisting of: iron (III) oxide, calcium hydroxide, and combinations of the same.

2. A method of using a gas control additive to provide gas migration control in a wellbore, the method comprising the steps of:

mixing the gas control additive with a cement to form a cement slurry, where the gas control additive comprises a semi-permeable membrane and a scrubbing agent, such that the semi-permeable membrane forms a shell around a core such that the scrubbing agent is in the core;

introducing the cement slurry into the wellbore; and

reacting the scrubbing agent with an antagonistic gas to produce a helper byproduct, where the antagonistic gas migrates from a hydrocarbon-bearing formation into the wellbore and permeates through the semi-permeable membrane to the core of the gas control additive,

where the helper byproduct is selected from the group consisting of: water, calcium carbonate, and combinations of the same.

3. A method of using a gas control additive to provide gas migration control in a wellbore, the method comprising the steps of:

mixing the gas control additive with a cement to form a cement slurry, where the gas control additive comprises a semi-permeable membrane and a scrubbing agent, such that the semi-permeable membrane forms a shell around a core such that the scrubbing agent is in the core;

introducing the cement slurry into the wellbore; and

reacting the scrubbing agent with an antagonistic gas to produce a helper byproduct, where the antagonistic gas migrates from a hydrocarbon-bearing formation into the wellbore and permeates through the semi-permeable membrane to the core of the gas control additive,

where the helper byproduct permeates through the semi-permeable membrane from the core.

4. A method of using a gas control additive to provide gas migration control in a wellbore, the method comprising the steps of:

mixing the gas control additive with a cement to form a cement slurry, where the gas control additive comprises a semi-permeable membrane and a scrubbing agent, such that the semi-permeable membrane forms a shell around a core such that the scrubbing agent is in the core;

introducing the cement slurry into the wellbore; and

reacting the scrubbing agent with an antagonistic gas to produce a helper byproduct, where the antagonistic gas migrates from a hydrocarbon-bearing formation into the wellbore and permeates through the semi-permeable membrane to the core of the gas control additive,

where in the reacting step, a solid product is produced, where the semi-permeable membrane prevents the solid product from permeating through the semi-permeable membrane from the core of the gas control additive.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2019
From: ARAMCO SERVICES COMPANY
To: SAUDI ARABIAN OIL COMPANY
Reel/Frame 048647/0247 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2018
From: CONTRERAS, ELIZABETH Q.
To: ARAMCO SERVICES COMPANY
Reel/Frame 047845/0047 →
Continuity (2)
Provisional Application 62612751 · Jan 2, 2018
Related Publication 20190203098A1 · Jul 4, 2019