IP Library Granted Patent US 12,474,115
Granted Patent B2
US 12,474,115 · App. 17/402,158 · Granted Nov 18, 2025

Carbon dioxide recycle stream processing with ethylene glycol dehydrating in an enhanced oil recovery process

Inventors: Eric Prim (Spring, TX); Mark Mathias (The Woodlands, TX)
Assignee: Pilot Intellectual Property, LLC
F25J3/0204C10L3/104F25J3/0209F25J3/0233F25J3/0242F25J3/0266F25J3/044F25J2200/02F25J2200/74F25J2205/04F25J2215/04F25J2215/80F25J2220/02F25J2220/64F25J2220/66F25J2220/68F25J2260/80F25J2290/10Y02C20/40
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Quick Facts
Patent No.
US 12,474,115
App. No.
17/402,158
Granted
Nov 18, 2025
Kind
B2
Abstract

A set of process equipment for use in an enhanced oil recovery (EOR) process comprises first piping, a dehydrator, second piping, and a natural gas liquids recovery column. The first piping is configured to receive a wet carbon dioxide recycle stream from a recovery well. The dehydrator is configured to receive the wet carbon dioxide stream from the first piping and configured to dehydrate the wet carbon dioxide recycle stream using ethylene glycol to produce a dry carbon dioxide recycle stream. The second piping is configured to receive the dry carbon dioxide recycle stream from the dehydrator. The natural gas liquids recovery column is configured to receive the dry carbon dioxide recycle stream from the second piping and configured to separate the dry carbon dioxide recycle stream into a carbon dioxide reinjection stream and a natural gas liquids stream.

Claims (31)

1 . A set of process equipment for use in an enhanced oil recovery (EOR) process, comprising:

first piping configured to receive a wet carbon dioxide recycle stream from a recovery well, wherein the wet carbon dioxide recycle stream comprises water, carbon dioxide, methane, ethane, and C 3+ hydrocarbons;

a glycol unit configured to receive the wet carbon dioxide recycle stream from the first piping and configured to dehydrate the wet carbon dioxide recycle stream using ethylene glycol to produce a dry carbon dioxide recycle stream and a water stream, wherein the glycol unit comprises an absorber and is configured to use the ethylene glycol as a dehydration solvent to separate the water from the wet carbon dioxide recycle stream, wherein the dry carbon dioxide recycle stream comprises the carbon dioxide, the methane, the ethane, and the C 3+ hydrocarbons, wherein a mole fraction of the carbon dioxide in the dry carbon dioxide recycle stream from the glycol unit is greater than mole fractions of the methane, the ethane, and the C 3+ hydrocarbons in the dry carbon dioxide recycle stream from the glycol unit, and wherein the water stream comprises the water;

second piping configured to receive the dry carbon dioxide recycle stream from the glycol unit;

a natural gas liquids recovery column configured to receive the dry carbon dioxide recycle stream from the second piping and configured to separate the dry carbon dioxide recycle stream into a carbon dioxide reinjection stream and a natural gas liquids stream, wherein the carbon dioxide reinjection stream comprises the carbon dioxide, the methane, and the ethane, and wherein the natural gas liquids stream comprises the C 3+ hydrocarbons;

third piping configured to receive the carbon dioxide reinjection stream from the natural gas liquids recovery column and configured to transfer the carbon dioxide reinjection stream to a reinjection well.

2 . The set of process equipment of claim 1 , further comprising fourth piping configured to receive the water exiting from the glycol unit.

3 . The set of process equipment of claim 2 , wherein the fourth piping is configured to transfer the water to storage.

4 . The set of process equipment of claim 2 , wherein the fourth piping is configured to transfer the water to be discarded.

5 . The set of process equipment of claim 2 , wherein the fourth piping is configured to transfer the water to be reused.

6 . An enhanced oil recovery (EOR) process, comprising:

receiving a wet carbon dioxide recycle stream from a recovery well, wherein the wet carbon dioxide recycle stream comprises water, carbon dioxide, methane, ethane, and C 3+ hydrocarbons;

dehydrating, by a glycol unit, the wet carbon dioxide recycle stream using ethylene glycol to produce a dry carbon dioxide recycle stream and a water stream, wherein the glycol unit comprises an absorber and is configured to use the ethylene glycol as a dehydration solvent to separate the water from the wet carbon dioxide recycle stream, wherein the dry carbon dioxide recycle stream comprises the carbon dioxide, the methane, the ethane, and the C 3+ hydrocarbons, wherein a mole fraction of the carbon dioxide in the dry carbon dioxide recycle stream from the glycol unit is greater than mole fractions of the methane, the ethane, and the C 3+ hydrocarbons in the dry carbon dioxide recycle stream from the glycol unit, and wherein the water stream comprises the water;

separating the dry carbon dioxide recycle stream into a carbon dioxide reinjection stream and a natural gas liquids stream, wherein the carbon dioxide reinjection stream comprises the carbon dioxide, the methane, and the ethane, and wherein the natural gas liquids stream comprises the C 3+ hydrocarbons;

transferring the carbon dioxide reinjection stream to a reinjection well.

7 . The EOR process of claim 6 , wherein dehydrating the wet carbon dioxide recycle stream using the ethylene glycol comprises transferring the water produced from the dehydrating to storage.

8 . The EOR process of claim 6 , wherein dehydrating the wet carbon dioxide recycle stream using the ethylene glycol comprises transferring the water produced from the dehydrating to be discarded.

9 . The EOR process of claim 6 , wherein dehydrating the wet carbon dioxide recycle stream using the ethylene glycol comprises transferring the water produce from the dehydrating to be reused.

10 . A set of process equipment for use in an enhanced oil recovery (EOR) process, comprising:

a glycol unit configured to receive a wet carbon dioxide recycle stream from a recovery well and dehydrate the wet carbon dioxide recycle stream using ethylene glycol to produce a dry carbon dioxide recycle stream and a water stream, wherein the glycol unit comprises an absorber and is configured to use the ethylene glycol as a dehydration solvent to separate water from the wet carbon dioxide recycle stream, wherein the wet carbon dioxide recycle stream comprises water, carbon dioxide, methane, ethane, and C 3+ hydrocarbons, wherein the dry carbon dioxide recycle stream comprises the carbon dioxide, the methane, the ethane, and the C 3+ hydrocarbons, wherein a mole fraction of the carbon dioxide in the dry carbon dioxide recycle stream from the glycol unit is greater than mole fractions of the methane, the ethane, and the C 3+ hydrocarbons in the dry carbon dioxide recycle stream from the glycol unit, and wherein the water stream comprises the water; and

a natural gas liquids recovery column configured to receive the dry carbon dioxide recycle stream from the glycol unit and configured to separate the dry carbon dioxide recycle stream into a carbon dioxide reinjection stream and a natural gas liquids stream, wherein the carbon dioxide reinjection stream comprises the carbon dioxide, the methane, and the ethane, and wherein the natural gas liquids stream comprises the C 3+ hydrocarbons.

11 . The set of process equipment of claim 10 , wherein the glycol unit is configured to transfer the water stream to storage, to be discarded, or to be reused.

12 . The set of process equipment of claim 1 , wherein the C 3+ hydrocarbons comprise C 3 -C 8 hydrocarbons.

13 . The set of process equipment of claim 1 , wherein the ethylene glycol comprises diethylene glycol (DEG).

14 . The set of process equipment of claim 1 , wherein the ethylene glycol comprises triethylene glycol (TEG).

15 . The set of process equipment of claim 1 , wherein the ethylene glycol comprises tetraethylene glycol (TREG).

16 . The EOR process of claim 6 , wherein the C 3+ hydrocarbons comprise C 3 -C 8 hydrocarbons.

17 . The set of process equipment of claim 10 , wherein the C 3+ hydrocarbons natural gas liquids comprise C 3 -C 8 hydrocarbons.

18 . The set of process equipment of claim 1 , wherein the dry carbon dioxide recycle stream comprises less than about 5 percent water.

19 . The set of process equipment of claim 1 , wherein the mole fraction of the carbon dioxide in the dry carbon dioxide recycle stream is greater than 0.65.

20 . The set of process equipment of claim 1 , wherein the water in the wet carbon dioxide recycle stream comprises liquid water and water vapor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2024
From: PILOT ENERGY SOLUTIONS, LLC
To: PILOT INTELLECTUAL PROPERTY, LLC
Reel/Frame 066533/0367 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2021
From: PRIM, ERIC; MATHIAS, MARK
To: PILOT ENERGY SOLUTIONS, LLC
Reel/Frame 057919/0261 →
Continuity (8)
Continuation 16733982 · Jan 3, 2020
Continuation 15666339 · Aug 1, 2017
Continuation 13946773 · Jul 19, 2013
Continuation In Part 12122336 · May 16, 2008
Provisional Application 61823047 · May 14, 2013
Provisional Application 61730696 · Nov 28, 2012
Provisional Application 60938726 · May 18, 2007
Related Publication 20210381759A1 · Dec 9, 2021
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