IP Library Granted Patent US 10,969,169
Granted Patent B2
US 10,969,169 · App. 16/035,564 · Granted Apr 6, 2021

Method of separating components of a gas

Inventors: Larry Baxter (Orem, UT); Chris Hoeger (Provo, UT); Jacom Chamberlain (Provo, UT); Kyler Stitt (Lindon, UT)
Assignee: Sustainable Energy Solutions, Inc.
F25J3/08F25J2205/02F25J2205/20F25J2205/30F25J2210/60F25J2215/04F25J2220/68F25J2245/02
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Quick Facts
Patent No.
US 10,969,169
App. No.
16/035,564
Granted
Apr 6, 2021
Kind
B2
Abstract

A method is disclosed for separating components of a gas. A feed gas stream is passed into a vessel. The feed gas stream includes methane, carbon dioxide, and water. The feed gas stream is cooled in the vessel such that a portion of the methane and a portion of the carbon dioxide condense and a portion of the water desublimates, resulting in a product stream and a depleted gas stream exiting the vessel.

Claims (30)

1. A method for separating components of a gas comprising:

passing a feed gas stream into a vessel, wherein the feed gas stream comprises methane, carbon dioxide, and water;

cooling the feed gas stream in the vessel such that a portion of the methane, a first portion of the carbon dioxide, and a first portion of the water condense, resulting in a product stream and a depleted gas stream exiting the vessel;

wherein the vessel is a direct-contact exchanger that provides cooling by contact with a contact liquid stream;

separating the product stream into a solids product stream and a mixed contact liquid stream;

separating the contact liquid stream from the mixed contact liquid stream, resulting in a liquid product stream; and

separating the liquid product stream into a methane stream and a carbon dioxide stream.

2. The method of claim 1 , wherein the feed gas stream further comprises a secondary component selected from the group consisting of NGLs, nitrogen, argon, hydrogen sulfide, mercaptans, hydrogen, and combinations thereof.

3. The method of claim 2 , wherein the NGLs comprise ethane, propane, butane, isobutane, pentane, natural gasoline, cyclic hydrocarbons, aromatic hydrocarbons, or a combination thereof.

4. The method of claim 2 , wherein passing the feed gas stream into the vessel further comprises pressurizing the feed gas stream before the vessel.

5. The method of claim 2 , wherein cooling the fed gas stream condenses a portion of the secondary component into the product stream, desublimates a portion of the secondary component into the product stream, or a combination thereof.

6. The method of claim 5 , wherein cooling the feed gas stream causes at least a portion of the first portion of the carbon dioxide in the product stream to solidify to a solid carbon dioxide product stream.

7. The method of claim 5 , wherein cooling the feed gas stream desublimates a second portion of the carbon dioxide and a second portion of the water as a solid product stream.

8. The method of claim 5 , wherein cooling the feed gas stream causes a second portion of the carbon dioxide to absorb into the product stream.

9. The method of claim 1 , wherein the contact liquid stream comprises a mixture of a solvent and an ionic compound, the solvent selected from the group consisting of water, hydrocarbons, liquid ammonia, liquid carbon dioxide, cryogenic liquids and combinations thereof, and the ionic compound selected from the group consisting of potassium carbonate, potassium formate, potassium acetate, calcium magnesium acetate, magnesium chloride, sodium chloride, lithium chloride, calcium chloride and combinations thereof.

10. The method of claim 1 , wherein the contact liquid stream comprises a mixture of a solvent and a soluble organic compound, the solvent selected from the group consisting of water, hydrocarbons, liquid ammonia, liquid carbon dioxide, cryogenic liquids, or a combination thereof, and the soluble organic compound selected from the group consisting of glycerol, ammonia, propylene glycol, ethylene glycol, ethanol, methanol, or a combination thereof.

11. The method of claim 1 , wherein the contact liquid stream is selected from the group consisting of ethers, alcohols, hydrocarbons, liquid ammonia, liquid carbon dioxide, cryogenic liquids, and combinations thereof.

12. The method of claim 11 , wherein the alcohols are selected from the group consisting of methanol, ethanol, n-propanol, isopropanol, n-butanol, isobutanol, and combinations thereof.

13. The method of claim 1 , wherein the contact liquid stream is at least partially immiscible with the methane such that the contact liquid stream and the methane form two liquid phases and the carbon dioxide partitions between the two phases.

14. The method of claim 13 , further comprising separating the two phases.

15. A method for separating components of a gas comprising:

passing a feed gas stream into a vessel, wherein the feed gas stream comprises methane, carbon dioxide, and water;

cooling the feed gas stream in the vessel such that a portion of the methane, a first portion of the carbon dioxide, and a first portion of the water condense, resulting in a product stream and a depleted gas stream exiting the vessel;

wherein the vessel is a direct-contact exchanger that provides cooling by contact with a contact liquid stream; and

wherein the contact liquid stream comprises a mixture of a solvent and a soluble organic compound, the solvent selected from the group consisting of water, hydrocarbons, liquid ammonia, liquid carbon dioxide, cryogenic liquids, or a combination thereof, and the soluble organic compound selected from the group consisting of glycerol, ammonia, propylene glycol, ethylene glycol, ethanol, methanol, or a combination thereof.

16. A method for separating components of a gas comprising:

passing a feed gas stream into a vessel, wherein the feed gas stream comprises methane, carbon dioxide, and water;

cooling the feed gas stream in the vessel such that a portion of the methane, a first portion of the carbon dioxide, and a first portion of the water condense, resulting in a product stream and a depleted gas stream exiting the vessel;

wherein the vessel is a direct-contact exchanger that provides cooling by contact with a contact liquid stream; and

wherein the contact liquid stream is an alcohol selected from the group consisting of methanol, ethanol, n-propanol, isopropanol, n-butanol, isobutanol, and combinations thereof.

Assignments (8)
PATENT CONFIRMATORY GRANT Recorded Dec 28, 2022
From: SUSTAINABLE ENERGY SOLUTIONS, INC.
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION
Reel/Frame 062231/0950 →
SECURITY INTEREST Recorded Oct 18, 2021
From: SUSTAINABLE ENERGY SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 057840/0920 →
CHANGE OF NAME Recorded Dec 21, 2020
From: SUSTAINABLE ENERGY SOLUTIONS, LLC
To: SUSTAINABLE ENERGY SOLUTIONS, INC.
Reel/Frame 054812/0649 →
CONFIRMATORY LICENSE Recorded Apr 15, 2020
From: SUSTAINABLE ENERGY SOLUTIONS, LLC
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 052400/0604 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2018
From: BAXTER, LARRY
To: SUSTAINABLE ENERGY SOLUTIONS, LLC
Reel/Frame 047827/0202 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2018
From: HOEGER, CHRIS
To: SUSTAINABLE ENERGY SOLUTIONS, LLC
Reel/Frame 047767/0124 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2018
From: STITT, KYLER
To: SUSTAINABLE ENERGY SOLUTIONS, LLC
Reel/Frame 047765/0790 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2018
From: CHAMBERLAIN, JACOM
To: SUSTAINABLE ENERGY SOLUTIONS, LLC
Reel/Frame 047748/0888 →
Continuity (1)
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