IP Library Granted Patent US 11,701,616
Granted Patent B2
US 11,701,616 · App. 17/726,434 · Granted Jul 18, 2023

Sorbent emitter for direct air capture of carbon dioxide

Inventor: James George Purnell Dehlsen (Warkworth, NZ)
Assignee: DEHLSEN ASSOCIATES OF THE PACIFIC LIMITED
B01D61/08B01D53/1475B01D53/1493B01D53/185B01D61/025B01D61/026B01D61/10B01D63/06B63B1/048B63B43/06B63B75/00B63B77/00B01D2251/304B01D2251/604B01D2313/06B01D2313/20B01D2313/54B01D2313/56B01D2315/06B01D2317/04B01D2317/06B63B1/107B63B39/03B63B2001/044B63B2035/442B63B2043/047C02F2103/08C02F2201/007C02F2201/008C02F2303/10C02F2307/00
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Quick Facts
Patent No.
US 11,701,616
App. No.
17/726,434
Filed
Apr 21, 2022
Granted
Jul 18, 2023
Kind
B2
Art Unit
1777
USPC
210/170.05
Abstract

An emitter apparatus is mounted on a marine structure powered by wind or marine hydrokinetic energy to disperse a carbon dioxide sorbent such as sodium hydroxide. The sorbent can be generated by reverse osmosis of seawater with electrolysis of the brine, or delivered from an external supply. Suitable marine structures include offshore wind turbines, marine hydrokinetic generators, offshore oil platforms, merchant vessels, and other fixed and mobile structures. Effective capture is made by dispersing a fine mist or fog of aqueous sorbent from nozzles with a particle size from a nozzle of less than 100 microns. The sorbent reacts with atmospheric carbon dioxide forming carbonates and bicarbonates, which drift and fall to the ocean surface, reducing surface acidity and capturing additional atmospheric carbon dioxide via absorption at the local ocean surface. The resulting carbonates sink to the ocean floor and are there sequestered.

Claims (26)

1. A carbon dioxide sorbent emitter system comprising:

a sorbent emitter apparatus comprising

a hub; and

a plurality of spokes, wherein each one of the plurality of spokes is paired with an aerodynamic foil, each of the aerodynamic foils comprising a plurality of carbon dioxide sorbent emitting nozzles; and

an offshore platform supporting the sorbent emitter apparatus above a marine surface.

2. The sorbent emitter system of claim 1 , wherein the sorbent emitter apparatus further comprises a rim coupled to the plurality of spokes.

3. The sorbent emitter system of claim 1 , wherein the offshore platform comprises a wind turbine generator or marine hydrokinetic energy generator, and a desalination system, wherein the wind turbine generator or marine hydrokinetic energy generator powers the desalination system, and the desalination system produces brine for processing into the carbon dioxide sorbent on the offshore platform.

4. The sorbent emitter system of claim 3 , wherein the carbon dioxide sorbent is sodium hydroxide and emitted from the plurality of sorbent emitting nozzles.

5. The sorbent emitter system of claim 3 , wherein the sorbent emitter apparatus is mounted to the wind turbine generator.

6. The sorbent emitter system of claim 1 , wherein the hub and the plurality of spokes rotate about a horizontal axis.

7. The sorbent emitter system of claim 6 , wherein the plurality of spokes rotate about an axis perpendicular to the hub axis.

8. The sorbent emitter system of claim 1 , wherein a pitch of each of the aerodynamic foils is adjustable.

9. The sorbent emitter system of claim 1 , wherein each of the aerodynamic foils comprises a carbon dioxide sorbent feeder tube and an air feeder tube to each nozzle, and the hub comprises a swivel tube connectors to the carbon dioxide sorbent feeder tube of each aerodynamic foil.

10. The sorbent emitter system of claim 1 , wherein a size of the plurality of the carbon dioxide sorbent emitting nozzles is adjustable.

11. The sorbent emitter system of claim 1 , wherein the offshore platform is a ship or oil drilling platform.

12. A method of dispersing carbon dioxide sorbent in a marine environment to remove and sequester atmospheric carbon dioxide, the method comprising the steps of:

coupling a carbon dioxide sorbent emitter apparatus to an offshore platform, wherein the carbon dioxide sorbent emitter apparatus comprises a hub, a plurality of spokes, wherein each one of the plurality of spokes includes an aerodynamic foil, each of the aerodynamic foils comprising a plurality of carbon dioxide sorbent emitting nozzles, and the offshore platform supports the sorbent emitter apparatus above a marine surface; and

dispersing carbon dioxide sorbent through the plurality of carbon dioxide sorbent emitting nozzles.

13. The method of claim 12 , wherein the offshore platform comprises a wind turbine generator or marine hydrokinetic energy generator and a desalination system, and the method further comprises processing brine from the desalination system into the carbon dioxide sorbent.

14. The method of claim 12 further comprising the step of rotating the hub and the plurality of spokes about a horizontal axis.

15. The method of claim 12 further comprising the step of rotating the plurality of spokes about an axis perpendicular to the hub axis.

16. The method of claim 12 further comprising the step of adjusting a pitch of each of the aerodynamic foils.

17. The method of claim 12 further comprising the step of adjusting a size of the plurality of the carbon dioxide sorbent emitting nozzles.

18. The method of claim 12 , wherein the offshore platform is a ship or oil drilling platform.

19. The method of claim 12 , wherein the carbon dioxide sorbent is delivered by pipeline or transport vessel to the offshore platform.

20. The method of claim 13 , wherein the plurality of carbon dioxide sorbet emitting nozzles disperse the carbon dioxide sorbent into a vortex wake of a rotor of the wind turbine generator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2022
From: DEHLSEN, JAMES GEORGE PURNELL
To: DEHLSEN ASSOCIATES OF THE PACIFIC LIMITED
Reel/Frame 060812/0963 →
Continuity (5)
Continuation In Part 17391884 · Aug 2, 2021
Continuation In Part 17163295 · Jan 29, 2021
Continuation In Part 17087309 · Nov 2, 2020
Division 16129783 · Sep 12, 2018
Related Publication 20220241727A1 · Aug 4, 2022
Cited By (1)
US 12,697,585