IP Library Granted Patent US 11,287,183
Granted Patent B2
US 11,287,183 · App. 15/496,644 · Granted Mar 29, 2022

Method and plant for the purification of carbon dioxide using liquid carbon dioxide

Inventor: Rasmus Find (Vejle, DK)
Assignee: UNION ENGINEEERING A/S
F25J3/08B01D1/28B01D3/007B01D3/106B01D53/002B01D53/1418B01D53/1493F25J3/0204B01D2256/22B01D2257/102B01D2257/30B01D2257/40B01D2257/402B01D2257/702B01D2257/704F25J2200/02F25J2205/40F25J2210/80F25J2215/80F25J2220/84F25J2250/00Y02C20/10Y02P70/10
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Quick Facts
Patent No.
US 11,287,183
App. No.
15/496,644
Granted
Mar 29, 2022
Kind
B2
Abstract

The present invention relates to an improved method for removing contaminants from a gaseous stream substantially comprising carbon dioxide. More specifically, the method comprises the step of subjecting the gaseous stream to an absorption step in which the absorbent is liquid carbon dioxide wherein the waste of carbon dioxide is minimized by utilizing a compressing means for generating a pressure difference between two streams in a reboiler.

Claims (45)

1. A carbon dioxide purification system, comprising:

a purification column having a top with an outlet and a bottom;

a reboiler in fluid communication with the outlet of the top of the purification column via a first pathway consisting of one or more pipes that carry a contaminant lean gaseous stream;

a compressor in fluid communication with the reboiler and the purification column, wherein the compressor is provided downstream of the reboiler;

a depressurizing valve in fluid communication with the bottom of the purification column and the reboiler; and

a product line in fluid communication with the reboiler.

2. The carbon dioxide purification system of claim 1 , the purification column defining:

a bottom outlet at the bottom;

a feed inlet between the top and the bottom; and

a compression inlet between the feed inlet and the bottom.

3. The carbon dioxide purification system of claim 2 , wherein:

the compressor is in fluid communication with the purification column via the compression inlet; and

the depressurizing valve is in fluid communication with the bottom of the purification column via the bottom outlet.

4. The carbon dioxide purification system of claim 1 , wherein the depressurizing valve is in fluid communication with the compressor via the reboiler.

5. The carbon dioxide purification system of claim 1 , wherein the purification column is in fluid communication with the product line via the reboiler.

6. The carbon dioxide purification system of claim 1 , wherein the reboiler defines a first fluid flow path and a second fluid flow path, the first and second fluid flow paths being fluidly isolated from one another.

7. The carbon dioxide purification system of claim 6 , wherein the first and second fluid flow paths are arranged to exchange heat with one another.

8. The carbon dioxide purification system of claim 6 , wherein

the top of the purification column and the product line are in fluid communication with the first fluid flow path; and

the depressurizing valve and the compressor are in fluid communication with the second flow path.

9. The carbon dioxide purification system of claim 8 , wherein fluid from a bottom cools fluid from the top in the reboiler.

10. The carbon dioxide purification system of claim 1 , wherein the depressurizing valve is provided upstream of the reboiler.

11. A carbon dioxide purification system, consisting essentially of:

a reboiler;

a purification column having a top and a bottom;

a compressor;

a product line;

a plurality of pipes; and

optionally, one or more pumps, valves and combinations thereof;

wherein a first fluid flow path consists essentially of the purification column, the reboiler, pipes and, optionally, the one or more pumps, valves and combinations thereof and a second fluid flow path consists essentially of the purification column, the reboiler, the compressor, pipes and, optionally, the one or more pumps, valves and combinations thereof,

wherein the top of the purification column is in fluid communication with the first fluid flow path and the bottom of the purification column is in fluid communication with the second fluid flow path,

wherein the compressor is downstream of the reboiler, and

wherein the first and second fluid flow paths are fluidly isolated from each other and in a heat exchange relationship with each other.

12. The carbon dioxide purification system of claim 11 , wherein the purification column defines

a feed inlet between the top and the bottom; and

a compression inlet between the feed inlet and the bottom.

13. The carbon dioxide purification system of claim 11 , wherein the compressor is designed to produce a pressure differential between the purification column and the reboiler.

14. The carbon dioxide purification system of claim 13 , wherein a first fluid pressure in the purification column is greater than a second fluid pressure in the second fluid flow path.

15. The carbon dioxide purification system of claim 14 , wherein the compressor acts to draw fluid from the bottom through the second flow path.

16. The carbon dioxide purification system of claim 11 , wherein fluid in the second flow path cools fluid in the first flow path.

17. A method for producing purified carbon dioxide, the method comprising:

feeding a first unpurified stream of carbon dioxide into a purification column having a top and a bottom;

circulating a second unpurified stream of carbon dioxide from the bottom through a first fluid flow path consisting of the purification column, a reboiler heat exchanger, a compressor, pipes, and, optionally, one or more pumps, valves, and combinations thereof, wherein the compressor is downstream of the reboiler; and

passing a purified stream of carbon dioxide from the top through a second fluid flow path consisting of the purification column, the reboiler heat exchanger, pipes, and, optionally, one or more pumps, valves, and combinations thereof, wherein the first and second fluid flow paths are fluidly isolated from one another and exchange heat with one another;

wherein circulating the second unpurified stream of carbon dioxide from the bottom through the first fluid flow path of the reboiler heat exchanger comprises compressing the second unpurified stream of carbon dioxide downstream of the reboiler heat exchanger.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2017
From: FIND, RASMUS
To: UNION ENGINEERING A/S
Reel/Frame 042847/0841 →
Continuity (2)
Continuation 13703660
Related Publication 20170227285A1 · Aug 10, 2017