IP Library › Granted Patent US 9,103,584
Granted Patent B2
US 9,103,584 · App. 14/053,127 · Granted Aug 11, 2015

Carbon dioxide capture and liquefaction

Inventor: Arnold Keller (Henderson, NV)
F25J1/0027C01B3/501C01B3/506C01B3/52C10K1/005C10K1/165C10L3/104F25J3/0209F25J3/0223F25J3/0252F25J3/0266C01B2203/04C01B2203/0405C01B2203/0415C01B2203/0475C10G2300/1025C10G2300/44C10K1/002C10K1/004C10K3/04F25J2200/02F25J2200/74F25J2205/04F25J2205/20F25J2205/24F25J2205/40F25J2205/50F25J2205/60F25J2210/04F25J2210/70F25J2215/04F25J2220/82F25J2220/84F25J2235/80F25J2245/02F25J2270/60F25J2270/90F25J2280/30F25J2290/34Y02C10/12
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,103,584
App. No.
14/053,127
Granted
Aug 11, 2015
Kind
B2
Abstract

An energy-efficient method of recovering carbon dioxide (CO 2 ) in a liquid state from a high-pressure gas stream is provided. The method includes cooling, condensing, and/or separating CO 2 from a high-pressure gas stream and further purifying the resulting liquid CO 2 in a purification zone to thereby provide a purified CO 2 product. The purified liquid CO 2 product may then be pumped to a higher pressure for further utilization and/or sequestration for industrial or environmental purposes.

Claims (36)

1. A method of recovering carbon dioxide (CO 2 ) in a liquid state from a high-pressure gas stream, said method comprising:

(a) introducing a high-pressure feed gas stream comprising CO 2 into an enrichment zone;

(b) increasing the concentration of CO 2 in said high-pressure feed gas stream introduced into said enrichment zone to thereby provide a CO 2 -enriched feed gas stream, wherein said increasing includes at least one of the following steps (i) and (ii)—

(i) passing said high-pressure feed gas stream through at least one membrane separation unit to thereby provide a H 2 -enriched permeate stream and a CO 2 -enriched retentate stream, wherein said CO 2 -enriched feed gas stream comprises at least a portion of said CO 2 -enriched retentate stream, and

(ii) passing said high pressure feed gas stream through at least one compressor to thereby provide a compressed gas stream, wherein said CO 2 -enriched feed gas stream comprises at least a portion of said compressed gas stream;

(c) cooling and at least partially condensing at least a portion of said CO 2 -enriched feed gas stream via indirect heat exchange with at least one refrigerant stream to thereby provide a cooled mixed-phase CO 2 -enriched feed stream;

(d) separating at least a portion of said cooled mixed-phase CO 2 -enriched feed stream in a first separation zone to thereby provide a condensed CO 2 -rich liquid fraction and an uncondensed CO 2 -lean vapor fraction;

(e) further separating at least a portion of one or more non-CO 2 components from said condensed CO 2 -rich liquid fraction in a purification zone to thereby provide a purified CO 2 -rich liquid stream; and

(f) recovering a liquid CO 2 product stream from said purification zone, wherein said liquid CO 2 product stream comprises at least a portion of said purified CO 2 -rich liquid stream.

2. The method of claim 1 , wherein said increasing of step (b) includes both of steps (i) and (ii).

3. The method of claim 1 , wherein the pressure of said CO 2 -enriched feed gas stream is at least 350 psia.

4. The method of claim 1 , wherein said high-pressure feed gas stream further comprises at least one component selected from the group consisting of hydrogen, methane, nitrogen, CO, oxygen, and combinations thereof.

5. The method of claim 1 , wherein the pressure of said liquid CO 2 product stream recovered from said purification zone is at least 750 psia and wherein said liquid CO 2 product stream comprises at least 80 mole percent of CO 2 , based on the total moles of said liquid CO 2 product stream.

6. The method of claim 1 , wherein the pressure of condensed CO 2 -rich liquid fraction is at least 650 psia and wherein said condensed CO 2 -rich liquid fraction comprises at least 50 percent of the total amount of CO 2 present in said CO 2 -enriched feed gas stream cooled in step (c).

7. The method of claim 1 , wherein said liquid CO 2 product stream comprises at least 70 percent of the total amount of CO 2 present in said CO 2 -enriched feed gas stream.

8. A method of recovering carbon dioxide (CO 2 ) in a liquid state from a high-pressure gas stream, said method comprising:

(a) passing a high-pressure feed gas stream comprising CO 2 and at least one non-CO 2 component through a first enrichment zone to thereby provide a CO 2 -enriched feed gas stream having a higher CO 2 concentration than said high-pressure feed gas stream;

(b) cooling and partially condensing at least a portion of said CO 2 -enriched feed gas stream to thereby provide a condensed CO 2 -rich liquid fraction and an uncondensed CO 2 -lean vapor fraction;

(c) purifying at least a portion said condensed CO 2 -rich liquid fraction by distillation in a purification zone to thereby provide a purified CO 2 -rich liquid stream; and

(d) recovering a liquid CO 2 product stream from said purification zone, wherein said liquid CO 2 product stream comprises at least a portion of said purified CO 2 -rich liquid stream.

9. The method of claim 8 , wherein at least one of said CO 2 -enriched feed gas stream, said condensed CO 2 -rich liquid fraction, and said purified CO 2 -rich liquid stream has a pressure of at least 750 psia.

10. The method of claim 8 , wherein at least a portion of said cooling of step (b) is accomplished using at least a portion of said liquid CO 2 product stream.

11. The method of claim 8 , wherein said first enrichment zone comprises at least one membrane separation unit and/or at least one compressor.

12. The method of claim 8 , wherein said condensed CO 2 -rich liquid fraction comprises at least 50 percent of the total amount of CO 2 present in said CO 2 -enriched feed gas stream.

13. The method of claim 8 , wherein said recovering of step (d) includes pumping at least a portion of said purified CO 2 -rich liquid stream to a pressure at or above its critical pressure.

14. The method of claim 8 , wherein said liquid CO 2 product stream comprises at least 70 percent of the total amount of CO 2 present in said CO 2 -enriched feed gas stream.

15. A method of recovering carbon dioxide (CO 2 ) in a liquid state from a high-pressure gas stream, said method comprising:

(a) cooling and at least partially condensing a high-pressure feed gas stream comprising CO 2 via indirect heat exchange with at least one refrigerant to thereby provide a cooled CO 2 -containing stream;

(b) separating at least a portion of said cooled CO 2 -containing gas stream in a first separation zone to thereby provide a condensed CO 2 -rich liquid fraction and an uncondensed CO 2 -lean vapor fraction;

(c) removing at least a portion of one or more non-CO 2 components from said condensed CO 2 -rich liquid fraction in a purification zone to thereby provide a purified CO 2 -rich liquid stream; and

(d) recovering at least a portion of said purified CO 2 -rich liquid stream from said purification zone as a liquid CO 2 -rich product stream.

16. The method of claim 15 , further comprising prior to said cooling of step (a) passing at least a portion of a gas stream comprising CO 2 through a first enrichment zone to thereby provide a CO 2 -enriched feed gas stream, wherein said CO 2 -enriched feed gas stream has a pressure of at least 350 psia, wherein said high-pressure feed gas stream subjected to said cooling of step (a) comprises at least a portion of said CO 2 -enriched feed gas stream.

17. The method of claim 15 , wherein at least a portion of said cooling of step (a) is accomplished using at least a portion of said liquid CO 2 product stream.

18. The method of claim 15 , wherein said recovering of step (d) includes pumping at least a portion of said purified CO 2 -rich liquid stream from said purification zone at a pressure of at least 750 psia.

19. The method of claim 15 , wherein said high-pressure feed gas stream further comprises at least one non-CO 2 component selected from the group consisting of hydrogen, methane, nitrogen, CO, oxygen, and combinations thereof.

20. The method of claim 15 , wherein said condensed CO 2 -rich liquid fraction comprises at least 50 percent of the total amount of CO 2 present in said high-pressure feed gas stream prior to said cooling of step (a) and/or wherein said liquid CO 2 product stream comprises at least 70 percent of the total amount of CO 2 present in said high-pressure feed gas stream prior to said cooling of step (a).

Continuity (3)
Continuation 13178273 · Jul 7, 2011
Provisional Application 61362968 · Jul 9, 2010
Related Publication 20140041412A1 · Feb 13, 2014