IP Library Granted Patent US 10,960,349
Granted Patent B2
US 10,960,349 · App. 16/208,870 · Granted Mar 30, 2021

System for separating gas

Inventors: Emeric Sarron (Kópavogur, IS); Húni Sighvatsson (Kópavogur, IS); Ásgeir Ívarsson (Kópavogur, IS)
Assignee: CRI, EHF
B01D53/62B01D3/143B01D5/0069B01D19/0015B01D47/02B01D53/77B01D2256/10B01D2256/12B01D2256/16B01D2257/504C01B2203/0475C07C29/151C07C31/04
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Quick Facts
Patent No.
US 10,960,349
App. No.
16/208,870
Granted
Mar 30, 2021
Kind
B2
Abstract

An improved system for separating gas from a process stream by providing a stripping unit at the overhead stream of a fractionation column to selectively and effectively remove the gas using a stripping fluid without providing a dedicated light-ends separations unit. The stripper unit may be connected to the reflux drum at the overhead stream. The system for separating gas further achieves greater thermodynamic efficiency by means of a split column design using mechanical vapor recompression with the reboiler and condenser integrated in a falling-film evaporator- or thermosiphon-type vapo-condenser.

Claims (33)

1. A system for separating a gas from a process stream, the system comprising:

a reactor configured to carry out a chemical process yielding the process stream;

a separation unit configured to receive the process stream from the chemical process, and configured to separate the process stream, the separation unit comprising at least one heat exchanger located at an overhead portion of the separation unit and receiving an overhead stream of the process stream from the overhead portion of the separation unit, the at least one heat exchanger being configured for condensing the overhead stream of the process stream; and

at least one stripper unit configured to receive the condensed overhead stream of the process stream from the at least one heat exchanger and being configured for separating the gas from the condensed overhead stream of the process stream by introducing at least one stripping fluid thereunto;

wherein the process stream is created from a methanol synthesis reaction reacting only H 2 and CO 2 streams as fresh feedstock.

2. The system for separating a gas from a process stream of claim 1 , wherein the process stream comprises substantially only CO 2 , water, and methanol.

3. The system for separating a gas from a process stream of claim 1 , wherein the at least one stripping fluid is gaseous N 2 .

4. The system for separating a gas from a process stream of claim 1 , wherein the at least one stripping fluid is H 2 .

5. The system for separating a gas from a process stream of claim 1 , wherein the at least one stripping fluid and the separated gas are recycled to a front end of the reactor.

6. The system for separating a gas from a process stream of claim 1 , wherein the at least one stripping fluid is a recycle stream of a separate chemical process.

7. The system for separating a gas from a process stream of claim 1 , wherein the separating unit is a fractionation unit.

8. The system for separating a gas from a process stream of claim 2 , wherein the at least one stripper unit comprises a gas sparger unit.

9. The system for separating a gas from a process stream of claim 1 , further comprising at least one drum configured for receiving the condensed portion of the process stream after the condensed portion of the process stream has been received by the at least one stripper unit.

10. The system for separating a gas from a process stream of claim 9 , wherein the at least one drum is a reflux drum connected to the separation unit and configured to accumulate the condensed portion of the process stream.

11. The system for separating a gas from a process stream of claim 9 , wherein the at least one stripper unit and the at least one drum are integrally connected.

12. The system for separating a gas from a process stream of claim 9 , wherein the at least one stripper unit introduces the at least one stripping fluid to the condensed portion of the process stream within the at least one drum.

13. The system for separating a gas from a process stream of claim 1 , wherein the separation unit is a split column comprising a relatively high-pressure column and a relatively low-pressure column, each of the relatively high- and low-pressure columns further comprising at least one heat exchanger located at an overhead portion of its respective column and configured to receive an overhead process stream thereof.

14. The system for separating a gas from a process stream of claim 13 , wherein the at least one stripper unit is located only at the overhead portion of the relatively low-pressure column.

15. The system for separating a gas from a process stream of claim 13 , wherein the at least one stripper unit is located at the overhead portion of the relatively low-pressure column and a second stripper is located at an overhead portion of the relatively high-pressure column.

16. The system for separating a gas from a process stream of claim 1 , wherein the process stream comprises deuterated methanol and is created from a methanol synthesis reaction reacting only CO 2 and deuterium as fresh feedstock.

17. The system for separating a gas from a process stream of claim 16 , further comprising an electrolyzer, wherein the process stream further comprises heavy water, and the heavy water is obtained from the separation unit and electrolyzed in the electrolyzer to form additional deuterium feedstock.

18. A system for separating a gas from a process stream, the system comprising:

a reactor configured to carry out a chemical process yielding the process stream, the process stream comprising substantially only methanol, CO 2 , and water;

a fractionation unit configured to receive the process stream from the reactor, the fractionation unit comprising at least one heat exchanger located at an overhead portion of the fractionation unit and receiving a portion of the process stream from the overhead portion of the fractionation unit, the at least one heat exchanger being configured for condensing the portion of the process stream; and

at least one stripper unit configured to receive the condensed portion of the process stream after the at least one heat exchanger and being configured for removing the gas from the condensed portion of the process stream by introducing at least one stripping fluid thereunto; and

a reflux drum connected to the fractionation unit and configured to accumulate the condensed portion of the process stream and to return a portion of the accumulated condensed portion of the process stream to the fractionation unit;

the at least one stripper unit comprises a gas sparger unit;

the gas sparger unit and the reflux drum are integrally formed, the gas sparger unit being configured to introduce the at least one stripping fluid into the accumulated process stream within the reflux drum.

19. A system for separating a gas from a process stream, the system comprising:

a reactor producing the process stream;

a fractionation unit configured to receive and separate components of the process stream and comprising a heat exchanger at an overhead portion of the fractionation unit, the heat exchanger being configured to condense a portion of the process stream; and

a stripper unit configured to introduce at least one stripping fluid to the condensed portion of the process stream;

wherein the process stream is created from a methanol synthesis reaction reacting only H 2 and CO 2 streams as fresh feedstock.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2026
From: SIGHVATSSON, HUNI
To: CRI, EHF
Reel/Frame 073718/0034 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2025
From: CRI, EHF
To: CRI, HF
Reel/Frame 069949/0992 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2018
From: SARRON, EMERIC; ÍVARSSON, ÁSGEIR
To: CRI, EHF
Reel/Frame 048325/0474 →
Continuity (2)
Provisional Application 62594320 · Dec 4, 2017
Related Publication 20190168155A1 · Jun 6, 2019
Cited By (2)
US 12,442,317 US 12,491,484