IP Library Granted Patent US 11,401,251
Granted Patent B2
US 11,401,251 · App. 17/437,206 · Granted Aug 2, 2022

Membrane separation system, and uses thereof

Inventor: Keith Dackson (East Aurora, NY)
Assignee: Novomer, Inc.
C07D305/12B01D61/246B01D63/02B01D63/082B01D2311/13B01D2311/16
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Quick Facts
Patent No.
US 11,401,251
App. No.
17/437,206
Granted
Aug 2, 2022
Kind
B2
Abstract

Provided herein are membrane separation systems and methods suitable for use in separating carbonylation catalyst from a beta-lactone product stream. Such membrane separation systems utilize a cross flow separation technique and employ a sweep stream.

Claims (20)

1. A carbonylation method, comprising:

combining epoxide, carbon monoxide, carbonylation catalyst and reaction solvent to produce a product stream comprising beta-lactone, residual epoxide, residual carbon monoxide, carbonylation catalyst, and the reaction solvent;

contacting the product stream with a membrane separation system, wherein the membrane separation system comprises a membrane having a permeate side and a retentate side, and wherein the product stream is contacted with the membrane separation system on the retentate side of the membrane;

contacting the membrane separation system with a sweep stream on the permeate side of the membrane, wherein the sweep stream comprises solvent saturated with one or more components of a feed stream, whereby the sweep stream minimizes flux of the one or more components across the membrane;

outputting a permeate stream on the permeate side of the membrane, wherein the permeate stream is formed when at least a portion of the feed stream crosses the membrane and joins with the sweep stream, wherein the permeate stream comprises beta-lactone; and

retaining a retentate stream on the retentate side of the membrane, wherein the retentate stream is formed from the remaining feed stream after at least a portion of the feed stream crosses the membrane, wherein the retentate stream comprises carbonylation catalyst and carbon monoxide.

2. The method of claim 1 , wherein the sweep stream is a counter-current stream, the feed stream passes tangentially along the surface of the membrane, or both.

3. The method of claim 1 , wherein the one or more components in the sweep stream is carbon monoxide, and the sweep stream minimizes flux of carbon monoxide across the membrane.

4. The method of claim 1 , wherein the feed stream contacts the membrane separation system at a feed stream pressure, and

wherein the sweep stream contacts the membrane separation system at a sweep stream pressure, and

wherein the sweep stream pressure is equal to or lower than the feed stream pressure.

5. The method of claim 1 , wherein the membrane separation system has a transmembrane pressure of between 30 bar and 40 bar, and the membrane separation system operates at a constant average temperature.

6. The method of claim 1 , comprising driving flux of the beta-lactone from the feed stream to the permeate stream by introducing a concentration of beta-lactone in the feed stream that is higher than the concentration of beta-lactone in the sweep stream.

7. The method of claim 1 , wherein the retentate stream further comprises reaction solvent, carbon monoxide, epoxide or beta-lactone, or any combination thereof.

8. The method of claim 1 , wherein the membrane separation system is a plate-and-frame membrane system, a hollow fiber membrane system, or a spiral membrane system.

9. The method of claim 2 , wherein the one or more components in the sweep stream is carbon monoxide, and the sweep stream minimizes flux of carbon monoxide across the membrane.

10. The method of claim 3 , wherein the feed stream contacts the membrane separation system at a feed stream pressure, and

wherein the sweep stream contacts the membrane separation system at a sweep stream pressure, and

wherein the sweep stream pressure is equal to or lower than the feed stream pressure.

11. The method of claim 4 , wherein the membrane separation system has a transmembrane pressure of between 30 bar and 40 bar, and the membrane separation system operates at a constant average temperature.

Assignments (2)
CHANGE OF NAME Recorded Mar 24, 2026
From: NMER WINDDOWN, INC.
To: NOVOMER LLC
Reel/Frame 075187/0876 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2021
From: DACKSON, KEITH
To: NOVOMER, INC.
Reel/Frame 057414/0091 →
Continuity (2)
Provisional Application 62819828 · Mar 18, 2019
Related Publication 20220089556A1 · Mar 24, 2022