IP Library Granted Patent US 11,931,696
Granted Patent B2
US 11,931,696 · App. 17/636,528 · Granted Mar 19, 2024

Gas separation elements and modules

Inventors: Anton Van Der Pluijm (Tilburg, NL); Petrus Henricus Maria Van Kessel (Tilburg, NL); Shigehide Itoh (Tilburg, NL); Yujiro Itami (Tilburg, NL); Davide Bocciardo (Tilburg, NL)
Assignees: Fujifilm Manufacturing Europe B.V.; Fujifilm Corporation
B01D63/103B01D53/228B01D69/10C07C7/144B01D2313/143B01D2313/146
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Quick Facts
Patent No.
US 11,931,696
App. No.
17/636,528
Granted
Mar 19, 2024
Kind
B2
Abstract

A gas separation element comprising a membrane sheet and a permeate spacer, wherein the membrane sheet comprises a porous support and a discriminating layer, CHARACTERISED IN THAT: (a) the permeate spacer has an open space volume of at least 0.0004 m 3 /m 2 ; and (b) the membrane sheet has an aspect ratio of at least 1.5.

Claims (22)

1. A gas separation element comprising a membrane sheet and a permeate spacer, wherein the membrane sheet comprises a porous support and a discriminating layer wherein

(a) the permeate spacer has an open space volume of 0.00046 m 3 /m 2 to 0.0020 m 3 /m 2 ; and

(b) the membrane sheet has an aspect ratio of at least 1.5.

2. The gas separation element according to claim 1 wherein the membrane sheet has a n-C 4 H 10 gas permeance of 30 to 800 GPU.

3. The gas separation element according to claim 1 wherein the discriminating layer has an average thickness of at least 0.7 μm.

4. The gas separation element according to claim 1 wherein the porous support comprises a porous PAN support.

5. The gas separation element according to claim 1 wherein the permeate spacer comprises one or more macroporous sheets.

6. The gas separation element according to claim 5 wherein the permeate spacer further comprises one or more protective sheets which shield at least a part of the membrane from contact with the one or more macroporous sheets.

7. The gas separation element according to claim 1 wherein the permeate spacer has an average thickness of at least 900 μm.

8. The gas separation element according to claim 1 which further comprises a feed spacer.

9. The gas separation element according to claim 8 wherein the feed spacer has an average thickness between 300 and 1500 μm.

10. The gas separation element according to claim 8 wherein the membrane sheet is folded around the permeate spacer to form a membrane envelope such that gas may pass through the feed spacer and then permeate through the membrane and into the permeate spacer.

11. The gas separation element according to claim 1 wherein the discriminating layer has an average thickness of at least 1.2 μm.

12. The gas separation element according to claim 1 wherein the discriminating layer comprises a polysiloxane.

13. A spiral wound gas separation module comprising a plurality of gas separation elements according to claim 1 .

14. The gas separation module according to claim 13 wherein the total area of the permeate spacers within the module is at least 12 m 2 .

15. The gas separation module according to claim 13 wherein the total area of the permeate spacers within the module is 12 to 25 m 2 .

16. The gas separation module according to claim 13 wherein the total area of the membrane sheets within the module is 75% to 125% of the total area of the permeate spacers within the module.

17. The gas separation module according to claim 13 comprising a stack of the gas separation elements arranged such the permeate spacers and feed spacers alternate throughout the stack and the permeate spacers and feed spacers are separated by the membranes.

18. The gas separation module according to claim 13 wherein the gas separation elements are spirally wound around a permeate collection tube with an open end of the permeate spacer located adjacent to the tube and in gas communication therewith.

19. A process for separating and/or purifying a feed gas comprising at least a higher alkane and methane as gaseous components comprising passing the feed gas through a gas separation element according to claim 1 or a gas separation module comprising a plurality of gas separation elements according to claim 1 such that feed gas is separated into a permeate gas and a retentate gas, one of which is enriched in at least one of the said gaseous components and one of which is depleted in at least one of the said gaseous components.

20. The gas separation element according to claim 1 wherein the discriminating layer comprises a polysiloxane and wherein the membrane sheet has a n-C 4 H 10 gas permeance of 150 to 700 GPU.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2026
From: YESTAR ADVANCED MATERIALS (HK) CO., LIMITED
To: YESTAR ADVANCED MATERIALS (SUZHOU) CO., LTD.
Reel/Frame 076045/0973 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2026
From: FUJIFILM CORPORATION; FUJIFILM MANUFACTURING EUROPE B.V.
To: YESTAR ADVANCED MATERIALS (HK) CO., LIMITED
Reel/Frame 075440/0524 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2022
From: VAN DER PLUIJM, ANTON; VAN KESSEL, PETRUS HENRICUS MARIA; ITOH, SHIGEHIDE; ITAMI, YUJIRO; BOCCIARDO, DAVIDE
To: FUJIFILM MANUFACTURING EUROPE B.V.; FUJIFILM CORPORATION
Reel/Frame 059321/0630 →
Priority Claims (1)
GB 1912462 · Aug 30, 2019 · national
Continuity (1)
Related Publication 20220274066A1 · Sep 1, 2022