IP Library › Granted Patent US 11,491,440
Granted Patent B2
US 11,491,440 · App. 16/702,010 · Granted Nov 8, 2022

Membrane nitrogen rejection process and system

Inventors: Paul Terrien (Syracuse, NY); Alex Augustine (King of Prussia, PA); Kevin Weatherford (Houston, TX); Yong Ding (Waban, MA)
Assignee: Air Liquide Advanced Technologies U.S. LLC
B01D53/226B01D71/70C07C7/144C10L3/105C10L2290/548
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Quick Facts
Patent No.
US 11,491,440
App. No.
16/702,010
Granted
Nov 8, 2022
Kind
B2
Abstract

A feed containing methane and nitrogen gas is processed in a three-stage membrane system, each stage of which is selective for methane over nitrogen. The methane enriched permeate from the first stage is removed as product gas. The methane-depleted residue from the second stage is purified in second and third cascaded stages to provide second and third permeates and second and third residues. The third stage permeate is recycled to the feed.

Claims (24)

1. A membrane separation process, comprising:

processing a feed containing methane and nitrogen gas in a first membrane stage that is selective for methane over nitrogen to produce a first permeate and a first residue, the feed being natural gas having an N 2 content (in vol %), F nitrogen , of no more than 10;

collecting the first permeate as a methane-rich product, the methane-rich product having an N 2 content (in vol %), P nitrogen ;

processing the first residue in a second membrane stage that is selective for methane over nitrogen to produce a second permeate and a second retentate;

processing the second permeate in a third membrane stage that is selective for methane over nitrogen to obtain a third permeate and a third retentate;

removing the second and third retentates as waste streams, or using the second and third retentates as fuel, or directing the second and third retentates to a different operation that requires N 2 -enriched gas; and

recycling the third permeate by combining it with the feed, wherein, a ratio of F nitrogen :P nitrogen is less than 4.

2. The process of claim 1 , further comprising adjusting a temperature of the first residue.

3. The process of claim 1 , further comprising compressing one or more of the first, second and third permeate.

4. The process of claim 3 , wherein each of the first, second, and third permeates is compressed.

5. The process of claim 1 , wherein at least one of a second residue, obtained from the second membrane stage, and a third residue, obtained from the third membrane stage, is removed from the process as a nitrogen-rich fraction.

6. The process of claim 1 , wherein the first membrane stage is operated at a stage cut within the range of from about 50% to about 95%.

7. The process of claim 1 , wherein the first membrane stage is operated in radial cross flow mode.

8. The process of claim 1 , wherein at least one of the first, second and third membrane stages comprises a membrane having a separation layer that includes a copolymer of dimethylsiloxane.

9. The process of claim 1 , wherein the first residue is passed through a heat exchanger.

10. A membrane separation process, comprising:

processing a feed containing methane and nitrogen gas in a first membrane stage that is selective for methane over nitrogen to produce a first permeate and a first residue, the feed being natural gas having an N 2 content (in vol %), F nitrogen , of no more than 12%;

collecting the first permeate as a methane-rich product, the methane-rich product having an N 2 content (in vol %), P nitrogen ;

processing the first residue in a second membrane stage that is selective for methane over nitrogen to produce a second permeate and a second retentate;

processing the second permeate in a third membrane stage that is selective for methane over nitrogen to obtain a third permeate and a third retentate;

removing the second and third retentates as waste streams, or using the second and third retentates as fuel, or directing the second and third retentates to a different operation that requires N 2 -enriched gas; and

recycling the third permeate by combining it with the feed, wherein, a ratio of F nitrogen : P nitrogen is less than 4.

11. The process of claim 1 , wherein P nitrogen< 3 vol %.

12. The process of claim 1 , wherein F nitrogen :P nitrogen is less than 3 and at least 75 vol % of the methane in the feed is recovered in the methane-rich product.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2020
From: TERRIEN, PAUL; AUGUSTINE, ALEX; WEATHERFORD, KEVIN; DING, YONG
To: AIR LIQUIDE ADVANCED TECHNOLOGIES U.S. LLC
Reel/Frame 051856/0853 →
Continuity (1)
Related Publication 20210162337A1 · Jun 3, 2021
Cited By (1)
US 12,623,983