IP Library Granted Patent US 11,535,514
Granted Patent B2
US 11,535,514 · App. 17/182,867 · Granted Dec 27, 2022

System and method for recycling pressure swing absorber off-gas

Inventors: Jeffrey A. Mays (Woodland Hills, CA); Megan Herrera (Sherman Oaks, CA)
Assignee: GAS TECHNOLOGY INSTITUTE
C01B3/56B01D53/047B01D53/0438B01D53/229B01D53/62B01D53/83B01D53/96B01J8/1827C01B3/44C01B3/501B01D2257/108B01D2257/504B01D2258/02C01B2203/0233C01B2203/042C01B2203/0405C01B2203/1241C01B2203/148
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Quick Facts
Patent No.
US 11,535,514
App. No.
17/182,867
Granted
Dec 27, 2022
Kind
B2
Abstract

A method and system for an enhanced reforming process employing a pressure swing absorber. An off-gas from the pressure swing absorber is divided with a first portion sent back into a reforming reactor and a second portion sent to a heat generator for the reforming process. The first off-gas portion from the pressure swing absorber can be pressurized by a compressor and reintroduced into a fluidized bed reactor.

Claims (33)

1. In a sorbent enhanced reforming process employing a pressure swing absorber (PSA), an improvement comprising:

recycling at least a first portion of a PSA off-gas stream produced by the pressure swing absorber to a reforming reactor of the reforming process, wherein the recycled first portion of the PSA off gas stream undergoes H2 separation processing prior to introduction into the reforming reactor.

2. The improvement of claim 1 , wherein the pressure swing absorber separates H2 from a non-purified product gas of the sorbent enhanced reforming process to provide the PSA off-gas stream.

3. The improvement of claim 1 , wherein a second portion of the PSA off-gas stream is introduced to a firebox of the sorbent enhanced reforming process.

4. The improvement of claim 3 , wherein a portion of a purified H2 product from the pressure swing absorber is introduced to the second portion of the PSA off-gas stream.

5. The improvement of claim 3 , wherein the firebox heats at least one of a sorbent or a stream for the sorbent enhanced reforming process.

6. The improvement of claim 1 , wherein the recycled first portion of the PSA off-gas stream undergoes compression processing prior to introduction into the reforming reactor.

7. The improvement of claim 6 , wherein the reforming reactor comprises a fluidized bed reactor.

8. The improvement of claim 7 , wherein the compressed recycled first portion of the PSA off-gas stream is heated and introduced with a superheated steam and natural gas feed to the fluidized bed reactor.

9. The improvement of claim 1 , wherein the H2 separation comprises membrane separation processing.

10. A method of sorbent enhanced reforming, the method comprising:

introducing superheated steam and a natural gas feed to a reforming reactor to produce a H2 rich fluid stream;

introducing the H2 rich fluid stream to a pressure swing absorber (PSA) to produce a purified H2 product and a PSA off-gas stream;

recycling at least a first portion of the PSA off-gas stream to the reforming reactor; and

removing H2 from the at least a first portion of the PSA off-gas stream prior to introduction into the reforming reactor.

11. The method of claim 10 , further comprising introducing a second portion of the PSA off-gas stream to a firebox of the sorbent enhanced reforming.

12. The method of claim 11 , further comprising introducing a portion of the purified H2 product from the pressure swing absorber to the second portion of the PSA off-gas stream.

13. The method of claim 10 , further comprising compressing the at least a first portion of the PSA off-gas stream for recycling to the reforming reactor.

14. A system for sorbent enhanced reforming, comprising:

a reforming reactor including a sorbent, and configured to receive a natural gas and produce a H2 rich fluid stream by adsorbing CO2 using the sorbent;

a pressure swing absorber (PSA) configured to receive the H2 rich fluid stream and produce a purified H2 product and a PSA off-gas stream;

a recycle line connecting the pressure swing absorber to the reforming reactor, and configured to introduce at least a first portion of the PSA off-gas stream to the reforming reactor; and

a H2 separation system in combination with the recycle line and configured to remove H2 from the first portion of the PSA off-gas stream before the reforming reactor.

15. The system of claim 14 , further comprising:

a firebox configured to heat a reactant for the reforming reactor; and

a PSA off-gas line connecting the pressure swing absorber to the firebox, and configured to introduce a second portion of the PSA off-gas stream to the firebox.

16. The system of claim 14 , wherein the reforming reactor comprises a fluidized bed reactor.

17. The system of claim 14 , further comprising a compressor in combination with the recycle line and configured to compress the first portion of the PSA off-gas stream before the reforming reactor.

18. In a sorbent enhanced reforming process employing a pressure swing absorber (PSA), an improvement comprising:

recycling at least a first portion of a PSA off-gas stream produced by the pressure swing absorber to a reforming reactor of the reforming process, wherein a second portion of the PSA off-gas stream is introduced to a firebox of the sorbent enhanced reforming process, and a portion of a purified H2 product from the pressure swing absorber is introduced to the second portion of the PSA off-gas stream.

19. In a sorbent enhanced reforming process employing a pressure swing absorber (PSA), an improvement comprising:

recycling at least a first portion of a PSA off-gas stream produced by the pressure swing absorber to a reforming reactor of the reforming process, wherein the recycled first portion of the PSA off-gas stream undergoes compression processing prior to introduction into the reforming reactor, the reforming reactor comprises a fluidized bed reactor, and the compressed recycled first portion of the PSA off-gas stream is heated and introduced with a superheated steam and natural gas feed to the fluidized bed reactor.

20. The improvement of claim 19 , wherein a second portion of the PSA off-gas stream is introduced to a firebox of the sorbent enhanced reforming process, and a portion of a purified H2 product from the pressure swing absorber is introduced to the second portion of the PSA off-gas stream.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2021
From: MAYS, JEFFREY A.; HERRERA, MEGAN
To: GAS TECHNOLOGY INSTITUTE
Reel/Frame 055384/0996 →
Continuity (2)
Provisional Application 62981743 · Feb 26, 2020
Related Publication 20210261409A1 · Aug 26, 2021
Cited By (5)
US 12,240,758 US 12,358,792 US 12,358,793 US 12,358,794 US 12,459,813