IP Library Granted Patent US 9,988,326
Granted Patent B2
US 9,988,326 · App. 15/022,309 · Granted Jun 5, 2018

Method for the final purification of biogas for producing biomethane

Inventors: Nicolas Paget (Saint Martin d'Heres, FR); Guenael Prince (Saint Egreve, FR); Golo Zick (Fontaine, FR)
Assignee: L'AIR LIQUIDE SOCIETE ANONYME POUR L'ETUDE ET L'EXPLOITATION DES PROCEDES GEORGES CLAUDE
C07C7/144B01D53/226B01D2256/22B01D2256/245B01D2257/504B01D2257/708B01D2257/80B01D2258/05Y02C10/10
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Quick Facts
Patent No.
US 9,988,326
App. No.
15/022,309
Granted
Jun 5, 2018
Kind
B2
Abstract

A four-stage membrane separation unit purification process, especially for prepurified biogas, in which a retentate from the first stage is fed as feed gas to a second stage, a permeate from the first stage is fed as feed gas to a third stage, a retentate from the third stage is fed as feed gas to a fourth stage.

Claims (23)

1. A membrane permeation process for treating a gas stream containing at least methane and carbon dioxide in order to produce a methane-rich gas stream using a facility comprising a compressor and first, second, third and fourth membrane separation units equipped with first, second, third and fourth membranes, respectively, that are more permeable to carbon dioxide than methane, said method comprising the steps of:

compressing said gas stream with a compressor to a first pressure;

supplying a feed gas stream at said first pressure to the first membrane separation unit so as to produce a first retentate that is enriched in methane relative to the compressed gas stream and a first permeate that is enriched in carbon dioxide relative to the compressed gas stream;

supplying the second membrane separation unit with the first retentate so as to produce a second retentate that is enriched in methane relative to the first retentate and a second permeate that is enriched in carbon dioxide relative to the first retentate;

supplying the third membrane separation unit with the first permeate so as to produce a third retentate that is enriched in methane relative to the first permeate and a third permeate that is enriched in carbon dioxide relative to the first permeate;

recycling the second permeate to the compressor;

supplying the fourth membrane separation unit with the third retentate so as to produce a fourth retentate that is richer in methane than the third retentate and a fourth permeate that is enriched in carbon dioxide relative to the third retentate; and

recycling the fourth retentate to the compressor, wherein said feed gas stream comprises the compressed gas stream, second permeate, and fourth retentate.

2. The process of claim 1 , wherein each of the membranes has a same selectivity.

3. The process of claim 1 , wherein at least one of the membranes has selectivity different from other of the membranes.

4. The process of claim 1 , wherein the second retentate is methane rich gas.

5. The process of claim 1 , wherein the third and fourth permeates are either vented to atmosphere or treated in a thermal oxidizer.

6. The process of claim 1 , wherein the gas stream is pre-purified biogas.

7. The process of claim 6 , wherein the prepurification includes removal of moisture, CO 2 , and volatile organic compounds.

8. A facility for membrane permeation treatment of a gas stream containing at least methane and carbon dioxide in order to produce a methane-rich gas stream, comprising:

a first membrane separation unit equipped with a first membrane configured to receive a feed gas stream and to separate said feed gas stream into a first permeate and a first retentate, said first membrane being more permeable to carbon dioxide than to methane;

a second membrane separation unit equipped with a second membrane configured to receive said first retentate and to separate said first retentate into a second permeate and a second retentate, said second membrane being more permeable to carbon dioxide than to methane;

a third membrane separation unit equipped with a third membrane configured to receive said first permeate and to separate said first permeate into a third permeate and a third retentate, said third membrane being more permeable to carbon dioxide than to methane;

a fourth membrane separation unit equipped with a fourth membrane configured to receive said third retentate and to separate said third retentate into a fourth permeate and a fourth retentate; and

a compressor configured to receive said gas stream, second permeate, and fourth retentate and to compress said gas stream, second permeate, and fourth retentate to a first pressure to obtain said feed gas stream wherein said feed gas comprises said compressed gas stream, second permeate, and fourth retentate and is supplied to the first membrane separation unit.

9. The facility of claim 8 , wherein each of the membranes has a same selectivity.

10. The facility of claim 8 , wherein at least one of said membranes has a selectivity that is different than other of said membranes.

11. The facility of claim 8 , further comprising a thermal oxidizer configured to receive the third and fourth permeates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2017
From: PAGET, NICOLAS; PRINCE, GUENAEL; ZICK, GOLO
To: L'AIR LIQUIDE, SOCIÉTÉ ANONYME POUR L'ETUDE ET L'EXPLOITATION DES PROCÉDÉS GEORGES CLAUDE
Reel/Frame 043546/0325 →
Priority Claims (1)
FR 13 58901 · Sep 16, 2013 · national
Continuity (1)
Related Publication 20160229771A1 · Aug 11, 2016