IP Library Granted Patent US 12,109,528
Granted Patent B2
US 12,109,528 · App. 17/700,966 · Granted Oct 8, 2024

Plant for the membrane permeation treatment of a biogas stream with a membrane separation unit containing two modules

Inventor: Francois Barraud (Sassenage, FR)
Assignee: L'Air Liquide Societe Anonyme pour l'Etude et l'Exploitation des Procedes Georges Claude
B01D53/226B01D53/229C10L3/104C10L2290/46C10L2290/548
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Quick Facts
Patent No.
US 12,109,528
App. No.
17/700,966
Granted
Oct 8, 2024
Kind
B2
Abstract

Process and plant for membrane permeation treatment of a carbon dioxide and methane-containing biogas stream in which the biogas stream is compressed with a compressor and the compressed biogas stream is fed to a membrane separation unit comprising first and second modules each containing at least one membrane selective for carbon dioxide over methane. The first module separates the compressed biogas stream into a first, second, and third methane-deficient permeates (in comparison to the biogas stream) and a first methane-enriched retentate (in comparison to the biogas stream). The first permeate being richer in methane than the second or third permeates. The second module separates the first permeate into a fourth methane-deficient permeate and a second methane-enriched retentate. The second and third retentates are recycled back to an inlet of the compressor.

Claims (22)

1. A process for a membrane permeation treatment of a methane and carbon dioxide-containing biogas stream, comprising the steps of:

providing a plant comprising a compressor and a membrane separation unit that comprises first and second modules each comprising at least one membrane that is more permeable to carbon dioxide than methane, wherein:

the first module is adapted and configured to receive a compressed biogas stream and separate it into a first permeate, a second permeate, a third permeate, and a first retentate, and

the second module is adapted and configured to receive the first permeate from the first module and separate it into a fourth permeate and a second retentate;

compressing the biogas stream, the compressor producing the compressed biogas stream;

supplying the first module with the compressed biogas stream and separating the supplied compressed biogas stream into a first retentate that is enriched in methane relative to the biogas stream and first, second, and third permeates each of which is enriched in carbon dioxide relative to the biogas stream, the first permeate being richer in methane than the second or third permeates;

supplying the second module with the first permeate and separating the supplied first permeate into a second retentate that is enriched in methane relative to the first permeate and a fourth permeate that is enriched in carbon dioxide relative to the first permeate; and

recycling the second retentate and the third permeate to the inlet of the compressor where they are compressed with the biogas stream to produce the compressed biogas stream.

2. The process of claim 1 , further comprising prepurifying the biogas stream upstream of the compressor so as to dry the biogas stream, reduce a CO 2 concentration of the biogas stream, and/or remove volatile organic compounds from the biogas stream.

3. The process of claim 1 , further comprising the steps of:

measuring a methane concentration of the first retentate; and

setting a pressure of the first retentate as a function of the measured methane concentration.

4. The process of claim 1 , wherein the biogas stream is produced by a methanizer and said process further comprises the steps of:

measuring a pressure of the first retentate;

comparing the measured pressure with a target pressure value; and

sending the first retentate back to the methanizer if the measured pressure is lower than the target pressure value.

5. The process of claim 1 , wherein the biogas stream is produced by a methanizer and said process further comprises the steps of:

measuring a methane concentration of the first retentate;

comparing the measured concentration with a target concentration value; and

sending the first retentate back to the methanizer if the measured concentration is lower than the target concentration value.

6. The process of claim 1 , wherein each of the membranes of the first and second modules have a same carbon dioxide to methane selectivity.

7. The process of claim 1 , wherein at least one of the first and second modules comprises a membrane with first carbon dioxide to methane selectivity that is different from another membrane or membranes of the first and second modules.

Priority Claims (1)
FR 2102827 · Mar 22, 2021 · national
Continuity (1)
Related Publication 20220297055A1 · Sep 22, 2022