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Increased Selectivity in CO 2 /CH 4 Separation with Mixed‐Matrix Membranes of Polysulfone and Mixed‐MOFs MIL‐101(Cr) and ZIF‐8

Combination of two hydrothermally stable MOFs MIL‐101(Cr) and ZIF‐8 in a 1:1 ratio in a polysulfone (PSF) mixed‐matrix membrane (MMM) showed a significant higher selectivity in mixed‐gas CO 2 /CH 4 permeation tests for 16 wt.‐% MIL‐101(Cr)/ZIF‐8 compared to analogous single‐filler MMMs [MIL‐101(Cr)...

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Published in:European journal of inorganic chemistry 2016-09, Vol.2016 (27), p.4363-4367
Main Authors: Tanh Jeazet, Harold B., Sorribas, Sara, Román‐Marín, José M., Zornoza, Beatriz, Téllez, Carlos, Coronas, Joaquín, Janiak, Christoph
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Language:English
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cited_by cdi_FETCH-LOGICAL-c840-ed9d5c5bd10745d5675c13b7af568b300f71db62033f226db9c4bb923a2220063
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container_issue 27
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container_title European journal of inorganic chemistry
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description Combination of two hydrothermally stable MOFs MIL‐101(Cr) and ZIF‐8 in a 1:1 ratio in a polysulfone (PSF) mixed‐matrix membrane (MMM) showed a significant higher selectivity in mixed‐gas CO 2 /CH 4 permeation tests for 16 wt.‐% MIL‐101(Cr)/ZIF‐8 compared to analogous single‐filler MMMs [MIL‐101(Cr) or ZIF‐8] or to the also tested combination NH 2 ‐MIL‐53(Al)/ZIF‐8 (1:1 ratio). The CO 2 /CH 4 selectivity increased significantly from 23 to 40 from pure PSF to the 16 wt.‐% MIL‐101(Cr)/ZIF‐8 membrane. Separation of CO 2 /CH 4 is relevant for purification (“sweetening”) of natural gas (CH 4 as main component) which is soured with up to over 40 % CO 2 and N 2 and only useable at low CO 2 concentrations.
doi_str_mv 10.1002/ejic.201600190
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title Increased Selectivity in CO 2 /CH 4 Separation with Mixed‐Matrix Membranes of Polysulfone and Mixed‐MOFs MIL‐101(Cr) and ZIF‐8
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