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Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture

In this work, the behavior of new GO-based mixed matrix membranes was tested in view of their use as CO(2)-selective membrane in post combustion carbon capture applications. In particular, the new materials were obtained by mixing of Pebax(®) 2533 copolymer with different types of graphene oxide (GO...

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Autores principales: Casadei, Riccardo, Giacinti Baschetti, Marco, Yoo, Myung Jin, Park, Ho Bum, Giorgini, Loris
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464092/
https://www.ncbi.nlm.nih.gov/pubmed/32824239
http://dx.doi.org/10.3390/membranes10080188
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author Casadei, Riccardo
Giacinti Baschetti, Marco
Yoo, Myung Jin
Park, Ho Bum
Giorgini, Loris
author_facet Casadei, Riccardo
Giacinti Baschetti, Marco
Yoo, Myung Jin
Park, Ho Bum
Giorgini, Loris
author_sort Casadei, Riccardo
collection PubMed
description In this work, the behavior of new GO-based mixed matrix membranes was tested in view of their use as CO(2)-selective membrane in post combustion carbon capture applications. In particular, the new materials were obtained by mixing of Pebax(®) 2533 copolymer with different types of graphene oxide (GO). Pebax(®) 2533 has indeed lower selectivity, but higher permeability than Pebax(®) 1657, which is more commonly used for membranes, and it could therefore benefit from the addition of GO, which is endowed with very high selectivity of CO(2) with respect to nitrogen. The mixed matrix membranes were obtained by adding different amounts of GO, from 0.02 to 1% by weight, to the commercial block copolymers. Porous graphene oxide (PGO) and GO functionalized with polyetheramine (PEAGO) were also considered in composites produced with similar procedure, with a loading of 0.02%wt. The obtained films were then characterized by using SEM, DSC, XPS analysis and permeability experiments. In particular, permeation tests with pure CO(2) and N(2) at 35°C and 1 bar of upstream pressure were conducted for the different materials to evaluate their separation performance. It has been discovered that adding these GO-based nanofillers to Pebax(®) 2533 matrix does not improve the ideal selectivity of the material, but it allows to increase CO(2) permeability when a low filler content, not higher than 0.02 wt%, is considered. Among the different types of GO, then, porous GO seems the most promising as it shows CO(2) permeability in the order of 400 barrer (with an increase of about 10% with respect to the unloaded block copolymer), obtained without reducing the CO(2)/N(2) selectivity of the materials, which remained in the order of 25.
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spelling pubmed-74640922020-09-04 Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture Casadei, Riccardo Giacinti Baschetti, Marco Yoo, Myung Jin Park, Ho Bum Giorgini, Loris Membranes (Basel) Article In this work, the behavior of new GO-based mixed matrix membranes was tested in view of their use as CO(2)-selective membrane in post combustion carbon capture applications. In particular, the new materials were obtained by mixing of Pebax(®) 2533 copolymer with different types of graphene oxide (GO). Pebax(®) 2533 has indeed lower selectivity, but higher permeability than Pebax(®) 1657, which is more commonly used for membranes, and it could therefore benefit from the addition of GO, which is endowed with very high selectivity of CO(2) with respect to nitrogen. The mixed matrix membranes were obtained by adding different amounts of GO, from 0.02 to 1% by weight, to the commercial block copolymers. Porous graphene oxide (PGO) and GO functionalized with polyetheramine (PEAGO) were also considered in composites produced with similar procedure, with a loading of 0.02%wt. The obtained films were then characterized by using SEM, DSC, XPS analysis and permeability experiments. In particular, permeation tests with pure CO(2) and N(2) at 35°C and 1 bar of upstream pressure were conducted for the different materials to evaluate their separation performance. It has been discovered that adding these GO-based nanofillers to Pebax(®) 2533 matrix does not improve the ideal selectivity of the material, but it allows to increase CO(2) permeability when a low filler content, not higher than 0.02 wt%, is considered. Among the different types of GO, then, porous GO seems the most promising as it shows CO(2) permeability in the order of 400 barrer (with an increase of about 10% with respect to the unloaded block copolymer), obtained without reducing the CO(2)/N(2) selectivity of the materials, which remained in the order of 25. MDPI 2020-08-15 /pmc/articles/PMC7464092/ /pubmed/32824239 http://dx.doi.org/10.3390/membranes10080188 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Casadei, Riccardo
Giacinti Baschetti, Marco
Yoo, Myung Jin
Park, Ho Bum
Giorgini, Loris
Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture
title Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture
title_full Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture
title_fullStr Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture
title_full_unstemmed Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture
title_short Pebax(®) 2533/Graphene Oxide Nanocomposite Membranes for Carbon Capture
title_sort pebax(®) 2533/graphene oxide nanocomposite membranes for carbon capture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464092/
https://www.ncbi.nlm.nih.gov/pubmed/32824239
http://dx.doi.org/10.3390/membranes10080188
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