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A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters

This paper presents a novel method for transient and steady state mixed gas permeation measurements, using a quadrupole residual gas analyser for the on-line determination of the permeate composition. The on-line analysis provides sufficiently quick response times to follow even fast transient pheno...

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Autores principales: Monteleone, Marcello, Esposito, Elisa, Fuoco, Alessio, Lanč, Marek, Pilnáček, Kryštof, Friess, Karel, Bezzu, Caterina Grazia, Carta, Mariolino, McKeown, Neil Bruce, Jansen, Johannes Carolus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6161161/
https://www.ncbi.nlm.nih.gov/pubmed/30177638
http://dx.doi.org/10.3390/membranes8030073
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author Monteleone, Marcello
Esposito, Elisa
Fuoco, Alessio
Lanč, Marek
Pilnáček, Kryštof
Friess, Karel
Bezzu, Caterina Grazia
Carta, Mariolino
McKeown, Neil Bruce
Jansen, Johannes Carolus
author_facet Monteleone, Marcello
Esposito, Elisa
Fuoco, Alessio
Lanč, Marek
Pilnáček, Kryštof
Friess, Karel
Bezzu, Caterina Grazia
Carta, Mariolino
McKeown, Neil Bruce
Jansen, Johannes Carolus
author_sort Monteleone, Marcello
collection PubMed
description This paper presents a novel method for transient and steady state mixed gas permeation measurements, using a quadrupole residual gas analyser for the on-line determination of the permeate composition. The on-line analysis provides sufficiently quick response times to follow even fast transient phenomena, enabling the unique determination of the diffusion coefficient of the individual gases in a gas mixture. Following earlier work, the method is further optimised for higher gas pressures, using a thin film composite and a thick dense styrene-butadiene-styrene (SBS) block copolymer membrane. Finally, the method is used to calculate the CO(2)/CH(4) mixed gas diffusion coefficients of the spirobisfluorene-based polymer of intrinsic microporosity, PIM-SBF-1. It is shown that the modest pressure dependence of the PIM-SBF-1 permeability can be ascribed to a much stronger pressure dependence of the diffusion coefficient, which partially compensates the decreasing solubility of CO(2) with increasing pressure, typical for the strong sorption behaviour in PIMs. The characteristics of the instrument are discussed and suggestions are given for even more versatile measurements under stepwise increasing pressure conditions. This is the first report on mixed gas diffusion coefficients at different pressures in a polymer of intrinsic microporosity.
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spelling pubmed-61611612018-09-28 A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters Monteleone, Marcello Esposito, Elisa Fuoco, Alessio Lanč, Marek Pilnáček, Kryštof Friess, Karel Bezzu, Caterina Grazia Carta, Mariolino McKeown, Neil Bruce Jansen, Johannes Carolus Membranes (Basel) Article This paper presents a novel method for transient and steady state mixed gas permeation measurements, using a quadrupole residual gas analyser for the on-line determination of the permeate composition. The on-line analysis provides sufficiently quick response times to follow even fast transient phenomena, enabling the unique determination of the diffusion coefficient of the individual gases in a gas mixture. Following earlier work, the method is further optimised for higher gas pressures, using a thin film composite and a thick dense styrene-butadiene-styrene (SBS) block copolymer membrane. Finally, the method is used to calculate the CO(2)/CH(4) mixed gas diffusion coefficients of the spirobisfluorene-based polymer of intrinsic microporosity, PIM-SBF-1. It is shown that the modest pressure dependence of the PIM-SBF-1 permeability can be ascribed to a much stronger pressure dependence of the diffusion coefficient, which partially compensates the decreasing solubility of CO(2) with increasing pressure, typical for the strong sorption behaviour in PIMs. The characteristics of the instrument are discussed and suggestions are given for even more versatile measurements under stepwise increasing pressure conditions. This is the first report on mixed gas diffusion coefficients at different pressures in a polymer of intrinsic microporosity. MDPI 2018-09-03 /pmc/articles/PMC6161161/ /pubmed/30177638 http://dx.doi.org/10.3390/membranes8030073 Text en © 2018 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
Monteleone, Marcello
Esposito, Elisa
Fuoco, Alessio
Lanč, Marek
Pilnáček, Kryštof
Friess, Karel
Bezzu, Caterina Grazia
Carta, Mariolino
McKeown, Neil Bruce
Jansen, Johannes Carolus
A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters
title A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters
title_full A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters
title_fullStr A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters
title_full_unstemmed A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters
title_short A Novel Time Lag Method for the Analysis of Mixed Gas Diffusion in Polymeric Membranes by On-Line Mass Spectrometry: Pressure Dependence of Transport Parameters
title_sort novel time lag method for the analysis of mixed gas diffusion in polymeric membranes by on-line mass spectrometry: pressure dependence of transport parameters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6161161/
https://www.ncbi.nlm.nih.gov/pubmed/30177638
http://dx.doi.org/10.3390/membranes8030073
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