An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes

Although alterations of polyvinylidene fluoride (PVDF) membrane performance and properties in contactor applications are more severe at high temperature, to date, detailed information on the relationship between performance and properties with temperature is available. Hence, this study was undertak...

Full description

Saved in:
Bibliographic Details
Main Authors: Rezaei-Dasht Arzhandi, M., Ismail, A. F., Ghanbari, M., Bakeri, G., Hashemifard, S. A., Matsuura, T., Moslehyani, A.
Format: Article
Published: Elsevier B.V. 2016
Subjects:
Online Access:http://eprints.utm.my/id/eprint/73699/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84977138931&doi=10.1016%2fj.jngse.2016.02.042&partnerID=40&md5=487fbbb39f5c6a51af0354daac53084d
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.utm.73699
record_format eprints
spelling my.utm.736992017-11-18T00:34:32Z http://eprints.utm.my/id/eprint/73699/ An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes Rezaei-Dasht Arzhandi, M. Ismail, A. F. Ghanbari, M. Bakeri, G. Hashemifard, S. A. Matsuura, T. Moslehyani, A. TP Chemical technology Although alterations of polyvinylidene fluoride (PVDF) membrane performance and properties in contactor applications are more severe at high temperature, to date, detailed information on the relationship between performance and properties with temperature is available. Hence, this study was undertaken to improve thermal stability of PVDF membranes by montmorillonite (MMT) incorporation. The fabricated membranes were operated in a closed contactor loop with water temperature of either 27 °C or 80 °C, followed by measuring CO2 absorption flux before and after 2 days exposure. Higher partial pore wetting at elevated temperature resulted in performance reduction of 31% and 13% for plain PVDF and 5 wt% MMT-filled PVDF membrane (MMM hollow fiber), respectively. To determine the reasons, the membranes were immersed in water of 80 °C for 7 days and analyzed by analytical characterization methods after drying. It was revealed from FESEM images that large pores on the membrane surfaces became larger while the small pores became smaller, leading porous membrane surfaces to deform to semi-dense layers with small number of large pores. Furthermore, strong reductions in membrane gas permeance, porosity, contact angle and wetting resistance were detected after 7-day immersion. Therefore, changes in the absorbent-induced membrane properties were found to be the reasons of the flux reduction at high operation temperatures. The alterations were, however, less pronounced for PVDF-filled MMT membrane than the original PVDF indicating thermal stability enhancement effect of the embedded clay particles. The results suggest that the impregnation of polymeric membranes by hydrophobic inorganic particles can be an effective method to stabilize the performance and properties of PVDF hollow fibers at harsh contactor operating conditions. Elsevier B.V. 2016 Article PeerReviewed Rezaei-Dasht Arzhandi, M. and Ismail, A. F. and Ghanbari, M. and Bakeri, G. and Hashemifard, S. A. and Matsuura, T. and Moslehyani, A. (2016) An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes. Journal of Natural Gas Science and Engineering, 31 . pp. 515-524. ISSN 1875-5100 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84977138931&doi=10.1016%2fj.jngse.2016.02.042&partnerID=40&md5=487fbbb39f5c6a51af0354daac53084d
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Rezaei-Dasht Arzhandi, M.
Ismail, A. F.
Ghanbari, M.
Bakeri, G.
Hashemifard, S. A.
Matsuura, T.
Moslehyani, A.
An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes
description Although alterations of polyvinylidene fluoride (PVDF) membrane performance and properties in contactor applications are more severe at high temperature, to date, detailed information on the relationship between performance and properties with temperature is available. Hence, this study was undertaken to improve thermal stability of PVDF membranes by montmorillonite (MMT) incorporation. The fabricated membranes were operated in a closed contactor loop with water temperature of either 27 °C or 80 °C, followed by measuring CO2 absorption flux before and after 2 days exposure. Higher partial pore wetting at elevated temperature resulted in performance reduction of 31% and 13% for plain PVDF and 5 wt% MMT-filled PVDF membrane (MMM hollow fiber), respectively. To determine the reasons, the membranes were immersed in water of 80 °C for 7 days and analyzed by analytical characterization methods after drying. It was revealed from FESEM images that large pores on the membrane surfaces became larger while the small pores became smaller, leading porous membrane surfaces to deform to semi-dense layers with small number of large pores. Furthermore, strong reductions in membrane gas permeance, porosity, contact angle and wetting resistance were detected after 7-day immersion. Therefore, changes in the absorbent-induced membrane properties were found to be the reasons of the flux reduction at high operation temperatures. The alterations were, however, less pronounced for PVDF-filled MMT membrane than the original PVDF indicating thermal stability enhancement effect of the embedded clay particles. The results suggest that the impregnation of polymeric membranes by hydrophobic inorganic particles can be an effective method to stabilize the performance and properties of PVDF hollow fibers at harsh contactor operating conditions.
format Article
author Rezaei-Dasht Arzhandi, M.
Ismail, A. F.
Ghanbari, M.
Bakeri, G.
Hashemifard, S. A.
Matsuura, T.
Moslehyani, A.
author_facet Rezaei-Dasht Arzhandi, M.
Ismail, A. F.
Ghanbari, M.
Bakeri, G.
Hashemifard, S. A.
Matsuura, T.
Moslehyani, A.
author_sort Rezaei-Dasht Arzhandi, M.
title An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes
title_short An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes
title_full An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes
title_fullStr An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes
title_full_unstemmed An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes
title_sort investigation of temperature effects on the properties and co2 absorption performance of porous pvdf/montmorillonite mixed matrix membranes
publisher Elsevier B.V.
publishDate 2016
url http://eprints.utm.my/id/eprint/73699/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84977138931&doi=10.1016%2fj.jngse.2016.02.042&partnerID=40&md5=487fbbb39f5c6a51af0354daac53084d
_version_ 1643656723437715456
score 13.189132