Evapoporometry : a novel technique for determining the pore-size distribution of membranes

Synthetic membranes are used in applications such as controlled drug release, artificial organs, smart sensors, and water treatment that require knowing the pore-size distribution (PSD). Current PSD characterization methods can require dedicated and/or expensive equipment as well as special expertis...

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Main Authors: Krantz, William B., Greenberg, Alan R., Kujundzic, Elmira., Yeo, Adrian., Hosseini, Seyed S.
Other Authors: Membrane Instruments and Technology Pte Ltd
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/96889
http://hdl.handle.net/10220/11630
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-968892020-03-07T12:48:43Z Evapoporometry : a novel technique for determining the pore-size distribution of membranes Krantz, William B. Greenberg, Alan R. Kujundzic, Elmira. Yeo, Adrian. Hosseini, Seyed S. Membrane Instruments and Technology Pte Ltd Nanyang Environment and Water Research Institute Singapore Membrane Technology Centre Synthetic membranes are used in applications such as controlled drug release, artificial organs, smart sensors, and water treatment that require knowing the pore-size distribution (PSD). Current PSD characterization methods can require dedicated and/or expensive equipment as well as special expertise to implement. Evapoporometry (EP) is a novel characterization technique based on vapor pressure depression that can accurately determine the pore size for ultrafiltration membranes using a simple diffusion cell and a microbalance. A straightforward characterization procedure and comprehensive error analysis are described. EP characterization of the PSD of a 100 nm bilayer Anopore™ membrane used as a standard is shown to compare favorably with the nominal pore diameter, FESEM analysis, and analyses reported by prior investigators. In addition, EP is utilized for PSD characterization of commercially fabricated 20 and 50 nm polyvinylidene fluoride (PVDF) membranes for which the results are compared with those obtained via liquid displacement porometry (LDP). The mean pore diameters determined by EP and LDP are in good agreement for the 50 nm PVDF membranes, but the lower values obtained via LDP for the 20 nm PVDF membranes may reflect the effects of high pressures that are not required in EP. The advantages and limitations of EP as well as other potential applications of this technique are discussed. 2013-07-17T01:52:20Z 2019-12-06T19:36:21Z 2013-07-17T01:52:20Z 2019-12-06T19:36:21Z 2013 2013 Journal Article Krantz, W. B., Greenberg, A. R., Kujundzic, E., Yeo, A., & Hosseini, S. S. (2013). Evapoporometry: A novel technique for determining the pore-size distribution of membranes. Journal of Membrane Science, 438, 153-166. 0376-7388 https://hdl.handle.net/10356/96889 http://hdl.handle.net/10220/11630 10.1016/j.memsci.2013.03.045 en Journal of membrane science © 2013 Elsevier B.V.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description Synthetic membranes are used in applications such as controlled drug release, artificial organs, smart sensors, and water treatment that require knowing the pore-size distribution (PSD). Current PSD characterization methods can require dedicated and/or expensive equipment as well as special expertise to implement. Evapoporometry (EP) is a novel characterization technique based on vapor pressure depression that can accurately determine the pore size for ultrafiltration membranes using a simple diffusion cell and a microbalance. A straightforward characterization procedure and comprehensive error analysis are described. EP characterization of the PSD of a 100 nm bilayer Anopore™ membrane used as a standard is shown to compare favorably with the nominal pore diameter, FESEM analysis, and analyses reported by prior investigators. In addition, EP is utilized for PSD characterization of commercially fabricated 20 and 50 nm polyvinylidene fluoride (PVDF) membranes for which the results are compared with those obtained via liquid displacement porometry (LDP). The mean pore diameters determined by EP and LDP are in good agreement for the 50 nm PVDF membranes, but the lower values obtained via LDP for the 20 nm PVDF membranes may reflect the effects of high pressures that are not required in EP. The advantages and limitations of EP as well as other potential applications of this technique are discussed.
author2 Membrane Instruments and Technology Pte Ltd
author_facet Membrane Instruments and Technology Pte Ltd
Krantz, William B.
Greenberg, Alan R.
Kujundzic, Elmira.
Yeo, Adrian.
Hosseini, Seyed S.
format Article
author Krantz, William B.
Greenberg, Alan R.
Kujundzic, Elmira.
Yeo, Adrian.
Hosseini, Seyed S.
spellingShingle Krantz, William B.
Greenberg, Alan R.
Kujundzic, Elmira.
Yeo, Adrian.
Hosseini, Seyed S.
Evapoporometry : a novel technique for determining the pore-size distribution of membranes
author_sort Krantz, William B.
title Evapoporometry : a novel technique for determining the pore-size distribution of membranes
title_short Evapoporometry : a novel technique for determining the pore-size distribution of membranes
title_full Evapoporometry : a novel technique for determining the pore-size distribution of membranes
title_fullStr Evapoporometry : a novel technique for determining the pore-size distribution of membranes
title_full_unstemmed Evapoporometry : a novel technique for determining the pore-size distribution of membranes
title_sort evapoporometry : a novel technique for determining the pore-size distribution of membranes
publishDate 2013
url https://hdl.handle.net/10356/96889
http://hdl.handle.net/10220/11630
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