Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation

The effect of jet stretch on the morphology, pure water permeation and sodium chloride rejection of hollow fiber membranes is analyzed by varying the spinning take up speed. Polyethersulfone hollow fibers were spun using dry–wet spinning technique. The membrane formulation of PES/NMP/Water/PVPk10 is...

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Main Authors: Bolong, N., Ismail, A. F., Salim, M. R.
Format: Article
Published: 2007
Subjects:
Online Access:http://eprints.utm.my/6846/
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author Bolong, N.
Ismail, A. F.
Salim, M. R.
author_facet Bolong, N.
Ismail, A. F.
Salim, M. R.
author_sort Bolong, N.
building UTeM Institutional Repository
collection Online Access
description The effect of jet stretch on the morphology, pure water permeation and sodium chloride rejection of hollow fiber membranes is analyzed by varying the spinning take up speed. Polyethersulfone hollow fibers were spun using dry–wet spinning technique. The membrane formulation of PES/NMP/Water/PVPk10 is spun at constant extrusion rate of 3.0 cm3/ min. The fiber take up speed during spinning varied from 19.7 to 29.5 cms–1, revealed that the flux of hollow fiber membranes is minimal when the fiber take up speed is equivalent to the velocity of dope extrusion. At low jet stretch, the permeability of membranes is high with elevated ionic solutes rejection produced. The influence of elongation stress towards hollow fiber membranes morphology and its performance for water separation is also highlighted
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institution Universiti Teknologi Malaysia
institution_category Local University
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publishDate 2007
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spelling utm-68462017-10-22T06:00:13Z http://eprints.utm.my/6846/ Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation Bolong, N. Ismail, A. F. Salim, M. R. TP Chemical technology The effect of jet stretch on the morphology, pure water permeation and sodium chloride rejection of hollow fiber membranes is analyzed by varying the spinning take up speed. Polyethersulfone hollow fibers were spun using dry–wet spinning technique. The membrane formulation of PES/NMP/Water/PVPk10 is spun at constant extrusion rate of 3.0 cm3/ min. The fiber take up speed during spinning varied from 19.7 to 29.5 cms–1, revealed that the flux of hollow fiber membranes is minimal when the fiber take up speed is equivalent to the velocity of dope extrusion. At low jet stretch, the permeability of membranes is high with elevated ionic solutes rejection produced. The influence of elongation stress towards hollow fiber membranes morphology and its performance for water separation is also highlighted 2007-12 Article PeerReviewed Bolong, N. and Ismail, A. F. and Salim, M. R. (2007) Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation. Applied Membrane Science & Technology, 6 . pp. 17-25. ISSN 1823–366X https://www.researchgate.net/profile/Nurmin_Bolong/publication/46395108_Effect_of_jet_stretch_in_the_fabrication_of_polyethersulfone_hollow_fiber_spinning_for_water_separation/links/56cd0b3408ae85c8233bc5e2.pdf
spellingShingle TP Chemical technology
Bolong, N.
Ismail, A. F.
Salim, M. R.
Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
title Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
title_full Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
title_fullStr Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
title_full_unstemmed Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
title_short Effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
title_sort effect of jet stretch in the fabrication of polyethersulfone hollow fiber spinning for water separation
topic TP Chemical technology
url http://eprints.utm.my/6846/
http://eprints.utm.my/6846/