Flow instability of dope solution in hollow fiber spinning process for different flow channel length

The study demonstrated the effect of different flow channel length on the spinneret with respect to the ceramic hollow fiber membrane morphology. A smartly designed spinneret is utilized for the spinning process where the nozzle used can be change to different length via the use of adapters. Thus, a...

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Main Authors: Mohd Suffian Misaran, Rosalam Sarbatly, Mohd Azlan Ismail, Chua, Bih Lii, Pang, Santha H. Y.
Format: Article
Language:English
English
Published: Universiti Malaysia Sabah 2013
Subjects:
Online Access:https://eprints.ums.edu.my/id/eprint/19855/1/Flow%20instability.pdf
https://eprints.ums.edu.my/id/eprint/19855/7/Flow%20instability%20of%20dope%20solution%20in%20hollow%20fiber%20spinning%20process%20for%20different%20flow%20channel%20length.pdf
https://eprints.ums.edu.my/id/eprint/19855/
http://borneoscience.ums.edu.my/?p=981
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spelling my.ums.eprints.198552020-04-19T16:55:04Z https://eprints.ums.edu.my/id/eprint/19855/ Flow instability of dope solution in hollow fiber spinning process for different flow channel length Mohd Suffian Misaran Rosalam Sarbatly Mohd Azlan Ismail Chua, Bih Lii Pang, Santha H. Y. TP Chemical technology The study demonstrated the effect of different flow channel length on the spinneret with respect to the ceramic hollow fiber membrane morphology. A smartly designed spinneret is utilized for the spinning process where the nozzle used can be change to different length via the use of adapters. Thus, allowing the effect of having different flow channel length to be investigated. Three spinneret adapters with different nozzle length were fabricated at 29 mm, 34 mm, and 39 mm. Ceramic hollow fiber membrane is produced using these configurations in the spinning process. Then, the micrographic cross sections of hollow fiber membranes is investigated using Scanning Electron Microscope (SEM) where it shows finger like, dense layer and damage structure morphology. Out of the samples investigated, hollow fiber membrane spun using 39 mm nozzle length produce the best concentricity. CFD simulation is initiated to study the flow behavior inside the flow channel to correlate with that of the experimental result attained. Universiti Malaysia Sabah 2013-03 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/19855/1/Flow%20instability.pdf text en https://eprints.ums.edu.my/id/eprint/19855/7/Flow%20instability%20of%20dope%20solution%20in%20hollow%20fiber%20spinning%20process%20for%20different%20flow%20channel%20length.pdf Mohd Suffian Misaran and Rosalam Sarbatly and Mohd Azlan Ismail and Chua, Bih Lii and Pang, Santha H. Y. (2013) Flow instability of dope solution in hollow fiber spinning process for different flow channel length. Borneo Science, 32. pp. 1-13. ISSN 1394-4339 http://borneoscience.ums.edu.my/?p=981
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
English
topic TP Chemical technology
spellingShingle TP Chemical technology
Mohd Suffian Misaran
Rosalam Sarbatly
Mohd Azlan Ismail
Chua, Bih Lii
Pang, Santha H. Y.
Flow instability of dope solution in hollow fiber spinning process for different flow channel length
description The study demonstrated the effect of different flow channel length on the spinneret with respect to the ceramic hollow fiber membrane morphology. A smartly designed spinneret is utilized for the spinning process where the nozzle used can be change to different length via the use of adapters. Thus, allowing the effect of having different flow channel length to be investigated. Three spinneret adapters with different nozzle length were fabricated at 29 mm, 34 mm, and 39 mm. Ceramic hollow fiber membrane is produced using these configurations in the spinning process. Then, the micrographic cross sections of hollow fiber membranes is investigated using Scanning Electron Microscope (SEM) where it shows finger like, dense layer and damage structure morphology. Out of the samples investigated, hollow fiber membrane spun using 39 mm nozzle length produce the best concentricity. CFD simulation is initiated to study the flow behavior inside the flow channel to correlate with that of the experimental result attained.
format Article
author Mohd Suffian Misaran
Rosalam Sarbatly
Mohd Azlan Ismail
Chua, Bih Lii
Pang, Santha H. Y.
author_facet Mohd Suffian Misaran
Rosalam Sarbatly
Mohd Azlan Ismail
Chua, Bih Lii
Pang, Santha H. Y.
author_sort Mohd Suffian Misaran
title Flow instability of dope solution in hollow fiber spinning process for different flow channel length
title_short Flow instability of dope solution in hollow fiber spinning process for different flow channel length
title_full Flow instability of dope solution in hollow fiber spinning process for different flow channel length
title_fullStr Flow instability of dope solution in hollow fiber spinning process for different flow channel length
title_full_unstemmed Flow instability of dope solution in hollow fiber spinning process for different flow channel length
title_sort flow instability of dope solution in hollow fiber spinning process for different flow channel length
publisher Universiti Malaysia Sabah
publishDate 2013
url https://eprints.ums.edu.my/id/eprint/19855/1/Flow%20instability.pdf
https://eprints.ums.edu.my/id/eprint/19855/7/Flow%20instability%20of%20dope%20solution%20in%20hollow%20fiber%20spinning%20process%20for%20different%20flow%20channel%20length.pdf
https://eprints.ums.edu.my/id/eprint/19855/
http://borneoscience.ums.edu.my/?p=981
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score 13.18916