Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.

Walaupun membran seramik mempunyai rintangan yang tinggi terhadap haba dan bahan kimia, kebolehtelapannya adalah lebih rendah berbanding dengan membran organik. Selain daripada mengurangkan ketebalan membran yang akan menyebabkan kecacatan, membran seramik dioptimumkan dalam kajian ini dengan memper...

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Main Authors: Ahmad, Abdul Latif, Abd. Shukor, Syamsul Rizal
Format: Monograph
Published: Universiti Sains Malaysia 2008
Subjects:
Online Access:http://eprints.usm.my/10522/
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spelling my.usm.eprints.10522 http://eprints.usm.my/10522/ Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template. Ahmad, Abdul Latif Abd. Shukor, Syamsul Rizal TP1-1185 Chemical technology Walaupun membran seramik mempunyai rintangan yang tinggi terhadap haba dan bahan kimia, kebolehtelapannya adalah lebih rendah berbanding dengan membran organik. Selain daripada mengurangkan ketebalan membran yang akan menyebabkan kecacatan, membran seramik dioptimumkan dalam kajian ini dengan memperkenalkan membran seramik berliang dwimod yang dipencontohkan dengan sfera polistirena bersaiz nano. Although ceramic membranes possess great resistance toward heat and chemicals, the permeability of ceramic membranes is relatively low compared to organic membranes. Instead of reducing membrane thickness which induces defects; the ceramic membrane was optimized in this study by introducing bimodal porous ceramic membrane templated by nanosized polystyrene spheres. Universiti Sains Malaysia 2008 Monograph NonPeerReviewed Ahmad, Abdul Latif and Abd. Shukor, Syamsul Rizal (2008) Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template. Project Report. Universiti Sains Malaysia.
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
topic TP1-1185 Chemical technology
spellingShingle TP1-1185 Chemical technology
Ahmad, Abdul Latif
Abd. Shukor, Syamsul Rizal
Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.
description Walaupun membran seramik mempunyai rintangan yang tinggi terhadap haba dan bahan kimia, kebolehtelapannya adalah lebih rendah berbanding dengan membran organik. Selain daripada mengurangkan ketebalan membran yang akan menyebabkan kecacatan, membran seramik dioptimumkan dalam kajian ini dengan memperkenalkan membran seramik berliang dwimod yang dipencontohkan dengan sfera polistirena bersaiz nano. Although ceramic membranes possess great resistance toward heat and chemicals, the permeability of ceramic membranes is relatively low compared to organic membranes. Instead of reducing membrane thickness which induces defects; the ceramic membrane was optimized in this study by introducing bimodal porous ceramic membrane templated by nanosized polystyrene spheres.
format Monograph
author Ahmad, Abdul Latif
Abd. Shukor, Syamsul Rizal
author_facet Ahmad, Abdul Latif
Abd. Shukor, Syamsul Rizal
author_sort Ahmad, Abdul Latif
title Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.
title_short Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.
title_full Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.
title_fullStr Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.
title_full_unstemmed Synthesize of nanoporous ceramic membrane with Bimodal pore size distribution using nanosized template.
title_sort synthesize of nanoporous ceramic membrane with bimodal pore size distribution using nanosized template.
publisher Universiti Sains Malaysia
publishDate 2008
url http://eprints.usm.my/10522/
_version_ 1643701560300011520
score 13.160551