Development of palladium impregnated titania membrane to enhance hydrogen permeability.

Kajian ini dijalankan untuk membangunkan membran seramik yang telah digabungkan dengan elemen paladium yang mempunyai kadar afiniti yang tinggi terhadap gas hidrogen untuk meningkatkan tahap kememilihan. Bagi mengekalkan kadar kebolehtelapan pada tahap yang tinggi, seramik TiO2 telah dipilih atas da...

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Main Author: Jaya, Muhammad Azan Tamar
Format: Thesis
Language:English
Published: 2011
Subjects:
Online Access:http://eprints.usm.my/42957/1/Pages_from_DEVELOPMENT_OF_PALLADIUM_IMPREGNATED_TITANIA_MEMBRANE_TO_ENHANCE_HYDROGEN_PERMEABILITY.pdf
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author Jaya, Muhammad Azan Tamar
author_facet Jaya, Muhammad Azan Tamar
author_sort Jaya, Muhammad Azan Tamar
collection USM
description Kajian ini dijalankan untuk membangunkan membran seramik yang telah digabungkan dengan elemen paladium yang mempunyai kadar afiniti yang tinggi terhadap gas hidrogen untuk meningkatkan tahap kememilihan. Bagi mengekalkan kadar kebolehtelapan pada tahap yang tinggi, seramik TiO2 telah dipilih atas dasar tahap tortuositinya yang rendah. Kajian ini memfokuskan pada sintesis dan pencirian membran TiO2 berimprignasikan paladium (membran Pd-TiO2) dengan kaedah sol-gel. The current study has been conducted to develop a ceramic membrane combined with palladium metal that offers great affinity towards hydrogen to improve the selectivity. In order to obtain the highest permeability, TiO2 ceramic which has low tortuosity compared to other ceramic materials was utilized. The study focused on the synthesis and characterization of TiO2 membrane with the impregnation of elemental palladium (Pd-TiO2 membrane).
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spelling usm.eprints-429572018-11-21T07:09:25Z http://eprints.usm.my/42957/ Development of palladium impregnated titania membrane to enhance hydrogen permeability. Jaya, Muhammad Azan Tamar TP1-1185 Chemical technology Kajian ini dijalankan untuk membangunkan membran seramik yang telah digabungkan dengan elemen paladium yang mempunyai kadar afiniti yang tinggi terhadap gas hidrogen untuk meningkatkan tahap kememilihan. Bagi mengekalkan kadar kebolehtelapan pada tahap yang tinggi, seramik TiO2 telah dipilih atas dasar tahap tortuositinya yang rendah. Kajian ini memfokuskan pada sintesis dan pencirian membran TiO2 berimprignasikan paladium (membran Pd-TiO2) dengan kaedah sol-gel. The current study has been conducted to develop a ceramic membrane combined with palladium metal that offers great affinity towards hydrogen to improve the selectivity. In order to obtain the highest permeability, TiO2 ceramic which has low tortuosity compared to other ceramic materials was utilized. The study focused on the synthesis and characterization of TiO2 membrane with the impregnation of elemental palladium (Pd-TiO2 membrane). 2011-06 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/42957/1/Pages_from_DEVELOPMENT_OF_PALLADIUM_IMPREGNATED_TITANIA_MEMBRANE_TO_ENHANCE_HYDROGEN_PERMEABILITY.pdf Jaya, Muhammad Azan Tamar (2011) Development of palladium impregnated titania membrane to enhance hydrogen permeability. Masters thesis, Universiti Sains Malaysia.
spellingShingle TP1-1185 Chemical technology
Jaya, Muhammad Azan Tamar
Development of palladium impregnated titania membrane to enhance hydrogen permeability.
title Development of palladium impregnated titania membrane to enhance hydrogen permeability.
title_full Development of palladium impregnated titania membrane to enhance hydrogen permeability.
title_fullStr Development of palladium impregnated titania membrane to enhance hydrogen permeability.
title_full_unstemmed Development of palladium impregnated titania membrane to enhance hydrogen permeability.
title_short Development of palladium impregnated titania membrane to enhance hydrogen permeability.
title_sort development of palladium impregnated titania membrane to enhance hydrogen permeability
topic TP1-1185 Chemical technology
url http://eprints.usm.my/42957/1/Pages_from_DEVELOPMENT_OF_PALLADIUM_IMPREGNATED_TITANIA_MEMBRANE_TO_ENHANCE_HYDROGEN_PERMEABILITY.pdf
work_keys_str_mv AT jayamuhammadazantamar developmentofpalladiumimpregnatedtitaniamembranetoenhancehydrogenpermeability