P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature

In this study, the effect of carbonization temperature on the performance of carbon membrane was being investigated. P84 co-polyimide-based tubular carbon membrane were fabricated through the dip-coating technique. The prepared membranes were characterized by using the thermogravimetric analysis and...

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Main Authors: Sazali, N., W. Salleh, W. N., Arsat, N., Harun, Z., Kadirgama, K.
Format: Article
Published: Penerbit Universiti Teknologi Malaysia Press 2019
Subjects:
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author Sazali, N.
W. Salleh, W. N.
Arsat, N.
Harun, Z.
Kadirgama, K.
author_facet Sazali, N.
W. Salleh, W. N.
Arsat, N.
Harun, Z.
Kadirgama, K.
author_sort Sazali, N.
collection UTHM
description In this study, the effect of carbonization temperature on the performance of carbon membrane was being investigated. P84 co-polyimide-based tubular carbon membrane were fabricated through the dip-coating technique. The prepared membranes were characterized by using the thermogravimetric analysis and scanning electron microscopy. CO2, N2, and CH4 pure gas were utilized in determination of the carbon membrane’s permeation attributes. In order to enhance the membrane’s performance, carbonization process was performed in Ar environment; with the flow rate of 200 ml/min. The carbonization process was done at various temperature, namely 600 oC, 700 oC, 800 oC and 900 oC in a constant heating rate of 3 oC/min. The increased in the temperature of carbonization leads to the production of small pores size carbon membrane. Carbon membrane prepared at 800 oC showed the highest CO2/CH4 and CO2/N2 selectivity of 63.2±5.2 and 61.3±1.7, respectively.
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institution Universiti Tun Hussein Onn Malaysia
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spelling uthm.eprints-41012021-11-25T02:50:14Z http://eprints.uthm.edu.my/4101/ P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature Sazali, N. W. Salleh, W. N. Arsat, N. Harun, Z. Kadirgama, K. QC170-197 Atomic physics. Constitution and properties of matter. Including molecular physics, relativity, quantum theory, and solid state physics In this study, the effect of carbonization temperature on the performance of carbon membrane was being investigated. P84 co-polyimide-based tubular carbon membrane were fabricated through the dip-coating technique. The prepared membranes were characterized by using the thermogravimetric analysis and scanning electron microscopy. CO2, N2, and CH4 pure gas were utilized in determination of the carbon membrane’s permeation attributes. In order to enhance the membrane’s performance, carbonization process was performed in Ar environment; with the flow rate of 200 ml/min. The carbonization process was done at various temperature, namely 600 oC, 700 oC, 800 oC and 900 oC in a constant heating rate of 3 oC/min. The increased in the temperature of carbonization leads to the production of small pores size carbon membrane. Carbon membrane prepared at 800 oC showed the highest CO2/CH4 and CO2/N2 selectivity of 63.2±5.2 and 61.3±1.7, respectively. Penerbit Universiti Teknologi Malaysia Press 2019 Article PeerReviewed Sazali, N. and W. Salleh, W. N. and Arsat, N. and Harun, Z. and Kadirgama, K. (2019) P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature. J. Applied Membrane Science & Technology, 23 (1). pp. 17-24. ISSN 1823-366X https://doi.org/10.11113/amst.v23n1.121
spellingShingle QC170-197 Atomic physics. Constitution and properties of matter. Including molecular physics, relativity, quantum theory, and solid state physics
Sazali, N.
W. Salleh, W. N.
Arsat, N.
Harun, Z.
Kadirgama, K.
P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature
title P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature
title_full P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature
title_fullStr P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature
title_full_unstemmed P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature
title_short P84 co-polyimide-based tubular carbon membrane: effect of pyrolysis temperature
title_sort p84 co polyimide based tubular carbon membrane effect of pyrolysis temperature
topic QC170-197 Atomic physics. Constitution and properties of matter. Including molecular physics, relativity, quantum theory, and solid state physics
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