Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite

The exploration of new biocomposites that are environmental friendly is gain attention due to depletion of petroleum resources and increasing global environmental concern. Therefore, the investigation of environmental friendly and sustainable materials requires to substitute the synthetic based mate...

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Main Authors: Mohd Apandi, Siti Nur E’zzati, Anuar, Hazleen, Abd. Rashid, Siti Munirah Salimah, Buys, Yose Fachmi, Othman, Rashidi
Format: Article
Language:English
Published: UR Publishers 2018
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Online Access:http://irep.iium.edu.my/63408/1/64268_Effect%20of%20supercritical%20carbon%20dioxide%20on%20tensile.pdf
http://irep.iium.edu.my/63408/
http://www.ijcrset.com/files/amct_special_issue.pdf
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spelling my.iium.irep.634082021-07-23T15:42:35Z http://irep.iium.edu.my/63408/ Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite Mohd Apandi, Siti Nur E’zzati Anuar, Hazleen Abd. Rashid, Siti Munirah Salimah Buys, Yose Fachmi Othman, Rashidi TP1080 Polymers, plastics and their manufacture The exploration of new biocomposites that are environmental friendly is gain attention due to depletion of petroleum resources and increasing global environmental concern. Therefore, the investigation of environmental friendly and sustainable materials requires to substitute the synthetic based materials. This project is conducted to investigate the effect of supercritical carbon dioxide on tensile properties of PLA/DSF biocomposite films. The PLA/DSF biocomposites are produced via solvent casting method. Then, the samples are treated under supercritical carbon dioxide (SCCO2) at 40oC and at 200 bar pressure. From tensile properties, it was found that the tensile strength and modulus for untreated and treated PLA/DSF biocomposite are higher compared to net PLA which are 24.9 MPa and 23.5 MPa. Thus, the addition of durian skin fiber improved the mechanical strength PLA polymer. But, the presence of foams and pore in treated PLA/DSF biocomposites decreased its tensile properties by 1.4 MPa less compared to untreated samples as confirmed by morphological observations under scanning electron microscope. UR Publishers 2018 Article PeerReviewed application/pdf en http://irep.iium.edu.my/63408/1/64268_Effect%20of%20supercritical%20carbon%20dioxide%20on%20tensile.pdf Mohd Apandi, Siti Nur E’zzati and Anuar, Hazleen and Abd. Rashid, Siti Munirah Salimah and Buys, Yose Fachmi and Othman, Rashidi (2018) Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite. International Journal of Current Science, Engineering & Technology, Special issue. pp. 197-202. E-ISSN 2581-4311 http://www.ijcrset.com/files/amct_special_issue.pdf
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TP1080 Polymers, plastics and their manufacture
spellingShingle TP1080 Polymers, plastics and their manufacture
Mohd Apandi, Siti Nur E’zzati
Anuar, Hazleen
Abd. Rashid, Siti Munirah Salimah
Buys, Yose Fachmi
Othman, Rashidi
Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite
description The exploration of new biocomposites that are environmental friendly is gain attention due to depletion of petroleum resources and increasing global environmental concern. Therefore, the investigation of environmental friendly and sustainable materials requires to substitute the synthetic based materials. This project is conducted to investigate the effect of supercritical carbon dioxide on tensile properties of PLA/DSF biocomposite films. The PLA/DSF biocomposites are produced via solvent casting method. Then, the samples are treated under supercritical carbon dioxide (SCCO2) at 40oC and at 200 bar pressure. From tensile properties, it was found that the tensile strength and modulus for untreated and treated PLA/DSF biocomposite are higher compared to net PLA which are 24.9 MPa and 23.5 MPa. Thus, the addition of durian skin fiber improved the mechanical strength PLA polymer. But, the presence of foams and pore in treated PLA/DSF biocomposites decreased its tensile properties by 1.4 MPa less compared to untreated samples as confirmed by morphological observations under scanning electron microscope.
format Article
author Mohd Apandi, Siti Nur E’zzati
Anuar, Hazleen
Abd. Rashid, Siti Munirah Salimah
Buys, Yose Fachmi
Othman, Rashidi
author_facet Mohd Apandi, Siti Nur E’zzati
Anuar, Hazleen
Abd. Rashid, Siti Munirah Salimah
Buys, Yose Fachmi
Othman, Rashidi
author_sort Mohd Apandi, Siti Nur E’zzati
title Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite
title_short Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite
title_full Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite
title_fullStr Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite
title_full_unstemmed Effect of supercritical carbon dioxide on tensile Properties of Durian skin fibre biocomposite
title_sort effect of supercritical carbon dioxide on tensile properties of durian skin fibre biocomposite
publisher UR Publishers
publishDate 2018
url http://irep.iium.edu.my/63408/1/64268_Effect%20of%20supercritical%20carbon%20dioxide%20on%20tensile.pdf
http://irep.iium.edu.my/63408/
http://www.ijcrset.com/files/amct_special_issue.pdf
_version_ 1706956557858635776
score 13.211869