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Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment

In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to modify its characteristics for biocomposite applications. Treatment was conducted at temperatures 190–230 °C for 1, 2 and 3 h. SHS-treated OPMF was evaluated for its chemical composition, thermal stabi...

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Autores principales: Nordin, Noor Ida Amalina Ahamad, Ariffin, Hidayah, Andou, Yoshito, Hassan, Mohd Ali, Shirai, Yoshihito, Nishida, Haruo, Yunus, Wan Md Zin Wan, Karuppuchamy, Subbian, Ibrahim, Nor Azowa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6270280/
https://www.ncbi.nlm.nih.gov/pubmed/23903185
http://dx.doi.org/10.3390/molecules18089132
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author Nordin, Noor Ida Amalina Ahamad
Ariffin, Hidayah
Andou, Yoshito
Hassan, Mohd Ali
Shirai, Yoshihito
Nishida, Haruo
Yunus, Wan Md Zin Wan
Karuppuchamy, Subbian
Ibrahim, Nor Azowa
author_facet Nordin, Noor Ida Amalina Ahamad
Ariffin, Hidayah
Andou, Yoshito
Hassan, Mohd Ali
Shirai, Yoshihito
Nishida, Haruo
Yunus, Wan Md Zin Wan
Karuppuchamy, Subbian
Ibrahim, Nor Azowa
author_sort Nordin, Noor Ida Amalina Ahamad
collection PubMed
description In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to modify its characteristics for biocomposite applications. Treatment was conducted at temperatures 190–230 °C for 1, 2 and 3 h. SHS-treated OPMF was evaluated for its chemical composition, thermal stability, morphology and crystallinity. OPMF treated at 230 °C exhibited lower hemicellulose content (9%) compared to the untreated OPMF (33%). Improved thermal stability of OPMF was found after the SHS treatment. Moreover, SEM and ICP analyses of SHS-treated OPMF showed that silica bodies were removed from OPMF after the SHS treatment. XRD results exhibited that OPMF crystallinity increased after SHS treatment, indicating tougher fiber properties. Hemicellulose removal makes the fiber surface more hydrophobic, whereby silica removal increases the surface roughness of the fiber. Overall, the results obtained herewith suggested that SHS is an effective treatment method for surface modification and subsequently improving the characteristics of the natural fiber. Most importantly, the use of novel, eco-friendly SHS may contribute to the green and sustainable treatment for surface modification of natural fiber.
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spelling pubmed-62702802018-12-18 Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment Nordin, Noor Ida Amalina Ahamad Ariffin, Hidayah Andou, Yoshito Hassan, Mohd Ali Shirai, Yoshihito Nishida, Haruo Yunus, Wan Md Zin Wan Karuppuchamy, Subbian Ibrahim, Nor Azowa Molecules Article In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to modify its characteristics for biocomposite applications. Treatment was conducted at temperatures 190–230 °C for 1, 2 and 3 h. SHS-treated OPMF was evaluated for its chemical composition, thermal stability, morphology and crystallinity. OPMF treated at 230 °C exhibited lower hemicellulose content (9%) compared to the untreated OPMF (33%). Improved thermal stability of OPMF was found after the SHS treatment. Moreover, SEM and ICP analyses of SHS-treated OPMF showed that silica bodies were removed from OPMF after the SHS treatment. XRD results exhibited that OPMF crystallinity increased after SHS treatment, indicating tougher fiber properties. Hemicellulose removal makes the fiber surface more hydrophobic, whereby silica removal increases the surface roughness of the fiber. Overall, the results obtained herewith suggested that SHS is an effective treatment method for surface modification and subsequently improving the characteristics of the natural fiber. Most importantly, the use of novel, eco-friendly SHS may contribute to the green and sustainable treatment for surface modification of natural fiber. MDPI 2013-07-30 /pmc/articles/PMC6270280/ /pubmed/23903185 http://dx.doi.org/10.3390/molecules18089132 Text en © 2013 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Nordin, Noor Ida Amalina Ahamad
Ariffin, Hidayah
Andou, Yoshito
Hassan, Mohd Ali
Shirai, Yoshihito
Nishida, Haruo
Yunus, Wan Md Zin Wan
Karuppuchamy, Subbian
Ibrahim, Nor Azowa
Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment
title Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment
title_full Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment
title_fullStr Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment
title_full_unstemmed Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment
title_short Modification of Oil Palm Mesocarp Fiber Characteristics Using Superheated Steam Treatment
title_sort modification of oil palm mesocarp fiber characteristics using superheated steam treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6270280/
https://www.ncbi.nlm.nih.gov/pubmed/23903185
http://dx.doi.org/10.3390/molecules18089132
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