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Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites

The effect of incorporating different loadings of oil palm bio-ash nanoparticles from agriculture waste on the properties of phenol-formaldehyde resin was investigated in this study. The bio-ash filler was used to enhance the performance of phenol-formaldehyde nanocomposites. Phenol-formaldehyde res...

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Autores principales: Abdullah, C. K., Ismail, I., Nurul Fazita, M. R., Olaiya, N. G., Nasution, H., Oyekanmi, A. A., Nuryawan, Arif, H. P. S., Abdul Khalil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8155993/
https://www.ncbi.nlm.nih.gov/pubmed/34067604
http://dx.doi.org/10.3390/polym13101615
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author Abdullah, C. K.
Ismail, I.
Nurul Fazita, M. R.
Olaiya, N. G.
Nasution, H.
Oyekanmi, A. A.
Nuryawan, Arif
H. P. S., Abdul Khalil
author_facet Abdullah, C. K.
Ismail, I.
Nurul Fazita, M. R.
Olaiya, N. G.
Nasution, H.
Oyekanmi, A. A.
Nuryawan, Arif
H. P. S., Abdul Khalil
author_sort Abdullah, C. K.
collection PubMed
description The effect of incorporating different loadings of oil palm bio-ash nanoparticles from agriculture waste on the properties of phenol-formaldehyde resin was investigated in this study. The bio-ash filler was used to enhance the performance of phenol-formaldehyde nanocomposites. Phenol-formaldehyde resin filled with oil palm bio-ash nanoparticles was prepared via the in-situ polymerization process to produce nanocomposites. The transmission electron microscope and particle size analyzer result revealed that oil palm bio-ash nanoparticles had a spherical geometry of 90 nm. Furthermore, X-ray diffraction results confirmed the formation of crystalline structure in oil palm bio-ash nanoparticles and phenol-formaldehyde nanocomposites. The thermogravimetric analysis indicated that the presence of oil palm bio-ash nanoparticles enhanced the thermal stability of the nanocomposites. The presence of oil palm bio-ash nanoparticles with 1% loading in phenol-formaldehyde resin enhanced the internal bonding strength of plywood composites. The scanning electron microscope image revealed that phenol-formaldehyde nanocomposites morphology had better uniform distribution and dispersion with 1% oil palm bio-ash nanoparticle loading than other phenol-formaldehyde nanocomposites produced. The nanocomposite has potential use in the development of particle and panel board for industrial applications.
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spelling pubmed-81559932021-05-28 Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites Abdullah, C. K. Ismail, I. Nurul Fazita, M. R. Olaiya, N. G. Nasution, H. Oyekanmi, A. A. Nuryawan, Arif H. P. S., Abdul Khalil Polymers (Basel) Article The effect of incorporating different loadings of oil palm bio-ash nanoparticles from agriculture waste on the properties of phenol-formaldehyde resin was investigated in this study. The bio-ash filler was used to enhance the performance of phenol-formaldehyde nanocomposites. Phenol-formaldehyde resin filled with oil palm bio-ash nanoparticles was prepared via the in-situ polymerization process to produce nanocomposites. The transmission electron microscope and particle size analyzer result revealed that oil palm bio-ash nanoparticles had a spherical geometry of 90 nm. Furthermore, X-ray diffraction results confirmed the formation of crystalline structure in oil palm bio-ash nanoparticles and phenol-formaldehyde nanocomposites. The thermogravimetric analysis indicated that the presence of oil palm bio-ash nanoparticles enhanced the thermal stability of the nanocomposites. The presence of oil palm bio-ash nanoparticles with 1% loading in phenol-formaldehyde resin enhanced the internal bonding strength of plywood composites. The scanning electron microscope image revealed that phenol-formaldehyde nanocomposites morphology had better uniform distribution and dispersion with 1% oil palm bio-ash nanoparticle loading than other phenol-formaldehyde nanocomposites produced. The nanocomposite has potential use in the development of particle and panel board for industrial applications. MDPI 2021-05-17 /pmc/articles/PMC8155993/ /pubmed/34067604 http://dx.doi.org/10.3390/polym13101615 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Abdullah, C. K.
Ismail, I.
Nurul Fazita, M. R.
Olaiya, N. G.
Nasution, H.
Oyekanmi, A. A.
Nuryawan, Arif
H. P. S., Abdul Khalil
Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites
title Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites
title_full Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites
title_fullStr Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites
title_full_unstemmed Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites
title_short Properties and Interfacial Bonding Enhancement of Oil Palm Bio-Ash Nanoparticles Biocomposites
title_sort properties and interfacial bonding enhancement of oil palm bio-ash nanoparticles biocomposites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8155993/
https://www.ncbi.nlm.nih.gov/pubmed/34067604
http://dx.doi.org/10.3390/polym13101615
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