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Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond

The fibrovascular bundle (FVB) in palm plants consists of fiber and vascular tissue. Geometrically, it is a long fiber that can be used as an oriented board raw material. This research aimed to examine the performance of citric acid-bonded orientation boards from modified FVB salacca frond under NaO...

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Autores principales: Hakim, Luthfi, Widyorini, Ragil, Nugroho, Widyanto Dwi, Prayitno, Tibertius Agus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658875/
https://www.ncbi.nlm.nih.gov/pubmed/34883593
http://dx.doi.org/10.3390/polym13234090
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author Hakim, Luthfi
Widyorini, Ragil
Nugroho, Widyanto Dwi
Prayitno, Tibertius Agus
author_facet Hakim, Luthfi
Widyorini, Ragil
Nugroho, Widyanto Dwi
Prayitno, Tibertius Agus
author_sort Hakim, Luthfi
collection PubMed
description The fibrovascular bundle (FVB) in palm plants consists of fiber and vascular tissue. Geometrically, it is a long fiber that can be used as an oriented board raw material. This research aimed to examine the performance of citric acid-bonded orientation boards from modified FVB salacca frond under NaOH + Na(2)SO(3) treatment and the bonding mechanism between the modified FVB frond and citric acid. The results showed that changes in the chemical composition of FVB have a positive effect on the contact angle and increase the cellulose crystallinity index. Furthermore, the mechanical properties of the oriented board showed that 1% NaOH + 0.2% Na(2)SO(3) with 60 min immersion has a higher value compared to other treatments. The best dimension stability was on a board with the modified FVB of 1% NaOH + 0.2% Na(2)SO(3) with 30 and 60 min immersion. The bonding mechanism evaluated by FTIR spectra also showed that there is a reaction between the hydroxyl group in the modified FVB and the carboxyl group in citric acid. This showed that the modified combination treatment of NaOH+Na(2)SO(3) succeeded in increasing the mechanical properties and dimensional stability of the orientation board from the FVB salacca frond.
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spelling pubmed-86588752021-12-10 Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond Hakim, Luthfi Widyorini, Ragil Nugroho, Widyanto Dwi Prayitno, Tibertius Agus Polymers (Basel) Article The fibrovascular bundle (FVB) in palm plants consists of fiber and vascular tissue. Geometrically, it is a long fiber that can be used as an oriented board raw material. This research aimed to examine the performance of citric acid-bonded orientation boards from modified FVB salacca frond under NaOH + Na(2)SO(3) treatment and the bonding mechanism between the modified FVB frond and citric acid. The results showed that changes in the chemical composition of FVB have a positive effect on the contact angle and increase the cellulose crystallinity index. Furthermore, the mechanical properties of the oriented board showed that 1% NaOH + 0.2% Na(2)SO(3) with 60 min immersion has a higher value compared to other treatments. The best dimension stability was on a board with the modified FVB of 1% NaOH + 0.2% Na(2)SO(3) with 30 and 60 min immersion. The bonding mechanism evaluated by FTIR spectra also showed that there is a reaction between the hydroxyl group in the modified FVB and the carboxyl group in citric acid. This showed that the modified combination treatment of NaOH+Na(2)SO(3) succeeded in increasing the mechanical properties and dimensional stability of the orientation board from the FVB salacca frond. MDPI 2021-11-24 /pmc/articles/PMC8658875/ /pubmed/34883593 http://dx.doi.org/10.3390/polym13234090 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
Hakim, Luthfi
Widyorini, Ragil
Nugroho, Widyanto Dwi
Prayitno, Tibertius Agus
Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond
title Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond
title_full Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond
title_fullStr Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond
title_full_unstemmed Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond
title_short Performance of Citric Acid-Bonded Oriented Board from Modified Fibrovascular Bundle of Salacca (Salacca zalacca (Gaertn.) Voss) Frond
title_sort performance of citric acid-bonded oriented board from modified fibrovascular bundle of salacca (salacca zalacca (gaertn.) voss) frond
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658875/
https://www.ncbi.nlm.nih.gov/pubmed/34883593
http://dx.doi.org/10.3390/polym13234090
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