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Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()

Biodegradable adhesives prepared using three different forms of soy protein-based products (defatted soy flour/soy protein concentrate/soy protein isolate), sodium hydroxide, and itaconic acid polyamidoamine-epichlorohydrin (IA-PAE) with 0 wt%–20 wt% substitution rates were utilized to enhance the p...

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Autores principales: Samson, Damilola Oluwafemi, Shukri, Ahmad, Aziz Hashikin, Nurul Ab., Zuber, Siti Hajar, Addo Buba, Abdul Dahiru, Abdul Aziz, Mohd Zahri, Hashim, Rokiah, Mohd Yusof, Mohd Fahmi, Gemanam, Sylvester Jande, Samson, Peter Ayoola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9873669/
https://www.ncbi.nlm.nih.gov/pubmed/36711293
http://dx.doi.org/10.1016/j.heliyon.2023.e13032
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author Samson, Damilola Oluwafemi
Shukri, Ahmad
Aziz Hashikin, Nurul Ab.
Zuber, Siti Hajar
Addo Buba, Abdul Dahiru
Abdul Aziz, Mohd Zahri
Hashim, Rokiah
Mohd Yusof, Mohd Fahmi
Gemanam, Sylvester Jande
Samson, Peter Ayoola
author_facet Samson, Damilola Oluwafemi
Shukri, Ahmad
Aziz Hashikin, Nurul Ab.
Zuber, Siti Hajar
Addo Buba, Abdul Dahiru
Abdul Aziz, Mohd Zahri
Hashim, Rokiah
Mohd Yusof, Mohd Fahmi
Gemanam, Sylvester Jande
Samson, Peter Ayoola
author_sort Samson, Damilola Oluwafemi
collection PubMed
description Biodegradable adhesives prepared using three different forms of soy protein-based products (defatted soy flour/soy protein concentrate/soy protein isolate), sodium hydroxide, and itaconic acid polyamidoamine-epichlorohydrin (IA-PAE) with 0 wt%–20 wt% substitution rates were utilized to enhance the production of mangrove wood composites. (1)H nuclear magnetic resonance, differential scanning calorimetry, and ultra-high-resolution field emission scanning electron microscopy were employed to characterize the composite samples. Other measurements involved the determination of viscosity, pH, physical, mechanical, dimensional stability, CT numbers, and relative electron density parameters. The ideal curing conditions for the composite bio-adhesives were found to be 15 wt% IA-PAE, 602.50 ± 172.21–391.11 ± 105.82 mPa s, pH 11.0, 180 °C, and 18 min, respectively. The improved physiochemical characteristics of DSF, SPC, and SPI confirmed that NaOH/IA-PAE was integrated into the adhesive system and ameliorated the overall performance of the resulting composites. The results showed that all composite samples, except for those bonded with 0 wt% and 5 wt% IA-PAE, matched up with the quality specification stated in the JIS A-5908 and ASTM D1037. Samples D1, D2, and D3 exhibited optimum characteristics, demonstrating their uses in the development of low-toxicity and sustainable reference tissue substitute phantom in radiological areas.
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spelling pubmed-98736692023-01-26 Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites() Samson, Damilola Oluwafemi Shukri, Ahmad Aziz Hashikin, Nurul Ab. Zuber, Siti Hajar Addo Buba, Abdul Dahiru Abdul Aziz, Mohd Zahri Hashim, Rokiah Mohd Yusof, Mohd Fahmi Gemanam, Sylvester Jande Samson, Peter Ayoola Heliyon Research Article Biodegradable adhesives prepared using three different forms of soy protein-based products (defatted soy flour/soy protein concentrate/soy protein isolate), sodium hydroxide, and itaconic acid polyamidoamine-epichlorohydrin (IA-PAE) with 0 wt%–20 wt% substitution rates were utilized to enhance the production of mangrove wood composites. (1)H nuclear magnetic resonance, differential scanning calorimetry, and ultra-high-resolution field emission scanning electron microscopy were employed to characterize the composite samples. Other measurements involved the determination of viscosity, pH, physical, mechanical, dimensional stability, CT numbers, and relative electron density parameters. The ideal curing conditions for the composite bio-adhesives were found to be 15 wt% IA-PAE, 602.50 ± 172.21–391.11 ± 105.82 mPa s, pH 11.0, 180 °C, and 18 min, respectively. The improved physiochemical characteristics of DSF, SPC, and SPI confirmed that NaOH/IA-PAE was integrated into the adhesive system and ameliorated the overall performance of the resulting composites. The results showed that all composite samples, except for those bonded with 0 wt% and 5 wt% IA-PAE, matched up with the quality specification stated in the JIS A-5908 and ASTM D1037. Samples D1, D2, and D3 exhibited optimum characteristics, demonstrating their uses in the development of low-toxicity and sustainable reference tissue substitute phantom in radiological areas. Elsevier 2023-01-18 /pmc/articles/PMC9873669/ /pubmed/36711293 http://dx.doi.org/10.1016/j.heliyon.2023.e13032 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Samson, Damilola Oluwafemi
Shukri, Ahmad
Aziz Hashikin, Nurul Ab.
Zuber, Siti Hajar
Addo Buba, Abdul Dahiru
Abdul Aziz, Mohd Zahri
Hashim, Rokiah
Mohd Yusof, Mohd Fahmi
Gemanam, Sylvester Jande
Samson, Peter Ayoola
Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
title Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
title_full Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
title_fullStr Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
title_full_unstemmed Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
title_short Performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
title_sort performance of natural product-based materials as adhesives in the fabrication of mangrove wood composites()
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9873669/
https://www.ncbi.nlm.nih.gov/pubmed/36711293
http://dx.doi.org/10.1016/j.heliyon.2023.e13032
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