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Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins

In this study, a lignin-based polyacid catalyst was synthesized via two steps to enhance water resistance of urea–formaldehyde (UF) resins. The first steps involved a hydroxymethylation reaction to increase the hydroxyl content in lignin. Then, hydroxymethylated lignins were reacted with maleic anhy...

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Autores principales: Gao, Shishuai, Liu, Yupeng, Wang, Chunpeng, Chu, Fuxiang, Xu, Feng, Zhang, Daihui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022909/
https://www.ncbi.nlm.nih.gov/pubmed/31936579
http://dx.doi.org/10.3390/polym12010175
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author Gao, Shishuai
Liu, Yupeng
Wang, Chunpeng
Chu, Fuxiang
Xu, Feng
Zhang, Daihui
author_facet Gao, Shishuai
Liu, Yupeng
Wang, Chunpeng
Chu, Fuxiang
Xu, Feng
Zhang, Daihui
author_sort Gao, Shishuai
collection PubMed
description In this study, a lignin-based polyacid catalyst was synthesized via two steps to enhance water resistance of urea–formaldehyde (UF) resins. The first steps involved a hydroxymethylation reaction to increase the hydroxyl content in lignin. Then, hydroxymethylated lignins were reacted with maleic anhydride to form maleated lignin-based polyacids. The acid groups were expected to function as acid catalysts to catalyze the curing process of UF resin. In order to elucidate the structural variation, 3-methoxy-4-hydroxyphenylpropane as a typical guaiacol lignin structural unit was used as a model compound to observe the hydroxymethylation and the reaction with maleic anhydride analyzed by (1)H and (13)C NMR. After the structural analysis of synthesized lignin-based polyacid by FTIR and (13)C NMR, it was used to produce UF resin as an adhesive in plywood and medium density fiberboard (MDF) production, respectively. The results showed that when the addition of lignin-based polyacid was 5% in plywood, it could effectively improve the water resistance of UF resins as compared to commercial additive NH(4)Cl. It also exhibited a lower formaldehyde emission. Like plywood, lignin-based catalysts used in medium density fiberboard production could not only maintain the mechanical properties, but also inhibit the water adsorption of fiberboards.
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spelling pubmed-70229092020-03-12 Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins Gao, Shishuai Liu, Yupeng Wang, Chunpeng Chu, Fuxiang Xu, Feng Zhang, Daihui Polymers (Basel) Article In this study, a lignin-based polyacid catalyst was synthesized via two steps to enhance water resistance of urea–formaldehyde (UF) resins. The first steps involved a hydroxymethylation reaction to increase the hydroxyl content in lignin. Then, hydroxymethylated lignins were reacted with maleic anhydride to form maleated lignin-based polyacids. The acid groups were expected to function as acid catalysts to catalyze the curing process of UF resin. In order to elucidate the structural variation, 3-methoxy-4-hydroxyphenylpropane as a typical guaiacol lignin structural unit was used as a model compound to observe the hydroxymethylation and the reaction with maleic anhydride analyzed by (1)H and (13)C NMR. After the structural analysis of synthesized lignin-based polyacid by FTIR and (13)C NMR, it was used to produce UF resin as an adhesive in plywood and medium density fiberboard (MDF) production, respectively. The results showed that when the addition of lignin-based polyacid was 5% in plywood, it could effectively improve the water resistance of UF resins as compared to commercial additive NH(4)Cl. It also exhibited a lower formaldehyde emission. Like plywood, lignin-based catalysts used in medium density fiberboard production could not only maintain the mechanical properties, but also inhibit the water adsorption of fiberboards. MDPI 2020-01-09 /pmc/articles/PMC7022909/ /pubmed/31936579 http://dx.doi.org/10.3390/polym12010175 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gao, Shishuai
Liu, Yupeng
Wang, Chunpeng
Chu, Fuxiang
Xu, Feng
Zhang, Daihui
Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins
title Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins
title_full Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins
title_fullStr Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins
title_full_unstemmed Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins
title_short Synthesis of Lignin-Based Polyacid Catalyst and Its Utilization to Improve Water Resistance of Urea–formaldehyde Resins
title_sort synthesis of lignin-based polyacid catalyst and its utilization to improve water resistance of urea–formaldehyde resins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022909/
https://www.ncbi.nlm.nih.gov/pubmed/31936579
http://dx.doi.org/10.3390/polym12010175
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