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Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins

Ammoxidation of pine kraft lignin in aqueous 5 wt % ammonia affords a novel type of phenol substitute that significantly accelerates resole synthesis and curing as demonstrated for 40 wt % phenol replacement. Compared to non-ammoxidized lignin, which already shortens significantly the cooking time r...

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Autores principales: Ghorbani, Masoumeh, Konnerth, Johannes, Budjav, Enkhjargal, Requejo Silva, Ana, Zinovyev, Grigory, van Herwijnen, Hendrikus W. G., Edler, Matthias, Griesser, Thomas, Liebner, Falk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432072/
https://www.ncbi.nlm.nih.gov/pubmed/30970720
http://dx.doi.org/10.3390/polym9020043
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author Ghorbani, Masoumeh
Konnerth, Johannes
Budjav, Enkhjargal
Requejo Silva, Ana
Zinovyev, Grigory
van Herwijnen, Hendrikus W. G.
Edler, Matthias
Griesser, Thomas
Liebner, Falk
author_facet Ghorbani, Masoumeh
Konnerth, Johannes
Budjav, Enkhjargal
Requejo Silva, Ana
Zinovyev, Grigory
van Herwijnen, Hendrikus W. G.
Edler, Matthias
Griesser, Thomas
Liebner, Falk
author_sort Ghorbani, Masoumeh
collection PubMed
description Ammoxidation of pine kraft lignin in aqueous 5 wt % ammonia affords a novel type of phenol substitute that significantly accelerates resole synthesis and curing as demonstrated for 40 wt % phenol replacement. Compared to non-ammoxidized lignin, which already shortens significantly the cooking time required to reach a resole viscosity of 1000 Pa·s (250 vs. 150 s) and reduces the typical curing B-time by about 25% at 100 °C, the use of ammoxidized lignin has an even more pronounced impact in this respect. Activation of lignin by Fenton-type oxidation prior to ammoxidation further boosts both synthesis and curing of the resole. This is presumably due to the intermediary formation of polyvalent cross-linkers like N,N,N-tris (methylol) trimethylene triamine triggered by saponification of a larger fraction of nitrogenous moieties present in such a treated lignin (ammonium salts, amide-type nitrogen, urea) and reaction of the released ammonia with formaldehyde. Except for the fact that phenol replacement by ammoxidized lignin results in a somewhat less brittle cured adhesive polymer and higher elastic modulus, the aforementioned acceleration in curing could no longer be observed in the presence of wood, where a significantly delayed wood-adhesive bond formation was observed for the lignin-containing adhesives as evident from the automated bonding evaluation system.
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spelling pubmed-64320722019-04-02 Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins Ghorbani, Masoumeh Konnerth, Johannes Budjav, Enkhjargal Requejo Silva, Ana Zinovyev, Grigory van Herwijnen, Hendrikus W. G. Edler, Matthias Griesser, Thomas Liebner, Falk Polymers (Basel) Article Ammoxidation of pine kraft lignin in aqueous 5 wt % ammonia affords a novel type of phenol substitute that significantly accelerates resole synthesis and curing as demonstrated for 40 wt % phenol replacement. Compared to non-ammoxidized lignin, which already shortens significantly the cooking time required to reach a resole viscosity of 1000 Pa·s (250 vs. 150 s) and reduces the typical curing B-time by about 25% at 100 °C, the use of ammoxidized lignin has an even more pronounced impact in this respect. Activation of lignin by Fenton-type oxidation prior to ammoxidation further boosts both synthesis and curing of the resole. This is presumably due to the intermediary formation of polyvalent cross-linkers like N,N,N-tris (methylol) trimethylene triamine triggered by saponification of a larger fraction of nitrogenous moieties present in such a treated lignin (ammonium salts, amide-type nitrogen, urea) and reaction of the released ammonia with formaldehyde. Except for the fact that phenol replacement by ammoxidized lignin results in a somewhat less brittle cured adhesive polymer and higher elastic modulus, the aforementioned acceleration in curing could no longer be observed in the presence of wood, where a significantly delayed wood-adhesive bond formation was observed for the lignin-containing adhesives as evident from the automated bonding evaluation system. MDPI 2017-01-28 /pmc/articles/PMC6432072/ /pubmed/30970720 http://dx.doi.org/10.3390/polym9020043 Text en © 2017 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
Ghorbani, Masoumeh
Konnerth, Johannes
Budjav, Enkhjargal
Requejo Silva, Ana
Zinovyev, Grigory
van Herwijnen, Hendrikus W. G.
Edler, Matthias
Griesser, Thomas
Liebner, Falk
Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins
title Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins
title_full Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins
title_fullStr Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins
title_full_unstemmed Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins
title_short Ammoxidized Fenton-Activated Pine Kraft Lignin Accelerates Synthesis and Curing of Resole Resins
title_sort ammoxidized fenton-activated pine kraft lignin accelerates synthesis and curing of resole resins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432072/
https://www.ncbi.nlm.nih.gov/pubmed/30970720
http://dx.doi.org/10.3390/polym9020043
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