Modification of Kraft Lignin with Dodecyl Glycidyl Ether

Abstract Kraft lignin (KL) is extensively produced in industry but is mainly burned as fuel. To broaden its use, KL was grafted with dodecyl glycidyl ether to alter its thermal properties. The reaction of KL with dodecyl glycidyl ether (DGE) was analyzed using nuclear magnetic resonance (NMR), Fouri...

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Main Authors: Norah S. Alwadani, Prof. Pedram Fatehi
Format: Article
Language:English
Published: Wiley-VCH 2019-10-01
Series:ChemistryOpen
Subjects:
Online Access:https://doi.org/10.1002/open.201900263
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spelling doaj-c5dc141ab0784a45b6d2e6cf96b378bc2021-03-02T08:30:50ZengWiley-VCHChemistryOpen2191-13632019-10-018101258126610.1002/open.201900263Modification of Kraft Lignin with Dodecyl Glycidyl EtherNorah S. Alwadani0Prof. Pedram Fatehi1Chemical Engineering Department Lakehead University Thunder Bay ON Canada P7B5E1Chemical Engineering Department Lakehead University Thunder Bay ON Canada P7B5E1Abstract Kraft lignin (KL) is extensively produced in industry but is mainly burned as fuel. To broaden its use, KL was grafted with dodecyl glycidyl ether to alter its thermal properties. The reaction of KL with dodecyl glycidyl ether (DGE) was analyzed using nuclear magnetic resonance (NMR), Fourier infrared spectroscopy (FT‐IR) and elemental analysis. Alternatively, KL was methylated to mask its phenolic hydroxy groups to investigate how phenolic hydroxy groups impact the grafting of the alkyl chain of DGE onto lignin (methylated Kraft lignin, MKL). The methylation facilitated the molecular weight enhancement and thermal stability reduction of Kraft lignin via grafting with DGE. The influence of grafting alkyl chains on the structural and thermal properties of KL and MKL was studied using thermogravimetric analysis and differential scanning calorimetry analysis. Our data suggest that, due to their high molecular weights and lower glass transition temperatures, the produced lignin derivatives may be promising feedstocks for composite production.https://doi.org/10.1002/open.201900263ligninthermal analysisbiorefiningNMR spectroscopymethylation reactions
collection DOAJ
language English
format Article
sources DOAJ
author Norah S. Alwadani
Prof. Pedram Fatehi
spellingShingle Norah S. Alwadani
Prof. Pedram Fatehi
Modification of Kraft Lignin with Dodecyl Glycidyl Ether
ChemistryOpen
lignin
thermal analysis
biorefining
NMR spectroscopy
methylation reactions
author_facet Norah S. Alwadani
Prof. Pedram Fatehi
author_sort Norah S. Alwadani
title Modification of Kraft Lignin with Dodecyl Glycidyl Ether
title_short Modification of Kraft Lignin with Dodecyl Glycidyl Ether
title_full Modification of Kraft Lignin with Dodecyl Glycidyl Ether
title_fullStr Modification of Kraft Lignin with Dodecyl Glycidyl Ether
title_full_unstemmed Modification of Kraft Lignin with Dodecyl Glycidyl Ether
title_sort modification of kraft lignin with dodecyl glycidyl ether
publisher Wiley-VCH
series ChemistryOpen
issn 2191-1363
publishDate 2019-10-01
description Abstract Kraft lignin (KL) is extensively produced in industry but is mainly burned as fuel. To broaden its use, KL was grafted with dodecyl glycidyl ether to alter its thermal properties. The reaction of KL with dodecyl glycidyl ether (DGE) was analyzed using nuclear magnetic resonance (NMR), Fourier infrared spectroscopy (FT‐IR) and elemental analysis. Alternatively, KL was methylated to mask its phenolic hydroxy groups to investigate how phenolic hydroxy groups impact the grafting of the alkyl chain of DGE onto lignin (methylated Kraft lignin, MKL). The methylation facilitated the molecular weight enhancement and thermal stability reduction of Kraft lignin via grafting with DGE. The influence of grafting alkyl chains on the structural and thermal properties of KL and MKL was studied using thermogravimetric analysis and differential scanning calorimetry analysis. Our data suggest that, due to their high molecular weights and lower glass transition temperatures, the produced lignin derivatives may be promising feedstocks for composite production.
topic lignin
thermal analysis
biorefining
NMR spectroscopy
methylation reactions
url https://doi.org/10.1002/open.201900263
work_keys_str_mv AT norahsalwadani modificationofkraftligninwithdodecylglycidylether
AT profpedramfatehi modificationofkraftligninwithdodecylglycidylether
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