Enhancing water resistance of welded dowel wood joints by acetylated lignin

Low molecular mass acetylated organosolv lignin from wheat straw and from depolymerised low sulphur organosolv wood lignin have been shown to markedly improve both the water resistance and the mechanical performance of welded dowel wood joints. The acetylated oligomers distribution and extent of ace...

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Published in:Journal of adhesion science and technology Vol. 27; no. 3; pp. 252 - 262
Main Authors: Pizzi, A., Zhou, X., Navarrete, P., Segovia, C., Mansouri, H.R., Placentia Pena, M.I., Pichelin, F.
Format: Journal Article
Language:English
Published: Abingdon Routledge 01-02-2013
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Abstract Low molecular mass acetylated organosolv lignin from wheat straw and from depolymerised low sulphur organosolv wood lignin have been shown to markedly improve both the water resistance and the mechanical performance of welded dowel wood joints. The acetylated oligomers distribution and extent of acetylation of the two lignins were determined by Matrix assisted laser desorption ionization-time-of-flight mass spectrometry. Extensive acetylation was confirmed by CP-MAS 13 C NMR spectrometry. Force-displacement measurements on welded dowel joints to which acetylated wood lignins were added showed a ductile behaviour. This is due to the interpenetration of the elastic acetylated lignin network into the more rigid composite network of the welded interphase.
AbstractList Low molecular mass acetylated organosolv lignin from wheat straw and from depolymerised low sulphur organosolv wood lignin have been shown to markedly improve both the water resistance and the mechanical performance of welded dowel wood joints. The acetylated oligomers distribution and extent of acetylation of the two lignins were determined by Matrix assisted laser desorption ionization-time-of-flight mass spectrometry. Extensive acetylation was confirmed by CP-MAS 13 C NMR spectrometry. Force-displacement measurements on welded dowel joints to which acetylated wood lignins were added showed a ductile behaviour. This is due to the interpenetration of the elastic acetylated lignin network into the more rigid composite network of the welded interphase.
Author Pizzi, A.
Segovia, C.
Placentia Pena, M.I.
Mansouri, H.R.
Pichelin, F.
Navarrete, P.
Zhou, X.
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  givenname: X.
  surname: Zhou
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  surname: Pichelin
  fullname: Pichelin, F.
  organization: Architecture, Wood and Civil Engineering , Bern University of Applied Sciences
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Issue 3
Keywords Lignin
ductile behaviour
Welding
water resistance
Oligomer
interpenetrating network
Straw
Additive
Welded joint
acetylated lignin
Chemical composition
Acetylation
Agricultural waste
Chemical properties
environment friendly
Lignin derivatives
wood welding
biosourced additives
welded dowels
Mechanical properties
Hardwood
Tensile property
Experimental study
waterproofing additives
Wood preservative
Chemical modification
Peg
Waterproofness
Cereal
Wheat
Language English
License CC BY 4.0
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PublicationDecade 2010
PublicationPlace Abingdon
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PublicationTitle Journal of adhesion science and technology
PublicationYear 2013
Publisher Routledge
Taylor & Francis
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Omrani P (CIT0009) 2008; 66
Leban J-M (CIT0002) 2004; 18
Fengel D (CIT0011) 1984
Pizzi A (CIT0012) 2011; 25
El Mansouri N-E (CIT0017) 2007; 103
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Pizzi A (CIT0019) 1994; 51
Ganne-Chedeville C (CIT0003) 2008; 22
Pizzi A (CIT0021) 1997; 66
Omrani P (CIT0008) 2007; 21
Pizzi A (CIT0022) 1993; 49
Ganne-Chedeville C (CIT0006) 2005; 19
CIT0014
Gfeller B (CIT0001) 2003; 17
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El Mansouri N-E (CIT0016) 2006; 102
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SubjectTerms acetylated lignin
Applied sciences
biosourced additives
Degradation and preservation
ductile behaviour
environment friendly
Exact sciences and technology
interpenetrating network
lignin
Polymer industry, paints, wood
water resistance
waterproofing additives
welded dowels
Wood
wood welding
Wood. Paper. Non wovens
Title Enhancing water resistance of welded dowel wood joints by acetylated lignin
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