Holzforschung · 2000 · 11 citations · 7 references
Materials ScienceBiomass UtilizationBiomanufacturingEngineeringSummary Aspen WoodMechanical EngineeringPolymer ScienceClassical SynthesisChemical ModificationMaleic AnhydrideWood StructureWood FibreWood TechnologyWood ModificationPolymer ChemistryWood ComponentHydrothermal Processing
Summary Aspen wood ( Populus tremula ) as sawdust was chemically modified through a two-step procedure: esterification with maleic anhydride and subsequent oligoesterification with glycidyl methacrylate and maleic anhydride. Chemical analyses and infra-red spectroscopy revealed the differences in the chemical composition and structure of wood as a result of this treatment. These changes were also reflected by a hygroscopicity test and thermal analyses such as thermogravimetry and thermomechanical analysis. The esterified wood showed an increased hygroscopicity and a decreased thermal stability compared to unmodified wood. In contrast, the oligoesterified wood demonstrated a reduced hygroscopicity and a comparable thermal stability up to about 200°C. The thermomechanical analysis of oligoesterified wood clearly showed a significant softening phenomenon in the range 80–140°C, a direct evidence of the thermoplastic properties gained by this chemical modification.
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Thermomechanical Analysis of Isolated Lignins
Satoshi Kubo, Yasumitsu Uraki, Yoshihiro Sano · Holzforschung · 1996 · 73 citations
Studies on the Thermoplasticization of Wood
H. Funakoshi, N. Shiraishi, Misato Norimoto et al. · Holzforschung · 1979 · 46 citations