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  4. Effect of alkali treatment and fungal degradation on the nanostructure and cellulose arrangement in Scots pine cell walls – A neutron and X-ray scattering study
 
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Effect of alkali treatment and fungal degradation on the nanostructure and cellulose arrangement in Scots pine cell walls – A neutron and X-ray scattering study

Type
Journal article
Language
English
Date issued
2025
Author
Broda, Magdalena 
Plaza, Nayomi Z.
Jakes, Joseph E.
Baez, Carlos
Pingali, Sai Venkatesh
Bras, Wim
Faculty
Wydział Leśny i Technologii Drewna
PBN discipline
forestry
Journal
Carbohydrate Polymers
ISSN
0144-8617
DOI
10.1016/j.carbpol.2024.122733
Web address
https://www.sciencedirect.com/science/article/pii/S0144861724009597
Volume
347
Pages from-to
art. 122733
Abstract (EN)
Research on new conservation treatments for historical wood requires considerable amounts of appropriate wood material, which is hard to acquire. Thus, we produced biologically and chemically degraded model wood that could be used as a representative material in future research on consolidating agents. Using chemical composition determinations, we found that fungal decay targeted mainly polysaccharides, while alkaline treatment mostly reduced hemicelluloses and lignin content. X-ray and neutron scattering showed that all decayed samples had increased disorder in microfibril alignment and larger elementary fibril cross-sections, and alkaline-treated samples had much larger elementary fibril spacing compared to those decayed by fungi. These nanoscale and chemical differences correlate with physical property changes. For example, decreased cellulose crystallinity and increased disorder of the microfibrils in degraded cell walls likely contribute to the lower elastic moduli measured for these cell walls. The obtained data improves understanding of how degradation alters wood structures and properties across length scales and will be valuable for future studies focusing on archeological wood. Moreover, it leads to the conclusion that it is more appropriate to develop treatments that consider not only spatial variability and degree of wood degradation but also the corresponding molecular and nanoscale changes in the cell walls.
Keywords (PL)
  • krystaliczność celulozy

  • degradacja drewna

  • struktura ściany komórkowej

  • mikrofibryle celulozowe

Keywords (EN)
  • Cellulose crystallinity

  • Wood degradation

  • Cellulose arrangement

  • Cell wall nanostructure

  • Neutron scattering

  • Cellulose microfibrils

License
cc-by-nccc-by-nc CC-BY-NC - Attribution-NonCommercial
Open access date
September 12, 2024
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