Hydroxyl accessibility in wood cell walls as affected by drying and re-wetting procedures

Author:

Thybring Emil EngelundORCID,Thygesen Lisbeth Garbrecht,Burgert Ingo

Funder

FP7 Marie Curie Action COFUND

Publisher

Springer Science and Business Media LLC

Subject

Polymers and Plastics

Reference53 articles.

1. Altaner C, Apperley DC, Jarvis MC (2006) Spatial relationships between polymers in Sitka spruce: proton spin-diffusion studies. Holzforschung 60:665–673

2. Atalla RH, Brady JW, Matthews JF, Ding SY, Himmel ME (2009) Structures of plant cell wall celluloses. In: Himmel ME (ed) Biomass recalcitrance—deconstructing the plant cell wall for bioenergy. Blackwell, Oxford, pp 188–212

3. Atalla RS, Crowley MF, Himmel ME, Atalla RH (2014) Irreversible transformations of native celluloses, upon exposure to elevated temperatures. Carbohydr Polym 100:2–8

4. Becker H, Noack D (1968) Studies on dynamic torsional viscoelasticity of wood. Wood Sci Technol 2:213–230

5. Chow SZ (1971) Infrared spectral characteristics and surface inactivation of wood at high temperatures. Wood Sci Technol 5:27–39

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