Decay durability of heat-treated wood produced in supercritical carbon dioxide
Author:
Affiliation:
1. Forestry and Forest Products Research Institute, Forest Research and Management Organization
2. College of Bioresource Sciences, Nihon University
Publisher
Japan Wood Preserving Association
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jwpa/44/6/44_357/_pdf
Reference13 articles.
1. 1) Esteves, B. M., Pereira, H. M. : Wood Modification by Heat Treatment: A Review, BioResources, 4(1), 370-404(2009).
2. 3) Alén, R., Kotilainen, R., Zaman, A. : Thermochemical behavior of Norway spruce (Picea abies) at 180-225°C, Wood Science and Technology , 36(2), 163-171(2002).
3. 4) Nuopponen, M., Vuorinen, T., Jämsä, S., Viitaniemi, P. : Thermal modifications in softwood studied by FT-IR and UV resonance raman spectroscopies, Journal of Wood Chemistry and Technology, 24(1), 13-26(2005).
4. 5) Bhuiyan, M. T. R., Hirai, N., Sobue, N. : Effect of intermittent heat treatment on crystallinity in wood cellulose, Journal of Wood Science , 47(5), 336-341(2001).
5. 6) Sivonen, H., Maunu, S. L., Sundholm, F., Jämsä S., Viitaniemi, P. : Magnetic resonance stu; dies of thermally modified wood, Holzforschung , 56(6), 648-654(2002).
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