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The activation energy of swelling beech wood (Fagus sylvatica L.) in water

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EN
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EN
The activation energy of swelling beech wood (Fagus sylvatica L.) in water. This paper shows the results of the activation energy of swelling beech wood in water. The results showed that activation energy depends on the density. Increasing that values increase activation energy of swelling.
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autor
  • Department of Wood Science, Poznań University of Life Sciences
  • Department of Wood Science, Poznań University of Life Sciences
  • Department of Wood Science, Poznań University of Life Sciences
autor
  • Department of Wood Science, Poznań University of Life Sciences
Bibliografia
  • 1. BALA B.K., 1997: Drying and storage of cereal grains, Science Publisher, New Hampshire, SAD.
  • 2. BANKS W.B., WEST H., 1989: A chemical kinetics approach to the process of wood swelling, Proc. Tenth Cellulose Conf., C. Schuerich, ed., John Wiley & Sons, New York; 1215.
  • 3. BOICIUC M., PETRICIAN C., 1970: Dimensions stabilisierung von Rotnuchenholz durch Anlagerung von Styrol, Holztechnologie 11(2); 94-96.
  • 4. ENGELUND E.T., THYGESEN L.G., SVENSSON S., HILL C.A.S., 2013: A critical discussion of the physics of wood-water interactions, Wood Sci. Technol. 47; 141-161.
  • 5. ERIKSSON I., HAGLUND I., LIBRANDT O., SALMEN L. (1991): Fiber swelling favoured by lignin softening, Wood Sci. Technol. 25; 135-144.
  • 6. ISHIMARU Y., IIDA I., 2001: Transverse swelling behaviour of Hinoki (Chamaecyparis obtuse) revealed by replica method, J. Wood Sci. 47; 178-184.
  • 7. ISHIMARU Y., SAKAI H., 1998: Swelling of wood in liquid mixtures. Part I: Water – ethanol and water – acetone, Mokuazi Gakkaishi 34; 889-895.
  • 8. MANTANIS G.I., YOUNG R.A., ROWELL R.M., 1994a: Swelling of wood. Part I. Swelling in water, Wood Sci. Technol. 28; 119-134.
  • 9. MANTANIS G.I., YOUNG R.A., ROWELL R.M., 1994b: Swelling of wood. Part II. Swelling in organic liquids, Holzforschung 48(6); 480-490.
  • 10. MORISATO K., ISHIMARU Y., URAKAMI H., 2002: Adsorption of liquids and swelling of wood. Part VI. Saturated amounts and some thermodynamic values of adsorptsion, Holzforschung 56; 91-97.
  • 11. OU R., GUO C., XIE T., WANG Q., 2011: Crystalization in composites, BioResources 6(4); 4547-4565.
  • 12. SAHIN H.T, 2010: Experimental determination of the anisotropic swelling and water sorption properties of chesntnut wood, Wood Research 55(1); 33-40.
  • 13. SINHA A., NAIRN J.A., GUPTA R., 2011: Thermal degradation of bending strength of plywood and oriented strand board: a kinetics approach, Wood Sci. Technol. 45; 315-330.
  • 14. STAMM A.J., LOUGHBOROUGH W.K., 1942: Variation in shrinking and swelling of wood, Am. Soc. Mech. Eng. Trans. 64; 379-386.
  • 15. WEST H., 1988: Kinetics and mechanism of wood-isocyanate reactions, Ph.D. Thesis, University of Wales (U.C.N.W., Bangor: Forestry and Wood Science).
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Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-46de0948-faae-4da9-a3f2-98d0cac590ac
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