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The results of wood anatomical structure change study due to the high temperatures effect are presented. As samples, was used heat-treated hornbeam wood at temperatures of 160, 190 and 220 °C for 1, 10 and 20 hours. The diameter of pores in the cell walls of the vessels and fibrous elements increases in the hornbeam wood treated at a temperature of 160 °C for 20 hours also the thickness of the cell walls were decreased slightly. When the treatment temperature is increased to 190 °C, significant and irreversible changes occur in the tissues and at 220 °C were discovered complete or partial charring of the organics of the cells of the core rays.
Rocznik
Tom
Strony
207--212
Opis fizyczny
Bibliogr. 9 poz.
Twórcy
autor
- Kafedra tehnologij i dizajna izdelij iz drevesiny Nacionalʹnogo universiteta bioresursov i prirodo
autor
- Kafedra tehnologij i dizajna izdelij iz drevesiny Nacionalʹnogo universiteta bioresursov i prirodo
autor
- Otdel dendrologi i parkovedeniâ Instituta èvolûcionnoj èkologii NAN Ukrainy
Bibliografia
- 1. SIVONEN H., MAUNU S., SUNDHOLM F., JAMSA S. & VIITANIEMI P., 2002: Magnetic resonance studies of thermally modified wood, Holzforschung, 56; 648-654.
- 2. WINDEISEN E., STROBEL C. & WEGENER G., 2007: Chemical changes during the production of thermo-treated beech wood, Wood Science and Technology, 41(6); 523-536.
- 3. TJEERDSMA B. & MILITZ H., 2005: Chemical changes in hydrothermal treated wood: FTIR analysis of combined hydrothermal and dry heat-treated wood, Holz als Roh-und Werkstoff, 63(2); 102-111.
- 4. FENGEL D. AND WEGNER G., 1989: Wood – Chemistry, ultrastructure, reactions, Walter de Gruyter, Berlin, New-York, 344 p.
- 5. GANDINI A. AND BELGACEM M.N., 1997: Furans in Polymer Chemistry, Progress in Polymer Science, 22; 1203-1379.
- 6. KIM G.H., YUN K.E., KIM J.J., 1998: Effect of heat treatment on the decay resistance and bending properties of radiata pine sapwood, Mater. Organismen 32; 101-108.
- 7. YILDIZ S., GEZER E.D., YILDIZ U.C., 2006: Mechanical and chemical behaviour of spruce wood modified by heat, Build. Environ. 41; 1762-1766.
- 8. KOCAEFE D., PONCSAK S., BOLUK Y., 2008: Effect of thermal treatment on the chemical composition and mechanical properties of birch and aspen, BioResources 2; 517-537.
- 9. NIEMZ P., HOFMANN T., RETFALVI T., 2010: Investigation of chemical changes in the structure of thermally modified wood, Maderas Cienc. Tecnol. 12; 69-78.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
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