Estimation of quality of thermally modified beech wood with red heartwood by FT-NIR spectroscopy
Само за регистроване кориснике
2015
Чланак у часопису (Објављена верзија)
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Метаподаци
Приказ свих података о документуАпстракт
The research examines the possibility of predicting the mechanical [modulus of rupture (MOR) and modulus of elasticity (MOE)] and physical (oven-dry and air-dry densities) properties of thermally modified beech wood (Fagus moesica C.) with red heartwood by using FT-NIR spectroscopy and partial least squares regression. Samples of sapwood and red heartwood were treated for 4 h at temperatures of 170, 190, and 210 A degrees C. FT-NIR spectra (100 scans and 4 cm(-1)) were collected on the radial surface at eight points before and after the thermal modification. Oven-dry and air-dry densities as well as MOR and MOE determined by three-point bending tests were evaluated. Generally, according to the residual prediction deviation (RPD), the majority of the models obtained can be used for preliminary screening (1.5 lt RPD lt 2.5). The results of the spectra taken from sapwood were, in most models, better than the spectra of the red heartwood. Statistically, the values of density were mostl...y better than the values shown in assessment of bending properties. Results show that it is possible to accurately predict the quality of wood after being subjected to high temperatures, based on the spectra collected before the thermal modification. This fact could contribute to a more rational use of wood (especially from red heartwood) in the process of thermal modification.
Извор:
Wood Science and Technology, 2015, 49, 3, 527-549Финансирање / пројекти:
- Одрживо газдовање укупним потенцијалима шума у Републици Србији (RS-MESTD-Technological Development (TD or TR)-37008)
- Шумски засади у функцији повећања пошумљености Србије (RS-MESTD-Technological Development (TD or TR)-31041)
DOI: 10.1007/s00226-015-0710-3
ISSN: 0043-7719
WoS: 000352815600007
Scopus: 2-s2.0-84939980523
Институција/група
Šumarski fakultetTY - JOUR AU - Todorović, Nebojša AU - Popović, Zdravko AU - Milić, Goran PY - 2015 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/642 AB - The research examines the possibility of predicting the mechanical [modulus of rupture (MOR) and modulus of elasticity (MOE)] and physical (oven-dry and air-dry densities) properties of thermally modified beech wood (Fagus moesica C.) with red heartwood by using FT-NIR spectroscopy and partial least squares regression. Samples of sapwood and red heartwood were treated for 4 h at temperatures of 170, 190, and 210 A degrees C. FT-NIR spectra (100 scans and 4 cm(-1)) were collected on the radial surface at eight points before and after the thermal modification. Oven-dry and air-dry densities as well as MOR and MOE determined by three-point bending tests were evaluated. Generally, according to the residual prediction deviation (RPD), the majority of the models obtained can be used for preliminary screening (1.5 lt RPD lt 2.5). The results of the spectra taken from sapwood were, in most models, better than the spectra of the red heartwood. Statistically, the values of density were mostly better than the values shown in assessment of bending properties. Results show that it is possible to accurately predict the quality of wood after being subjected to high temperatures, based on the spectra collected before the thermal modification. This fact could contribute to a more rational use of wood (especially from red heartwood) in the process of thermal modification. T2 - Wood Science and Technology T1 - Estimation of quality of thermally modified beech wood with red heartwood by FT-NIR spectroscopy EP - 549 IS - 3 SP - 527 VL - 49 DO - 10.1007/s00226-015-0710-3 UR - conv_1156 ER -
@article{ author = "Todorović, Nebojša and Popović, Zdravko and Milić, Goran", year = "2015", abstract = "The research examines the possibility of predicting the mechanical [modulus of rupture (MOR) and modulus of elasticity (MOE)] and physical (oven-dry and air-dry densities) properties of thermally modified beech wood (Fagus moesica C.) with red heartwood by using FT-NIR spectroscopy and partial least squares regression. Samples of sapwood and red heartwood were treated for 4 h at temperatures of 170, 190, and 210 A degrees C. FT-NIR spectra (100 scans and 4 cm(-1)) were collected on the radial surface at eight points before and after the thermal modification. Oven-dry and air-dry densities as well as MOR and MOE determined by three-point bending tests were evaluated. Generally, according to the residual prediction deviation (RPD), the majority of the models obtained can be used for preliminary screening (1.5 lt RPD lt 2.5). The results of the spectra taken from sapwood were, in most models, better than the spectra of the red heartwood. Statistically, the values of density were mostly better than the values shown in assessment of bending properties. Results show that it is possible to accurately predict the quality of wood after being subjected to high temperatures, based on the spectra collected before the thermal modification. This fact could contribute to a more rational use of wood (especially from red heartwood) in the process of thermal modification.", journal = "Wood Science and Technology", title = "Estimation of quality of thermally modified beech wood with red heartwood by FT-NIR spectroscopy", pages = "549-527", number = "3", volume = "49", doi = "10.1007/s00226-015-0710-3", url = "conv_1156" }
Todorović, N., Popović, Z.,& Milić, G.. (2015). Estimation of quality of thermally modified beech wood with red heartwood by FT-NIR spectroscopy. in Wood Science and Technology, 49(3), 527-549. https://doi.org/10.1007/s00226-015-0710-3 conv_1156
Todorović N, Popović Z, Milić G. Estimation of quality of thermally modified beech wood with red heartwood by FT-NIR spectroscopy. in Wood Science and Technology. 2015;49(3):527-549. doi:10.1007/s00226-015-0710-3 conv_1156 .
Todorović, Nebojša, Popović, Zdravko, Milić, Goran, "Estimation of quality of thermally modified beech wood with red heartwood by FT-NIR spectroscopy" in Wood Science and Technology, 49, no. 3 (2015):527-549, https://doi.org/10.1007/s00226-015-0710-3 ., conv_1156 .