Longitudinal transmittance of visible and near-infrared light in the wood of 21 conifer species

IF 1.4 3区 农林科学 Q2 FORESTRY IAWA Journal Pub Date : 2022-09-16 DOI:10.1163/22941932-bja10103
H. Abe, Y. Kurata, Ken Watanabe, P. Kitin, Miho Kojima, K. Yazaki
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Abstract

Light transmittance and reflectance were measured in 21 conifer species using a spectrophotometer equipped with an integrating sphere and light within a wavelength range of 500–1200 nm, to clarify the variety of longitudinal light transmitting properties among wood species. Transmittance values varied not only among different species but also between the sapwood and heartwood within certain species. Transmittance intensity increased from about 600–700 nm and showed peaks or shoulders in the ranges of 870–900 nm and 930–950 nm, and at around 1100 nm in all samples. The spectra tended to show similar patterns for 2 species within the same genus (Chamaecyparis, Abies, Picea, Pinus, Pseudotsuga and Tsuga). Light transmittance differed between the sapwood and the heartwood in several species, and, patterns of the difference differed among the different genera. Peaks at around 1100 nm were observed in both the sapwood and heartwood of all samples. Maximum conductivities of light at these peaks were relatively lower in wood species with helical thickenings (genera Pseudotsuga, Torreya and Taxus). Based on these results, it can be seen that the anatomical characteristics of wood influence the transmittance of light. The density of wood and secondary metabolites occurring in heartwood are also thought to influence the transmittance of light.
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21种针叶树木材中可见光和近红外光的纵向透射率
使用配备积分球的分光光度计和500–1200 nm波长范围内的光测量了21种针叶树物种的透光率和反射率,以阐明木材物种之间纵向透光特性的多样性。透射值不仅在不同物种之间变化,而且在某些物种内边材和心材之间也变化。透射强度从约600–700 nm增加,并在870–900 nm和930–950 nm范围内以及在所有样品中的1100 nm左右显示出峰值或肩部。同一属中的2个物种(Chamaecyparis、Abies、Picea、Pinus、Pseudotsuga和Tsuga)的光谱往往显示出相似的模式。几个物种的边材和心材的透光率不同,不同属之间的差异模式也不同。在所有样品的边材和心材中都观察到约1100nm处的峰。在具有螺旋状增厚的木材物种(Pseudotsuga属、Torreya属和Taxus属)中,这些峰值处的最大透光率相对较低。基于这些结果,可以看出木材的解剖特征影响光的透射率。木材的密度和心材中的次生代谢产物也被认为会影响光的透射率。
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来源期刊
IAWA Journal
IAWA Journal 农林科学-林学
CiteScore
3.40
自引率
15.80%
发文量
26
审稿时长
>36 weeks
期刊介绍: The IAWA Journal is the only international periodical fully devoted to structure, function, identification and utilisation of wood and bark in trees, shrubs, lianas, palms, bamboo and herbs. Many papers are of a multidisciplinary nature, linking
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