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Anatomical characteristics and wood properties of Melaleuca leucadendron naturally growing in secondary forest in Indonesia

机译:印度尼西亚次生林中自然生长的千层杜鹃的解剖特征和木材特性

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摘要

Dynamic Young's modulus of elasticity (DMOE) of logs, anatomical characteristics and wood properties were determined for naturally regenerated Melaleuca leucadendron trees grown in secondary forest in an area of peat swamp, South Kalimantan, Indonesia. The mean value of DMOE of logs was 7.99GPa. Mean basic density (BD) and compressive strength (CS) ranged from 0.43 to 0.60gcm(-3) and 34.5 to 52.4MPa, respectively. Vessel diameter and wood fibre length increased along the first 2cm of the radius from the pith and then showed almost constant values between that point and the bark, suggesting that xylem maturation starts at about 2cm from the pith. The wall thickness of wood fibres gradually increased from pith to bark, and the radial profile of this property was very similar to that of BD. There were significant differences in BD, CS and cell wall thickness of wood fibres among 10 selected logs, suggesting that BD and mechanical properties can be genetically improved by selecting mother trees.
机译:确定了印度尼西亚南加里曼丹地区泥炭沼泽地区天然林中生长的天然再生千层杜鹃树的原木动态杨氏弹性模量(DMOE),解剖特征和木材特性。原木的DMOE平均值为7.99GPa。平均基本密度(BD)和抗压强度(CS)分别为0.43至0.60gcm(-3)和34.5至52.4MPa。容器直径和木纤维长度沿距髓头的半径的前2cm处增加,然后在该点和树皮之间显示几乎恒定的值,表明木质部成熟在距髓头约2cm处开始。木纤维的壁厚从髓到树皮逐渐增加,并且此特性的径向轮廓与BD非常相似。在选择的10种原木中,BD,CS和木纤维的细胞壁厚度存在显着差异,这表明通过选择母树可以从遗传上改善BD和机械性能。

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