不同生长条件对匈牙利火鸡橡木部分解剖特性的影响

J.K. Govina, R. Németh, M. Bak, M. Bader
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引用次数: 0

摘要

土耳其栎(Quercus cerris)被归类为耐旱树种,因为它可以在年降雨量低于 400 毫米的条件下生存,而且通常会形成深而通透的直根。这一特性表明,土耳其栎是未来匈牙利气候预测环境中的一个生存候选物种。由于土耳其栎的美学价值与贵族橡树相似,因此土耳其栎有可能在未来为匈牙利木材业提供可持续的木材供应。这项研究的目的是确定:1;来自两个不同地点的土耳其栎的选定微观木材属性(木材组织特征);2;选定宏观木材属性(树环宽度、边材-心材比)。所有树木的心材部分都占横径的 67-82%。生长环宽度从髓部到树皮逐渐减小。边材年轮的宽度值范围为 1000 至 1600 μm;心材为 1600 至 2500 μm;幼龄木为 2400 至 3300 μm。土壤质量和林分组成对生长环宽度有显著影响。纤维长度在 800.03 至 1305.59 m 之间,而纤维壁厚度在 11.73 至 18.51 μm 之间,土壤质量和树种组成对其影响很大。生长年轮早材部分的容器直径范围为 274.62-401.54 μm,而晚材部分的容器直径范围为 46.50-190.08 μm。总体而言,林分组成是造成所研究特性变化的主要原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Variable Growth Conditions on Selected Anatomical Properties of Hungarian Turkey Oak Wood
Quercus cerris (Turkey oak) has been categorized as a drought-tolerant species because it can survive with rainfall below 400 mm/year, and it usually develops deep and penetrating taproots. This characteristic suggests that Turkey oak is a survival candidate species for the future environment with the predicted climate scenarios in Hungary. Potentially, Turkey oak could support a sustainable supply of timber to the Hungarian wood industry in the future, as the aesthetic value is similar to that of noble oaks. The objectives of the study are to determine 1; the selected micro-level wood properties (wood tissue characteristics) and 2; the selected macrolevel wood properties (tree-ring width, sapwood-heartwood ratio) for Turkey oak from two different sites. The heartwood portion for all trees constituted 67-82% of the cross-diameter. The growth-ring width decreased from pith to bark. The annual rings in the sapwood had a width value range of 1000 to 1600 μm; in heartwood 1600 to 2500 μm; in juvenile wood 2400 to 3300 μm. Soil quality and stand composition had a significant effect on growth-ring width. Fibre length ranged from 800.03 to 1305.59 m, whereas fibre-wall thickness varied between 11.73 and 18.51 μm, with soil quality and species composition having a highly significant influence. The earlywood parts of the growth rings had a vessel diameter range of 274.62-401.54 μm, whereas the latewood portion ranged from 46.50 to 190.08 μm. Overall, stand composition was a major source of variation in the properties studied.
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