Analyze the Significance of Age and Height on the Physical and Chemical Properties of Ethiopian Giant Timber Bamboo

Yalew Dessalegn, Balkeshwar Singh, A. Vuure
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Abstract

This research aims to examine the properties of culm based on the factors of age and height for structural and industrial purposes. Aged from 1-3 years old of culm and the height was divided into 3 parts which bottom, middle and top. The properties of Giant Timber bamboo in Ethiopia were not investigated so far from the other research work using age and height factors. 3 Samples of the culm are harvested at each age in the Amhara region at Injibara town, Ethiopia and 6 specimens are prepared for each experimental work. New growth of the bamboo shoot has higher internodes length, internodes diameter, and culm thickness than the previous generates of bamboo shoot. Morphological characteristics of the culm are improved when the ages of culm younger. Moisture contents and shrinkage of culm decrease when the age of culm older, and along culm height goes from the bottom to top. However, oven-dry density, cellulose, and lignin contents increase when the age of culm older and along culm height goes from the bottom to top. Whereas hemicelluloses, extractive and ash contents decrease when the age of culm older and along culm height goes from the bottom to top. Higher moisture contents of culm used to easy extraction of fibers without damage, but it has higher shrinkage in the culm. Whereas higher basic density of culm used for structural and furniture making. Celluloses are used for the biofuel and pulp industry. The lignin used as a binder and improve the structural application of the culm. Whereas hemicelluloses are used in the paper industry.
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年龄和高度对埃塞俄比亚巨竹材理化性质的影响分析
本研究的目的是检查基于年龄和高度的因素,为结构和工业用途秆的性质。年龄在1-3岁之间的秆和高度分为底部、中部和顶部3部分。迄今为止,对埃塞俄比亚巨木竹的特性研究尚未采用年龄和高度因素进行研究。在埃塞俄比亚因吉巴拉镇阿姆哈拉地区的每个年龄采集3个样本,并为每次实验工作准备6个样本。新芽的节间长度、节间直径和茎粗均高于前代。随着茎秆年龄的增大,茎秆的形态特征有所改善。随着茎秆年龄的增长,茎秆的含水率和收缩率呈下降趋势,且茎秆高度从下向上呈下降趋势。然而,干燥密度、纤维素和木质素含量随着茎秆年龄的增长和茎秆高度的增加而增加。半纤维素、浸出物和灰分含量则随着茎龄的增加和茎高的增加而降低。较高的水分含量有利于纤维的提取而不损坏,但其在茎中的收缩率较高。然而,较高的基本密度的秆用于结构和家具制造。纤维素用于生物燃料和纸浆工业。将木质素用作粘结剂,改善了秸秆的结构应用。而半纤维素则用于造纸工业。
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