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Effects of Biodegradation on the Structure and Properties of Windmill Palm (Trachycarpus fortunei) Fibers Using Different Chemical Treatments

机译:不同化学处理对生物降解对风车棕榈纤维的结构和性能的影响

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摘要

In this work, windmill palm fiber (WPF), alkali-treated fiber (AF) without hemicellulose and bleached fiber (BF) without lignin were prepared and buried in soil for 30, 60 and 90 days. The surface morphology, chemical composition, crystallinity degree, mechanical properties, and residual mass rate of the samples, before and after biodegradation, were investigated. According to the results, soil burial degradation can remove the parenchyma cells and silica-bodies of WPF and deplete droplets containing the lignin of alkali-treated fiber after it has been buried for 30 days (AF30), and degradation of the single fiber cell wall of bleached fiber after it has been buried for 30 days (BF30). Buried in natural soil, lignin has a slower degradation rate than that of hemicellulose. WPF showed no significant differences in tensile strength after burial in soil for 90 days, because of the integrity fiber structure decreased the biodegradation. The most serious decrease, about 43%, in tensile strength occurred in AF after it had been buried for 90 days (BF90). This basic knowledge may be helpful for windmill palm fiber applications, especially for biodegradable composites.
机译:在这项工作中,准备了风车棕榈纤维(WPF),不含半纤维素的碱处理纤维(AF)和不含木质素的漂白纤维(BF),并将其埋在土壤中30、60和90天。研究了生物降解前后样品的表面形态,化学组成,结晶度,力学性能和残余质量率。根据结果​​,土壤埋葬降解可以清除WPF的薄壁组织细胞和二氧化硅体,并在埋入30天(AF30)后耗尽碱处理纤维木质素的液滴,并使单纤维细胞壁降解埋入30天后漂白纤维(BF30)。埋在天然土壤中的木质素降解速度比半纤维素慢。 WPF在土壤中埋藏90天后抗拉强度没有显着差异,因为完整的纤维结构降低了生物降解。 AF埋入90天后(BF90),拉伸强度最严重的下降,约为43%。这些基本知识可能对风车棕榈纤维的应用很有帮助,特别是对于可生物降解的复合材料。

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