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首页> 外文期刊>Holzforschung >The Oriented Structure of Lignin and its Viscoelastic Properties Studied by Static and Dynamic FT-IR Spectroscopy
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The Oriented Structure of Lignin and its Viscoelastic Properties Studied by Static and Dynamic FT-IR Spectroscopy

机译:木质素的定向结构及其粘弹特性的静态和动态FT-IR光谱研究

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摘要

In order to define the role of lignin for stress transfer in the fiber wall, its orientation and mechanical interaction with other cell-wall components were investigated. Polarized infrared spectra of oriented thermomechanical pulp fiber sheets were used to determine the molecular orientation, and dynamic infrared spectroscopy was used to study the rheology of lignin in the cell wall. The results indicate that there is a preferred orientation of the phenyl-propane units of lignin along the fiber axis in spruce tracheids. This implies there is an ordered structure of lignin in the secondary wall of tracheids analogous to that of the cell-wall polysaccharides. The dynamic IR-spectra also indicated that lignin exhibits a much more viscoelastic behavior than do the carbohydrates, a knowledge of importance in the interpretation of transverse fiber properties.
机译:为了定义木质素在纤维壁应力传递中的作用,研究了木质素的取向和与其他细胞壁成分的机械相互作用。取向热机械浆粕纤维片材的偏振红外光谱用于确定分子取向,动态红外光谱用于研究木质素在细胞壁中的流变性。结果表明,在云杉的气管中木质素的苯基丙烷单元沿着纤维轴存在着优选的取向。这暗示在气管的次壁中木质素的有序结构类似于细胞壁多糖的有序结构。动态红外光谱还表明,木质素比碳水化合物表现出更多的粘弹性行为,这对解释横向纤维的性质很重要。

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