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LIGNIN QUANTITATION BY FT-RAMAN SPECTROSCOPY

机译:通过Ft-拉曼光谱定量木质素定量

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摘要

Because of the structural complexity of biomass, quantitation of lignin in a variety of wood and plant cell walls is difficult. Consequently, to measure lignin in different plant species, a number of different methods exist. The methods can give different values for the same material samples and such differences result from the nature of the biomass. In the past, although there have been many applications of Raman spectroscopy in the studies of lignin, so far, for most materials, quantitation of lignin has proven to be a challenge, In the present work, a novel approach that successfully quantified lignin is described. The strategy, in part, was based upon the minimization of the contributions to the lignin band intensity at 1600 cm"1 by those structures that contribute to it excessively, namely chromophores and aromatic-ring conjugated units in lignin. Using a variety of samples with lignin composition in the range 4.9 to 48.4 % good linear correlations against Klason and total lignins were developed (coefficients of determination R2 0.97 and 0.95, respectively).
机译:由于生物质的结构复杂性,难以定量种类的木质素和植物壁的定量。因此,为了测量不同植物物种中的木质素,存在许多不同的方法。该方法可以给出相同材料样本的不同值,并且这种差异来自生物质的性质。然而,过去,虽然拉曼光谱在木质素的研究中存在许多应用,但到目前为止,对于大多数材料来说,木质素的定量已经证明是一个挑战,在目前的工作中,描述了成功定量木质素的新方法。部分策略是基于最小化1600cm“1的木质素带强度的贡献,这些结构过量,即发色团和木质素中的发色团和芳香环共轭单元。使用各种样品显性组合物在4.9至48.4%的良好线性相关性与Klason和总木质素的良好线性相关性(分别测定R20.97和0.95的系数)。

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