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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Characterization of Woody and Herbaceous Biomasses Lignin Composition with 1064 nm Dispersive Multichannel Raman Spectroscopy
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Characterization of Woody and Herbaceous Biomasses Lignin Composition with 1064 nm Dispersive Multichannel Raman Spectroscopy

机译:木质和草本生物量木质素组成的1064 nm色散多通道拉曼光谱表征

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摘要

Biomass representing different classes of bioenergy feedstocks, including woody and herbaceous species, was measured with 1064 nm Raman spectroscopy. Pine, oak, poplar, kenaf, miscanthus, pampas grass, switchgrass, alfalfa, orchard grass, and red clover were included in this study. Spectral differences have been identified with an emphasis on lignin guaiacyl and syringyl monomer content and carotenoid compounds. The interpretation of the Raman spectra was correlated with ~(13)C-nuclear magnetic resonance cross-polarization/magic-angle spinning spectra of select biomass samples. Thioacidolysis quantification of guaiacyl and syringyl monomer composition and the library of Raman spectra were used as a training set to develop a principal component analysis model for classifying plant samples and a principal component regression model for quantifying lignin guaiacyl and syringyl composition. Raman spectroscopy with 1064 nm excitation offers advantages over alternative techniques for biomass characterization, including low spectral backgrounds, higher spectral resolution, short analysis times, and nondestructive analyses.
机译:用1064 nm拉曼光谱法测量了代表不同类别生物能源原料的生物质,包括木质和草本物种。这项研究包括松树,橡树,杨树,洋麻,桔梗,蒲苇,柳枝switch,苜蓿,果园草和红三叶草。已经确定了光谱差异,重点是木质素愈创木脂和丁香基单体含量以及类胡萝卜素化合物。拉曼光谱的解释与所选生物质样品的〜(13)C-核磁共振交叉极化/磁角旋转光谱相关。以愈创木脂和丁香油基单体组成的硫代酸解定量和拉曼光谱库作为训练集,以开发用于分类植物样品的主成分分析模型和用于定量木质素愈创木脂和丁香油基成分的主成分回归模型。 1064 nm激发的拉曼光谱比生物质表征的替代技术更具优势,包括低光谱背景,更高的光谱分辨率,较短的分析时间和无损分析。

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