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Structural Characterization of Lignins from Willow Bark and Wood

机译:柳树皮和木材木质素的结构表征

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Understanding the chemical structure of lignin in willow bark is an indispensable step to design how to separate its fiber bundles. The whole cell wall and enzyme lignin preparations sequentially isolated from ball-milled bark, inner bark, and wood were comparatively investigated by nuclear magnetic resonance (NMR) spectroscopy and three classical degradative methods, i.e., alkaline nitrobenzene oxidation, derivatization followed by reductive cleavage, and analytical thioacidolysis. All results demonstrated that the guaiacyl (G) units were predominant in the willow bark lignin over syringyl (S) and minor phydroxyphenyl (H) units. Moreover, the monomer yields and S/G ratio rose progressively from bark to inner bark and wood, indicating that lignin may be more condensed in bark than in other tissues. Additionally, major interunit linkage substructures (beta-aryl ethers, phenylcoumarans, and resinols) together with cinnamyl alcohol end groups were relatively quantitated by twodimensional NMR spectroscopy. Bark and inner bark were rich in pectins and proteins, which were present in large quantities and also in the enzyme lignin preparations.
机译:了解柳树皮中木质素的化学结构是设计如何分离其纤维束的必不可少的步骤。通过核磁共振(NMR)光谱(NMR)光谱和三种经典的降解方法,即碱性硝基苯氧化,衍生化,衍生化,衍生化,衍生化,衍生化,衍生化,后者依次依次分离出从球磨的树皮,内皮和木材的制剂依次研究。和分析硫代乙酸分解。所有结果表明,桂基(G)单位在柳树皮木质素上占据过霉素(S)和次要的植物单位(H)单位。此外,单体产率和S / G比逐渐从树皮到内皮和木材上升,表明木质素可以在树皮中比其他组织更加稠凝。另外,通过TwoDimensional NMR光谱法相对定量,主要间歇链接子结构(β-芳基醚,苯基乙烯基和树脂)与糖醇端基相对定量。树皮和内皮含有丰富的果胶和蛋白质,其大量存在,也存在于酶木质素制剂中。

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