首页> 美国卫生研究院文献>Polymers >Structural Characterization of Lignin and Lignin-Carbohydrate Complex (LCC) from Ginkgo Shells (Ginkgo biloba L.) by Comprehensive NMR Spectroscopy
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Structural Characterization of Lignin and Lignin-Carbohydrate Complex (LCC) from Ginkgo Shells (Ginkgo biloba L.) by Comprehensive NMR Spectroscopy

机译:银杏壳(Ginkgo biloba L.)中木质素和木质素-碳水化合物复合物(LCC)的结构特征

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摘要

Lignin and lignin-carbohydrate complexes are important polymers for lignocellulosic biorefinery and functional materials, but those in ginkgo shells are not effectively analyzed and exploited. Based on this background, milled wood lignins (MWLML and MWLFZ) and lignin-carbohydrate complexes (LCCML and LCCFZ) were isolated from the shells of Ginkgo biloba L. cv. Damaling (ML) and Ginkgo biloba L. cv. Dafozhi (FZ) correspondingly, and were structurally characterized by comprehensive NMR spectroscopy. The results showed that ginkgo shells exhibited higher lignin (42%) and xylan (20%) content than general softwood species. Isolated MWLs were rich in guaiacyl units with the presence of ferulates and p-coumarates, and the molecular formula was C9H7.93O2.73(OCH3)0.81 and C9H7.87O2.76(OCH3)0.88 for MWLML and MWLFZ, respectively. Phenolic hydroxyl of MWLML (1.38 mmol/g) and MWLFZ (1.23 mmol/g) in ginkgo shells was much less than that in general softwoods, suggesting a higher etherification and condensation degree of ginkgo shells lignin, and β-5′, α-O-4′, and 4-O-5′ bonds were the main condensed structures. O-acetylated β-d-xylopyranoside and β-d-mannopyranoside were the main polysaccharides associated with lignin, and the acetyl groups frequently acylate the C2 and C3 positions. LCCML had more phenyl glycoside (0.035/Ar) and less γ-ester (0.026/Ar) linkages than LCCFZ.
机译:木质素和木质素-碳水化合物复合物是木质纤维素生物精炼和功能材料的重要聚合物,但是银杏壳中的那些没有得到有效的分析和开发。基于此背景,从银杏壳中分离出了磨碎的木质素(MWLML和MWLFZ)和木质素碳水化合物复合物(LCCML和LCCFZ)。达林(ML)和银杏叶。大佛指(FZ),并通过综合核磁共振波谱进行结构表征。结果表明,银杏壳比普通针叶树种木质素含量高(42%),木聚糖含量高(20%)。分离的MWLs富含阿魏酸和p-香豆酸盐的愈创木单元,MWLML和MWLFZ的分子式分别为C9H7.93O2.73(OCH3)0.81和C9H7.87O2.76(OCH3)0.88。银杏壳中MWL ML (1.38 mmol / g)和MWL FZ (1.23 mmol / g)的酚羟基含量远低于普通软木,表明醚化程度更高银杏壳木质素的缩合度,β-5',α-O-4'和4-O-5'键是主要的缩合结构。 O-乙酰化的β-d-吡喃吡喃糖苷和β-d-甘露糖吡喃糖苷是与木质素结合的主要多糖,乙酰基经常酰化C 2 和C 3 位置。与LCC FZ 相比,LCC ML 具有更多的苯基糖苷(0.035 / Ar)和更少的γ-酯键(0.026 / Ar)。

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