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采用 C/H 同位素示踪剂探究麦草硫酸盐浆中木质素与碳水化合物的联系。

Exploration of the Linkages between Lignin and Carbohydrates in Kraft Pulp from Wheat Straw Using a C/H Isotopic Tracer.

机构信息

Research Institute of Pulp & Paper Engineering, Hubei University of Technology, Wuhan 430068, China.

Hubei Provincial Key Laboratory of Green Materials for Light Industry, Hubei University of Technology, Wuhan 430068, China.

出版信息

Molecules. 2023 Nov 9;28(22):7493. doi: 10.3390/molecules28227493.

Abstract

To further our understanding of the change in association between lignin and carbohydrates after kraft pulping, isotope-labeled kraft pulp (KP) was prepared using C and D double-isotope-labeled wheat straw, and it was subjected to enzymatic hydrolysis and ionic liquid treatment to explore the linkages between lignin and carbohydrate complexes in wheat straw. Isotope abundance determination showed that C and D abundances in the experimental groups were substantially higher than those in the control group, indicating that the injected exogenous coniferin-[α-C], coniferin-[γ-C], and d-glucose-[6-D] were effectively absorbed and metabolized during wheat internode growth. Solid-state CP/MAS C-NMR spectroscopy showed that lignin was mainly linked to polysaccharides via acetal, benzyl ether, and benzyl ester bonds. Kraft pulp (KP) from the labeled wheat straw was degraded by cellulase. The obtained residue was fractionated using the ionic liquid DMSO/TBAH to separate the cellulose-lignin complex (KP-CLC) and xylan-lignin complex (KP-XLC). X-ray diffractometer determination showed that the KP-CLC regenerated cellulose type II from type I after the ionic liquid conversion. The C-NMR spectrum of Ac-En-KP-CLC showed that the cellulose-lignin complex structure was chemically bonded between the lignin and cellulose through acetal and benzyl ether bonds. The C-NMR spectrum of En-KP-XLC showed a lignin-hemicellulose complex structure, wherein lignin and xylan were chemically bonded by benzyl ether and acetal bonds. These results indicate that the cross-linking between lignin and carbohydrates exists in lignocellulosic fibers even after kraft pulping.

摘要

为了进一步了解硫酸盐法制浆后木质素与碳水化合物之间结合的变化,使用 C 和 D 双同位素标记的小麦秸秆制备了同位素标记的硫酸盐浆(KP),并对其进行了酶解和离子液体处理,以探索小麦秸秆中木质素与碳水化合物复合物之间的键合方式。同位素丰度测定表明,实验组的 C 和 D 丰度明显高于对照组,表明在小麦节间生长过程中,注入的外源松柏醇-[α-C]、松柏醇-[γ-C]和 d-葡萄糖-[6-D]被有效吸收和代谢。固态 CP/MAS C-NMR 光谱表明,木质素主要通过缩醛、苄醚和苄酯键与多糖结合。用纤维素酶降解标记小麦秸秆的硫酸盐浆(KP)。用离子液体 DMSO/TBAH 对获得的残渣进行分级,分离纤维素-木质素复合物(KP-CLC)和木聚糖-木质素复合物(KP-XLC)。X 射线衍射仪测定表明,离子液体转化后,KP-CLC 再生纤维素从 I 型转变为 II 型。Ac-En-KP-CLC 的 C-NMR 谱表明,木质素与纤维素之间通过缩醛和苄醚键发生化学结合,形成纤维素-木质素复合物结构。En-KP-XLC 的 C-NMR 谱显示出木质素-半纤维素复合物结构,其中木质素和木聚糖通过苄醚和缩醛键发生化学结合。这些结果表明,即使在硫酸盐法制浆后,木质素和碳水化合物之间的交联仍然存在于木质纤维素纤维中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d99/10673337/038c51d28bab/molecules-28-07493-g001.jpg

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