Pang Shuyu, Wang Xin, Pu Jiali, Liang Chen, Yao Shuangquan, Qin Chengrong
Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, School of Light Industrial and Food Engineering, Guangxi University, Nanning 530004, China.
Polymers (Basel). 2024 May 15;16(10):1403. doi: 10.3390/polym16101403.
Hemicellulose extracted by alkali treatment is of interest because of the advantages of its intact sugar structure and high degree of polymerization. However, the hemicellulose extracted by alkali treatment contained more lignin fragments and the presence of a lignin-carbohydrate complex (LCC), which affected the isolation and purification of hemicellulose and its comprehensive utilization. Therefore, the evaluation of the LCC structure of different types of lignocellulosic resources is of great significance. In this study, the LCC structures of hardwoods and Gramineae were enriched in alkaline systems. Information on the composition, structural proportions, and connection patterns of LCC samples was discussed. The similarities and differences between the LCC structures of different units of raw materials were comparatively studied. The results indicated that the monosaccharide fractions were higher in the LCC of Gramineae compared to hardwoods. The composition of the lignin fraction was dominated by G and S units. The phenyl glycosidic (PhGlc) bond is the predominant LCC linkage under alkali-stabilized conditions. In addition, Gramineae PhGlc types are more numerous compared to hardwoods. The results of the study provide insights into the differences in the chemical composition and structural features of LCC in different plants and provide important guidance for the optimization of the process of purifying hemicellulose.
通过碱处理提取的半纤维素因其完整的糖结构和高聚合度的优点而备受关注。然而,经碱处理提取的半纤维素含有较多的木质素片段以及木质素-碳水化合物复合体(LCC),这影响了半纤维素的分离纯化及其综合利用。因此,评估不同类型木质纤维素资源的LCC结构具有重要意义。本研究在碱性体系中富集了阔叶材和禾本科植物的LCC结构。讨论了LCC样品的组成、结构比例和连接模式等信息。对不同原料单元LCC结构之间的异同进行了比较研究。结果表明,与阔叶材相比,禾本科植物LCC中的单糖组分含量更高。木质素组分的组成以G单元和S单元为主。在碱稳定条件下,苯基糖苷(PhGlc)键是主要的LCC连接键。此外,与阔叶材相比,禾本科植物的PhGlc类型更多。该研究结果为了解不同植物中LCC的化学组成和结构特征差异提供了见解,并为优化半纤维素纯化工艺提供了重要指导。