Xu Yan, Dai Qiqi, Zhang Danlu, Zhang Fan, Yue Fengxia, Ye Jun, Liu Chuanfu, Zeng Xu, Lan Wu
School of Light Industry and Engineering, South China University of Technology, Guangzhou, 510640, China.
ChemSusChem. 2024 Sep 9;17(17):e202400378. doi: 10.1002/cssc.202400378. Epub 2024 Apr 30.
Converting lignin into aromatic chemicals is a promising strategy for the high-value utilization of lignocellulosic feedstock. However, the inherent heterogeneity of lignin poses a significant obstacle to achieving efficient conversion and optimal product yields within bio-refinery systems. Herein, we employed a one-step fractionation method to enhance lignin homogeneity and utilized the THF/DMSO-EtONa (tetrahydrofuran/dimethyl sulfoxide-sodium ethoxide) system to depolymerize the fractionated lignin. Three protic and three aprotic solvents were used for fractionation. The impact of the solvent properties on the structure and the depolymerization efficiency of the fractionated lignin was investigated. Methanol-fractionated lignin generated the benzoic acid compounds with a yield of 30 wt%, 50 % higher than that of the unfractionated lignin. The polarities (δ), hydrogen bonding abilities (δ), and viscosities (η) of selected protic solvents showed strong linear correlation with molecular weight (Mw), polymer dispersity index (PDI), and syringyl/guaiacyl ratio (S/G ratio) of the fractionated lignin, as well as the total yield of benzoic acid compounds derived from the β-O-4 bond cleavage. This study elucidates the relationship between solvent properties and lignin structure and proposes a promising approach for refining lignin to enhance utilization efficiency, thereby presenting a potential strategy for value-added application of complex lignin polymers.
将木质素转化为芳香族化学品是木质纤维素原料高值化利用的一种很有前景的策略。然而,木质素固有的异质性对生物炼制系统中实现高效转化和最佳产物收率构成了重大障碍。在此,我们采用一步分级法提高木质素的均一性,并利用四氢呋喃/二甲基亚砜 - 乙醇钠(THF/DMSO-EtONa)体系对分级后的木质素进行解聚。使用了三种质子性溶剂和三种非质子性溶剂进行分级。研究了溶剂性质对分级木质素结构和解聚效率的影响。甲醇分级的木质素生成苯甲酸类化合物的产率为30 wt%,比未分级的木质素高50%。所选质子性溶剂的极性(δ)、氢键能力(δ)和粘度(η)与分级木质素的分子量(Mw)、聚合物分散指数(PDI)和紫丁香基/愈创木基比率(S/G比率)以及源自β-O-4键断裂的苯甲酸类化合物的总产率呈强线性相关。本研究阐明了溶剂性质与木质素结构之间的关系,并提出了一种有望提高木质素利用效率的精制方法,从而为复杂木质素聚合物的增值应用提供了一种潜在策略。