Xu Li, Cao Meifang, Zhou Jiefeng, Pang Yuxia, Li Zhixian, Yang Dongjie, Leu Shao-Yuan, Lou Hongming, Pan Xuejun, Qiu Xueqing
Guangdong Provincial Key Lab of Green Chemical Product Technology, State Key Laboratory of Pulp and Paper Engineering, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510641, China.
Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong, China.
Nat Commun. 2024 Jan 25;15(1):734. doi: 10.1038/s41467-024-45073-w.
Thought-out utilization of entire lignocellulose is of great importance to achieving sustainable and cost-effective biorefineries. However, there is a trade-off between efficient carbohydrate utilization and lignin-to-chemical conversion yield. Here, we fractionate corn stover into a carbohydrate fraction with high enzymatic digestibility and reactive lignin with satisfactory catalytic depolymerization activity using a mild high-solid process with aqueous diethylamine (DEA). During the fractionation, in situ amination of lignin achieves extensive delignification, effective lignin stabilization, and dramatically reduced nonproductive adsorption of cellulase on the substrate. Furthermore, by designing a tandem fractionation-hydrogenolysis strategy, the dissolved lignin is depolymerized and aminated simultaneously to co-produce monophenolics and pyridine bases. The process represents the viable scheme of transforming real lignin into pyridine bases in high yield, resulting from the reactions between cleaved lignin side chains and amines. This work opens a promising approach to the efficient valorization of lignocellulose.
对整个木质纤维素进行合理利用对于实现可持续且具有成本效益的生物精炼厂至关重要。然而,在高效碳水化合物利用和木质素向化学品转化产率之间存在权衡。在此,我们使用温和的高固含量工艺结合二乙胺(DEA)水溶液,将玉米秸秆分离成具有高酶解消化率的碳水化合物部分和具有令人满意的催化解聚活性的活性木质素。在分离过程中,木质素的原位胺化实现了广泛的脱木质素、有效的木质素稳定化,并显著减少了纤维素酶在底物上的非生产性吸附。此外,通过设计串联分离 - 氢解策略,溶解的木质素同时进行解聚和胺化,以共同生产单酚类和吡啶碱。该过程代表了一种可行的方案,可通过裂解的木质素侧链与胺之间的反应将真实木质素高产率地转化为吡啶碱。这项工作为木质纤维素的高效增值开辟了一条有前景的途径。