Sun Chihe, Song Guojie, Pan Zhenying, Tu Maobing, Kharaziha Mahshid, Zhang Xueming, Show Pau-Loke, Sun Fubao
Key Laboratory of Industrial Biotechnology of MOE, School of Biotechnology, Jiangnan University, Wuxi 214122, China.
Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China.
Bioresour Technol. 2023 Jan;368:128356. doi: 10.1016/j.biortech.2022.128356. Epub 2022 Nov 19.
The valorization of organosolv pretreatment (OP) is a required approach to the industrialization of the current enzyme-mediated lignocellulosic biorefinery. Recent literature has demonstrated that the solvolysis happening in the OP can modify the soluble components into value-added active compounds, namely organosolv modified lignin (OML) and organosolv modified sugars (OMSs), in addition to protecting them against excessive degradation. Among them, the OML is coincidental with the "lignin-first" strategy that should render a highly reactive lignin enriched with β-O-4 linkages and less condensed structure by organosolv grafting, which is desirable for the transformation into phenolic compounds. The OMSs are valuable glycosidic compounds mainly synthesized by trans-glycosylation, which can find potential applications in cosmetics, foods, and healthcare. Therefore, a state-of-the-art OP holds a big promise of lowering the process cost by the valorization of these active compounds. Recent advances in organosolv modified components are reviewed, and perspectives are made for addressing future challenges.
有机溶剂预处理(OP)的价值提升是当前酶介导的木质纤维素生物精炼工业化的必要途径。最近的文献表明,OP中发生的溶剂解作用可将可溶性成分转化为增值活性化合物,即有机溶剂改性木质素(OML)和有机溶剂改性糖(OMS),此外还能保护它们免受过度降解。其中,OML与“木质素优先”策略相符,该策略应通过有机溶剂接枝使富含β-O-4键且结构较少缩合的高反应性木质素得以实现,这对于转化为酚类化合物是有利的。OMS是主要通过转糖基化合成的有价值的糖苷化合物,可在化妆品、食品和医疗保健领域找到潜在应用。因此,先进的OP有望通过这些活性化合物的价值提升来降低工艺成本。本文综述了有机溶剂改性成分的最新进展,并对应对未来挑战提出了展望。