Tianjin Key Laboratory of Pulp and Paper, Tianjin University of Science and Technology, No. 9 at 13th Avenue, TEDA, Tianjin, 300457, P. R. China.
Johan Gadolin Process Chemistry Centre, Laboratory of Natural Materials Technology, Åbo Akademi, Turku FI, 20500, Finland.
ChemSusChem. 2020 Sep 7;13(17):4284-4295. doi: 10.1002/cssc.202001491. Epub 2020 Jul 30.
Lignin, as the most abundant aromatic biopolymer in nature, has attracted great attention due to the complexity and richness of its functional groups for value-added applications. The yield of production of lignin and the reactivity of prepared lignin are very important to guarantee the study and development of lignin-based chemicals and materials. Various fractionation techniques have been developed to obtain high yield and relatively high-purity lignin as well as carbohydrates (hemicelluloses and celluloses) and to reduce the condensed and degraded nature of conventional biorefinery lignin. Herein, novel and efficient biomass fractionation and lignin fractionation towards lignin valorization are summarized and discussed.
木质素作为自然界中最丰富的芳香族生物聚合物,由于其功能基团的复杂性和丰富性,引起了人们极大的关注,可用于附加值应用。木质素的生产产率和制备木质素的反应活性对于保证木质素基化学品和材料的研究和开发非常重要。已经开发了各种分级技术,以获得高产率和相对高纯度的木质素以及碳水化合物(半纤维素和纤维素),并降低常规生物炼制木质素的缩合和降解性质。本文总结和讨论了新型高效的生物质分级和木质素分级方法,以实现木质素的增值利用。