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基于生物的木质素衍生酚类化合物的增值利用:综述。

Bio-Based Valorization of Lignin-Derived Phenolic Compounds: A Review.

机构信息

Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, 142 20 Prague, Czech Republic.

Faculty of Food and Biochemical Technology, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague, Czech Republic.

出版信息

Biomolecules. 2023 Apr 22;13(5):717. doi: 10.3390/biom13050717.

Abstract

Lignins are the most abundant biopolymers that consist of aromatic units. Lignins are obtained by fractionation of lignocellulose in the form of "technical lignins". The depolymerization (conversion) of lignin and the treatment of depolymerized lignin are challenging processes due to the complexity and resistance of lignins. Progress toward mild work-up of lignins has been discussed in numerous reviews. The next step in the valorization of lignin is the conversion of lignin-based monomers, which are limited in number, into a wider range of bulk and fine chemicals. These reactions may need chemicals, catalysts, solvents, or energy from fossil resources. This is counterintuitive to green, sustainable chemistry. Therefore, in this review, we focus on biocatalyzed reactions of lignin monomers, e.g., vanillin, vanillic acid, syringaldehyde, guaiacols, (iso)eugenol, ferulic acid, -coumaric acid, and alkylphenols. For each monomer, its production from lignin or lignocellulose is summarized, and, mainly, its biotransformations that provide useful chemicals are discussed. The technological maturity of these processes is characterized based on, e.g., scale, volumetric productivities, or isolated yields. The biocatalyzed reactions are compared with their chemically catalyzed counterparts if the latter are available.

摘要

木质素是最丰富的芳香族聚合物,由芳香单元组成。木质素是通过木质纤维素的分级分离以“技术木质素”的形式获得的。由于木质素的复杂性和抗降解性,木质素的解聚(转化)和处理是具有挑战性的过程。许多综述都讨论了温和处理木质素的进展。木质素增值的下一步是将数量有限的基于木质素的单体转化为更广泛的大宗化学品和精细化学品。这些反应可能需要化学品、催化剂、溶剂或来自化石资源的能源。这与绿色、可持续化学背道而驰。因此,在这篇综述中,我们专注于木质素单体的生物催化反应,例如香草醛、香草酸、丁香醛、愈创木酚、丁香基醚、阿魏酸、对香豆酸和烷基酚。对于每种单体,总结了其从木质素或木质纤维素中的生产,并主要讨论了提供有用化学品的生物转化。这些过程的技术成熟度是根据规模、体积生产率或分离收率等特征来表征的。如果有化学催化的对应物,我们将对生物催化反应与其进行比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f29/10216419/9b3b055fff4d/biomolecules-13-00717-sch001.jpg

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