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木质素精炼中的氢转移策略:迈向可持续和多功能增值生物化学品。

Hydrogen-transfer strategy in lignin refinery: Towards sustainable and versatile value-added biochemicals.

作者信息

Li Yilin, Liu Meng, Tang Qi, Liang Kaixia, Sun Yaxu, Yu Yanyan, Lou Yuhan, Liu Yongzhuang, Yu Haipeng

机构信息

Key Laboratory of Bio-based Material Science and Technology of Ministry of Education, Northeast Forestry University, Harbin, 150040, PR China.

出版信息

ChemSusChem. 2024 Jun 24;17(12):e202301912. doi: 10.1002/cssc.202301912. Epub 2024 Feb 16.

Abstract

Lignin, the most prevalent natural source of polyphenols on Earth, offers substantial possibilities for the conversion into aromatic compounds, which is critical for attaining sustainability and carbon neutrality. The hydrogen-transfer method has garnered significant interest owing to its environmental compatibility and economic viability. The efficacy of this approach is contingent upon the careful selection of catalytic and hydrogen-donating systems that decisively affect the yield and selectivity of the monomeric products resulting from lignin degradation. This paper highlights the hydrogen-transfer technique in lignin refinery, with a specific focus on the influence of hydrogen donors on the depolymerization pathways of lignin. It delineates the correlation between the structure and activity of catalytic hydrogen-transfer arrangements and the gamut of lignin-derived biochemicals, utilizing data from lignin model compounds, separated lignin, and lignocellulosic biomass. Additionally, the paper delves into the advantages and future directions of employing the hydrogen-transfer approach for lignin conversion. In essence, this concept investigation illuminates the efficacy of the hydrogen-transfer paradigm in lignin valorization, offering key insights and strategic directives to maximize lignin's value sustainably.

摘要

木质素是地球上最普遍的多酚天然来源,为转化为芳香族化合物提供了巨大的可能性,这对实现可持续性和碳中和至关重要。氢转移方法因其环境兼容性和经济可行性而备受关注。这种方法的效果取决于催化和供氢体系的精心选择,这些体系对木质素降解产生的单体产物的产率和选择性有决定性影响。本文重点介绍了木质素精炼中的氢转移技术,特别关注供氢体对木质素解聚途径的影响。利用来自木质素模型化合物、分离的木质素和木质纤维素生物质的数据,阐述了催化氢转移体系的结构与活性和木质素衍生生化物质范围之间的相关性。此外,本文还深入探讨了采用氢转移方法进行木质素转化的优势和未来方向。本质上,这项概念研究阐明了氢转移模式在木质素增值中的效果,为可持续地最大化木质素价值提供了关键见解和战略指导。

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