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The cornerstone of realizing lignin value-addition: Exploiting the native structure and properties of lignin by extraction methods

机译:实现木质素的基石(Lignin Value):利用提取方法利用木质素的天然结构和性质

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摘要

The complex interlacing structure among cellulose, hemicellulose and lignin and the unique properties of lignin itself limit the value-added utilization of the lignin. As the "upstream" process of biorefinery, lignin separation technology is very important for lignin conversion into high-value materials. However, it is not easy to extract lignin with relatively complete structure without affecting performance from biomass raw materials. Notably, most of reviews regarding lignin focus on its degradation. The extraction or separation methods are not introduced in detail, and the effects of these methods on raw materials or lignin have not been reported. Herein, this paper critically reviews the changes in physicochemical properties and structure of lignin caused by several mild organic solvent extraction methods and new ionic liquids which has been widely used in recent years. Furthermore, the application and potential economic benefits of these lignin are summarized. These methods promote the effective utilization of lignin, which is no longer limited to heat energy, but also alleviates the solid waste disposal problem caused by lignin as waste stream. Finally, perspectives on the future research on the lignin separation, depolymerization and application are highlighted. This review may provide an insight for the development of bio-refining technology.
机译:纤维素,半纤维素和木质素中复杂的交织结构以及木质素本身的独特性质限制了木质素的增值利用。作为“上游”生物术的过程,木质素分离技术对于木质素转化为高价值材料非常重要。然而,在不影响生物质原料的情况下,不容易提取具有相对完整的结构的木质素。值得注意的是,关于木质素的大多数评论都关注其退化。尚未详细介绍提取或分离方法,尚未详细介绍这些方法对原料或木质素的影响。在此,本文重视由几种温和的有机溶剂萃取方法和近年来广泛使用的新型离子液体引起的木质素的物理化学性质和结构的变化。此外,总结了这些木质素的应用和潜在的经济效益。这些方法促进了木质素的有效利用,这不再限于热能,而且还减轻了木质素作为废物流引起的固体废物处理问题。最后,突出了关于木质素分离,解聚和应用的未来研究的观点。该审查可能对生物炼油技术的发展提供了洞察力。

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