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来自植物基农工生物废料的木质素:从提取到可持续应用

Lignin from Plant-Based Agro-Industrial Biowastes: From Extraction to Sustainable Applications.

作者信息

Mateo Soledad, Fabbrizi Giacomo, Moya Alberto J

机构信息

Chemical, Environmental and Materials Department, University of Jaén, Campus Las Lagunillas, 23071 Jaén, Spain.

Olive Grove and Olive Oil Research Institute, 23071 Jaén, Spain.

出版信息

Polymers (Basel). 2025 Mar 31;17(7):952. doi: 10.3390/polym17070952.

Abstract

Lignin, the most abundant aromatic polymer in nature, plays a critical role in lignocellulosic biomasses by providing structural support. However, its presence complicates the industrial exploitation of these materials for biofuels, paper production and other high-value compounds. Annually, the industrial extraction of lignin reaches an estimated 225 million tons, yet only a fraction is recovered for reuse, with most incinerated as low-value fuel. The growing interest in lignin potential has sparked research into sustainable recovery methods from lignocellulosic agro-industrial wastes. This review examines the chemical, physical and physicochemical processes for isolating lignin, focusing on innovative, sustainable technologies that align with the principles of a circular economy. Key challenges include lignin structural complexity and heterogeneity, which hinder its efficient extraction and application. Nonetheless, its properties such as high thermal stability, biodegradability and abundant carbon content place lignin as a promising material for diverse industrial applications, including chemical synthesis and energy generation. A structured analysis of advancements in lignin extraction, characterization and valorization offers insights into transforming this undervalued by-product into a vital resource, reducing reliance on non-renewable materials while addressing environmental sustainability.

摘要

木质素是自然界中含量最为丰富的芳香族聚合物,通过提供结构支撑在木质纤维素生物质中发挥着关键作用。然而,它的存在使这些材料在用于生物燃料、造纸及其他高价值化合物的工业开发过程变得复杂。据估计,每年木质素的工业提取量达2.25亿吨,但仅有一小部分被回收再利用,大部分都被当作低价值燃料焚烧。人们对木质素潜力的兴趣日益浓厚,这引发了对从木质纤维素农业工业废料中进行可持续回收方法的研究。本综述考察了分离木质素的化学、物理和物理化学过程,重点关注符合循环经济原则的创新型可持续技术。关键挑战包括木质素结构的复杂性和异质性,这阻碍了其有效提取和应用。尽管如此,木质素具有高热稳定性、生物可降解性和丰富的碳含量等特性,使其成为包括化学合成和能源生产在内的多种工业应用的有前景的材料。对木质素提取、表征和增值方面进展的结构化分析,为将这种被低估的副产品转化为重要资源提供了见解,在解决环境可持续性问题的同时减少对不可再生材料的依赖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a5d/11991304/8ac56889c9b7/polymers-17-00952-g001.jpg

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