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Advances in Catalytic Depolymerization of Lignin

机译:木质素催化解聚研究进展

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The depletion of traditional fossil energy sources and increasing environmental concerns have sparked continued interest in the development and utilisation of renewable energy sources. Lignin is a renewable resource with an abundant aromatic ring structure and low price. However, the complex structure and low reactivity of lignin limit the development of its application. The depolymerization of lignin is considered to be an effective solution to this dilemma. The catalytic depolymerization of lignin allows the preparation of value-added fine chemicals, such as monophenols and high-grade biofuels, partially replacing some products based on petroleum resources. In order to produce biofuels and value-added chemicals on a large scale through lignin depolymerization, it is necessary to develop efficient catalysts and mature catalytic systems. This review provides an overview of recent advances in catalytic depolymerization of lignin, both in terms of biocatalytic and chemical methods, respectively. Biocatalytic methods depolymerize lignin through the action of fungi, bacteria and enzymes. Chemical methods for depolymerization of lignin include pyrolysis, acid catalysis, base catalysis, oxidative catalysis, hydrogenolysis, photocatalysis, and electrocatalysis. In addition, through a detailed discussion of catalyst types, reaction mechanisms and product properties, we summarise the current opportunities and challenges for the catalytic conversion of lignin and provide an outlook on future developments in this field.
机译:传统化石能源的枯竭和日益严重的环境问题引发了人们对可再生能源开发和利用的持续兴趣。木质素是一种可再生资源,具有丰富的芳香环结构和低廉的价格。然而,木质素结构复杂,反应活性低,限制了其应用的发展。木质素的解聚被认为是解决这一困境的有效方法。木质素的催化解聚可以制备高附加值的精细化学品,如单酚和高级生物燃料,部分替代一些基于石油资源的产品。为了通过木质素解聚大规模生产生物燃料和增值化学品,需要开发高效的催化剂和成熟的催化体系。本文综述了木质素催化解聚的最新进展,包括生物催化方法和化学方法。生物催化方法通过真菌、细菌和酶的作用解聚木质素。木质素解聚的化学方法有热解、酸催化、碱催化、氧化催化、氢解、光催化和电催化等。此外,通过对催化剂类型、反应机理和产物性质的详细讨论,总结了当前木质素催化转化的机遇和挑战,并对该领域的未来发展进行了展望。

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