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Enzymatic Oxidation of Lignin: Challenges and Barriers Toward Practical Applications

机译:木质素的酶促氧化:实际应用的挑战和障碍

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摘要

Lignocellulosic biomass represents perhaps the most abundant renewable resource with a potential to replace fossil-based feedstock for sustainable energy, chemical and materials production. Among the three major lignocellulosic biomass components (i. e. cellulose, hemicellulose and lignin), lignin is a macromolecule with an aromatic skeleton with a variety of functional groups (e. g. hydroxyl, methoxy, carbonyl, double bond) and carries a higher energy density. The unique structure makes lignin an intriguing substrate for energy, chemicals and materials productions. However, the high molecular weight and complex macromolecular structure have made lignin a challenging substrate to be transformed by many conversion methods. Microbial enzyme degradation and modification of lignin have been subjected to a significant amount research in the last a few decades. Yet so far little success has been demonstrated to merit the use of enzymatic technology for lignin transformation at a commercial scale. This paper provides an updated review of the development of lignin degrading/modifying enzymes with an emphasis on identifying the key barriers and challenges toward practical applications of microbial enzymes for lignin valorization with a hope to generate new insights and direction that can overcome these challenges.
机译:木质纤维素生物量可能代表最丰富的可再生资源,潜力取代化石原料以进行可持续能源,化学和材料生产。在三个主要的木质纤维素生物量组分(即纤维素,半纤维素和木质素)中,木质素是具有各种官能团的芳香骨架的大分子(例如羟基,甲氧基,羰基,双键)并携带更高的能量密度。独特的结构使Lignin成为能量,化学品和材料制造的有趣基底。然而,高分子量和复合的大分子结构使木质素成为一种挑战性的基质,以通过许多转化方法转化。在过去几十年中,木质素的微生物酶降解和改性已经进行了显着的研究。然而,到目前为止,已经证明了在商业规模以木质素转型使用酶促技术的使用。本文提供了对木质素降解/修饰酶的发展的更新审查,重点是识别微生物酶对木质素贪得无类的关键障碍和挑战,希望能够产生可以克服这些挑战的新洞察和方向。

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