利用真菌生物降解技术实现木质纤维素废料生物质的增值及其多样化应用

Prerna Mehta, Dinesh Kumar Chelike
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摘要

木质素降解是一种分解由木质素、纤维素和半纤维素(统称为木质纤维素)组成的废弃植物物质的有效技术。这种丰富的有机材料遍布世界各地。由于木质纤维素具有难降解的特性,要将其有效地转化为生物燃料、生物化学品和其他有价值的产品是一项挑战。利用真菌降解木质纤维素材料的霉菌降解技术为解决这一难题提供了一种可持续且具有成本效益的方法。本综述概述了木质纤维素生物质降解的机制和应用。综述讨论了参与木质纤维素降解的各类真菌、它们的酶系统以及影响其性能的因素。此外,还综述了真菌降解产品的潜在应用,如生物燃料、酶和生物塑料。报告还强调了霉菌降解对废物管理和可持续发展的影响。总之,霉菌降解是一种有效去除木质纤维素废弃生物质的有前途的技术,在这一领域的进一步研究将为可持续地创造生物基产品带来巨大潜力。本文受版权保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilizing Fungal Biodegradation for Valorisation of Lignocellulosic Waste Biomass and Its Diverse Applications
Myco degradation is an effective technique for breaking down waste plant substances made of lignin, cellulose, and hemicellulose, which are collectively known as lignocellulose. This abundant organic material is found throughout the world. Due to its recalcitrant nature, lignocellulose poses a challenge for efficient conversion into biofuels, biochemicals, and other valuable products. Myco degradation, which involves the use of fungi to degrade lignocellulosic materials, offers a sustainable and cost‐efficient resolution to this challenge. This review provides an overview of the mechanisms and applications of myco degradation for lignocellulosic biomass degradation. The review discusses the various types of fungi involved in lignocellulose degradation, their enzymatic systems, and the factors that influences their performance. Furthermore, the potential applications of myco degradation products, such as biofuels, enzymes, and bioplastics, are reviewed. It also highlights the implications of myco degradation for waste management and sustainable development. Overall, myco degradation represents a promising technology for the efficient deprivation of lignocellulosic waste biomass, and further research in this field holds great potential for the sustainable creation of bio‐based products.This article is protected by copyright. All rights reserved.
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