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首页> 外文期刊>Enzyme and Microbial Technology >Designing a cellulolytic enzyme cocktail for the efficient and economical conversion of lignocellulosic biomass to biofuels
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Designing a cellulolytic enzyme cocktail for the efficient and economical conversion of lignocellulosic biomass to biofuels

机译:设计一种纤维素酶鸡尾酒,用于木质纤维素生物质对生物燃料的有效和经济转化

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摘要

Concerns about dwindling fossil fuels and their unfavorable environmental impacts shifted the global focus towards the development of biofuels from lignocellulosic feedstocks. The structure of this biomass is very complex due to which variety of enzymes (cellulolytic, hemicellulolytic, auxiliary/AA9) and proteins (e.g. swollenin) required for efficient deconstruction. Major impediments in large-scale commercial production of cellulosic ethanol are the cost of cellulases and inability of any single microorganism to produce all cellulolytic components in sufficient titers. In the recent past, various methods for reducing the enzyme cost during cellulosic ethanol production have been attempted. These include designing optimal synergistic enzyme blends/cocktail, having certain ratios of enzymes from different microbial sources, for efficient hydrolysis of pretreated biomass. However, the mechanisms underlying the development, strategies for production and evaluation of optimal cellulolytic cocktails still remain unclear. This article aims to explore the technical and economic benefits of using cellulolytic enzyme cocktail, basic enzymatic and non-enzymatic components required for its development and various strategies employed for efficient cellulolytic cocktail preparation. Consideration was also given to the ways of evaluation of commercially available and in-house developed cocktails. Discussion about commercially available cellulolytic cocktails, current challenges and possible avenues in the development of cellulolytic cocktails included.
机译:对Dwindling化石燃料的担忧及其不利的环境影响将全球焦点转向从木质纤维素原料开发生物燃料的开发。由于有效解构所需的酶(纤维素分解,半纤维素溶解,助剂/ AA9)和蛋白质(例如溶胀),这种生物质的结构非常复杂。大规模商业生产纤维素乙醇的主要障碍是纤维素酶的成本和任何单一微生物的成本,以产生足够的滴度的所有纤维素分解组分。在最近,已经尝试了在纤维素乙醇生产中降低酶成本的各种方法。这些包括设计具有来自不同微生物来源的一定酶比例的最佳协同酶共混物/鸡尾酒,用于预处理生物质的有效水解。然而,依据发展的机制,生产策略和最佳纤维素醇化鸡尾酒的策略仍然尚不清楚。本文旨在探讨其开发所需的纤维素分解酶鸡尾酒,碱性酶和非酶促成分的技术和经济效益以及用于高效纤维素分解鸡尾酒制剂的各种策略。还考虑了商业和内部开发的鸡尾酒的评估方式。浅谈市售的纤维素溶解鸡尾酒,当前挑战和可能的途径在开发中包括纤维素分解鸡尾酒。

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