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Organosolv pretreatment of plant biomass for enhanced enzymatic saccharification

机译:植物生物量的有机溶剂预处理可增强酶促糖化作用

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摘要

The combination of dwindling petroleum reserves and population growth make the development of renewable energy and chemical resources more pressing than ever before. Plant biomass is the most abundant renewable source for energy and chemicals. Enzymes can selectively convert the polysaccharides in plant biomass into simple sugars which can then be upgraded to liquid fuels and platform chemicals using biological and/or chemical processes. Pretreatment is essential for efficient enzymatic saccharification of plant biomass and this article provides an overview of how organic solvent (organosolv) pretreatments affect the structure and chemistry of plant biomass, and how these changes enhance enzymatic saccharification. A comparison between organosolv pretreatments utilizing broadly different classes of solvents (i.e., low boiling point, high boiling point, and biphasic) is presented, with a focus on solvent recovery and formation of by-products. The reaction mechanisms that give rise to these by-products are investigated and strategies to minimize by-product formation are suggested. Finally, process simulations of organosolv pretreatments are compared and contrasted, and discussed in the context of an industrial-scale plant biomass to fermentable sugar process.
机译:石油储备的减少和人口的增长使可再生能源和化学资源的开发比以往任何时候都更加紧迫。植物生物量是能源和化学物质中最丰富的可再生资源。酶可以选择性地将植物生物质中的多糖转化为单糖,然后可以使用生物和/或化学过程将其升级为液体燃料和平台化学品。预处理对于植物生物质的有效酶促糖化至关重要,本文概述了有机溶剂(organosolv)预处理如何影响植物生物质的结构和化学,以及这些变化如何增强酶促糖化作用。本文介绍了使用广泛不同类别的溶剂(即低沸点,高沸点和双相)的有机溶剂预处理之间的比较,重点是溶剂的回收和副产物的形成。研究了产生这些副产物的反应机理,并提出了减少副产物形成的策略。最后,对有机溶剂预处理的过程模拟进行了比较和对比,并在工业规模的植物生物质转化为可发酵糖的过程中进行了讨论。

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