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The study of model systems subjected to sub- and supercritical water hydrolysis for the production of fermentable sugars

机译:亚临界和超临界水水解生产可发酵糖的模型系统的研究

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摘要

Bioenergy obtained from lignocellulosic biomass is considered the most efficient way to achieve sustainable development in the future. However, there still are challenges in the cellulose conversion to hexoses, which could be used as raw material for the bioenergy production. Sub- and supercritical water hydrolysis have been researched as emergent technologies to obtain simple sugars from lignocellulosic biomass; however, the reaction pathways and kinetics of the hydrolysis of cellulose into oligomers and monomers, and their degradation under sub- and supercritical conditions, are not completely understood yet. Thus, this review provides an overview of the state-of-the-art on hydrolysis with sub- and supercritical water of model systems, cellulose and starch, in the context of elucidating the reaction pathways and kinetic behavior of the biomass hydrolysis to produce suitable fermentation substrates for the production of second generation bioethanol and other biofuels.
机译:从木质纤维素生物质获得的生物能源被认为是未来实现可持续发展的最有效方法。但是,纤维素转化为己糖仍然存在挑战,可以将其用作生物能源生产的原料。已研究了亚临界和超临界水水解技术,以从木质纤维素生物质中获得单糖。然而,尚未完全理解纤维素水解为低聚物和单体的反应途径和动力学,以及它们在亚临界和超临界条件下的降解。因此,在阐明生物质水解产生合适的反应途径和动力学行为的背景下,本综述概述了模型系统,纤维素和淀粉在亚临界和超临界水中水解的最新技术。用于生产第二代生物乙醇和其他生物燃料的发酵底物。

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