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Cosolvent pretreatment in cellulosic biofuel production: effect of tetrahydrofuran-water on lignin structure and dynamics

机译:纤维素生物燃料生产中的助溶剂预处理:四氢呋喃-水对木质素结构和动力学的影响

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摘要

The deconstruction of cellulose is an essential step in the production of ethanol from lignocellulosic biomass. However, the presence of lignin hinders this process. Recently, a novel cosolvent based biomass pretreatment method called CELF (Cosolvent Enhanced Lignocellulosic Fractionation) which employs tetrahydrofuran (THF) in a single phase mixture with water, was found to be highly effective at solubilizing and extracting lignin from lignocellulosic biomass and achieving high yields of fermentable sugars. Here, using all-atom molecular-dynamics simulation, we find that THF preferentially solvates lignin, and in doing so, shifts the equilibrium configurational distribution of the biopolymer from a crumpled globule to coil, independent of temperature. Whereas pure water is a bad solvent for lignin, the THF : water cosolvent acts as a "theta" solvent, in which solvent : lignin and lignin : lignin interactions are approximately equivalent in strength. Under these conditions, polymers do not aggregate, thus providing a mechanism for the observed lignin solubilization that facilitates unfettered access of celluloytic enzymes to cellulose.
机译:纤维素的解构是从木质纤维素生物质生产乙醇的重要步骤。但是,木质素的存在阻碍了该过程。最近,发现一种新的基于助溶剂的生物质预处理方法,称为CELF(助溶剂增强的木质纤维素分级分离),该方法在与水的单相混合物中使用四氢呋喃(THF),对从木质纤维素生物质中溶解和提取木质素并实现高收率非常有效。可发酵糖。在这里,使用全原子分子动力学模拟,我们发现THF优先使木质素溶剂化,并且这样做将生物聚合物的平衡构型分布从皱缩的小球转移到线圈,与温度无关。纯净水是木质素的不良溶剂,而THF:水助溶剂则充当“θ”溶剂,其中溶剂:木质素和木质素:木质素相互作用的强度近似相等。在这些条件下,聚合物不会聚集,从而为观察到的木质素增溶提供了一种机制,可促进纤维素酶不受限制地进入纤维素。

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