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Characterization of the Micromorphology and Topochemistry of Poplar Wood during Mild Ionic Liquid Pretreatment for Improving Enzymatic Saccharification

机译:杨树木材轻度离子液体预处理改善酶促糖化过程中的微观形貌和拓扑化学表征

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摘要

Ionic liquids (ILs) as designer solvents have been applied in biomass pretreatment to increase cellulose accessibility and therefore improve the enzymatic hydrolysis. We investigated the characterization of the micromorphology and the topochemistry of poplar wood during 1-ethyl-3-methylimidazolium acetate pretreatment with mild conditions (90 °C for 20 and 40 min) by multiple microscopic techniques (FE-SEM, CLSM, and CRM). Chemical composition analysis, XRD, cellulase adsorption isotherm, and enzymatic hydrolysis were also performed to monitor the variation of substrate properties. Our results indicated that the biomass conversion was greatly enhanced (from 20.57% to 73.64%) due to the cell wall deconstruction and lignin dissolution (29.83% lignin was removed after incubation for 40 min), rather than the decrystallization or crystallinity transformation of substrates. The mild ILs pretreatment, with less energy input, can not only enhance enzymatic hydrolysis, but also provide a potential approach as the first step in improving the sequential pretreatment effectiveness in integrated methods. This study provides new insights on understanding the ILs pretreatment with low temperature and short duration, which is critical for developing individual and/or combined pretreatment technologies with reduced energy consumption.
机译:作为设计溶剂的离子液体(ILs)已应用于生物质预处理中,以增加纤维素的可及性,从而改善酶促水解。我们通过多种显微镜技术(FE-SEM,CLSM和CRM)研究了在温和条件下(90°C进行20和40分钟)的乙酸1-乙基-3-甲基咪唑鎓乙酸预处理期间杨木木材的微观形貌和拓扑化学特征。还进行化学成分分析,XRD,纤维素酶吸附等温线和酶水解以监测底物性质的变化。我们的结果表明,由于细胞壁解构和木质素溶解(孵育40分钟后去除了29.83%木质素),而不是底物的去结晶或结晶转化,生物量转化率大大提高(从20.57%增至73.64%)。温和的IL预处理,只需较少的能量输入,不仅可以增强酶促水解作用,而且还可以作为潜在方法,提高集成方法中顺序预处理的有效性。这项研究为了解低温和短时间IL预处理提供了新见识,这对于开发降低能耗的单独和/或组合预处理技术至关重要。

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