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Acid Hydrolysis of Lignocellulosic Biomass: Sugars and Furfurals Formation

机译:木质纤维素生物量的酸性水解:糖和糠醛形成

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Hydrolysis of lignocellulosic biomass is a crucial step for the production of sugars and biobased platform chemicals. Pretreatment experiments in a semi-continuous plant with diluted sulphuric acid as catalyst were carried out to measure the time-dependent formation of sugars (glucose, xylose, mannose), furfurals, and organic acids (acetic, formic, and levulinic acid) at different hydrolysis temperatures (180, 200, 220 °C) of one representative of each basic type of lignocellulose: hardwood, softwood, and grass. The addition of the acid catalyst is followed by a sharp increase in the sugar concentration. Xylose and mannose were mainly formed in the initial stages of the process, while glucose was released slowly. Increasing the reaction temperature had a positive effect on the formation of furfurals and organic acids, especially on hydroxymehtylfurfural (HMF) and levulinic acid, regardless of biomass type. In addition, large amounts of formic acid were released during the hydrolysis of miscanthus grass. Structural changes in the solid residue show a complete hydrolysis of hemicellulose at 180 °C and of cellulose at 200 °C after around 120 min reaction time. The results obtained in this study can be used for the optimisation of the hydrolysis conditions and reactor design to maximise the yields of desired products, which might be sugars or furfurals.
机译:木质纤维素生物质的水解是生产糖和生物化平台化学品的关键步骤。进行了多种氧化硫酸作为催化剂的半连续植物的预处理实验,以测量不同的糖(葡萄糖,木糖,甘露糖),糠醛和有机酸(醋酸,甲状腺和乙酰丙酸)的时间依赖性形成水解温度(180,200,220°C)的每种基础类型的木质纤维素的一种代表:硬木,软木和草。加入酸催化剂,然后急剧增加糖浓度。木糖和甘露糖主要形成在该方法的初始阶段,而葡萄糖被缓慢释放。增加反应温度对糠醛和有机酸形成的阳性作用,特别是在羟基上对羟基葡萄保持(HMF)和乙酰丙酸,无论生物质型如何。此外,在Miscanthus草的水解过程中释放大量的甲酸。固体残余物中的结构变化显示在约120分钟的反应时间后在200℃和200℃下在200℃和纤维素中完全水解。本研究中获得的结果可用于优化水解条件和反应器设计,以最大限度地提高所需产物的产量,这可能是糖或糠醛。

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