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Study on the Formation of Ethyl Levulinate from Wheat Straw Based on a Model Compound

机译:基于模型化合物的小麦秸秆乙基乙酸乙基乙基乙酯研究

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Glucose and microcrystalline cellulose were selected as model compounds to investigate the formation of ethyl levulinate (EL). Optimal glucose and microcrystalline cellulose transformation conditions resulted in yields of 41.05 wt.% and 38.56 wt.% for EL, 0.73 wt.% and 2.63 wt.% for ethyl-glucoside (EG), 0.42 wt.% and 0.36 wt.% for 5-hydroxymethylfurfural (HMF), and 2.18 wt.% and 2.16 wt.% for 5-ethoxy methyl furfural (EMF), respectively. Increasing the reaction time and temperature resulted in an optimized yield of EL. These increases also resulted in decreased EG and EMF yield, and the change trend of HMF was not significant. EMF, HMF, and EG are intermediates in the formation of EL. Finally, we concluded that biomass conversion occurs first through cellulose degradation to glucose followed by the production of EG through alcoholysis and hydrolysis and dehydration of the reaction products to produce EL.
机译:选择葡萄糖和微晶纤维素作为模型化合物,以研究乙酰硫酸乙酯(EL)的形成。 最佳葡萄糖和微晶纤维素转化条件产生41.05重量%的产率和38.56重量%,对于EL,0.73重量%和2.63重量%,0.42重量%,0.42重量%和0.36重量%。% 5-羟甲基糠醛(HMF)和2.18重量%和2.16重量%,分别对5-乙氧基甲基糠醛(EMF)。 增加反应时间和温度导致EL的优化产率。 这些增加也导致例如EMF产量下降,HMF的变化趋势并不重要。 EMF,HMF和例如形成EL的中间体。 最后,我们得出结论,生物质转化首先通过纤维素降解到葡萄糖,然后通过醇解和水解和反应产物的脱水产生EL的氟化物。

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