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Catalytic conversion of cellulose to chemicals in ionic liquid

机译:离子液体中纤维素催化转化为化学药品

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A simple and effective route for the production of 5-hydroxymethyl furfural (HMF) and furfural from microcrystalline cellulose (MCC) has been developed. CoSO_4 in an ionic liquid, 1-(4-sulfonic acid) butyl-3- methylimidazolium hydrogen sulfate (IL-1), was found to be an efficient catalyst for the hydrolysis of cellulose at 150 °C, which led to 84% conversion of MCC after 300 min reaction time. In the presence of a catalytic amount of CoSO_4, the yields of HMF and furfural were up to 24% and 17%, respectively; a small amount of levulinic acid (LA) and reducing sugars (8% and 4%, respectively) were also generated. Dimers of furan compounds were detected as the main by-products through HPLC-MS, and with the help of mass spectrometric analysis, the components of gas products were methane, ethane, CO, CO _2, and H_2. A mechanism for the CoSO_4-IL-1 hydrolysis system was proposed and IL-1 was recycled for the first time, which exhibited favorable catalytic activity over five repeated runs. This catalytic system may be valuable to facilitate energy-efficient and cost-effective conversion of biomass into biofuels and platform chemicals.
机译:已经开发了一种从微晶纤维素(MCC)生产5-羟甲基糠醛(HMF)和糠醛的简单有效途径。发现离子液体1-(4-磺酸)丁基-3-甲基咪唑鎓硫酸氢盐(IL-1)中的CoSO_4是纤维素在150°C水解的有效催化剂,转化率高达84% 300分钟反应时间后的MCC。在催化量的CoSO_4存在下,HMF和糠醛的收率分别高达24%和17%。还产生了少量的乙酰丙酸(LA)和还原糖(分别为8%和4%)。通过HPLC-MS将呋喃化合物的二聚体检测为主要副产物,借助质谱分析,气体产物的成分为甲烷,乙烷,CO,CO _2和H_2。提出了CoSO_4-IL-1水解系统的机理,并首次回收了IL-1,它在5次重复运行中均表现出良好的催化活性。该催化系统可能对促进将生物质转化为生物燃料和平台化学品的能源效率和成本效益很有价值。

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