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Catalytic Conversion of Inulin and Fructose into 5-Hydroxymethylfurfural by Lignosulfonic Acid in Ionic Liquids

机译:菊粉与果糖催化转化为离子液体中木质素磺酸的5-羟甲基糠醛

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摘要

In this work, we found that lignosulfonic acid (LS), which is a waste byproduct from the paper industry, in ionic liquids (ILs) can catalyze the dehydration of fructose and inulin into 5-hydroxymethylfurfural (HMF) efficiently, which is a promising potential substitute for petroleum-based building blocks. The effects of reaction time, temperature, catalyst loading, and reusability of the catalytic system were studied. It was found that a 94.3?% yield of HMF could be achieved in only 10 min at 100 degrees C under mild conditions. The reusability study of the LSIL catalytic system after removal of HMF by ethyl acetate extraction demonstrated that the catalytic activity decreased from 77.4 to 62.9?% after five cycles and the catalytic activity could be recovered after simply removing the accumulated humins by filtration after adding ethanol to the LSILs. The integrated utilization of a biorenewable feedstock, catalyst, and ILs is an example of an ideal green chemical process.
机译:在这项工作中,我们发现Lignosulfonic酸(LS)是来自造纸工业的废物副产物,在离子液体(ILS)中可以有效地催化果糖和菊粉中的果糖和菊粉中的脱水,这是一个有效的 基于石油的积木替代品。 研究了反应时间,温度,催化剂负载和催化体系的可重用性的影响。 结果发现,在温和条件下仅在100摄氏度下仅10分钟实现94.3〜%的HMF产率。 通过乙酸乙酯萃取除去HMF后的LSIL催化系统的可重用性研究表明,在加入乙醇后,在通过过滤后,可以回收五个循环后的催化活性在77.4至62.9〜62.9℃下降 LSILS。 生物愈生原料,催化剂和ILS的综合利用是理想的绿色化学过程的一个例子。

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