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

机译:Catalytic Conversion of Inulin and Fructose into 5-Hydroxymethylfurfural by Lignosulfonic acid in Ionic Liquids

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,我们发现木质纤维素磺酸(LS)是造纸工业的废副产品,在离子液体(ILs)中可以有效地催化果糖和菊粉脱水成5-羟甲基糠醛(HMF),这是有希望的石油基建材的潜在替代品。研究了反应时间,温度,催化剂载量和催化体系的可重复使用性的影响。发现在温和条件下在100℃仅10分钟内HMF的收率就可达到94.3%。通过乙酸乙酯萃取去除HMF后LSIL催化体系的可重用性研究表明,经过5个循环后,催化活性从77.4%降低至62.9%,并且在加入乙醇后简单地通过过滤除去积累的腐殖质即可恢复催化活性。 LSIL。生物可再生原料,催化剂和IL的综合利用是理想的绿色化学过程的一个例子。

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