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Continuous D-Fructose Dehydration to 5-Hydroxymethylfurfural Under Mild Conditions

机译:在温和条件下连续D-果糖脱水至5-羟甲基糠醛

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摘要

The dehydration of D-fructose to 5-hydroxymethylfurfural was studied under single-phase conditions in the low boiling solvent 1,4-dioxane at moderate temperatures in the presence of the solid acid-catalyst Amberlyst-15. The reaction was first examined and optimized under batch conditions, where it was found that the yield could be increased up to 75?% by adding small amounts of DMSO. Subsequently, the reaction was performed under continuous flow in a fixed bed reactor. Internal and external mass transfer limitations could be eliminated by changing the particle size and by adjusting the flow rate. Under continuous conditions, the HMF yield could be further increased to 92?%; the spacetime yield was found to be 75 times higher compared to the batch case. A long-term stability test (96 h), including solvent regeneration, demonstrated that the catalyst is stable over time. Additionally, it was shown that even small amounts of water have a negative effect on the HMF yield. Overall, the present system shows a good alternative to other systems presented in literature because high spacetime yields and selectivities were obtained under relatively mild and continuous conditions.
机译:在固体酸催化剂Amberlyst-15存在下在低沸点溶剂1,4-二恶烷中的单相条件下,在低沸点溶剂1,4-二恶烷中的单相条件下研究了D-果糖至5-羟甲基糠醛的脱水。首先在分批条件下进行反应并在分批条件下进行优化,发现通过加入少量DMSO可以增加产量高达75℃。随后,在固定床反应器中连续流动进行反应。可以通过改变粒度并通过调节流速来消除内部和外部传质限制。在连续条件下,HMF产量可以进一步增加到92℃;与批量箱相比,空间产量率高出75倍。长期稳定性试验(96h),包括溶剂再生,证明催化剂随着时间的推移是稳定的。另外,表明甚至少量的水对HMF产量具有负面影响。总的来说,本系统显示出在文献中呈现的其他系统的替代方案,因为在相对温和和连续的条件下获得了高空间产量和选择性。

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