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Palladium catalyzed hydrogenation of biomass derived halogenated furfurals

机译:钯催化生物质衍生的卤代糠醛氢化

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The formation of valuable products and especially fuel candidates from lignocellulosic biomass is highly desirable. Lignocellulose derived halogenated furfurals formation was reported as highly efficient in comparison to the current existing methods of lignocellulose transformation. However, halogenated furfurals are platform chemicals and not end use chemicals, certainly not for fuels. Therefore, transformation methods of halogenated furfurals into fuels, fuels additives, or other valuable compounds are desirable. In this work we present the hydrogenation of halogenated furfurals over carbon supported palladium catalysts. Palladium catalysts showed better performance in the formation of 5-methyl furfural (MF) from halogenated furfurals compared to other catalysts. The reaction products were identified using GC-MS, FT-IR and NMR, and they were quantified using GC analysis. Catalysts were characterized with SEM, BET and pH meter. The role of catalysts properties and reaction parameters in MF preparation, and their effect on MF yields and selectivity were examined. In addition, the catalysts recovery and reuse in subsequent cycles was examined together with the recovery of hydrochloric acid or hydrobromic acid, formed as by products in halogenated furfurals hydrogenation.
机译:非常理想的是木质纤维素生物量的宝贵产品和尤其是燃料候选者的形成。与目前现有的木质纤维素转化方法相比,将木质纤维素衍生的卤代糠醛形成高效。然而,卤化糠醛是平台化学品,而不是最终使用化学品,肯定不是燃料。因此,希望卤代糠醛转化为燃料,燃料添加剂或其他有价值的化合物。在这项工作中,我们介绍了卤代糠醛在碳负载钯催化剂上的氢化。与其他催化剂相比,钯催化剂在卤化糠醛中形成5-甲基糠醛(MF)的性能更好。使用GC-MS,FT-IR和NMR鉴定反应产物,并使用GC分析定量它们。用SEM,BET和pH计表征催化剂。催化剂性能和反应参数在MF制剂中的作用及其对MF产率和选择性的影响。此外,随后循环中的催化剂回收和再利用与盐酸或氢溴酸的回收一起检查,如卤代糠醛氢化的产物一样。

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