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Aqueous Phase Hydrogenolysis of Bio-Derivable Furfuryl Alcohol to Pentanediols Using Copper Catalysts

机译:使用铜催化剂将生物衍生糠醇的水相加氢水解为戊二醇

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摘要

In the context of sustainable production processes based on bio-derivable feedstocks, the hydrogenolysis of furfuryl alcohol gives access to two important diols. This work evaluates the performance of commercial copper catalysts in the aqueous phase hydrogenolysis reaching a selectivity towards 1,2-pentanediol of up to 34%. In contrast to noble metal catalysts such as supported ruthenium, the selectivity of the hydrogenation product, tetrahydrofurfuryl alcohol, is significantly lower, so the desired diols are now the main products of this reaction. Catalysis experiments show that the performance is correlated to the catalyst composition rather than the free copper surface, indicating a strong influence of the supporting material. Although the formation of oligomeric and polymeric side products is still perturbing, copper catalysts represent promising candidates for this reaction due to their low cost and wide availability.
机译:在基于生物可衍生原料的可持续生产过程中,糠醇的氢解作用可得到两种重要的二醇。这项工作评估了商业铜催化剂在水相氢解中的性能,达到了对1,2-戊二醇的选择性高达34%。与贵金属催化剂如负载型钌相反,氢化产物四氢糠醇的选择性明显较低,因此所需的二醇现在是该反应的主要产物。催化实验表明,性能与催化剂组成有关,而不与游离铜表面有关,表明载体材料的影响很大。尽管低聚物和聚合物副产物的形成仍在困扰,但是铜催化剂由于其低成本和广泛的可用性而成为该反应的有希望的候选者。

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