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Gas Phase Hydrogenation of Furaldehydes via Coupling with Alcohol Dehydrogenation over Ceria Supported Au-Cu

机译:二氧化铈负载的Au-Cu上的呋喃醛与乙醇脱氢偶联的气相加氢

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摘要

We have investigated the synthesis and application of Au-Cu/CeO2 (Cu: Au = 2) in the continuous gas phase (P = 1 atm; T = 498 K) coupled hydrogenation of 5-hydroxymethyl-2-furaldehyde (HMF) with 2-butanol dehydrogenation. STEM-EDX analysis revealed a close surface proximity of both metals in Au-Cu/CeO2 post-TPR. XPS measurements suggest (support → metal) charge transfer to form Auδ and strong metal-support interactions to generate Cu0 and Cu+. Au-Cu/CeO2 promoted the sole formation of 2,5-dihydroxymethylfuran (DHMF) and 2-butanone in the HMF/2-butanol coupling with full hydrogen utilisation. Under the same reaction conditions, Au/CeO2 was fully selective to DHMF in standard HMF hydrogenation (using an external hydrogen supply), but delivered a lower production rate and utilised less than 0.2% of the hydrogen supplied. Exclusive -C=O hydrogenation and -OH dehydrogenation is also demonstrated for the coupling of a series of m-substituted (-CH3, -CH2CH3, -CH2OH, -CF3, -N(CH3)2, -H) furaldehydes with alcohol (1-propanol, 1-butanol, 2-propanol, 2-butanol, cyclohexanol) dehydrogenation over Au-Cu/CeO2, consistent with a nucleophilic mechanism. In each case, we observed a greater hydrogenation rate and hydrogen utilisation efficiency with a 3–15 times lower E-factor in the coupling process relative to standard hydrogenation. Our results demonstrate the feasibility of using hydrogen generated in situ through alcohol dehydrogenation for the selective hydrogenation of m-furaldehydes with important industrial applications.
机译:我们已经研究了在连续气相(P = 1 atm; T = 498 K)中对5-羟甲基-2-呋喃醛(HMF)进行加氢加成的Au-Cu / CeO2(Cu:Au = 2)的合成和应用2-丁醇脱氢。 STEM-EDX分析显示,TPR后Au-Cu / CeO2中两种金属的表面接近。 XPS测量表明(载体→金属)电荷转移形成Au δ -,并且强烈的金属-载体相互作用生成Cu 0 和Cu + 。 Au-Cu / CeO2促进了HMF / 2-丁醇中2,5-二羟甲基呋喃(DHMF)和2-丁酮的唯一形成,并充分利用了氢。在相同的反应条件下,Au / CeO2在标准HMF加氢(使用外部氢气供应)中对DHMF具有完全选择性,但生产率较低,并且使用的氢气少于供应的0.2%。还证明了独家的-C = O氢化和-OH脱氢用于一系列间位取代的(-CH3,-CH2CH3,-CH2OH,-CF3,-N(CH3)2,-H)糠醛与醇( Au-Cu / CeO2上的1-丙醇,1-丁醇,2-丙醇,2-丁醇,环己醇)脱氢,与亲核机理相符。在每种情况下,与标准氢化相比,在偶联过程中我们观察到更高的氢化速率和更高的氢利用率,而E因子降低了3–15倍。我们的结果表明,在重要的工业应用中,使用通过醇脱氢原位产生的氢对间呋喃醛进行选择性加氢的可行性。

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