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Selective Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid over MnOx-CeO2 Supported Palladium Nanocatalyst under Aqueous Conditions

机译:选择性氧化5-羟基甲基氟化曲膜到MNOX-CEO2在水性条件下支撑的钯纳米催化剂上的2,5-氟二羧酸

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摘要

Selective aerobic oxidation of biomass-derived 5-hydroxymethylfurfural(HMF)into high value-added 2,5-furandicarboxylic acid(FDCA)is regarded as one of the most attractive biomass transformations due to a wide range of its application prospects,particularly as an important renewable alternative to petroleum-derived terephthalic acid in the synthesis of useful polymers.Herein,a novel MnOx-CeO2(MC)supported palladium catalyst was synthesized and applied for the aerobic oxidation of HMF into FDCA in KHCO3 aqueous solution.The physical and chemical properties of the obtained catalysts were systematically characterized by TEM,N2 adsorption and desorption,XRD,TG,XPS,and H2-TPR characterization methods.And the highest yield of FDCA at 92.5% was achieved under the optimal reaction conditions.Moreover,regeneration tests revealed the synthesized Pd/MC catalyst can be recovered and reused at least five times without significant loss of catalytic activity.The developed facile reaction system with Pd/MC catalysts offers a new route to large-scale and economically viable processes for the oxidation of HMF into FDCA.
机译:将生物质衍生的5-羟基甲基氟化外(HMF)的选择性有氧氧化成高增值2,5-富含2,5-富含二羧酸(FDCA),被认为是由于其广泛的应用前景,尤其是最有吸引力的生物质转化之一在有用聚合物的合成中,具有石油衍生的三苯甲酸的重要可再生替代品。在这里,合成了一种新型的MNOX-CEO2(MC)支持的钯催化剂,并应用于将HMF的有氧氧化物在khco3水溶液中HMF中的有氧氧化。系统地以TEM,N2吸附和解吸,XRD,TG,TG,XP和H2-TPR表征方法系统地表征了所获得的催化剂的性能。在最佳反应条件下实现了FDCA的最高收益率。在最佳反应条件下达到了92.5%。揭示了合成的PD/MC催化剂可以回收并重复至少五次,而不会显着催化活性。 D/MC催化剂为将HMF氧化为FDCA提供了新的途径,可以实现大规模且经济上可行的过程。

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