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Formic Acid Production Via Methane Peroxide Oxidation Over Oxalic Acid Activated Fe-MFI Catalysts

机译:通过甲烷过氧化物氧化在草酸活化Fe-MFI催化剂上产生甲酸生产

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The process of synthesis of formic acid via partial peroxide oxidation of methane over Fe-MFI zeolites, as well as the influence of the catalyst activation by oxalic acid on the process parameters (conversion and selectivity) was studied. XRD, ICP-OES, SEM, UV-Vis DR, ESR, NH3-TPD, Al-27 MAS NMR, N-2 adsorption techniques were used for the catalyst characterization. The observed increase in TOF, selectivity to formic acid and efficiency of H2O2 utilization upon the catalyst activation with oxalic acid was accounted for by the formation of oligomeric oxo-clusters of Fe-ions and by an increase in the total acidity of the catalysts. The process of oxidation of main intermediates of the reaction, such as methanol and formic acid, was studied in the presence and in the absence of methane that allowed the mechanism of methane oxidation to formic acid to be suggested.
机译:研究了通过Fe-MFI沸石的甲烷的部分过氧化物氧化合成甲酸的方法,以及通过草酸对工艺参数(转化和选择性)的催化剂活化的影响。 催化剂表征用于XRD,ICP-OES,SEM,UV-VIS DR,ESR,NH3-TPD,Al-27 MAS NMR,N-2吸附技术。 通过形成Fe离子的寡聚氧化簇和催化剂的总酸度的增加,观察到的TOF的增加,对催化剂活化的培养物和H2O2利用效率的效率进行含量。 在存在和不存在甲烷的情况下,研究了甲醇和甲酸的反应的主要中间体的氧化方法,使甲烷氧化对甲酸的机理。

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