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Highly Loaded Fe-MCM-41 Materials: Synthesis and Reducibility Studies

机译:高负荷的Fe-MCM-41材料:合成和还原性研究

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摘要

Fe-MCM-41 materials were prepared by different methods. The Fe was both incorporated into the structure and formed crystallites attached to the silica. High Fe content MCM-41 (~16 wt%) with retention of mesoporosity and long-range order was achieved by a range of new synthetic methodologies: (i) by delaying the addition of Fe3+(aq) to the stirred synthesis gel by 2 h, (ii) by addition of Fe3+ precursor as a freshly-precipitated aqueous slurry, (iii) by exploiting a secondary synthesis with Si-MCM-41 as SiO2 source. For comparative purposes the MCM-41 was also prepared by incipient wetness impregnation (IWI). Although all these synthesis methods preserved mesoporosity and long-range order of the SiO2 matrix, the hydrothermally-fabricated Fe materials prepared via the secondary synthesis route has the most useful properties for exploitation as a catalyst, in terms of hydrothermal stability of the resulting support. Temperature-programmed reduction (TPR) studies revealed a three-peak reduction pattern for this material instead of the commonly observed two-peak reduction pattern. The three peaks showed variable intensity that related to the presence of two components: crystalline Fe2O3 and Fe embedded in the SiO2 matrix (on the basis of ESR studies). The role of secondary synthesis of Si-MCM-41 on the iron reducibility was also demonstrated in IWI of sec-Si-MCM-41.
机译:Fe-MCM-41材料是通过不同的方法制备的。 Fe既掺入到结构中,又形成附着在二氧化硅上的微晶。通过一系列新的合成方法,实现了高铁含量的MCM-41(〜16 wt%)保留介孔性和长程有序性:(i)通过延迟Fe 3 + ( aq)在搅拌后的2 h内加入到合成凝胶中;(ii)通过添加Fe 3 + 前体作为新鲜沉淀的水浆;(iii)通过使用Si-MCM-41进行二次合成作为SiO2源。为了比较,还通过初期湿润浸渍(IWI)制备了MCM-41。尽管所有这些合成方法都保留了SiO2基体的中孔性和长程有序性,但就所得载体的水热稳定性而言,通过二次合成路线制备的水热制备的Fe材料具有用作催化剂的最有用的性能。程序升温还原(TPR)研究揭示了这种材料的三峰还原模式,而不是通常观察到的两峰还原模式。这三个峰显示出与两个组分的存在有关的可变强度:结晶的Fe2O3和嵌入SiO2基质中的Fe(基于ESR研究)。在sec-Si-MCM-41的IWI中也证明了Si-MCM-41的二次合成对铁还原性的作用。

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