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Particle size distribution and morphological changes in activated carbon-metal oxide hybrid catalysts prepared under different heating conditions

机译:不同加热条件下制备的活性炭-金属氧化物杂化催化剂的粒度分布和形态变化

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摘要

In catalysis processes, activated carbon (AC) and metal oxides (MOs) are widely used either as catalysts or as catalyst supports because of their unique properties. A combination of AC and a MO in a single hybrid material entails changes not only in the composition, microstructure and texture but also in the morphology, which may largely influence the catalytic behaviour of the resulting product. This work is aimed at investigating the modifications in the morphology and particle size distribution (PSD) for AC-MO hybrid catalysts as a result of their preparation under markedly different heating conditions. From a commercial AC and six MO (Al2O3, Fe2O3, ZnO, SnO2, TiO2 and WO3) precursors, two series of such catalysts are prepared by wet impregnation, oven-drying at 120oC, and subsequent heat treatment at 200oC or 850oC in inert atmosphere. The resulting samples are characterized in terms of their morphology and PSD by scanning electron microscopy and ImageJ processing program. Obtained results indicate that the morphology, PSD and degree of dispersion of the supported catalysts are strongly dependent both on the MO precursor and the heat treatment temperature. With the temperature rise, trends are towards the improvement of crystallinity, the broadening of the PSD and the increase in the average particle size, thus suggesting the involvement of sintering mechanisms. Such effects are more pronounced for the Fe, Sn and W catalysts due to the reduction of the corresponding MOs by AC during the heat treatment at 850oC.
机译:在催化过程中,活性炭(AC)和金属氧化物(MOs)由于其独特的性能而广泛用作催化剂或催化剂载体。在单一的混合材料中,AC和MO的结合不仅会改变组成,微观结构和质地,而且还会改变形态,这可能在很大程度上影响所得产物的催化性能。这项工作旨在研究由于在明显不同的加热条件下制备AC-MO杂化催化剂而引起的形态和粒度分布(PSD)的变化。从市售的AC和六种MO(Al2O3,Fe2O3,ZnO,SnO2,TiO2和WO3)前体中,通过湿法浸渍,120oC烘箱干燥,随后在惰性气氛中200oC或850oC进行热处理,制备了两种此类催化剂。 。通过扫描电子显微镜和ImageJ处理程序对所得样品的形态和PSD进行表征。所得结果表明,负载型催化剂的形貌,PSD和分散度强烈地取决于MO前体和热处理温度。随着温度的升高,趋向于结晶度的改善,PSD的变宽和平均粒径的增加,因此暗示了烧结机制的参与。由于在850oC的热处理过程中AC降低了相应的MOs,因此对于Fe,Sn和W催化剂,这种影响更为明显。

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