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Eco-Friendly Cavity-Containing Iron Oxides Prepared by Mild Routes as Very Efficient Catalysts for the Total Oxidation of VOCs

机译:通过温和途径制备的环保型腔氧化氧化物,以非常有效的催化剂用于VOC的总氧化

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摘要

Iron oxides (FeOx) are non-toxic, non-expensive and environmentally friendly compounds, which makes them good candidates for many industrial applications, among them catalysis. In the present article five catalysts based on FeOx were synthesized by mild routes: hydrothermal in subcritical and supercritical conditions (Fe-HT, Few200, Few450) and solvothermal (Fe-ST1 and Fe-ST2). The catalytic activity of these catalysts was studied for the total oxidation of toluene using very demanding conditions with high space velocities and including water and CO2 in the feed. The samples were characterized by X-ray diffraction (XRD), scanning and high-resolution transmission electron microscopy (SEM and HRTEM), X-ray photoelectron spectroscopy (XPS) and nitrogen adsorption-desorption isotherms. It was observed that the most active catalyst was a cavity-containing porous sample prepared by a solvothermal method with a relatively high surface area (55 m2 g−1) and constituted by flower-like aggregates with open cavities at the catalyst surface. This catalyst displayed superior performance (100% of toluene conversion at 325 °C using highly demanding conditions) and this performance can be maintained for several catalytic cycles. Interestingly, the porous iron oxides present not only a higher catalytic activity than the non-porous but also a higher specific activity per surface area. The high activity of this catalyst has been related to the possible synergistic effect of compositional, structural and microstructural features emphasizing the role of the surface area, the crystalline phase present, and the properties of the surface.
机译:铁氧化物(的FeOx)是无毒,非昂贵和环境友好型的化合物,这使得它们很好的候选人在许多工业应用中,其中催化。在本文章基于的FeOx五种催化剂是由轻度路线合成:在亚临界和超临界条件(FE-HT,Few200,Few450)和溶剂热(FE-ST1和Fe-ST2)水热。这些催化剂的催化活性进行了研究用于使用具有高的空间速度和包括进料在水和CO 2非常苛刻的条件下甲苯的总氧化。通过X射线衍射(XRD),扫描和高分辨率透射电子显微镜(SEM和HRTEM),X射线光电子能谱(XPS)和氮吸附 - 脱附等温线对样品进行表征。据观察,最活跃的催化剂是通过溶剂热法具有相对高的表面积制备的含空腔的多孔样品(55平方米G-1)和由通过花状与在催化剂表面敞开的空腔的聚集体。该催化剂(使用高度苛刻的条件,甲苯转化的100%在325℃下)显示优异的性能和该性能可以保持几个催化循环。有趣的是,多孔铁氧化物呈现比非多孔不仅有较高的催化活性,而且每表面积的更高的比活性。该催化剂的高活性已经涉及到的组成,结构和微观结构特征强调表面积,结晶相存在,且表面的特性的作用的可能协同效应。

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