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Surface Characterization of Mesoporous CoOx/SBA-15 Catalyst upon 12-Dichloropropane Oxidation

机译:12-二氯丙烷氧化后介孔CoOx / SBA-15催化剂的表面表征

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摘要

The active combustion catalyst that is based on 30 wt % cobalt oxide on mesoporous SBA-15 has been tested in 1,2-dichloropropane oxidation and is characterized by means of FT-IR (Fourier transform infrared spectroscopy) and ammonia-TPD (temperature-programmed desorption). In this work, we report the spectroscopic evidence for the role of surface acidity in chloroalkane conversion. Both Lewis acidity and weakly acidic silanol groups from SBA support are involved in the adsorption and initial conversion steps. Moreover, total oxidation reaction results in the formation of new Bronsted acidic sites, which are likely associated with the generation of HCl at high temperature and its adsorption at the catalyst surface. Highly dispersed Co oxide on the mesoporous support and Co-chloride or oxychloride particles, together with the presence of several families of acidic sites originated from the conditioning effect of reaction products may explain the good activity of this catalyst in the oxidation of Chlorinated Volatile Organic Compounds.
机译:活性燃烧催化剂基于介孔SBA-15上的30 wt%氧化钴,已经在1,2-二氯丙烷氧化中进行了测试,并通过FT-IR(傅里叶变换红外光谱法)和氨气-TPD(温度-程序解吸)。在这项工作中,我们报告了表面酸性在氯烷烃转化中作用的光谱证据。来自SBA载体的路易斯酸度和弱酸性硅烷醇基团都参与吸附和初始转化步骤。此外,总氧化反应导致新的布朗斯台德酸性位点的形成,这可能与高温下产生HCl及其在催化剂表面的吸附有关。介孔载体上的高分散Co氧化物和Co-氯化物或氯氧化物颗粒,以及由于反应产物的调节作用而产生的数个酸性位点的存在,可能解释了该催化剂在氯化挥发性有机化合物氧化中的良好活性。

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