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The effects of alkali metal on structure of manganese oxide supported on SBA-15 for application in the toluene catalytic oxidation

机译:The effects of alkali metal on structure of manganese oxide supported on sBa-15 for application in the toluene catalytic oxidation

摘要

The effects of alkali metal on the toluene catalytic oxidation were studied over the manganese oxide supported on SBA-15. Their properties were characterized by temperature programmed reduction (TPR), X-ray diffraction (XRD), diffuse reflectance spectra (DRS) and Fourier transform infrared (FTIR) techniques. It was found that the K/Mn molar ratios over the range of 0.1/1-0.3/1 greatly influenced the structure of the catalyst and the activity for toluene oxidation. When the K/Mn molar ratio was lower than 0.125/1, it led to a decrease in the dispersion of metal oxide particles and the reducibility, resulting in low reactivity for toluene oxidation. Increasing the K/Mn molar ratios to 0.15/1-0.18/1 resulted in the transformation of parts of MnO2 into Mn2O3, and accompanying with the high dispersion of metal oxides and better reducibility. The catalytic activity was obviously increased when the K/Mn molar ratio was 0.15/1-0.18/1. The reactivity of the sample with K/Mn above 0.18/1, however, declined sharply due to the blocking of active sites by K. Two important adsorption sites existed on the KMn/SBA-15 system, in which one was isolated OH groups on the SBA-15 and the other was the activated Si-O-Mn bond under the effect of K. (C) 2012 Elsevier B.V. All rights reserved.
机译:研究了在SBA-15上负载的锰氧化物上碱金属对甲苯催化氧化的影响。它们的性质通过程序升温还原(TPR),X射线衍射(XRD),漫反射光谱(DRS)和傅立叶变换红外(FTIR)技术来表征。发现K / Mn摩尔比在0.1 / 1-0.3 / 1的范围内极大地影响了催化剂的结构和甲苯氧化的活性。当K / Mn摩尔比小于0.125 / 1时,其导致金属氧化物颗粒的分散性和还原性降低,导致对甲苯氧化的反应性低。将K / Mn摩尔比提高到0.15 / 1-0.18 / 1会导致部分MnO2转变为Mn2O3,并且伴随着金属氧化物的高分散性和更好的还原性。当K / Mn摩尔比为0.15 / 1-0.18 / 1时,催化活性明显提高。但是,样品中K / Mn高于0.18 / 1的反应性由于K阻断了活性位点而急剧下降。KMn/ SBA-15系统上存在两个重要的吸附位点,其中一个被分离出了OH基。 SBA-15和另一个是在K作用下活化的Si-O-Mn键。(C)2012 Elsevier BV保留所有权利。

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