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Optimization of Cs content in Co-Mn-Al mixed oxide as catalyst for N2O decomposition

机译:Co-Mn-Al复合氧化物中NsO分解中Cs含量的优化

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A series of Co-Mn-Al mixed oxide catalysts with different Cs contents (0.5-4.6 wt%) was prepared by calcination of Co-Mn-Al hydrotalcite (Co:Mn:Al = 4:1:1), followed by impregnation by cesium salt (CsNO3, Cs2CO3) using the pore filling method. Chemical analysis, N-2 sorption, temperature programmed reduction (TPR)-H-2, temperature programmed desorption (TPD)-CO2 and TPD-NH3 and X-ray photoelectron spectroscopy (XPS) were used to characterize the catalysts. All prepared catalysts were tested for N2O catalytic decomposition in inert gas and in the presence of oxygen, water vapor and nitric oxide. The influence of Cs salts used for catalyst preparation and cesium content on catalyst activity were studied. A significant increase in catalytic activity with increasing amount of cesium promoter was observed without respect to the Cs precursor. The strong promotional effect of cesium is electronic in nature and is discussed in term of changes in surface composition and catalyst reducibility.
机译:通过煅烧Co-Mn-Al水滑石(Co:Mn:Al = 4:1:1)制备一系列具有不同Cs含量(0.5-4.6 wt%)的Co-Mn-Al混合氧化物催化剂由铯盐(CsNO3,Cs2CO3)采用孔填充法。使用化学分析,N-2吸附,程序升温还原(TPR)-H-2,程序升温脱附(TPD)-CO2和TPD-NH3以及X射线光电子能谱(XPS)来表征催化剂。测试了所有制备的催化剂在惰性气体中以及在氧气,水蒸气和一氧化氮存在下的N2O催化分解。研究了用于催化剂制备的铯盐和铯含量对催化剂活性的影响。观察到催化活性随铯促进剂数量的增加而显着增加,而与Cs前体无关。铯的强促进作用本质上是电子的,并根据表面组成和催化剂还原性的变化进行了讨论。

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