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Co-Mn-Al mixed oxides as catalysts for ammonia oxidation to N2O

机译:Co-Mn-Al混合氧化物作为氨氧化为N2O的催化剂

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Mixed oxide catalysts containing Co, Mn, and Al in a molar ratio of 4:1:1 were prepared by heating precursors obtained by a mechanochemical method (when appropriate nitrates were milled with ammonium hydrogen carbonate) or by coprecipitation. The precursors and related mixed oxides obtained at 500 A degrees C were characterized by XRD, TG/DTA, UV-Vis, IR spectroscopy, TPR and NH3-TPD, and were tested for activity and selectivity in ammonia oxidation to N2O. The precursors prepared by mechanochemical reaction showed very similar phase composition to that of the coprecipitated product. All examined mixed oxide catalysts were active in the low temperature range (100 % conversion of NH3 was achieved at 250 A degrees C), but the selectivity was sensitive to catalyst composition and the method used for preparation of the precursors. Non-modified Co-Mn-Al mixed oxide catalyst obtained from the coprecipitated precursor exhibited higher selectivity towards N2O formation than the calcined product prepared by the mechanochemical method. Modification of the latter mixed oxide catalysts with cesium promoter (1 wt%) significantly increased their selectivity to nitrous oxide. The yield of N2O at 250 A degrees C was close to 100 %.
机译:通过加热通过机械化学方法获得的前体(当适当的硝酸盐与碳酸氢铵一起研磨时)或通过共沉淀来制备摩尔比为4:1:1的含有Co,Mn和Al的混合氧化物催化剂。通过XRD,TG / DTA,UV-Vis,IR光谱,TPR和NH3-TPD对在500°C下获得的前体和相关的混合氧化物进行了表征,并测试了氨氧化成N2O的活性和选择性。通过机械化学反应制备的前体显示出与共沉淀产物非常相似的相组成。所有检查过的混合氧化物催化剂在低温范围内均具有活性(在250 A的温度下实现NH3的100%转化),但选择性对催化剂组成和制备前体的方法敏感。由共沉淀的前体获得的未改性的Co-Mn-Al混合氧化物催化剂对N2O形成的选择性比通过机械化学方法制备的煅烧产物更高。用铯助催化剂(1wt%)修饰后一种混合氧化物催化剂显着增加了它们对一氧化二氮的选择性。 250°C时N2O的产率接近100%。

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