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Synthesis, Characterization and Catalytic Evaluation of Cobalt and Niobium Oxide Solids Modified with Alkaline Earth Metals

机译:用碱土金属改性钴和铌氧化物固体的合成,表征和催化评价

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Cobalt and niobium oxide solids modified with alkaline earth metals (Mg, Ca, and Sr) were synthesized and characterized to compare the second element effect on the catalyst structural and chemical properties. The materials were prepared by co-precipitation of cobalt nitrate and niobium oxalate solutions using ammonium hydroxide as precipitating agent. The samples were characterized by XRD, SEM, Ra-man, BET, TPR, ammonia TPD and cyclohexane dehydrogenation reaction (CHD). Results showed that Mg, Ca or Sr addition changed cobalt niobate crystalline structure, leading to alkaline earth metal nio-bates with lower crystallinity. It was observed that Mg, Ca or Sr increased the solids acidity and changed cobalt niobate reduction behavior so that the lowest amount of metallic cobalt was obtained when Mg was incorporated. Modifiers also decreased cobalt niobate dehydrogenation activity. This effect was higher with Mg or Sr addition.
机译:用碱土金属(Mg,Ca和Sr)改性的钴和铌氧化物固体被合成并表征,比较对催化剂结构和化学性质的第二种元素影响。通过使用氢氧化铵作为沉淀剂的氢氧化铵共析出硝酸钴和草酸铌溶液来制备材料。样品的特征在于XRD,SEM,RA-MAN,BET,TPR,氨TPD和环己烷脱氢反应(CHD)。结果表明,Mg,Ca或Sr加成改变的钴铌晶结构,导致碱土金属Nio-bates具有较低的结晶度。观察到Mg,Ca或Sr增加了固体酸度并改变了钴的铌酸盐还原行为,以便当掺入Mg时获得最低量的金属钴。改性剂还降低了铌酸钴脱氢活性。这种效果较高,加入镁或SR。

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