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首页> 外文期刊>The Korean journal of chemical engineering >Total oxidation of propane over Cu-Mn mixed oxide catalysts prepared by co-precipitation method
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Total oxidation of propane over Cu-Mn mixed oxide catalysts prepared by co-precipitation method

机译:共沉淀法制备的Cu-Mn混合氧化物催化剂上丙烷的总氧化

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The catalytic activity of Cu-Mn mixed oxides with varying Cu/Mn ratios prepared by co-precipitation method was examined for the total oxidation of propane. The nature and phase of the metal oxide species formed were characterized by various methods such as X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), H_2 temperature-programmed reduction (TPR) as well as BET surface area measurement. The co-precipitation method provides highly interdispersed copper and manganese metallic elements forming Cu-Mn mixed oxide of spinel structure (Cu_1.5 Mn_1.5O_4). Besides the spinel-type Cu-Mn mixed oxide, CuO or Mn_2O_3 phases could be formed depending on the Cu/ Mn molar ratio of their precursors. The catalytic activity of Cu-Mn mixed oxide catalyst for propane oxidation was much higher than those of single metal oxides of CuO and Mn_2O_3. The higher catalytic activity likely originates from a synergic effect of spinel-type Cu-Mn mixed oxide and CuO. The easier reducibility and BET surface area seems to be partially responsible for the high activity of Cu-Mn mixed oxide for total oxidation of propane.
机译:研究了通过共沉淀法制备的不同Cu / Mn比的Cu-Mn混合氧化物的催化活性。通过各种方法(例如X射线衍射(XRD),X射线光电子能谱法(XPS),H_2程序升温还原(TPR)以及BET表面积测量)对形成的金属氧化物种类的性质和相进行了表征。共沉淀法提供了高度相互分散的铜和锰金属元素,形成了尖晶石结构(Cu_1.5 Mn_1.5O_4)的Cu-Mn混合氧化物。除了尖晶石型Cu-Mn混合氧化物外,还可以根据其前体的Cu / Mn摩尔比形成CuO或Mn_2O_3相。 Cu-Mn混合氧化物催化剂对丙烷的催化活性远高于CuO和Mn_2O_3的单金属氧化物。较高的催化活性可能源自尖晶石型Cu-Mn混合氧化物和CuO的协同作用。易还原性和BET表面积似乎部分归因于Cu-Mn混合氧化物对丙烷完全氧化的高活性。

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