首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Synthesis, characterization, and catalytic evaluation of Co3O4/gamma-Al2O3 as methane combustion catalysts: Significance of Co species and the redox cycle
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Synthesis, characterization, and catalytic evaluation of Co3O4/gamma-Al2O3 as methane combustion catalysts: Significance of Co species and the redox cycle

机译:甲烷燃烧催化剂Co3O4 /γ-Al2O3的合成,表征和催化评估:Co物种的意义和氧化还原循环

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A series of Co3O4/gamma-Al2O3 catalysts with different Co3O4 loadings were prepared by incipient wetness impregnation (IWI) and a combination of IWI and subsequent combustion synthesis (CS), and tested for catalytic combustion of CH4. The IWI/CS-X (X=5, 10, 30 and 50, represented the Co3O4 loading as wt%) samples prepared via IWI/CS method exhibited higher catalytic activity than the IWI-X (X 5, 10, 30 and 50) ones via IWI method. IWI/CS-30 showed the highest catalytic activity with T-10 (10% CH4 conversion) at 300 degrees C and T-100 (complete conversion) at 550 degrees C. The structure characterization indicated the IWI/CS-X catalysts had a greater surface area with relatively lower Co3O4 crystallization and better Co3O4 dispersion compared with IWI-X samples. X-ray photoelectron spectroscopy (XPS) and UV-vis results revealed that surface Co3+/(Co2+ + Co3+) ratios of the IWI/CS-X samples was relatively higher than those of IWI-X ones. The surface Co3+ of the IWI/CS-X catalysts was easily reduced to Co2+ at 280-330 degrees C, whereas, only one difficult reduction process of Co304 to Co was observed at 400-600 C for all of the IWI-X samples according to hydrogen temperature-programmed reduction (H-2-TPR) results. Hence, the abundance of surface Co3+, easy and fast redox cycle between Co2+ and Co3+ at low temperatures were the underlying mechanisms for the excellent catalytic performance of IWI/CS-X catalysts in CH4 combustion. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过初期湿润浸渍(IWI),IWI和随后的燃烧合成(CS)的组合,制备了一系列具有不同Co3O4含量的Co3O4 /γ-Al2O3催化剂,并测试了CH4的催化燃烧。通过IWI / CS方法制备的IWI / CS-X(X = 5、10、30和50,表示Co3O4的载量以重量%计)显示出比IWI-X(X 5、10、30和50)高的催化活性)通过IWI方法。 IWI / CS-30表现出最高的催化活性,其中T-10(10%CH4转化率)在300摄氏度,T-100(完全转化)在550摄氏度。结构表征表明IWI / CS-X催化剂具有与IWI-X样品相比,表面积更大,Co3O4结晶相对较低,并且Co3O4分散性更好。 X射线光电子能谱(XPS)和紫外可见光谱结果表明,IWI / CS-X样品的表面Co3 + /(Co2 + + Co3 +)比相对高于IWI-X样品。 IWI / CS-X催化剂的表面Co3 +容易在280-330摄氏度下还原为Co2 +,而根据IWI-X的所有样品,在400-600摄氏度下仅观察到Co304还原为Co的一个困难过程。氢程序升温还原(H-2-TPR)的结果。因此,表面Co3 +的丰度,低温下Co2 +和Co3 +之间容易且快速的氧化还原循环是IWI / CS-X催化剂在CH4燃烧中具有出色催化性能的根本机理。 (C)2014 Elsevier B.V.保留所有权利。

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