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首页> 外文期刊>Catalysis in industry >Studying the Effect of Magnesium on the Activity of a Deep Oxidation Catalyst for a Fluidized Bed in Methane and CO Oxidation Reactions
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Studying the Effect of Magnesium on the Activity of a Deep Oxidation Catalyst for a Fluidized Bed in Methane and CO Oxidation Reactions

机译:研究镁对甲烷和共氧化反应流化床深氧化催化剂活性的影响

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摘要

A comparative study is performed on the activity of industrial and laboratory samples of CuO/Al~(2)O~(3), MgO-Cr~(2)O~(3)/Al~(2)O~(3), CuO-Cr~(2)O~(3)/Al~(2)O~(3), and CuO/Al~(2)O~(3)MgO-Cr~(2)O~(3)catalysts under fluidized bed conditions in model CO and CH~(4)oxidation reactions. For the combustion of gaseous fuels and gas mixtures (including low-percentage methane mixtures), aluminum–copper–magnesium–chromium catalysts are found to be the ones most promising. Studying their activity in the model reaction of methane oxidation while varying the content of magnesium in the composition of this catalytic system shows that the optimum magnesium content lies in the range of 1–2 wt %. The metals on the surfaces of these samples are found to be in the most stable states: Cu_(2+), Cr_(3+), Mg_(2+), and Al_(3+). The composition and textural and strength characteristics of the samples are studied by physicochemical means (BET, XPS, XRD, and X-ray fluorescence analysis).
机译:对比较研究对CuO / Al〜(2)O〜(3),MgO-Cr〜(2)O〜(3)/ Al〜(2)O〜(3)的工业和实验室样品的活性进行 ,CuO-Cr〜(2)O〜(3)/ Al〜(2)O〜(3),CuO / Al〜(2)O〜(3)MgO-Cr〜(2)O〜(3) 在模型CO和CH〜(4)氧化反应中流化床条件下的催化剂。 对于气态燃料和气体混合物的燃烧(包括低百分比甲烷混合物),发现铝 - 铜 - 镁 - 铬催化剂是最有前途的。 研究其在甲烷氧化模型反应中的活性,同时改变该催化系统组合物中镁的含量,表明最佳镁含量在1-2wt%的范围内。 发现这些样品的表面上的金属在最稳定的状态下:Cu_(2+),Cr_(3+),Mg_(2+)和AL_(3+)。 通过物理化学方法(BET,XPS,XRD和X射线荧光分析)研究样品的组成和纹理和强度特征。

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