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Comparative Study of Ag2O/Co3O4 Catalysts Prepared by the Sol-Gel and Co-precipitation Techniques: Characterization and CO Activity Studies

机译:溶胶-凝胶法和共沉淀技术制备Ag2O / Co3O4催化剂的比较研究:表征和CO活性研究

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In this study effects of the preparation method on the characteristic properties and CO oxidation activities of Ag2O/Co3O4 catalysts were investigated. Catalysts were prepared by two different methods: sol gel and co-precipitation. N2 physisorp-tion measurements, X-ray diffraction, and scanning electron microscopy measurements were used to characterize the catalysts. CO oxidation activity tests were carried out under 1% CO, 21% O2, and the remainder He feed condition between 20° and 200°C. According to the N2 physisorption measurements, catalysts prepared by the co-precipitation method have a higher surface area than the catalysts prepared by the sol-gel method. C03O4 and AgCoO2 phases were obtained from catalysts prepared by both techniques. In addition to these phases, metallic silver peaks were obtained by increasing calcination temperature. SEM micrographs of the catalysts showed that catalysts have uniform particles. Increasing the calcination temperature caused the formation of different-sized agglomerates and an increase in the gaps between agglomerates. The best activity was obtained from the Ag2 O/ Co3 O4 catalyst calcined at 200° C and prepared by the co-precipitation method. This catalyst gave 50% CO conversion at 106°C. The other two catalysts gave 100% CO conversion at a higher temperature of 200°C.
机译:在这项研究中,研究了制备方法对Ag2O / Co3O4催化剂的特性和CO氧化活性的影响。通过两种不同的方法制备催化剂:溶胶凝胶法和共沉淀法。使用N 2物理测量,X射线衍射和扫描电子显微镜测量来表征催化剂。在1%CO,21%O2和其余He进料条件为20°C至200°C的条件下进行了CO氧化活性测试。根据N 2的物理吸附测量,通过共沉淀法制备的催化剂比通过溶胶-凝胶法制备的催化剂具有更高的表面积。从通过两种技术制备的催化剂获得CO 3 O 4和AgCoO 2相。除了这些相外,通过提高煅烧温度也可获得金属银峰。催化剂的SEM显微照片表明,催化剂具有均匀的颗粒。煅烧温度的升高导致形成不同尺寸的附聚物,并增加了附聚物之间的间隙。最好的活性是通过在200°C下煅烧并通过共沉淀法制备的Ag2 O / Co3 O4催化剂获得的。该催化剂在106℃下得到50%的CO转化率。另外两种催化剂在200℃的较高温度下给出了100%的CO转化率。

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