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Enhanced Catalytic Activity of Supported Gold Catalysts for Oxidation of Noxious Environmental Pollutant CO

机译:负载型金催化剂对有毒环境污染物CO氧化的增强催化活性

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Noble metal nanomaterials have attracted mounting research attention for applications in diverse fields of catalysis, biology, and nanotechnology. In the present study, we have undertaken a detailed investigation on synthesis, characterization, and catalytic activity studies for CO oxidation by nanogold catalysts supported over CeO2and CeO2-ZrO2(1 : 1 mole ratio). The support systems were prepared by modified, simple precipitation technique and the Au supported samples were synthesized using deposition-precipitation with urea method. The physicochemical characterization was performed by XRD, ICP-AES, BET surface area, FT-IR, UV-Vis DRS, Raman Spectroscopy, TEM, and XPS techniques. Au/CeO2catalyst showed more than 80% CO conversions at 30°C, whereas Au/CeO2-ZrO2exhibited ~100% CO conversion at that temperature. The catalytic performance of Au catalysts is highly dependent on the nature of the support.
机译:贵金属纳米材料在催化,生物学和纳米技术等各个领域的应用吸引了越来越多的研究关注。在本研究中,我们已经进行了详细的研究,研究了负载在CeO2和CeO2-ZrO2(摩尔比为1:1)上的纳米金催化剂对CO氧化的合成,表征和催化活性的研究。采用改进的简单沉淀技术制备了载体体系,并采用尿素沉淀法合成了金负载样品。通过XRD,ICP-AES,BET表面积,FT-IR,UV-Vis DRS,拉曼光谱,TEM和XPS技术进行理化表征。 Au / CeO2催化剂在30°C时显示超过80%的CO转化率,而Au / CeO2-ZrO2在该温度下显示约100%的CO转化率。 Au催化剂的催化性能高度依赖于载体的性质。

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