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Systematic Study of the Oxidation of Methane Using Supported Gold Palladium Nanoparticles Under Mild Aqueous Conditions

机译:轻度条件下负载型金钯纳米粒子对甲烷氧化的系统研究

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摘要

The oxidation of methane using hydrogen peroxide has been studied using supported gold palladium catalysts prepared using the incipient wetness technique. The effect of reaction conditions and catalyst parameters has been investigated. The supported gold palladium nanoparticles produce methyl hydroperoxide as the primary reaction product which is subsequently converted to methanol with high selectivity, ca. 40-70 %. The selectivity to methanol is influenced by the oxidation state the palladium component of the catalyst. In contrast to homogeneous gold and palladium catalysts the heterogeneous gold palladium nanoalloys are reusable and affords high oxygenate selectivity (ca. 90 %).
机译:使用过湿法制备的负载型金钯催化剂已经研究了使用过氧化氢的甲烷氧化。已经研究了反应条件和催化剂参数的影响。负载的金钯纳米粒子产生甲基过氧化氢作为主要反应产物,随后将其高选择性地转化为甲醇。 40-70%。对甲醇的选择性受催化剂钯组分的氧化态影响。与均相的金和钯催化剂相比,异相的金钯纳米合金可重复使用,并提供高的含氧化合物选择性(约90%)。

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