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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Plasma catalytic oxidation of methane on alumina-supported noble metal catalysts
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Plasma catalytic oxidation of methane on alumina-supported noble metal catalysts

机译:氧化铝负载贵金属催化剂上甲烷的等离子体催化氧化

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The methane oxidation reaction was studied as a function of temperature for a gas mixture representative of a combined heat power (CHP) within a dielectric barrier discharge (DBD) reactor. The effect of energy deposition was studied, with energy deposition ranging from 36 to 58JL~(-1), to maintain a low NO_x formation at high temperature. In the current study, we also investigated the combined process of a dielectric barrier discharge and γ-alumina noble metal catalysts such as platinum and palladium. In order to separate the catalytic effects from the plasma activation, the work included both purely catalytic and plasma activation processes using a complete CHP mixture with 4% of water in the feed. It was found that the presence of water leads to increase the methane conversion in purely plasma activation processes. Moreover, a higher efficiency for methane oxidation in CHP conditions was observed with the plasma-Pd(X)/Al2O3 systems.
机译:研究了甲烷氧化反应与气体混合物温度的关系,该气体混合物代表介电势垒放电(DBD)反应器内的组合热能(CHP)。研究了能量沉积的影响,能量沉积范围为36至58JL〜(-1),以在高温下保持较低的NO_x形成。在当前的研究中,我们还研究了介电势垒放电和γ-氧化铝贵金属催化剂(例如铂和钯)的组合过程。为了从等离子体活化中分离出催化作用,这项工作包括使用完全CHP混合物和进料中4%的水进行纯催化和等离子体活化过程。发现纯净的等离子体活化过程中水的存在导致甲烷转化率的增加。此外,使用等离子-Pd(X)/ Al2O3系统观察到在CHP条件下甲烷氧化效率更高。

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