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Characteristics of Methane Conversion under Combined Reactions of Solid Catalyst with Microwave Plasma

机译:固体催化剂与微波等离子体联合反应下甲烷转化特性

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References(15) Cited-By(1) This study focuses on the reaction characteristics of active hydrocarbon species mainly composed of methine radicals and active hydrogen species mainly composed of hydrogen radicals, to both of which methane as a raw material is converted by microwave irradiation to create plasma that comes into contact with the Pt/Al2O3 catalysis field. The results indicate that when 4 chemical species, i.e., active hydrocarbon species, active hydrogen species, acetylene molecules (produced by coupling of the active species) and hydrogen molecules are supplied to the solid catalyst, an increase in catalyst surface temperature facilitates apparent hydrogenation on the surface of the catalyst and thereby increases the yields of ethylene and ethane. It also appears that addition of hydrogen molecules to microwave-irradiated methane causes significant hydrogenation at 500 K or lower.
机译:参考文献(15)By-By(1)这项研究的重点是主要由次甲基组成的活性烃与主要由氢组成的活性氢的反应特性,通过微波辐照将甲烷转化为原料产生与Pt / Al2O3催化场接触的等离子体。结果表明,当将四种化学物质,即活性烃物质,活性氢物质,乙炔分子(通过活性物质偶合生成)和氢分子供应给固体催化剂时,催化剂表面温度的升高促进了表面活性剂的明显加氢。催化剂表面,从而增加了乙烯和乙烷的产率。还似乎在微波辐射的甲烷中添加氢分子会在500 K或更低的温度下引起显着的氢化。

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