催化作用
合成气
选择性
甲烷
化学
填充床
介质阻挡放电
非热等离子体
氧合物
二氧化碳重整
化学工程
等离子体
同轴
分析化学(期刊)
有机化学
色谱法
物理化学
物理
工程类
电极
电气工程
量子力学
作者
J.A. Andersen,Jakob Munkholt Christensen,Martin Östberg,Annemie Bogaerts,Anker Degn Jensen
标识
DOI:10.1016/j.cej.2020.125519
摘要
The combination of catalysis with non-thermal plasma is a promising alternative to thermal catalysis. A dielectric-barrier discharge reactor was used to study plasma-catalytic dry reforming of methane at ambient pressure and temperature and a fixed plasma power of 45 W. The effect of different catalytic packing materials was evaluated in terms of conversion, product selectivity, and energy efficiency. The conversion of CO2 (~22%) and CH4 (~33%) were found to be similar in plasma-only and when introducing packing materials in plasma. The main reason is the shorter residence time of the gas due to packing geometry, when compared at identical flow rates. H2, CO, C2-C4 hydrocarbons, and oxygenates were identified in the product gas. High selectivity towards H2 and CO were found for all catalysts and plasma-only, with a H2/CO molar ratio of ~0.9. The lowest syngas selectivity was obtained with Cu/Al2O3 (~66%), which instead, had the highest alcohol selectivity (~3.6%).
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