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Numerical investigation on the CH4/CO2 nanosecond pulsed dielectric barrier discharge plasma at atmospheric pressure

机译:大气压力下CH4 / CO2纳秒脉冲介电势垒放电等离子体的数值研究

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The excellent non-equilibrium characteristic of the nanosecond pulsed dielectric barrier discharge (NPDBD) plasma can overcome thermodynamically barriers of reactions in the dry reforming of methane (DRM), so that the NPDBD plasma coupled with catalyst provides an attractive alternative to the traditional catalytic method of the DRM. In this work, the one-dimensional fluid model, including 68 species and 276 reactions, is built up to numerically investigate the atmospheric-pressure CHsub4/sub/COsub2/sub plasma driven by the nanosecond pulsed power supply. Discharge current densities, discharge gap voltages, dissipated power densities, spatial averaged particle densities and spatial distributions of the high-density species, and generating reaction pathways of the significant species in CHsub4/sub, COsub2/sub, and CHsub4/sub/COsub2/sub NPDBD plasmas at atmospheric pressure are systematically illustrated and discussed. The simulation results should be valuable for optimizations of both existing and emerging DRM approaches using the NPDBD plasma, the plasma-assisted catalyst, and other novel plasma-based fuel reforming technologies.
机译:纳秒脉冲介电势垒放电(NPDBD)等离子体的出色非平衡特性可以克服甲烷干重整(DRM)中反应的热力学障碍,因此NPDBD等离子体与催化剂结合可提供传统催化方法的诱人替代品DRM。本文建立了包括68个物种和276个反应的一维流体模型,以数值方式研究了由驱动的大气压CH 4 / CO 2 等离子体纳秒级脉冲电源。 CH 4 ,CO 2的放电电流密度,放电间隙电压,耗散功率密度,空间平均粒子密度和空间分布,以及重要物种的反应路径和CH 4 / CO 2 NPDBD等离子体在大气压下得到了系统地图示和讨论。仿真结果对于使用NPDBD等离子体,等离子体辅助催化剂和其他基于等离子体的新型燃料重整技术对现有和新兴DRM方法的优化都将是有价值的。

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