Electrical characterization and imaging of discharge morphology in a small-scale packed bed dielectric barrier discharge

Rezvan Hosseini Rad, Volker Brüser, Ronny Brandenburg
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Abstract

Packed bed dielectric barrier discharges exhibit an improved energy efficiency and selectivity in nonthermal plasma based gas conversion. They enable the direct interaction between plasma and catalyst. In this contribution a compact coaxial DBD reactor enabling the end-on imaging of the discharge with and without packed beds is constructed and studied. The discharge morphology is correlated with electrical measurements such as V-Q plots. The studies are performed for different packed bed materials, binary gas compositions of argon and carbon dioxide, voltage amplitudes, average powers, and pressures. The analysis points outs the role of parasitic capacitances and parasitic discharges as often overlooked aspects. The introduction of the packed bed material into the coaxial barrier discharge arrangement increases the total capacitance, but the barrier of the outer glass tube mostly determines the maximum effective dielectric capacitance. The choice of the packed bed material determines the voltage threshold and the average discharge power. The investigations leads to a revision of the equivalent circuit for packed bed barrier discharge reactors, which also accounts the properties of different filling materials.
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小规模填料床介质势垒放电中放电形态的电学表征和成像
在基于非热等离子体的气体转换中,填料床介质阻挡层放电具有更高的能效和选择性。它们能够实现等离子体与催化剂之间的直接相互作用。本文构建并研究了一个紧凑的同轴 DBD 反应器,该反应器可对有填料床和无填料床的放电进行端对成像。放电形态与 V-Q 图等电学测量结果相关联。研究针对不同的填料床材料、氩气和二氧化碳的二元气体成分、电压振幅、平均功率和压力进行。分析指出,寄生电容和寄生放电的作用往往被忽视。在同轴阻隔放电布置中引入填料床材料会增加总电容,但外部玻璃管的阻隔主要决定了最大有效介质电容。填料床材料的选择决定了电压阈值和平均放电功率。研究结果修正了填料床阻挡放电反应器的等效电路,同时也考虑到了不同填充材料的特性。
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