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The Assessment of Carbon Dioxide Dissociation Using a Single-Mode Microwave Plasma Generator

机译:使用单模微波等离子体发生器评估二氧化碳的离解

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摘要

This paper focuses on the dissociation of carbon dioxide (CO ) following the absorption processes of microwave radiation by noncontact metal wire (tungsten). Using a microwave plasma generator (MPG) with a single-mode cavity, we conducted an interaction of microwaves with a noncontact electrode in a CO atmosphere. High energy levels of electromagnetic radiation are generated in the focal point of the MPG’s cylindrical cavity. The metal wires are vaporized and ionized from this area, subsequently affecting the dissociation of CO The CO dissociation is highlighted through plasma characterization and carbon monoxide (CO) quantity determination. For plasma characterization, we used an optical emission spectroscopy method (OES), and for CO quantity determination, we used a gas analyzer instrument. Using an MPG in the CO atmosphere, we obtained a high electron temperature of the plasma and a strong dissociation of CO . After 20 s of the interaction between microwaves and noncontact electrodes, the quantity of CO increased from 3 ppm to 1377 ppm (0.13% CO). This method can be used in space applications to dissociate CO and refresh the atmosphere of closed spaces.
机译:本文重点研究非接触金属线(钨)在微波辐射吸收过程中二氧化碳的分解。使用具有单模腔的微波等离子体发生器(MPG),我们在CO气氛中进行了微波与非接触电极的相互作用。 MPG圆柱腔的焦点会产生高能级的电磁辐射。金属线从该区域蒸发并离子化,随后影响CO的离解。通过等离子体表征和一氧化碳(CO)含量测定可以突出显示CO的离解。对于等离子体表征,我们使用了光发射光谱法(OES),对于CO含量的确定,我们使用了气体分析仪。在CO气氛中使用MPG,我们获得了等离子体的高电子温度和CO的强离解性。在微波和非接触电极之间相互作用20 s之后,CO的量从3 ppm增加到1377 ppm(0.13%CO)。此方法可用于空间应用中以分解CO并刷新封闭空间的气氛。

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