火炬
等离子体
微波食品加热
一氧化碳
等离子炬
体积流量
化学
流量(数学)
停留时间(流体动力学)
大气压力
分析化学(期刊)
氧气
电极
甲烷
原子物理学
计算物理学
机械
材料科学
物理
物理化学
气象学
核物理学
岩土工程
有机化学
色谱法
量子力学
焊接
工程类
冶金
催化作用
生物化学
作者
Natalia Yu Babaeva,G V Naĭdis,Д. В. Терешонок,Timofey Chernyshev,L S Volkov,M. M. Vasiliev,О. Ф. Петров
标识
DOI:10.1088/1361-6595/acce66
摘要
Abstract In the present study, we computationally investigate the splitting of CO 2 to carbon monoxide and oxygen in an atmospheric pressure microwave (MW) plasma torch. We demonstrate different stages of CO 2 conversion while using 2D and 1D models. For both models, we use identical sets of chemical reactions, cross sections, power profiles and dimensions of the plasma region. Based on the real MW plasma torch device, we first constructed two-dimensional geometry and obtained results using the 2D model. Then, the 1D plug-flow model was employed. With 1D model we expected to obtain the results close to those we already had from the 2D approach. However, we revealed that the gas temperature and plasma species behaviour in 1D model was quite different from those obtained with the 2D code. We revisited the 2D results and found that the reverse (upstream) gas flow near the central electrode was responsible for the observed discrepancies. In 2D model, the residence time of a certain portion of gas was much longer. When the flow rate in 1D model was adjusted, the reasonable agreement between both models was achieved.
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