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In-Situ Non-intrusive Diagnostics of Toluene Removal by a Gliding Arc Discharge Using Planar Laser-Induced Fluorescence

机译:使用平面激光诱导荧光通过滑动弧放电去除甲苯的原位非侵入式诊断

摘要

A non-equilibrium gliding arc discharge anchored on two diverging stainless steel electrodes was extended into open air by a toluene-containing air jet. The removal process of the toluene by the non-equilibrium gliding arc discharge was investigated through in situ and non-intrusive laser-based techniques. Simultaneous planar laser-induced fluorescence (PLIF) of toluene and OH radicals were employed to achieve on-line visualization of the toluene decomposing process by the gliding arc discharge column. Toluene PLIF images with high spatial and temporal resolution showed that the non-equilibrium plasma of the gliding arc discharge is effective in decomposing toluene molecules. Instantaneous toluene removal efficiency was estimated from the toluene PLIF images, showing that the initial toluene concentrations and oxygen concentrations affected the toluene removal efficiency. The toluene removal efficiency decreased with the initial toluene concentration, whereas the efficiency increased with the oxygen concentration. The OH generation in the discharge was found to be enhanced with an increase of the toluene concentration from the OH PLIF results. The relative instantaneous distribution between the OH produced from the discharge channels and the toluene flow was simultaneously visualized. The instantaneous distributions of toluene and OH radicals that were acquired simultaneously by PLIF, were well complementary, suggesting that radicals generated by the gliding arc discharge were responsible for toluene removal in the active volume of the gliding arc discharge. The effective width of the plasma volume for the toluene removal were measured, which gives a new insight into the optimization of industrial design for practical gliding arc reactors.
机译:通过含甲苯的空气射流将锚定在两个分散的不锈钢电极上的非平衡滑动电弧放电扩展到露天环境中。通过基于原位和非侵入性激光技术研究了非平衡滑动电弧放电去除甲苯的过程。同时使用平面激光诱导的甲苯和OH自由基荧光(PLIF)技术,通过滑动电弧放电柱在线观察甲苯的分解过程。具有高时空分辨率的甲苯PLIF图像显示,滑动电弧放电的非平衡等离子体可有效地分解甲苯分子。从甲苯PLIF图像中估算了瞬时甲苯去除效率,表明初始甲苯浓度和氧气浓度会影响甲苯去除效率。甲苯去除效率随初始甲苯浓度而降低,而效率随氧浓度而提高。从OH PLIF结果中发现,随着甲苯浓度的增加,放电中的OH产生增加。同时可视化了从排放通道产生的OH和甲苯流之间的相对瞬时分布。 PLIF同时获得的甲苯和OH自由基的瞬时分布具有很好的互补性,这表明由滑动电弧放电产生的自由基是造成滑动电弧放电有效体积中甲苯去除的原因。测量了去除甲苯的血浆体积的有效宽度,这为优化实用滑弧反应器的工业设计提供了新的见识。

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