等离子体
氨
羽流
化学
氨生产
原子物理学
电弧
催化作用
等离子体参数
分析化学(期刊)
环境化学
电极
热力学
生物化学
物理
有机化学
量子力学
物理化学
作者
Balakrishnan Indumathy,J Ananthanarasimhan,Lakshminarayana Rao,S. Yugeswaran,P.V. Ananthapadmanabhan
标识
DOI:10.1088/1361-6463/ac7b52
摘要
Abstract This work reports a study on using a gliding arc plasma reactor to produce ammonia from nitrogen plasma and a water medium without using a catalyst. During the gliding arc plasma discharge, a plasma plume was formed, and vibrational and rotational excitation was observed at the tip of the plasma plume that touched the water below. This arrangement helped the formation of ammonia. The ammonia concentration was 2.12–5.69 ppm, and its production rate varied in the range of 0.63–0.68 mg h −1 , having energy efficiency in the range of 0.0249–0.0268 g-NH 3 kWh −1 , depending on the plasma exposure time. The vibrational temperature increased from 2632 K (near the gas entry zone) to 3778 K (at the tip of the plasma plume interacting with the water), corroborated by the enhanced distribution of electron energy for vibration excitation (≈24%), compared to that for electronic excitation (≈0.03%). The electron temperature dropped from 1.38 eV to 0.76 eV at the plasma zone interacting with the water. This work demonstrates the application of gliding arc plasmas to generate eco-friendly ammonia (green ammonia), and the reactor proves to be promising for further optimization in the future.
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