微波食品加热
氨
大气压力
等离子体
大气压等离子体
脉搏(音乐)
环境科学
大气科学
原子物理学
材料科学
分析化学(期刊)
化学
物理
气象学
环境化学
光学
核物理学
有机化学
探测器
量子力学
作者
Wei Wang,Li Yao,Zhaoquan Chen,Sisi Li,Yijun Feng,Zhiheng Zheng,Dezheng Yang,Yue Liu
标识
DOI:10.1088/2058-6272/adc065
摘要
Abstract In this study, we explored a one-step direct synthesis of NH 3 under mild experimental conditions utilizing pulse-modulated microwave plasma technology at atmospheric pressure. At a substantial gas flow rate, a microwave plasma jet was formed and the microwave-assisted ammonia synthesis can be realized. Impacts of various parameters including the gas flow rate, gas component, microwave absorbed power, pulse modulation frequency, and pulse duty cycle on ammonia synthesis were systematically investigated. To indicate the reaction path of ammonia synthesis, the distributions of both the gas temperature and active species were also studied using optical emission spectra technology. It is found that a considerable amount of ammonia was directly synthesized without involvement of any catalysts, the highest ammonia production rate and energy efficiency (EE), up to 2.93 μmol·min −1 and 6.64×10 −2 g·(kW·h) −1 , respectively, were achieved under low microwave power of 84.42 W. The duty cycle has obvious influences on the synthesis efficiency, compared to a duty cycle of 80%, the ammonia synthesis rate, EE and nitrogen conversion decreased by about 22% at a duty cycle of 100%. This finding underscores the significance of incorporating pulse modulation in the microwave discharge process for ammonia synthesis. Furthermore, it was found that vibrational excitation of microwave plasma has a significant driving effect on ammonia synthesis.
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