氮气
选择性
等离子体
化学
气体成分
固氮
氧气
体积流量
硝酸盐
分析化学(期刊)
材料科学
催化作用
环境化学
热力学
生物化学
有机化学
物理
量子力学
作者
Ivan Tsonev,Colin O’Modhrain,Annemie Bogaerts,Yury Gorbanev
标识
DOI:10.1021/acssuschemeng.2c06357
摘要
Plasma-based nitrogen fixation for fertilizer production is an attractive alternative to the fossil fuel-based industrial processes. However, many factors hinder its applicability, e.g., the commonly observed inverse correlation between energy consumption and production rates or the necessity to enhance the selectivity toward NO2, the desired product for a more facile formation of nitrate-based fertilizers. In this work, we investigated the use of a rotating gliding arc plasma for nitrogen fixation at elevated pressures (up to 3 barg), at different feed gas flow rates and composition. Our results demonstrate a dramatic increase in the amount of NOx produced as a function of increasing pressure, with a record-low EC of 1.8 MJ/(mol N) while yielding a high production rate of 69 g/h and a high selectivity (94%) of NO2. We ascribe this improvement to the enhanced thermal Zeldovich mechanism and an increased rate of NO oxidation compared to the back reaction of NO with atomic oxygen, due to the elevated pressure.
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