氨生产
催化作用
化学
环境友好型
氨
氮气
等离子体
大气压力
选择性催化还原
无机化学
大气压等离子体
环境化学
氢
氮氧化物
有机化学
燃烧
量子力学
生态学
生物
地质学
物理
海洋学
作者
Muzammil Iqbal,You-Na Kim,Hongjae Kang,Duy Khoe Dinh,Seongil Choi,Chanmi Jung,Young‐Hoon Song,Eun-Seok Kim,Ji Man Kim,Dae Hoon Lee
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2021-08-05
卷期号:6 (8): 3004-3010
被引量:44
标识
DOI:10.1021/acsenergylett.1c01497
摘要
Plasma technology is considered a sustainable and clean technology for the conversion of naturally abundant compounds (i.e., water (H2O) and nitrogen gas (N2)) into energy-abundant compounds (e.g., hydrogen gas (H2), ammonia (NH3)) or chemical feed molecules (e.g., nitric oxide (NO)). Here, we report a plasma catalyst-integrated system for sustainable ammonia production, which can facilitate massive, localized ammonia production. This study demonstrates the single-step cogeneration of H2 and nitric oxides (NOx) from H2O in the nitrogen discharge used for ammonia production, which proceeded via the catalytic reduction of NOx by H2. The proposed plasma technique yields higher NO and H2 concentrations than conventional plasma methods, which were used to obtain an ammonia concentration of ∼0.84% with a selectivity of ∼95% and a production rate of 120 μmol/s. These promising results provide a breakthrough in the transition toward sustainable and environmentally friendly ammonia production.
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