扩散
氨
电解质
电极
电解
法拉第效率
氨生产
无机化学
气体扩散电极
氧化物
本体电解
化学
溶解度
化学工程
电化学
热力学
物理化学
有机化学
物理
工程类
作者
Seonjeong Cheon,Won June Kim,Dong Yeon Kim,Youngkook Kwon,Jong‐In Han
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2022-02-11
卷期号:7 (3): 958-965
被引量:74
标识
DOI:10.1021/acsenergylett.1c02552
摘要
The electrochemical conversion of nitric oxide (NO) to ammonia (NH3) provides a sustainable route to transform an air pollutant into a value-added chemical. However, the development of NO electroreduction remains hindered by the poor solubility in aqueous electrolytes, requiring the use of concentrated NO. Here, we report a dilute NO reduction using a gas diffusion electrode (GDE) to circumvent the mass transport issue. Through the incorporation of nanoscale zero-valent iron into carbon black on the GDE, 96% NH3 Faradaic efficiency was achieved with 1% NO, and the computational calculations revealed that the Fe catalyzed the breaking of the N–O bond in the H2NO intermediate. The NH3 production rate was accelerated by controlling the concentration of protons in the electrolyte and reached 1239 μmol cm–2 h–1 with 10% NO. Our findings show that the gas-phase electrolysis of dilute NO can offer a practical option for upcycling the waste nitrogen.
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