硝酸盐
废水
氨
电催化剂
催化作用
流出物
无机化学
材料科学
化学
电化学
环境化学
环境科学
环境工程
电极
有机化学
物理化学
作者
Feng-Yang Chen,Zhenyu Wu,Srishti Gupta,Daniel J. Rivera,Sten Lambeets,Stephanie Pecaut,Jung Yoon Kim,Peng Zhu,Y. Zou Finfrock,Débora Motta Meira,Graham King,Guanhui Gao,Wenqian Xu,David A. Cullen,Hua Zhou,Yimo Han,Daniel E. Perea,Christopher L. Muhich,Haotian Wang
标识
DOI:10.1038/s41565-022-01121-4
摘要
Electrochemically converting nitrate ions, a widely distributed nitrogen source in industrial wastewater and polluted groundwater, into ammonia represents a sustainable route for both wastewater treatment and ammonia generation. However, it is currently hindered by low catalytic activities, especially under low nitrate concentrations. Here we report a high-performance Ru-dispersed Cu nanowire catalyst that delivers an industrial-relevant nitrate reduction current of 1 A cm–2 while maintaining a high NH3 Faradaic efficiency of 93%. More importantly, this high nitrate-reduction catalytic activity enables over a 99% nitrate conversion into ammonia, from an industrial wastewater level of 2,000 ppm to a drinkable water level <50 ppm, while still maintaining an over 90% Faradaic efficiency. Coupling the nitrate reduction effluent stream with an air stripping process, we successfully obtained high purity solid NH4Cl and liquid NH3 solution products, which suggests a practical approach to convert wastewater nitrate into valuable ammonia products. Density functional theory calculations reveal that the highly dispersed Ru atoms provide active nitrate reduction sites and the surrounding Cu sites can suppress the main side reaction, the hydrogen evolution reaction. Nitrate, a common pollutant in wastewater and groundwater, has been efficiently converted into valuable ammonia products via an electrochemical method using Ru-dispersed Cu nanowire as the catalyst.
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