电解
电流(流体)
电化学
催化作用
硝酸盐
氨
环境科学
氨生产
污染物
选择性催化还原
材料科学
废水
纳米技术
工艺工程
电解水
电极
化学
环境化学
无机化学
电化学电池
生化工程
污水处理
工业废水处理
工业生产
作者
Zhijie Cui,Honghai Wang,Chunli Li,Wenchao Peng,Jiapeng Liu
标识
DOI:10.1002/advs.202523422
摘要
The electrochemical nitrate reduction reaction (NO3 -RR) represents a promising green synthesis technology, enabling both resource utilization of nitrate (NO3 -) pollutants in wastewater and provision of a sustainable ammonia (NH3) source for carbon neutrality. The key challenge in advancing NO3 -RR toward practical application lies in developing catalytic systems that maintain excellent activity, high selectivity, and long-term stability at industrial-level current densities (>300 mA cm-2). Although NO3 -RR has been developed to a certain extent, there has yet to be a comprehensive summary and analysis of the advancements in this field at industrial-level current densities up to now. This review begins with an introduction to the mechanism and theoretical basis of NO3 -RR, systematically summarizes and analyzes catalyst design strategies for industrial-level current densities, including alloying methods, in situ derivation strategy, heterostructure construction, doping engineering, and self-supporting electrode fabrication. In addition, the progress of industrial-level NO3 -RR-based electrolyzers, including flow reactor and membrane electrode assembly (MEA) technology are discussed. Meanwhile, techno-economic analysis (TEA) and life cycle assessment (LCA) are employed to investigate the economic viability and environmental impact of NO3 -RR, providing a comprehensive evaluation of the feasibility for large-scale application. Furthermore, the current challenges of catalytic systems under industrial electrolysis conditions are clarified, and the future development directions toward industrial-scale NH3 synthesis are proposed, aiming to promote the value-added electrochemical conversion of pollutants and develop the industrial application of NO3 -RR technology.
科研通智能强力驱动
Strongly Powered by AbleSci AI