Unveiling Cutting‐Edge Developments in Electrocatalytic Nitrate‐to‐Ammonia Conversion

Author:

Zhang Haoran1,Wang Haijian1,Cao Xiqian1,Chen Mengshan1,Liu Yuelong2,Zhou Yingtang1ORCID,Huang Ming3,Xia Lu4,Wang Yan3,Li Tingshuai3,Zheng Dongdong5,Luo Yongsong5,Sun Shengjun5,Zhao Xue2ORCID,Sun Xuping35ORCID

Affiliation:

1. Zhejiang Key Laboratory of Petrochemical Environmental Pollution Control National Engineering Research Center for Marine Aquaculture Zhejiang Ocean University Zhoushan Zhejiang 316004 China

2. Faculty of Chemistry and Chemical Engineering Yunnan Normal University Kunming Yunnan 650092 China

3. Institute of Fundamental and Frontier Sciences University of Electronic Science and Technology of China Chengdu Sichuan 610054 China

4. ICFO–Institut de Ciències Fotòniques The Barcelona Institute of Science and Technology Castelldefels Barcelona 08860 Spain

5. College of Chemistry Chemical Engineering and Materials Science Shandong Normal University Jinan Shandong 250014 China

Abstract

AbstractThe excessive enrichment of nitrate in the environment can be converted into ammonia (NH3) through electrochemical processes, offering significant implications for modern agriculture and the potential to reduce the burden of the Haber–Bosch (HB) process while achieving environmentally friendly NH3 production. Emerging research on electrocatalytic nitrate reduction (eNitRR) to NH3 has gained considerable momentum in recent years for efficient NH3 synthesis. However, existing reviews on nitrate reduction have primarily focused on limited aspects, often lacking a comprehensive summary of catalysts, reaction systems, reaction mechanisms, and detection methods employed in nitrate reduction. This review aims to provide a timely and comprehensive analysis of the eNitRR field by integrating existing research progress and identifying current challenges. This review offers a comprehensive overview of the research progress achieved using various materials in electrochemical nitrate reduction, elucidates the underlying theoretical mechanism behind eNitRR, and discusses effective strategies based on numerous case studies to enhance the electrochemical reduction from NO3˗ to NH3. Finally, this review discusses challenges and development prospects in the eNitRR field with an aim to guide design and development of large‐scale sustainable nitrate reduction electrocatalysts.

Funder

Yunnan Normal University

Publisher

Wiley

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