A Hydrazine‐Nitrate Flow Battery Catalyzed by a Bimetallic RuCo Precatalyst for Wastewater Purification along with Simultaneous Generation of Ammonia and Electricity

Author:

Zhu Weijie1,Zhang Xiaoyi1,Yao Fen2,Huang Runping1,Chen Yue1,Chen Chaolong1,Fei Jiawei1,Chen Yunqing1,Wang Zhoucheng1,Liang Hanfeng13ORCID

Affiliation:

1. State Key Laboratory of Physical Chemistry of Solid Surfaces College of Chemistry and Chemical Engineering Xiamen University Xiamen 361005 China

2. Key Laboratory of Preparation and Applications of Environmentally Friendly Material of the Ministry of Education College of Chemistry Jilin Normal University Changchun 130103 China

3. Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM) Xiamen 361005 China

Abstract

AbstractThe traditional technologies for industrial and agricultural effluent treatment are often energy‐intensive. Herein, we suggest an electrochemical redox strategy for spontaneous and simultaneous decontamination of wastewater and generation of both fuels and electricity at low cost. Using hydrazine and nitrate effluents as a demonstration, we propose a hydrazine‐nitrate flow battery (HNFB) that can efficiently purify the wastewater and meanwhile generate both ammonia fuel and electricity with the assistance of our developed bimetallic RuCo precatalyst. Specifically, the battery delivers a peak power density of 12 mW cm−2 and continuously operates for 20 h with an ammonia yield rate of ca. 0.38 mmol h−1 cm−2 under 100 mA cm−2. The generated electricity can further drive a hydrazine electrolyzer to produce hydrogen fuel. Our work provides an alternative pathway to purify wastewater and generate high value‐added fuels at low cost.

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Natural Science Foundation of Jilin Province

Publisher

Wiley

Subject

General Chemistry,Catalysis

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