Trace CsOH Additive Promotes the Reduction of Nitrate to Ammonia
Xu Luo1,2, Jianying Wang1,2, Xiaozhi Xu1,2
1Fuel Cell System and Engineering Laboratory, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, Liaoning 116023, China.
Abstract:
The electrocatalytic nitrate reduction reaction represents a promising technology for wastewater treatment while enabling electrochemical ammonia (NH3) synthesis. However, electrostatic repulsion between nitrate (NO3-) and the cathode impedes NO3- diffusion into the electric double layer, thereby hindering the reaction. Herein, the diffusion limitation is mitigated by introducing a trace CsOH additive to the electrolyte, and the underlying mechanism is systematically elucidated. CsOH not only weakens the static repulsion between NO3- and the cathode but also enhances the selectivity of NH3 by preventing the formation of adsorbed H+ on the electrode. Remarkably, the addition of CsOH enables an NH3 production rate of 456.2 μmol cm-2 h-1 at 150 mA cm-2 with a faradaic efficiency of 65.2% in 20 mM NO3-. Furthermore, the Zn-NO3 battery with a CsOH additive achieves a peak power density of 30.16 mW cm-2. This work not only provides fundamental insights of additive-enhanced NO3- reduction but also successfully demonstrates a Zn-NO3 battery capable of simultaneous high-efficiency NH3 synthesis and electric power generation.
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