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Electrochemical macrokinetics analysis of nitrite electrocatalytic reduction to ammonia

  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Electrocatalytic nitrite reduction (e-NO2RR) offers an attractive strategy for industrial green ammonia synthesis. The understanding of electrochemical kinetics is the core to guarantee the efficient operation of e-NO2RR system. However, the application of the widely used Butler–Volmer equation should be restricted to the constraint of non-mass transfer effects. In this work, an electrochemical macrokinetics equation for mass transfer restriction region was developed based on the traditional macrokinetics thought, which combined the Practical Butler–Volmer equation and Nernst-Plank equation. The model validation was carried out by the combination of multiphysics-field simulation, computational fluid dynamics simulation and experiments, and the results show that the average relative error between experiments and simulations is less than 2%. The results in this article contribute to an in-depth understanding of the kinetics behavior for e-NO2RR and achieve the extension of electrochemical kinetics equation from non-mass transfer restriction region to mass transfer restriction region.

Original languageEnglish
Article numbere18578
JournalAIChE Journal
Volume70
Issue number12
DOIs
StatePublished - Dec 2024

Keywords

  • e-NORR
  • electrochemical macrokinetics equation
  • mass transfer restriction region
  • simulation and experiment

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