4.6 Article

Plasma Activated Electrochemical Ammonia Synthesis from Nitrogen and Water

期刊

ACS ENERGY LETTERS
卷 6, 期 2, 页码 313-319

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsenergylett.0c02349

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资金

  1. TKI-Energie from Toeslag voor Topconsortia voor Kennis en Innovatie (TKI) from the Ministry of Economic Affairs and Climate Policy
  2. ISPT
  3. University of Twente
  4. Nouryon
  5. OCI Nitrogen
  6. Vopak
  7. Yara

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Ammonia is an essential precursor for fertilizers and a potential carbon-free energy carrier. A sustainable method for producing ammonia from nitrogen and water using a plasma-activated proton conducting solid oxide electrolyzer has been proposed. This method achieves high ammonia production rates and Faradaic efficiencies.
Ammonia is an important precursor of fertilizers, as well as a potential carbon-free energy carrier. Nowadays, ammonia is synthesized via the Haber-Bosch process, which is a capital- and energy-intensive process with an immense CO2 footprint. Thus, alternative processes for the sustainable and decentralized ammonia production from N-2 and H2O using renewable electricity are required. The key challenges for the realization of such processes are the efficient activation of the N-2 bond and selectivity toward NH3. In this contribution, we report an all-electric method for sustainable ammonia production from nitrogen and water using a plasma-activated proton conducting solid oxide electrolyzer. Hydrogen species produced by water oxidation over the anode are transported through the proton conducting membrane to the cathode where they react with the plasma-activated nitrogen toward ammonia. Ammonia production rates and Faradaic efficiencies up to of 26.8 nmol of NH3 s(-1) cm(-2) and 88%, respectively, were achieved.

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