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Two-step decoupled electrolysis approach based on pseudocapacitive WO3 auxiliary electrode

  • Mārtiņš Vanags
  • , Mairis Iesalnieks
  • , Laimonis Jēkabsons
  • , Anzelms Zukuls
  • , Andris Šutka*
  • *Šī darba korespondējošais autors
  • Riga Technical University
  • University of Latvia

Zinātniskās darbības rezultāts: Devums žurnālamZinātniskais raksts (žurnālā)koleģiāli recenzēts

28 Atsauces (Scopus)

Kopsavilkums

Hydrogen production via electrolysis is an efficient way to store excess energy from renewable energy plants, but electrolysis must be made more applicable. Conventional water electrolysis is complicated by a gas distribution and management system to prevent the mixing of H2 and O2 gases, which creates significant safety hazards. The use of membranes and diaphragms solves the gas mixing problem but reduces efficiency and directly affects the cost of hydrogen production. Here we show decoupled water electrolysis concept, where hydrogen evolution and oxygen evolution are spatially and temporally separated using a WO3 charge storage electrode as a red-ox mediator. Electrolysis is realized in two steps, where in the first step the oxygen evolution reaction (OER) and intercalation of H+ in the WO3 material take place. In the second step, the deintercalation of H+ from the WO3 material and the reduction of H+ to H at the other electrode takes place. In the electrolysis process H2 and O2 gasses are produced with purity >99.9%. The overall efficiency of the electrolyzer is 65%.

OriģinālvalodaAngļu
Lapas (no-līdz)20551-20561
Lapu skaits11
ŽurnālsInternational Journal of Hydrogen Energy
Sējums48
Izdevuma numurs54
DOIs
Publikācijas statussPublicēts - 29 jūn. 2023

ANO IAM

Šis izpildes rezultāts palīdz sasniegt šādus ANO ilgtspējīgas attīstības mērķus (IAM)

  1. 7. IAM — Tīra Enerģija par Pieejamu Cenu
    7. IAM — Tīra Enerģija par Pieejamu Cenu

OECD Zinātnes nozare

  • 1.3 Fizika un astronomija

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