Hydrogen production by NH3 decomposition at low temperatures assisted by surface protonics

  • Ofuchi, Yukino
  • Mitarai, Kenta
  • Doi, Sae
  • Saegusa, Koki
  • Hayashi, Mio
  • ... Seo, Jeong Gil
  • 외 3명
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초록

Ammonia, which can be decomposed on-site to produce CO2-free H2, is regarded as a promising hydrogen carrier because of its high hydrogen density, wide availability, and ease of transport. Unfortunately, ammonia decomposition requires high temperatures (>773 K) to achieve complete conversion, thereby hindering its practical applicability. Here, we demonstrate that high conversion can be achieved at markedly lower temperatures using an applied electric field along with a highly active and readily producible Ru/CeO2 catalyst. Applying an electric field lowers the apparent activation energies, promotes low-temperature conversion, and even surpasses equilibrium conversion at 398 K, thereby providing a feasible route to economically attractive hydrogen production. Experimentally obtained results and neural network potential studies revealed that this reaction proceeds via HN–NH intermediate formation by virtue of surface protonics.

키워드

AMMONIA DECOMPOSITIONMECHANISMTRANSITIONOXIDATIONCATALYSTSCRYSTAL
제목
Hydrogen production by NH3 decomposition at low temperatures assisted by surface protonics
저자
Ofuchi, YukinoMitarai, KentaDoi, SaeSaegusa, KokiHayashi, MioSampei, HiroshiHigo, TakumaSeo, Jeong GilSekine, Yasushi
DOI
10.1039/d4sc04790g
발행일
2024-09
유형
Article
저널명
Chemical Science
15
37
페이지
15125 ~ 15133