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author:

Cheng, G. (Cheng, G..) [1] | Zou, J. (Zou, J..) [2] | Song, X. (Song, X..) [3] | Tang, H. (Tang, H..) [4] | Gong, Q. (Gong, Q..) [5] | Liu, H. (Liu, H..) [6] | Dai, W. (Dai, W..) [7]

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Scopus

Abstract:

Upcycling of NO into NH3 provided a win-win strategy for NO purification and NH3 production. In this work, we reported an approach for NH3 production via photo-assisted thermalcatalytic NO and H2O reduction by CO at low temperature and atmospheric pressure. Herein, a Pd/TiO2 model catalyst with electron-enriched Pd and oxygen vacancies dual active sites was applied. The results showed that full NO conversion was realized only at 120 °C, and a beyond 55.0% NH3 selectivity could be obtained below 180 °C over Pd/TiO2. A series of collective spectroscopic and theoretical investigations revealed that CO adsorbed at Pd site and H2O dissociated at interfacial oxygen vacancies would first interact to in situ generate active *H species, and then NO also adsorbed at interfacial oxygen vacancies was gradually hydrogenated by *H to produce NH3. Light irradiation further reinforced this process by promoting oxygen vacancies formation and electron transfer for enhancing CO and NO activation and H2O dissociation. This work provides a valuable insight into NH3 production via photothermal catalytic NO and H2O reduction by CO. © 2025 Elsevier B.V.

Keyword:

NH3 production NO and H2O reduction Oxygen vacancies Pd/TiO2 Photothermal catalysis

Community:

  • [ 1 ] [Cheng G.]Key Laboratory of Greenhouse Gas Accounting and Carbon Reduction of Jiangxi Province, Institute of Energy Research, Jiangxi Academy of Sciences, Nanchang, 330096, China
  • [ 2 ] [Cheng G.]Research Institute of Photocatalysis, State Key Laboratory of Photocatalysis on Energy and Environment, Fuzhou University, Fuzhou, 350108, China
  • [ 3 ] [Zou J.]Key Laboratory of Greenhouse Gas Accounting and Carbon Reduction of Jiangxi Province, Institute of Energy Research, Jiangxi Academy of Sciences, Nanchang, 330096, China
  • [ 4 ] [Zou J.]Jiangxi Carbon Neutralization Research Center, Jiangxi, Nanchang, 330096, China
  • [ 5 ] [Song X.]Hubei Key Laboratory of Pollutant Analysis & Reuse Technology, College of Chemistry and Chemical Engineering, Hubei Normal University, Huangshi, 435002, China
  • [ 6 ] [Tang H.]Key Laboratory of Greenhouse Gas Accounting and Carbon Reduction of Jiangxi Province, Institute of Energy Research, Jiangxi Academy of Sciences, Nanchang, 330096, China
  • [ 7 ] [Tang H.]Jiangxi Carbon Neutralization Research Center, Jiangxi, Nanchang, 330096, China
  • [ 8 ] [Gong Q.]Key Laboratory of Greenhouse Gas Accounting and Carbon Reduction of Jiangxi Province, Institute of Energy Research, Jiangxi Academy of Sciences, Nanchang, 330096, China
  • [ 9 ] [Gong Q.]Jiangxi Carbon Neutralization Research Center, Jiangxi, Nanchang, 330096, China
  • [ 10 ] [Liu H.]School of Physics and Electronic Science, Zunyi Normal University, Zunyi, 563000, China
  • [ 11 ] [Dai W.]Research Institute of Photocatalysis, State Key Laboratory of Photocatalysis on Energy and Environment, Fuzhou University, Fuzhou, 350108, China

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Source :

Molecular Catalysis

ISSN: 2468-8231

Year: 2025

Volume: 578

3 . 9 0 0

JCR@2023

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ESI Highly Cited Papers on the List: 0 Unfold All

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30 Days PV: 0

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