Low temperature catalytic reverse water-gas shift reaction over perovskite catalysts in DBD plasma

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Low temperature catalytic reverse water-gas shift reaction over perovskite catalysts in DBD plasma
Title:
Low temperature catalytic reverse water-gas shift reaction over perovskite catalysts in DBD plasma
Journal Title:
Applied Catalysis B: Environmental
Keywords:
Publication Date:
28 December 2019
Citation:
Liu, L. N.; Das, S.; Chen, T. J.; Dewangan, N.; Ashok, J.; Xi, S. B.; Borgna, A.; Li, Z. W.; Kawi, S., Low temperature catalytic reverse water-gas shift reaction over perovskite catalysts in DBD plasma. Applied Catalysis B: Environmental 2020, 265, Article no.: 118573, DOI: 10.1016/j.apcatb.2019.118573.
Abstract:
With the aim of eliminating the serious environmental concern arising from excessive anthropogenic CO2 emission, a hybrid dielectric barrier discharge plasma-catalysis system was developed for the thermodynamic unfavorable reverse water-gas shift reaction at low temperature of < 150 °C. A series of perovskite catalysts including LaNiO3, La0.9Sr0.1NiO3+δ, La0.9Sr0.1FeO3+δ and La0.9Sr0.1Ni0.5Fe0.5O3+δ were synthesized, as well as the impregnated Ni/La2O3 as a reference. Among, La0.9Sr0.1Ni0.5Fe0.5O3+δ exhibited the highest potential in promoting the selective conversion of CO2 to CO, and simultaneously suppressing the formation of CH4. Its superior catalytic performance should be attributed to that (1) higher metal dispersion, smaller particle size, stronger metal-support interaction and electronically richer state of Ni were achieved by the formation of Ni-Fe alloy, which facilitated the adsorption and conversion of CO2, and (2) more oxygen vacancies and higher oxygen mobility were created by the remaining La0.9Sr0.1FeO3+δ perovskite structure, which promoted the selective conversion of CO2 to CO.
License type:
Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0)
Funding Info:
This research / project is supported by the National Environmental Agency - NEA-ETRP Grant
Grant Reference no. : NEA-ETRP Grant No. 1501 103, WBS No. R-279-000-491-279

This research / project is supported by the Agency for Science, Technology and Research - AME-IRG
Grant Reference no. : A1783c0016, WBS No. R-279-000-509-305

This research / project is supported by the Ministry of Education, Singapore - NIL
Grant Reference no. : MOE2017-T2-2-130, WBS No. R-279-000-544-112
Description:
ISSN:
0926-3373
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