Catalytic behavior of metal catalysts in high-temperature RWGS reaction: In-situ FT-IR experiments and first-principles calculations

Authors
Choi, SungjunSang, Byoung-InHong, JongsupYoon, Kyung JoongSon, Ji-WonLee, Jong-HoKim, Byung-KookKim, Hyoungchul
Issue Date
2017-01-25
Publisher
NATURE PUBLISHING GROUP
Citation
SCIENTIFIC REPORTS, v.7
Abstract
High-temperature chemical reactions are ubiquitous in (electro) chemical applications designed to meet the growing demands of environmental and energy protection. However, the fundamental understanding and optimization of such reactions are great challenges because they are hampered by the spontaneous, dynamic, and high-temperature conditions. Here, we investigated the roles of metal catalysts (Pd, Ni, Cu, and Ag) in the high-temperature reverse water-gas shift (RWGS) reaction using in-situ surface analyses and density functional theory (DFT) calculations. Catalysts were prepared by the deposition-precipitation method with urea hydrolysis and freeze-drying. Most metals show a maximum catalytic activity during the RWGS reaction (reaching the thermodynamic conversion limit) with formate groups as an intermediate adsorbed species, while Ag metal has limited activity with the carbonate species on its surface. According to DFT calculations, such carbonate groups result from the suppressed dissociation and adsorption of hydrogen on the Ag surface, which is in good agreement with the experimental RWGS results.
Keywords
GAS-SHIFT REACTION; CARBON-DIOXIDE; METHANE SUPPRESSION; CO2 CONVERSION; ENERGY; CEO2; HYDROGENATION; INTERMEDIATE; ADSORPTION; MECHANISM; GAS-SHIFT REACTION; CARBON-DIOXIDE; METHANE SUPPRESSION; CO2 CONVERSION; ENERGY; CEO2; HYDROGENATION; INTERMEDIATE; ADSORPTION; MECHANISM; metal catalysts; RWGS reaction; FT-IR; first-principles; CO2 conversion
ISSN
2045-2322
URI
https://pubs.kist.re.kr/handle/201004/123177
DOI
10.1038/srep41207
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KIST Article > 2017
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