Low-temperature oxidative coupling of methane using alkaline earth metal oxide-supported perovskites

Authors
Lim, SeoyeonChoi, Jae-WookSuh, Dong JinLee, UngSong, Kwang HoHa, Jeong-Myeong
Issue Date
2020-08-01
Publisher
ELSEVIER
Citation
CATALYSIS TODAY, v.352, pp.127 - 133
Abstract
Perovskite-supported alkaline-earth metal oxide catalysts were prepared for application in the oxidative coupling of methane (OCM). The selective production of C2+ compounds, including ethane, ethylene, acetylene, propane, and propylene, was observed at reaction temperatures <700 degrees C. This lower reaction temperature was not achieved with pure perovskites but only with the combination of alkaline-earth metal oxides and perovskite supports. The formation of complex mixed oxides, such as Ba-Ca-Ti-O-x, Ba-Sr-Ti-Ox, and Ba2TiO4, was also observed for these catalysts. This contributed to the improved C2+ yield at the lower reaction temperature. The strong basicity, which contributes to the improved OCM activity, was also observed for these catalysts.
Keywords
CATALYTIC PERFORMANCE; SURFACE-COMPOSITION; LAALO3 PEROVSKITES; LA2O3 CATALYST; ETHYLENE; HYDROCARBONS; ETHANE; SRTIO3; MG; CO; CATALYTIC PERFORMANCE; SURFACE-COMPOSITION; LAALO3 PEROVSKITES; LA2O3 CATALYST; ETHYLENE; HYDROCARBONS; ETHANE; SRTIO3; MG; CO; Oxidative coupling; Methane; Perovskite; Barium oxide; Low temperature; Alkaline-earth metal oxide
ISSN
0920-5861
URI
https://pubs.kist.re.kr/handle/201004/118273
DOI
10.1016/j.cattod.2019.11.014
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KIST Article > 2020
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