Investigation of La promotion mechanism on Ni/SBA-15 catalysts in CH sub(4) reforming with CO sub(2)

La-promoted Ni/SBA-15 catalysts (molar ratio of La sub(2)O sub(3)/Ni = 0.10, 0.25) were prepared by the wetness impregnation method for the reforming of CH sub(4) with CO sub(2). The La species are highly dispersed on the catalyst and cause smaller nickel particles in comparison with the Ni/SBA-15 c...

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Veröffentlicht in:Fuel (Guildford) 2014-04, Vol.122, p.47-53
Hauptverfasser: Qian, Linping, Ma, Zhen, Ren, Yu, Shi, Huancong, Yue, Bin, Feng, Sujiao, Shen, Jianzhong, Xie, Songhai
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Sprache:eng
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Zusammenfassung:La-promoted Ni/SBA-15 catalysts (molar ratio of La sub(2)O sub(3)/Ni = 0.10, 0.25) were prepared by the wetness impregnation method for the reforming of CH sub(4) with CO sub(2). The La species are highly dispersed on the catalyst and cause smaller nickel particles in comparison with the Ni/SBA-15 catalyst. The presence of La in Ni/SBA-15 evidently improves the catalytic activity and stability. For the reaction mechanism study, a special infrared cell under rapid heat dissipating was designed to trap the transient intermediates (e.g., CH sub(x)O super(*)) on the catalysts. For La-Ni/SBA-15 with La sub(2)O sub(3)/Ni = 0.10, the adsorbed Ni(CO) sub(4) and bridge-bonded CO (Ni sub(2)-CO) form on the nickel surface with large particle size, while for the one with La sub(2)O sub(3)/Ni = 0.25, CH sub(x)O super(*) (x = 2, 3) surface species occur on small sized nickel particle. The results indicate that highly dispersed La effectively promotes CO sub(2) dissociation into oxygen atom which facilitates the formation of the different C1 intermediates from the adsorbed CH sub(4) on the neighboring nickel species depending on the varied La sub(2)O sub(3)/Ni ratio.
ISSN:0016-2361
DOI:10.1016/j.fuel.2013.12.062