Insight into the phase evolution of a NiMgAl catalyst from the reduction stage to the post-reaction stage during the dry reforming of methane

Chemical Communications : Chem Comm
Zhenghong BaoFei Yu

Abstract

Herein, phase evolution of a NiMgAl oxide catalyst at the reduction stage was qualitatively analysed and quantitatively determined by employing the continuous changes in its XRD intensity and TPR information. The stable crystallite size of both the active metal and spinel support was responsible for the long stability of the NiMgAl catalyst without carbon deposition during the DRM reaction.

References

May 9, 2008·Journal of the American Chemical Society·Millicent B SmithMichael L Steigerwald
Jul 16, 2014·Proceedings of the National Academy of Sciences of the United States of America·Daniel P ShoemakerMercouri G Kanatzidis
Jan 27, 2016·Chemical Communications : Chem Comm·N E TsakoumisA Holmen
Jun 9, 2016·Annual Review of Chemical and Biomolecular Engineering·Carl Mesters
Nov 10, 2016·Chemical Communications : Chem Comm·Saul J MoorhouseDermot O'Hare

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Citations

Nov 13, 2019·Dalton Transactions : an International Journal of Inorganic Chemistry·Cheng ZhangQiang Wang

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