One-pot synthesis of a highly mesoporous Ni/MgAlO spinel catalyst for efficient steam methane reforming: influence of inert annealing

A highly mesoporous Ni/MgAl 2 O 4 spinel catalyst was facilely synthesized by a scalable one-pot strategy and employed in the steam methane reforming (SMR) reaction. The influence of annealing the catalyst in a N 2 atmosphere on its structural properties and catalytic performance is fully demonstrat...

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Veröffentlicht in:Catalysis science & technology 2021-07, Vol.11 (13), p.4447-4458
Hauptverfasser: Kim, Hyunjoung, Eissa, Ahmed Al-Shahat, Kim, Seung Bo, Lee, Hongjin, Kim, Woohyun, Seo, Dong Joo, Lee, Kyubock, Yoon, Wang Lai
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Zusammenfassung:A highly mesoporous Ni/MgAl 2 O 4 spinel catalyst was facilely synthesized by a scalable one-pot strategy and employed in the steam methane reforming (SMR) reaction. The influence of annealing the catalyst in a N 2 atmosphere on its structural properties and catalytic performance is fully demonstrated for the first time. Physical characterization showed that subjecting the catalyst to an inert-annealing process ( e.g. , in a N 2 atmosphere) before calcining it in air enhances the specific surface area (SSA) and mesoporosity, improves the dispersion of Ni nanoparticles (NPs) within the support matrix, boosts the interaction between the active phase and support, and increases the content of the reduced Ni species on the catalyst surface. With its remarkable structural properties, the catalyst exhibits high CH 4 conversion efficiency and durability as well as superb resistance to carbon deposition. These results reveal that the substructure and catalytic activity of the catalyst can be tuned by controlling the annealing conditions during the synthesis process. The straightforwardness of the synthesis strategy employed in this work makes it a promising route for designing catalysts with high coke-resistance in reforming and other high-temperature Ni-catalyzed reactions. The inert annealing step during the synthesis of the Ni/MgAl 2 O 4 catalyst induces positive changes in the catalyst substructure. The obtained catalyst displayed high catalytic activity towards steam methane reforming with low carbon deposition.
ISSN:2044-4753
2044-4761
DOI:10.1039/d1cy00485a