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Zeolite-supported ultra-small nickel as catalyst for selective oxidation of methane to syngas.


ABSTRACT: The development of simple catalysts with high performance in the selective oxidation of methane to syngas at low temperature has attracted much attention. Here we report a nickel-based solid catalyst for the oxidation of methane, synthesised by a facile impregnation method. Highly dispersed ultra-small NiO particles of 1.6 nm in size are successfully formed on the MOR-type zeolite. The zeolite-supported nickel catalyst gives continuously 97-98% methane conversion, 91-92% of CO yield with a H2/CO ratio of 2.0, and high durability without serious carbon deposition onto the catalyst at 973 K. DFT calculations demonstrate the effect of NiO particle size on the C-H dissociation process of CH4. A decrease in the NiO particle size enhances the production of oxygen originating from the NiO nanoparticles, which contributes to the oxidation of methane under a reductive environment, effectively producing syngas.

SUBMITTER: Yasuda S 

PROVIDER: S-EPMC9814408 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Zeolite-supported ultra-small nickel as catalyst for selective oxidation of methane to syngas.

Yasuda Shuhei S   Osuga Ryota R   Kunitake Yusuke Y   Kato Kazuya K   Fukuoka Atsushi A   Kobayashi Hirokazu H   Gao Min M   Hasegawa Jun-Ya JY   Manabe Ryo R   Shima Hisashi H   Tsutsuminai Susumu S   Yokoi Toshiyuki T  

Communications chemistry 20200916 1


The development of simple catalysts with high performance in the selective oxidation of methane to syngas at low temperature has attracted much attention. Here we report a nickel-based solid catalyst for the oxidation of methane, synthesised by a facile impregnation method. Highly dispersed ultra-small NiO particles of 1.6 nm in size are successfully formed on the MOR-type zeolite. The zeolite-supported nickel catalyst gives continuously 97-98% methane conversion, 91-92% of CO yield with a H<sub  ...[more]

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