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Preparation of Ni based mesoporous Al2O3 catalyst with enhanced CO2 methanation performance.


ABSTRACT: A Ni based mesoporous γ-Al2O3 (MA) catalyst was prepared via partial hydrolysis without organic surfactants and employed in the carbon dioxide methanation reaction. The obtained catalysts were characterized by N2 adsorption-desorption, H2-TPR, XRD, XPS, TG, SEM and TEM-EDS techniques. CO2 methanation was performed in a fixed-bed reactor. A high surface area of MA with excellent hydrothermal stability was obtained, which promoted the dispersion of nickel species, producing a better catalytic performance. Incorporation of more NiO species into the Ni/MA catalyst increased the amount of active metallic Ni sties, further improving the catalytic activity and CH4 selectivity. Moreover, the monolithic skeleton of MA with fabric-like walls suppressed the aggregation of active metallic Ni sites and carbon deposition, enhancing the catalyst's stability, which provides a new insight for potential industrial applications.

SUBMITTER: Lin J 

PROVIDER: S-EPMC9061876 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Preparation of Ni based mesoporous Al<sub>2</sub>O<sub>3</sub> catalyst with enhanced CO<sub>2</sub> methanation performance.

Lin Jianghui J   Ma Caiping C   Luo Jing J   Kong Xianghui X   Xu Yanfei Y   Ma Guangyuan G   Wang Jie J   Zhang Chenghua C   Li Zhengfeng Z   Ding Mingyue M  

RSC advances 20190315 15


A Ni based mesoporous γ-Al<sub>2</sub>O<sub>3</sub> (MA) catalyst was prepared <i>via</i> partial hydrolysis without organic surfactants and employed in the carbon dioxide methanation reaction. The obtained catalysts were characterized by N<sub>2</sub> adsorption-desorption, H<sub>2</sub>-TPR, XRD, XPS, TG, SEM and TEM-EDS techniques. CO<sub>2</sub> methanation was performed in a fixed-bed reactor. A high surface area of MA with excellent hydrothermal stability was obtained, which promoted the d  ...[more]

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