Literature DB >> 33453068

Robust nickel silicate catalysts with high Ni loading for CO2 methanation.

Lin Liao1,2, Lidong Chen1, Run-Ping Ye2, Xiaolu Tang2, Jian Liu2,3.   

Abstract

CO2 is the main component of greenhouse gases and also an important carbon source. The hydrogenation of CO2 to methane using Ni-based catalysts can not only alleviate CO2 emissions but also obtain useful fuels. However, Ni-based catalysts face one major problem of the sintering of Ni nanoparticles in the process of CO2 methanation. Thus, this work has synthesized a series of efficient and robust nickel silicate catalysts (NiPS-X) with different nickel content derived from nickel phyllosilicate by the hydrothermal method. It was found that the Ni loading plays a critical role in the structure and catalytic performance of the NiPS-X catalysts. The catalytic performance gradually increases with the increase of Ni loading. In particular, the highly dispersed NiPS-1.6 catalyst with a high Ni loading of 34.3 wt% could obtain the CO2 conversion greater than 80%, and the methane selectivity was close to 100% for 48 h at 330 °C and the GHSV of 40,000 mL g-1  h-1 . The excellent catalytic property can be assigned to the high dispersion of Ni nanoparticles and the strong interaction between the active component and the carrier, which is derived from a unique layered silicate structure with lots of nickel phyllosilicate and a large number of Lewis acid sites.
© 2021 Wiley-VCH GmbH.

Entities:  

Keywords:  CO2 methanation; Ni loading; catalytic performance; hydrothermal method; layered silicate

Year:  2021        PMID: 33453068     DOI: 10.1002/asia.202001384

Source DB:  PubMed          Journal:  Chem Asian J        ISSN: 1861-471X


  1 in total

1.  Impact of preparation method on nickel speciation and methane dry reforming performance of Ni/SiO2 catalysts.

Authors:  Chongchong Chen; Wenbo Wang; Qiuhe Ren; Runping Ye; Ning Nie; Zhen Liu; Lulu Zhang; Jinbin Xiao
Journal:  Front Chem       Date:  2022-09-01       Impact factor: 5.545

  1 in total

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