4.7 Article

Novel fabrication of a sepiolite supported cobalt-based catalyst via a coprecipitation-reduction method

期刊

APPLIED CLAY SCIENCE
卷 200, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.clay.2020.105909

关键词

Sepiolite; Catalyst support; Cobalt-based catalyst; Coprecipitation-reduction; CoAl2O4

资金

  1. National Natural Science Foundation of China [51874115]
  2. Postdoctoral Science Foundation funded project of China [2020 T130166]
  3. Introduced Overseas Scholars Program of Hebei province, China [C201808]
  4. Enterprise Science and Technology Commissioner Project of Tianjin City, China [19JCTPJC56100]
  5. Excellent Young Scientist Foundation of Hebei province, China [E2018202241]

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In this study, a novel supported cobalt-based catalyst was prepared and optimized, leading to improved catalytic activity and extended catalyst lifespan.
In this work, a novel supported cobalt-based catalyst Co-CoAl2O4/sepiolite was successfully prepared via a coprecipitation-reduction method. The nanocomposites were examined by various surface characterization techniques to explore the optimal preparation conditions which were found to be: 750 degrees C for the calcination temperature, 9 for the pH value of the precursor, 7.5:1 for the mass ratio of the metal salt to sepiolite and 650 degrees C for the reduction temperature. The introduction of sepiolite not only reduced the calcination temperature of forming spinel CoAl2O4, but also improved the distribution of the CoAl2O4 nanoparticles, which provided more active sites to support Co nanoparticles produced via the reduction of the CoAl2O4 /sepiolite composite subsequently. Moreover, the existence of CoAl2O4 as a transition layer provided a cobalt source for the subsequent reduction process and increased the service life of the catalyst. This work is believed to provide a new strategy for designing low cost and efficient cobalt-based catalysts.

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