Influence of Textural Properties of Co@SiO2 Catalysts on the Performance of Fischer-Tropsch Synthesis
Abigail N E Ojeda1, Camylla M Moraes1, Alexander E Caytuero-Villegas1
1Chemical Engineering Program/COPPE, Centro de Tecnologia, Universidade Federal do Rio de Janeiro (UFRJ), Cidade Universitária, Rio de Janeiro 21941-901, Brazil.
Abstract:
Cobalt core-shell catalysts are advanced materials for Fischer-Tropsch synthesis, which enhance catalytic performance. This study explores the impact of pore diameter on the performance of mesoporous silica-coated cobalt oxide core-shell catalysts (Co@SiO2), maintaining a constant shell thickness while varying the porosity. The synthesis method successfully yields a core-shell morphology with a centralized core, an average core diameter ranging from 30 to 34 nm, a total diameter between 97 and 103 nm, and a SiO2 shell thickness of 32.5-34.5 nm. Textural characterization shows a specific surface area from 236 to 771 m2/g, with average pore diameters between 3.5 and 11.8 nm. The results indicate a significant change in the distribution of products, exhibiting more expressive selectivity in the range of C19-C24 and C25-C29 hydrocarbons with the core-shell catalyst and C30+ hydrocarbons with the supported catalyst. It also demonstrates that a decrease in pore diameter of the silica shell leads to significant changes in product distribution. Specifically, a reduction in the pore size from 9.2 nm (Co@SiO2_0.03) to 3.5 nm (Co@SiO2_0.09) results in a 17% increase in selectivity toward the C19-C24 fraction and a concomitant 24% decrease in the C25-C29 fraction. Furthermore, the silica shell provided a protective effect on the active phase, with no evidence of sintering observed in the spent encapsulated catalysts.
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