Cobalt particle size effects on catalytic performance for ethanol steam reforming - Smaller is better

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Publication date

2014-10

Authors

Da Silva, Andre L M
den Breejen, J.P.ISNI 0000000392037048
Mattos, Lisiane V.
Bitter, J.H.ISNI 0000000396783187
de Jong, K.P.ISNI 0000000116104048
Noronha, Fábio B.

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Abstract

The effect of the cobalt particle size in the ethanol steam reforming reaction at 773 K for hydrogen production was investigated using cobalt on carbon nanofiber catalysts. It was found that the turnover frequency increases with decreasing Co particle size, which was attributed to the increasing fraction of edge and corner surface sites with decreasing size. Regarding catalyst stability, a decrease in deactivation rate was observed with decreasing cobalt particle size. This was caused by a significantly lower amount of carbon deposition on the smallest Co particles than on larger ones, as concluded from transmission electron microscopy measurements. The reduced amount of carbon deposition is ascribed to a lower fraction of terrace atoms, proposed to be responsible for initiation of carbon deposition on catalysts with large (>10 nm) Co particles. Therefore, it was concluded for this non-noble metal that the smallest particles perform best in catalysis of ethanol steam reforming.

Keywords

Catalyst stability, Cobalt on carbon nanofibers (Co/CNF), Cobalt particle size effects, Coke formation, Steam reforming of ethanol, Catalysis, Physical and Theoretical Chemistry, SDG 7 - Affordable and Clean Energy

Citation

Da Silva, A L M, Den Breejen, J P, Mattos, L V, Bitter, J H, De Jong, K P & Noronha, F B 2014, 'Cobalt particle size effects on catalytic performance for ethanol steam reforming - Smaller is better', Journal of Catalysis, vol. 318, pp. 67-74. https://doi.org/10.1016/j.jcat.2014.07.020