Abstract
The surface, structural, redox and catalytic properties of the catalysts obtained by the nanocasting technique with the use of silica mesoporous template were investigated. Ethanol conversion approached 100% at 420 °C for supported and 66% for unsupported cobalt catalysts, respectively. Complete conversion of ethanol was recorded at 480 °C for both catalysts. In such conditions, the unsupported system showed high hydrogen yield and low selectivity to CH 3CHO, CO and CH 4.
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