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An egg-shell catalyst type of Pt/Al2O3 is considered.
Factors investigated include catalyst type, particle size and concentration.
Aggregate data from all student groups is then summarily analyzed per catalyst type.
For these parameters, the order of relative importance for hydrogen production is: temperature > catalyst loading > catalyst type > biomass type.
The following reaction parameters were used as independent variables: catalyst type, Al/Ti molar ratio and 1-butene concentration.
It was found that the catalyst type has a significant effect on activity, melt flow index and 1-butene content.
Reaction temperature, feed flow rate (Q), iC4/H2 ratio and the catalyst type were the main variables that were investigated.
The product yields strongly depended on the gas atmosphere, catalyst type, pyrolysis temperature and pyrolysis pressure.
The surface morphology is optimized by etching temperature, treatment time and catalyst type.
Neither catalyst type, however, is optimized for the maximum formation of N2.
TiO2 and ZnO were tested as catalyst type for the hybrid process and ZnO was selected for further experiments on account of better color, COD and TOC removals.
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