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CO2 catalytic hydrogenation activity is represented as a function of the catalyst composition and reaction condition.
The rate of ammonia decomposition can be measured as a function of the catalyst activity and ammonia concentration.
However, the loss of NSC measured in the presence of carbon varies as a function of the catalyst composition.
A reaction-engineering model is presented, which describes catalyst performance as a function of the catalyst activity profile, the reaction kinetics, and the degree of catalyst deactivation.
The results indicate that even with the incorporation of small amounts of magnesia to the alumina support, the hydrogenation function of the catalyst is substantially reduced.
The behavior was due in part to the medium strength acidity of the P-modified alumina support and the increased hydrogenation function of the catalyst.
Similar(46)
The acid function of the catalysts was studied by means of temperature programmed desorption of pyridine and the reaction test of n-pentane isomerization.
The appropriate composition of the blend can be calculated and is a function of the initial catalyst activity, the catalyst decay rates in the laboratory and FCC unit, and the targeted unit catalyst activity and make-up rate.
The catalyst activity was expressed by the RBFN as functions of the catalyst preparation parameters.
Thus, the all kinetic rate constants could be predicted as functions of the catalyst preparation conditions.
The amounts of NiO species were also expressed by RBFNs as functions of the catalyst preparation parameters.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com