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Temperature and catalyst are the main reaction parameters affecting the type of TDM carbon and defining the reaction's theoretical heat requirement.
The effect of three main reaction parameters including time, temperature, and amount of enzyme on the synthesis of ester was analyzed.
The effect of four main reaction parameters including time, temperature, ethanol/levulinic acid molar ratio and amount of enzyme on the synthesis of ester were analyzed.
The effects of the main reaction parameters (i.e. solvent, temperature, catalyst concentration, time and eventual co-catalysts) on the NbCl5-promoted polymerization were investigated.
The effect of the main reaction parameters i.e. catalyst dosage, temperatures under constant pressure, methanol molar ratio and reaction time on the yield of FAME (fatty acid methyl ester) were examined.
The effects of four main reaction parameters including temperature, time, (initial [C4mim]HSO4 concentration) and XBSS (initial BSS intake) on the hydrolysis reaction for yield of LA were analyzed.
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The central composite rotatable design was applied to assess the effects of the principal technological parameters on the main reaction outputs.
Based on dynamic experiments, a reaction scheme is proposed and estimation of kinetic parameters of the main reaction using an Eley-Rideal type rate equation is carried out.
The values of the parameters of the main reaction and of the hydrocracking side reaction which were derived from the experiments in the presence of coking were in agreement with those obtained from the runs in the absence of coking.
It is concluded that the presence of silver in lead modifies both the kinetic parameters of the main reaction of oxygen evolution, and the potential dependence of the oxide layer conductivity.
The obtained parameter values allow quantifying the main reaction pathways.
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