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A reaction rate constant of 0.04234 h−1 was obtained.
Kinetic research showed that the reaction rate constant of Cu/WTNs is approximately 2.5 times higher than the apparent reaction rate constant of bare WTNs.
Kinetic research showed that the reaction rate constant of Co/WO3 TiO2 is approximately 2.26 times higher than the apparent reaction rate constant of bare WO3 TiO2.
The tubular microreactor exhibited the lowest reaction rate constant and specific hydrogen production equal 4.9l/ hgcat).
The reaction rate constant and half-life of DBT oxidation were calculated.
The pseudo-first-order reaction rate constant was calculated to be 0.205 min− 1.
The developed model incorporates a transient diffusion-dominated transport with a second-order reaction rate constant.
Then, the reaction rate constant of the exchange reaction is estimated from transition state theory.
The reaction rate constant for Pt/SnOx was 5.6 times higher than Pt/g-SnOx.
Otherwise the extent of disturbance is negligible and classical kinetics, with a constant specific reaction rate, k, termed the reaction rate constant, may be valid as an approximation.
The results show that the mass transfer rate contributes significantly to the overall reaction rate constant of the FPMR.
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