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A linear relationship was found between catalyst dose and apparent rate constant (kapp).
The apparent rate constant of the electrochemical reaction is found to be 8.5 s−1.
Its effect on the apparent rate constant was empirically correlated with a simple exponential equation.
The apparent rate constant and the transfer coefficient have been calculated by means of two methods.
Phosphoric acid reacted rapidly with second order kinetics and an apparent rate constant of 0.015 l/(mol s m2).
The photocatalytic reactions obeyed pseudo-first-order kinetics and apparent rate constant (kap) of RFZ photocatalyst increased compared to FZ.
The apparent rate constant of a pseudo-first-order reaction (K) was used to describe the PEC degradation of ethylene.
The bi-protein exhibited effective direct electron transfer (DET) reaction with an apparent rate constant (ks) of 2.36 s−1.
The experimental data was first correlated by a shrinkingcore type model to derive apparent rate constant data.
The dye decayed obeying a pseudo-first-order kinetics and its apparent rate constant increased at higher current density.
The apparent rate constant also decreases by increasing the alkyl chain length of the alkylated polyethyleneimine ligand.
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