The kinetic equations for an electrochemical process consisting of a h
omogeneous first-order chemical reaction followed by electron transfer
at the electrode surface are solved numerically, for linear sweep vol
tammetry under hydrodynamical conditions in a tubular electrode. Model
s for both the cases involving reversible as well as irreversible elec
trode charge transfer reaction are investigated. The influence on curr
ent-potential voltammograms of the experimentally measurable parameter
s like the potential scan rate, axial flow rate and chemical equilibri
um parameter is examined and depicted graphically.