Using a color indicator which shows when the concentration of A falls below 0.1 mol/liter, the following scheme is devised to explore the kinetics of the decomposition of A. A feed of 0.6 mol A/liter is introduced into the first of the two mixed flow reactors in series, each having a volume of 400 cm³. The color change occurs in the first reactor for a steady-state feed rate of 10 cm/min, and in the second reactor for a steady-state feed rate of 50 cm/min. Find the rate equation for the decomposition of A from this information.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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6.16. Using a color indicator which shows when the concentration of A falls
below 0.1 mol/liter, the following scheme is devised to explore the kinetics
of the decomposition of A. A feed of 0.6 mol A/liter is introduced into
the first of the two mixed flow reactors in series, each having a volume of
400 cm?. The color change occurs in the first reactor for a steady-state feed
rate of 10 cm/min, and in the second reactor for a steady-state feed rate
of 50 cm/min. Find the rate equation for the decomposition of A from
this information.
Transcribed Image Text:6.16. Using a color indicator which shows when the concentration of A falls below 0.1 mol/liter, the following scheme is devised to explore the kinetics of the decomposition of A. A feed of 0.6 mol A/liter is introduced into the first of the two mixed flow reactors in series, each having a volume of 400 cm?. The color change occurs in the first reactor for a steady-state feed rate of 10 cm/min, and in the second reactor for a steady-state feed rate of 50 cm/min. Find the rate equation for the decomposition of A from this information.
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