A CSTR is being fed a 50 L/min stream containing 0.08 mol/L of reactant A. The reaction proceeds according to 24 → B with -rA = k (A]*, with k = 2.5 L(mol)y-min, The concentration of A exit- ing the reactor is 0.03 mol/L. Given that B has a molecular weight of 75, and that the pro- cess runs 24 hours per day, calculate the production rate of B (kg/day).

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
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A CSTR is being fed a 50 L/min stream containing 0.08 mol/L of reactant A. The reaction proceeds according to

A CSTR is being fed a 50 L/min stream containing 0.08 mol/L of
reactant A. The reaction proceeds according to 24 → B with -rA
= k (A]*, with k = 2.5 L(mol)y-min, The concentration of A exit-
ing the reactor is 0.03 mol/L.
Given that B has a molecular weight of 75, and that the pro-
cess runs 24 hours per day, calculate the production rate of B
(kg/day).
Transcribed Image Text:A CSTR is being fed a 50 L/min stream containing 0.08 mol/L of reactant A. The reaction proceeds according to 24 → B with -rA = k (A]*, with k = 2.5 L(mol)y-min, The concentration of A exit- ing the reactor is 0.03 mol/L. Given that B has a molecular weight of 75, and that the pro- cess runs 24 hours per day, calculate the production rate of B (kg/day).
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