CAi CBi Va Vb Tai Tbi Vc Te CA CB In the CSTR shown above CAi and CBi denotes inlet concentrations reactant A and B. Va and Vb and Vc denotes inlet and outlet volumetric flow rates from inlet and outlet streams and V denotes the volume of the reactor content , since the two inlet streams are not pure A and B, there is also inert in these two streams with a concentration of C and C. There is an elementary exothermic chemical reaction between A and B as shown below: A+B ----C In the figure shown above Cc, CA , CB ,C denotes outlet stream concentrations of A,B,C and inert stream. In order to keep the reactor at constant temperature, heat is applied to the reactor. Q denotes heat input to the coil. Te denotes the temperature of the heating element in the coil. Assume that you want to control volume of reactor contents, reactor temperature and the concentration of C. The thermal capacitance of heating element is not negligible and assume that the density is constant in this system. a) Derive all necessary differential equations and perform a degree of freedom analysis for this system. b) Lets say the reactor and the reaction volume is kept at 70°C and 0.1 m³. The reaction rate constant is 1m³/mol. The nominal values of CAi and CBi is 0.5 mol/m3. The nominal values of Va, Vb is 0,1m³/min. Lets say suddenly CA, and Vb dropped to 0.3 mol/m and 0.05 m/min. Determine the change in concentration of C with respect to time. Hint: Becareful that there are two variables changing CAi and Vb. Try to derive a design equation in terms of Cc, Derive molar flow rates of A and B in terms of Cc, Va and Vb.
CAi CBi Va Vb Tai Tbi Vc Te CA CB In the CSTR shown above CAi and CBi denotes inlet concentrations reactant A and B. Va and Vb and Vc denotes inlet and outlet volumetric flow rates from inlet and outlet streams and V denotes the volume of the reactor content , since the two inlet streams are not pure A and B, there is also inert in these two streams with a concentration of C and C. There is an elementary exothermic chemical reaction between A and B as shown below: A+B ----C In the figure shown above Cc, CA , CB ,C denotes outlet stream concentrations of A,B,C and inert stream. In order to keep the reactor at constant temperature, heat is applied to the reactor. Q denotes heat input to the coil. Te denotes the temperature of the heating element in the coil. Assume that you want to control volume of reactor contents, reactor temperature and the concentration of C. The thermal capacitance of heating element is not negligible and assume that the density is constant in this system. a) Derive all necessary differential equations and perform a degree of freedom analysis for this system. b) Lets say the reactor and the reaction volume is kept at 70°C and 0.1 m³. The reaction rate constant is 1m³/mol. The nominal values of CAi and CBi is 0.5 mol/m3. The nominal values of Va, Vb is 0,1m³/min. Lets say suddenly CA, and Vb dropped to 0.3 mol/m and 0.05 m/min. Determine the change in concentration of C with respect to time. Hint: Becareful that there are two variables changing CAi and Vb. Try to derive a design equation in terms of Cc, Derive molar flow rates of A and B in terms of Cc, Va and Vb.
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
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
Related questions
Question
100%
Expert Solution
This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
Step by step
Solved in 5 steps with 5 images
Recommended textbooks for you
Introduction to Chemical Engineering Thermodynami…
Chemical Engineering
ISBN:
9781259696527
Author:
J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:
McGraw-Hill Education
Elementary Principles of Chemical Processes, Bind…
Chemical Engineering
ISBN:
9781118431221
Author:
Richard M. Felder, Ronald W. Rousseau, Lisa G. Bullard
Publisher:
WILEY
Elements of Chemical Reaction Engineering (5th Ed…
Chemical Engineering
ISBN:
9780133887518
Author:
H. Scott Fogler
Publisher:
Prentice Hall
Introduction to Chemical Engineering Thermodynami…
Chemical Engineering
ISBN:
9781259696527
Author:
J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:
McGraw-Hill Education
Elementary Principles of Chemical Processes, Bind…
Chemical Engineering
ISBN:
9781118431221
Author:
Richard M. Felder, Ronald W. Rousseau, Lisa G. Bullard
Publisher:
WILEY
Elements of Chemical Reaction Engineering (5th Ed…
Chemical Engineering
ISBN:
9780133887518
Author:
H. Scott Fogler
Publisher:
Prentice Hall
Industrial Plastics: Theory and Applications
Chemical Engineering
ISBN:
9781285061238
Author:
Lokensgard, Erik
Publisher:
Delmar Cengage Learning
Unit Operations of Chemical Engineering
Chemical Engineering
ISBN:
9780072848236
Author:
Warren McCabe, Julian C. Smith, Peter Harriott
Publisher:
McGraw-Hill Companies, The