1. A closed stirred-tank reactor with two compartments is shown in Fig. El. The basic idea s to feed the reactants continuously into the first compartment where they will be preheated by energy liberated in the exothermic reaction, in the second compartment. The wall separating the two compartments is quite thin, thus allowing heat and a cooling coil is built into the second liberated in the reaction. Tests are to be component feed ie, no reaction) to evaluate the reactor's thermal Figure El (a) Develop a dynamic model for this process under the conditions of no reaction. Assume that q, Ti, and Te all

Question
1. A closed stirred-tank reactor with two
compartments is shown in Fig. El. The
basic idea s to feed the reactants
continuously into the first compartment
where they will be preheated by energy
liberated in the exothermic reaction,
in the second compartment. The wall
separating the two compartments is
quite thin, thus allowing heat and a
cooling coil is built into the second
liberated in the reaction. Tests are to be
component feed ie, no reaction) to
evaluate the reactor's thermal
Figure El
(a) Develop a dynamic model for this
process under the conditions of no
reaction. Assume that q, Ti, and Te all
Expand
Transcribed Image Text

1. A closed stirred-tank reactor with two compartments is shown in Fig. El. The basic idea s to feed the reactants continuously into the first compartment where they will be preheated by energy liberated in the exothermic reaction, in the second compartment. The wall separating the two compartments is quite thin, thus allowing heat and a cooling coil is built into the second liberated in the reaction. Tests are to be component feed ie, no reaction) to evaluate the reactor's thermal Figure El (a) Develop a dynamic model for this process under the conditions of no reaction. Assume that q, Ti, and Te all

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