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Steady-state nonisothermal reactors energy balance

For isothermal systems this equation, together with an appropriate expression for rv, is sufficient to predict the concentration profiles through the reactor. For nonisothermal systems, this equation is coupled to an energy balance equation (e.g., the steady-state form of equation 12.7.16) by the dependence of the reaction rate on temperature. [Pg.504]

Up to now we have focused on the steady-state operation of nonisothermal reactors. In this section the unsteady-state energy balance wtU be developed and then applied to CSTRs, plug-flow reactors, and well-mixed batch and semibateh reactors. [Pg.284]

Nonisothermal reactor design requires the simultaneous solution of the appropriate energy balance and the species material balances. For the batch, semi-batch, and steady-state plug-flow reactors, these balances are sets of initial-value ODEs that must be solved numerically, in very limited situations (constant thermodynamic properties, single... [Pg.182]

Nonisothermal Reactor Design-The Steady State Energy Balance and Adiabatic PER Applications... [Pg.477]


See other pages where Steady-state nonisothermal reactors energy balance is mentioned: [Pg.230]    [Pg.426]    [Pg.471]    [Pg.530]    [Pg.579]   


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Balanced state

Energy balance

Energy balances steady state

Energy balancing

Energy reactor

Nonisothermal

Nonisothermal reactors

Reactor energy balance

Reactor nonisothermal reactors

Reactor steady state

Steady balance

Steady energy balance

Steady-state nonisothermal

Steady-state nonisothermal balances

Steady-state nonisothermal energy balance

Steady-state nonisothermal reactors

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