Chemical reaction engineering
An improved and simplified edition of this classic introduction to the principles of reactor design for chemical reactions of all types--homogeneous, catalytic, biochemical, gas, solid, extractive, etc. Adds new material on systems of deactivating catalysts, flow modeling and diagnosis of the ills of operating equipment, and new simple design procedures for packed bed and fluidized bed reactors.
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KINETICS OF HOMOGENEOUS REACTIONS
INTERPRETATION OF BATCH REACTOR DATA
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activation energy batch reactor behavior bubble catalyst Chapter Chem chemical reaction component composition concentration consider controlling curve deactivation dispersion elementary reactions equilibrium example exit stream exothermic reactions experimental factor feed rate FIGURE first-order reaction flow rate fluid fluidized bed fractional yield gas film given gives gm/min heat hence homogeneous inerts integral intermediate isothermal kinetics liquid macrofluid mass transfer material balance maximum mean residence mechanism mixed flow reactor mixed reactor mol/liter molecules moles multiple reactions obtain operations optimum packed bed particles pellet performance equation plug flow reactor pore diffusion problem product distribution rate constant rate equation rate expression rate of reaction ratio reactant reacting reaction rate reactors in series represent shown in Fig shows solids solution step stoichiometry surface tank temperature tower tracer unit unreacted versus vessel volume