Transport processes and unit operations
This new third edition provides a modern, unified treatment of the basic transport processes of momentum, heat, and mass transfer, as well as a broad treatment of the unit operations of chemical engineering. Coverage includes the latest membrane separation processes; discussion of bioprocesses; comprehensive treatment of the transport processes of momentum, heat, and mass transfer; adsorption processes; and more. A useful, up-to-date reference for practicing chemical engineers, agricultural engineers, food scientists, environmental engineers, biochemical engineers, and others who work in the process industries.
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Introduction to Engineering Principles and Units
Principles of Momentum Transfer and Overall Balances
Principles of Momentum Transfer and Applications
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assumed average boundary layer btu/h Calculate Chem chemical component concentration condenser constant countercurrent crystals cylinder density derived diameter distillation drying energy English units entering enthalpy equation equilibrium Example experimental feed filter filtration flow rate fluid flux follows gases given heat conduction heat transfer heat-transfer coefficient Hence humidity inside insulated integrating kg mol kg/h kJ/kg laminar flow latent heat liquid mass transfer mass-transfer coefficient membrane method mixture moisture mol/h mol/s mole fraction molecular diffusion molecules momentum Newtonian fluids non-Newtonian fluids obtained occurs overall packed bed partial pressure particles phase pipe plate plotted process flow diagram radiation resistance Reynolds number saturated Section Selected Topic shown in Fig slab slurry solid solution solvent solving steady steam Substituting into Eq surface temperature theoretical trays thermal conductivity thickness tower tray tube turbulent flow vapor velocity viscosity volume wall