Chemical Engineering: Unit operationsPergamon Press, 1955 - Chemical engineering V.1 Fluid flow, heat transfer and mass transfer - Coulson, J.M. et al (1954); v.2 Unit operations - Coulson, J.M. et al (1955); v. 3 Chemical reactor design, biochemical reaction engineering including computational techniques,edited by J.F. Eichardson and D.G. Peacock (1971); v.4 Solutions to the problems in Chemical engineering v. 1; v.5 Solutions to the problems in Chemical engineering v. 2; v.6 Introduction to chemical engineering design - Sinnott, R.K. (1983). |
Contents
PREFACE ix | 377 |
FLOW OF FLUIDS THROUGH GRANULAR BEDS | 387 |
FILTRATION | 414 |
Copyright | |
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absorption agitator ammonia basket benzene bottom calculated centrifuge Chem component composition compressed concentration condenser constant countercurrent crystallisation crystals curve cyclone separator density diameter discharged distillation drying effect equation equilibrium evaporator extraction feed film filter cake filtration flow rates fluid fluidised bed force form drag fractionating column given granular material heat transfer coefficient height horizontal increased INLET Inst interface layer liquid-liquid extraction liquor mass transfer material Metafilter method mill mixing mixture mol fraction number of plates obtained operation packed columns partial pressure pressure drop pu² radius Raschig rings rate of flow reflux reflux ratio relative removed resistance rotation saturated sedimentation shown in Fig slurry solution solvent spray tower stream surface suspension tank temperature terminal falling velocity theoretical plates thickener thickness tower tube underflow V₁ vacuum vapour vertical viscosity voidage volatile volume washing