
13.4 Immiscible Single-Stage and Cross-Flow Extraction.13.2.2 Kremser Method for Dilute Systems.13.2.1 McCabe-Thiele Method for Dilute Systems.13.2 Dilute, Immiscible, Countercurrent Extraction.13.1 Extraction Processes and Equipment.Computer Simulations of Absorption and Stripping 12.10 Irreversible Absorption and Cocurrent Cascades.12.9 Matrix Solution for Concentrated Absorbers and Strippers.12.8 Dilute Multisolute Absorbers and Strippers.12.6 McCabe-Thiele Analysis for More Concentrated Systems.12.4 Analytical Solution for Dilute Systems: Kremser Equation.12.3 Stripping Analysis for Dilute Systems.12.2 McCabe-Thiele Solution for Dilute Absorption.12.1 Absorption and Stripping Equilibria.11.7 Synthesis of Distillation Systems for Nonideal Ternary Systems.11.6 Synthesis of Column Sequences for Almost Ideal Multicomponent Distillation.11.5 Energy Conservation in Distillation.11.3 Design and Operating Effects on Costs.Economics and Energy Conservation in Distillation
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10.11 Economic Trade-Offs for Packed Columns. 10.10 Packed Column Flooding and Diameter Calculation. 10.8 Packings and Packed Column Internals. 10.7 Introduction to Packed Column Design. 10.5 Sieve Tray Layout and Tray Hydraulics. 10.1 Staged Column Equipment Description. Spreadsheet for Simple Multicomponent Batch Distillation, Constant Relative Volatility 9.7 Multicomponent Simple Batch Distillation. 9.6 Multistage Binary Batch Distillation. 9.2 Batch Distillation: Rayleigh Equation. Simulation of Complex Distillation Systems 8.8 Distillation with Chemical Reaction. 8.7 Azeotropic Distillation with Added Solvent. 8.5 Complex Ternary Distillation Systems. 8.4 Pressure-Swing Distillation Processes. 8.2.3 Drying Organic Compounds That Are Partially Miscible with Water. 8.2.2 Binary Heterogeneous Azeotropes-Two-Column System. 8.2.1 Binary Heterogeneous Azeotropes-Single-Column System. 8.2 Binary Heterogeneous Azeotropic Distillation Processes. 8.1 Breaking Azeotropes with Other Separators. Introduction to Complex Distillation Methods 7.3 Gilliland Correlation for Number of Stages at Finite Reflux Ratios. 7.2 Minimum Reflux: Underwood Equations. Approximate Shortcut Methods for Multicomponent Distillation Computer Simulations for Multicomponent Column Distillation 6.6 Introduction to Naphtali-Sandholm Simultaneous Convergence Method. 6.3 Initial Guesses for Flow Rates and Temperatures. 6.2 Component Mass Balances in Matrix Form. 6.1 Introduction to Matrix Solution for Multicomponent Distillation. Exact Calculation Procedures for Multicomponent Distillation Automated Spreadsheet with VBA for Stage-by-Stage Calculations for Ternary Distillation Simplified Spreadsheet for Stage-by-Stage Calculations for Ternary Distillation
5.3 Stage-by-Stage Calculations for CMO.5.2 Profiles for Multicomponent Distillation.Introduction to Multicomponent Distillation Computer Simulation of Binary Distillation
4.15 Comparisons Between Analytical and Graphical Methods. 4.14 Subcooled Reflux and Superheated Boilup. 4.9.4 Intermediate Reboilers and Intermediate Condensers. 4.9 Other Distillation Column Situations. 4.8 General McCabe-Thiele Analysis Procedure. 4.3 Introduction to the McCabe-Thiele Method. 4.2 Binary Stage-by-Stage Solution Methods. Binary Column Distillation: Internal Stage-by-Stage Balances 2.B.2 Multicomponent Flash Distillation with Excel. 2.B.1 Binary Flash Distillation with Excel. Computer Simulation of Flash Distillation 2.7 Simultaneous Multicomponent Convergence. 2.4.3 Simultaneous Solution and Enthalpy-Composition Diagram. 2.3 Graphical Representation of Binary VLE. 2.2 Form and Sources of Equilibrium Data. 1.8 Other Resources on Separation Process Engineering. Introduction to Separation Process Engineering Wankat Separation Process Engineering: Includes Mass Transfer Analysis, Fourth Edition Binary Column Distillation: Internal Stage-by-Stage Balances by Phillip C.