Distillation of a Non-ideal Mixture in a Wetted Wall Column

Distillation of a Non-ideal Mixture in a Wetted Wall Column PDF Author: I. C. Sotiriou
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Languages : en
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Distillation of a Non-ideal Mixture in a Wetted Wall Column

Distillation of a Non-ideal Mixture in a Wetted Wall Column PDF Author: I. C. Sotiriou
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Category :
Languages : en
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Distillation of Non-ideal Tenary Mixture in Wetted Wall Column

Distillation of Non-ideal Tenary Mixture in Wetted Wall Column PDF Author: S. O. Fasesan
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Languages : en
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Distillation of Non-ideal Ternary Mixture in a Wetted-wall Column

Distillation of Non-ideal Ternary Mixture in a Wetted-wall Column PDF Author: I. E.D.E.S. Ahmed
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Languages : en
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Distillation of a Non-ideal Ternary Mixture in a Wetted-wall Column

Distillation of a Non-ideal Ternary Mixture in a Wetted-wall Column PDF Author: R. M. Salomo
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Languages : en
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Distillation Engineering

Distillation Engineering PDF Author: Reinhard Billet
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ISBN:
Category : Cooking
Languages : en
Pages : 544

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Partial Table of Contents I. The Thermal Separation of Liquids II. Thermodynamics of Mixtures 1. Definitions and Relationships A. Separability of a Liquid Mixture B. Partial Pressures in Vapor Mixtures C. Evaporation of Liquid Mixtures 2. Types of Mixtures A. Ideal Binary Mixtures B. Nonideal Binary Mixtures C. Ideal Multicomponent Mixtures D. Nonideal Multicomponent Mixtures III. Continuous Rectifiers 1. Mode of Operations 2. Operating Lines A. Enrichment Line B. The Stripping Line 3. Stepwise Separation in Rectifiers A. Theoretical Plates for Separation of Binaries B. The Reflux Ratio in the Separation of Binaries C. Multicomponent Mixtures 4. Column Diameter and Column Throughput 5. Heat Requirements IV. The Batch Still 1. Operation 2. Operating Line and Separation Steps 3. Column Diameter, Column Throughput, and Heat Requirements 4. Time for Separation and Related Variables at Constant Product Concentration A. Molar Vapor Load Constant in Time B. Heat Requirement Constant in Time 5. Separation Time for Variable Heating Area V. The Semicontinuous Still 1. Operation 2. Finding the Operating Lines, the Separation Steps, the Column Load, the Column: Size, and the Heat Demand VI. Engineering Data, Optimization of Costs, and Selection of Column Internals 1. General A. Packing Types B. Plates and Trays 2. Designs and Functions A. Packed Towers B. Plate Columns 3. Evaluation of Rectifying Columns and Best Mode of Operation A. Evaluating and Calculations, Separating Effect, Pressure Loss, Load, Specific Column Volume, and Specific Column Cost B. Numerical Evaluation for Packed Towers C. Quantitative Evaluation for Plate-Type Columns D. Packed Columns versus Tray Columns-Operational Features and Cost E. Special Designs for Vacuum Operation 4. Tests of Full-Size Tower Internals VII. Optimum Separation 1. Optimization of Simple Columns A. The Theory and Its Application B. Quantitative Evaluation 2. Optimization of Multiple Columns A. Duplex Columns: Number of Theoretical Steps, Reflux Ratios, and Vapor Loads B. Vapor Loads of Multiple Columns Subdivided Because of Limited Height C. Optimizing Duplex Rectifiers for Minimum Pressure Loss 3. Optimum Operation of Combined Columns of Different Types Under Special Consideration A. Parallel Arrangement B. Series Arrangement 4. Specialized Operations A. Specialized Hookups and their Calculation B. Rectification in Straight Stripping Columns C. Rectification in Straight Enriching Columns D. Direct Heating of Columns E. Saving Heat in Rectification VIII. Detail Planning of Separating Columns 1. General Viewpoints in the Selection of Column Types 2. Packed Columns Columns 3. Special Packings 4. Plate-Type Columns 5. Pressure Losses in Rectification Columns IX. Partial Distillation 1. Separation of Liquids by Continuous Partial Distillation 2. Separation of Liquids by Discontinuous Partial Distillation X. Partial Condensation 1. Partial Condensation in Dephlegmators 2. Partial Countercurrent Direct Condensation in Columns XI. Laboratory Columns and Pilot Plants 1. Distillation Columns with Miniature Size Packing 2. Transferring Data Gained From Semi-industrial Units to Full-Scale XII. Distillation in Fine and High Vacuum 1. Molecular Distillation 2. Thin-Film Distillation 3. Mechanism of Separation XIII. Components of a Separation Plant 1. Internal Components 2. Heat Exchangers 3. Pumps 4. Measuring and Controls XIV. Use of Computers XV. Distillation and Environmental Protection XVI. Outlook Bibliography Symbols and Units Glossary Index

Multicomponent Mass Transfer

Multicomponent Mass Transfer PDF Author: Ross Taylor
Publisher: John Wiley & Sons
ISBN: 9780471574170
Category : Technology & Engineering
Languages : en
Pages : 620

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Addresses the use of rigorous multicomponent mass transfer models for the simulation and design of process equipment. Deals with the basic equations of diffusion in multicomponent systems. Describes various models and estimations of rates of mass and energy transfer. Covers applications of multicomponent mass transfer models to process design. Includes appendices providing necessary mathematical background. Contains a large number of numerical examples worked out in detail.

Theoretical Chemical Engineering Abstracts

Theoretical Chemical Engineering Abstracts PDF Author:
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Category : Chemical engineering
Languages : en
Pages : 954

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Elements of Fractional Distillation

Elements of Fractional Distillation PDF Author: Clark Shove Robinson
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Category : Chemical elements
Languages : en
Pages : 520

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The Non-adiabatic Operation of a Wetted-wall Distillation Column

The Non-adiabatic Operation of a Wetted-wall Distillation Column PDF Author: B. R. Wildey
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Languages : en
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Principles and Modern Applications of Mass Transfer Operations

Principles and Modern Applications of Mass Transfer Operations PDF Author: Jaime Benitez
Publisher: John Wiley & Sons
ISBN: 1118210573
Category : Technology & Engineering
Languages : en
Pages : 503

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Book Description
A problem-solving approach that helps students master new material and put their knowledge into practice The Second Edition of the acclaimed Principles and Modern Applications of Mass Transfer Operations continues to provide a thorough, accessible text that gives students the support and the tools they need to quickly move from theory to application. This latest edition has been thoroughly revised and updated with new discussions of such developing topics as membrane separations, ion exchange, multistage batch distillation, and chromatography and other adsorptive processes. Moreover, the Second Edition now covers mass transfer phenomena in biological systems, making the text appropriate for students in biochemical engineering as well as chemical engineering. Complementing the author's clear discussions are several features that help students quickly master new material and put their knowledge into practice, including: Twenty-five to thirty problems at the end of each chapter that enable students to use their newfound knowledge to solve problems Examples and problems that help students become proficient working with Mathcad Figures and diagrams that illustrate and clarify complex concepts and processes References facilitating further in-depth research into particular topics Ten appendices filled with helpful data and reference materials Ideal for a first course in mass transfer operations, this text has proven to be invaluable to students in chemical and environmental engineering as well as researchers and university faculty.