Bienvenidos en chino
Mobbing-acoso laboral-IRG
Mostrando entradas con la etiqueta Ebooks of Chemical Engineering. Mostrar todas las entradas
Mostrando entradas con la etiqueta Ebooks of Chemical Engineering. Mostrar todas las entradas

Separation Process Principles J. D. Seader - E. J. Henley - D. K. Roper



Tables of Contents
PART 1—FUNDAMENTAL CONCEPTS
Chapter 1 Separation Processes
Chapter 2 Thermodynamics of Separation Processes
Chapter 3 Mass Transfer and Diffusion
Chapter 4 Single Equilibrium Stages and Flash Calculations
Chapter 5 Cascades and Hybrid Systems
PART 2—SEPARATIONS BY PHASE ADDITION OR CREATION
Chapter 6 Absorption and Stripping of Dilute Mixtures
Chapter 7 Distillation of Binary Mixtures
Chapter 8 Liquid–Liquid Extraction with Ternary Systems
Chapter 9 Approximate Methods for Multicomponent, Multistage Separations
Chapter 10 Equilibrium-Based Methods for Multicomponent Absorption, Stripping, Distillation, and Extraction
Chapter 11 Enhanced Distillation and Supercritical Extraction
Chapter 12 Rate-Based Models for Vapor–Liquid Separation Operations
Chapter 13 Batch Distillation
PART 3—SEPARATIONS BY BARRIERS AND SOLID AGENTS
Chapter 14 Membrane Separations
Chapter 15 Adsorption, Ion Exchange, Chromatography, and Electrophoresis
PART 4—SEPARATIONS THAT INVOLVE A SOLID PHASE
Chapter 16 Leaching and Washing
Chapter 17 Crystallization, Desublimation, and Evaporation
Chapter 18 Drying of Solids
PART 5—MECHANICAL SEPARATION OF PHASES
Chapter 19 Mechanical Phase Separations

Ingeniería de las Reacciones Químicas, 3ed. Octave Levenspiel

Ingeniería de las Reacciones Químicas, 3ed. - Levenspiel

Tabla de Contenidos
Capítulo 1
La ingeniería de las reacciones químicas
Parte 1
Reacciones homogéneas en reactores ideales
Capítulo 2
Cinética de las reacciones homogéneas
Capítulo 3
Interpretación de los datos obtenidos en un reactor intermitente
Capítulo 4
Introducción al diseño de reactores
Capítulo 5
Reactores ideales para una sola reacción
Capítulo 6
Diseño para una sola reacción
Capítulo 7
Diseño para reacciones en paralelo
Capítulo 8
Miscelánea de reacciones múltiples
Capítulo 9
Efectos de la presión y la temperatura
Capítulo 10
Elección del tipo adecuado de reactor
Parte II
Modelos de flujo, de contacto y de flujo no ideal
Capítulo 11
Conceptos básicos de flujo no ideal
Capítulo 12
Modelos de compartimientos
Capítulo 13
El modelo de dispersión
Capítulo 14
El modelo de tanques en serie
Capítulo 15
El modelo de convección para flujo laminar
Capítulo 16
Rapidez de mezclado, segregación y RTD
Parte III
Reacciones catalizadas por sólidos
Capítulo 17
Introducción a las reacciones heterogéneas
Capítulo 18
Reacciones catalizadas por sólidos
Capítulo 19
El reactor catalítico de lecho empacado
Capítulo 20
Reactores con catalizador sólido en suspensión, reactores de lecho fluidizado de varios tipos
Capítulo 21
Desactivación de cataHzadores
Capítulo 22
Reacciones G/L sobre catalizadores sólidos: reactores de goteo, reactores con sólidos en suspensión y reactores fluidizados de tres fases
Parte IV
Sistemas no catalíticos
Capítulo 23
Reacciones fluido-fluido: cinética
Capítulo 24
Reactores fluido-fluido: diseño
Capítulo 25
Reacciones fluido-partícula sólida: cinética
Capítulo 26
Reactores fluido-partícula sólida: diseño
Parte V
Sistemas con reacciones bioquímicas
Capítulo 27
Fermentación enzimática
Capítulo 28
Fermentación microbiana. Introducción y panorama general
Capítulo 29
Fermentación nticrobiana limitada por el sustrato
Capítulo 30
Fermentación microbiana limitada por el producto
Apéndice

1001 Solved Engineering Fundamentals Problems, 3ed. Michael R. Lindeburg, PE

1001 Solved Engineering Fundamentals Problems, 3ed

Table of Contents
1. Mathematics
2. Economics
3. Systems of Units
4. Fluid Statics and Dynamics
5. Thermodynamics
6. Power Cycles
7. Chemistry
8. Statics
9. Materials Science
10. Mechanics of Materials
11. Dynamics
12. DC Electricity
13. AC Electricity
14. Physics
15. Systems Modeling
16. Computer Science

Industrial Uses of Vegetable Oils Sevim Z. Erhan

Industrial Uses of Vegetable Oils

Tables of Contents
1. Genetic Modification of Seed Oils for Industrial Applications
Thomas A. McKeon
2. Current Developments of Biodegradable Grease
Atanu Adhvaryu, Brajendra K. Sharma, and Sevim Z. Erhan
3. Vegetable Oil-Based Engine Oils: Are They Practical?
Joseph M. Perez
4. Biodiesel: An Alternative Diesel Fuel from Vegetable Oils or Animal Fats
Gerhard Knothe and Robert O. Dunn
5. Biofuels for Home Heating Oils
Bernard Y. Tao
6. Vegetable Oils-Based Polyols
Andrew Guo and Zoran Petrovic
7. Development of Soy Composites by Direct Deposition
Zengshe S. Liu and Sevim Z. Erhan
8. Vegetable Oils in Paint and Coatings
Michael R. Van De Mark and Kathryn Sandefur
9. Printing Inks
Sevim Z. Erhan
10. Synthesis of Surfactants from Vegetable Oil Feedstocks
Ronald A. Holser

Equipos para la Industria Química y Alimentaria J. Baquero Franco - V. Llorente Martinez

Equipos para la Industria Química y Alimentaria - Baquero Llorente

Tabla de Contenidos
1. Equipos para el transporte continuo de materiales sólidos
2. Bombas
3. Ventiladores y compresores
4. Recipientes a presión y tanques de almacenamiento
5. Intercambiadores de calor
6. Torres de refrigeración
7. Tuberías
8. Materiales
9. Generalidades sobre control y regulación automática

Transport Phenomena, 2ed. R. Byron Bird, Warren E. Stewart, Edwin N. Lightfood


Table of Contents
Chapter 0 The Subject of Transport
Chapter 1 Viscosity and the Mechanisms of Momentum Transport
Chapter 2 Shell Momentum Balances and Velocity Distributions in Laminar Flow
Chapter 3 The Equations of Change for Isothermal Systems
Chapter 4 Velocity Distributions with More than One Independent Variable
Chapter 5 Velocity Distributions in Turbulent Flow
Chapter 6 Interphase Transport in Isothermal Systems
Chapter 7 Macroscopic Balances for Isothermal Flow Systems
Chapter 8 Polymeric Liquids
Chapter 9 Thermal Conductivity and the Mechanisms of Energy Transport
Chapter 10 Shell Energy Balances and Temperature Distributions in Solids and Laminar
Chapter 11 The Equations of Change for Nonisothermal Systems
Chapter 12 Temperature Distributions with More than One Independent Variable
Chapter 13 Temperature Distributions in Turbulent Flow
Chapter 14 Interphase Transport in Nonisothermal Systems
Chapter 15 Macroscopic Balances for Nonisothermal Systems
Chapter 16 Energy Transport by Radiation
Chapter 17 Diffusivity and the Mechanisms of Mass Transport
Chapter 18 Concentration Distributions in Solids and Laminar Flow
Chapter 19 Equations of Change for Multicomponent Systems
Chapter 20 Concentration Distributions with More than One Independent Variable
Chapter 21 Concentration Distributions in Turbulent Flow
Chapter 22 Interphase Transport in Nonisothermal Mixtures
Chapter 23 Macroscopic Balances for Multicomponent Systems
Chapter 24 Other Mechanisms for Mass Transport
Appendices

Operaciones Unitarias en Ingeniería Química, 6ed. Warren L. Mc Cabe, Julian C. Smith, Peter Harriot

Operaciones Unitarias Mc Cabe

Tabla de Contenidos
Sección I: Introducción
Sección II: Mecánica de fluidos
Sección III: Transferencia de calor y sus aplicaciones
Sección IV: Transferencia de masa y sus aplicaciones
Sección V: Operaciones en las que intervienen partículas de sólidos
Apéndices

Rules Of Thumb In Engineering Practice Donald R.Woods

Rules Of Thumb In Engineering Practice

Table of Contents
1. Rules of Thumb
2. Transportation
3. Energy Exchange
4. Homogeneous Separation
5. Heterogeneous Separations
6. Reactors
7. Mixing
8. Size Reduction
9. Size Enlargement
10. Process Vessels and Facilities
Appendix A: Units and Conversion of Units
Appendix B: Dimensionless Groups
Appendix C: Cox Charts – Vapor Pressures
Appendix D: Capital Cost Guidelines

Batch Chemical Process Integration Analysis, Synthesis and Optimization
Thokozani Majozi

Batch Chemical Process Integration

Table of Contents
1. Introduction to Batch Chemical Processes
2. Short-Term Scheduling
3. Process Intermediate Storage Operational Philosophy: The New Operational Philosophy
4. Wastewater Minimisation in Multiproduct Batch Plants: Single Contaminants
5. Storage Design for Maximum Wastewater Reuse in Batch Plants
6. Wastewater Minimisation in Multipurpose Batch Plants: Multiple Contaminants
7. Wastewater Minimisation Using Multiple Storage Vessels
8. Zero Effluent Methodologies
9. Wastewater Minimisation Using Inherent Storage
10. Heat Integration in Multipurpose Batch Plants: I. Direct Heat Integration
11. Heat Integration in Multipurpose Batch Plants: II. Indirect Heat Integration

Principles of Chemical Reactor
Analysis and Design Uzi Mann

Principles of Chemical Reactor

Table of Contents
1. Overview of Chemical Reaction Engineering
2. Stoichiometry
3. Chemical Kinetics
4. Species Balances and Design Equations
5. Energy Balances
6. Ideal Batch Reactor
7. Plug-Flow Reactor
8. Continuous Stirred-Tank Reactor
9. Other Reactor Configurations
10. Economic-Based Optimization
Appendix A. Summary of Key Relationships
Appendix B. Microscopic Species Balances—Species Continuity Equations
Appendix C. Summary of Numerical Differentiation and Integration

Environmental Catalysis Vicki H. Grassian

Environmental Catalysis Grassian

Tables of Content
Section 1
Environmental Catalysis in Air, Water, and Soil
1. Metal and Oxyanion Sorption on Naturally Occurring Oxide and Clay Mineral Surfaces
Donald L. Sparks
2. Catalysis of Electron Transfer Reactions at Mineral Surfaces
Martin A. Schoonen and Daniel R. Strongin
3. Precipitation and Dissolution of Iron and Manganese Oxides
Scot T. Martin
4. Applications of Nonlinear Optical Techniques for Studying Heterogeneous Systems Relevant in the Natural Environment
Andrea B. Voges, Hind A. Al-Abadleh, and Franz M. Geiger
5. Environmental Catalysis in the Earth’s Atmosphere: Heterogeneous Reactions on Mineral Dust Aerosol
Elizabeth R. Johnson and Vicki H. Grassian
6. Uptake of Trace Species by Ice: Implications for Cirrus Clouds in the Upper Troposphere
Paula K. Hudson and Margaret A. Tolbert
7. Surface Chemistry at Size-Selected, Aerosolized Nanoparticles
Jeffrey T. Roberts
Section II
Environmental Catalysis in Remediation
8. Selective Catalytic Reduction of NOx
Teresa Curtin
9. Surface Science Studies of DeNOx Catalysts
Jose A. Rodriguez
10. Fundamental Concepts in Molecular Simulation of NOx Catalysis
William F. Schneider
11. Applications of Zeolites in Environmental Catalysis
Sarah C. Larsen
12. Theoretical Modeling of Zeolite Catalysis: Nitrogen Oxide Catalysis over Metal-Exchanged Zeolites
Scott A. McMillan, Linda J. Broadbelt, and Randall Q. Snurr
13. The Organic Chemistry of TiO2 Photocatalysis of Aromatic Hydrocarbons
William S. Jenks
14. In Situ Solid-State NMR Studies of Photocatalytic Oxidation Reactions
Sarah Pilkenton and Daniel Raftery
15. Beyond Photocatalytic Environmental Remediation: Novel TiO2 Materials and Applications
Alexander G. Agrios and Kimberly A. Gray
16. Nanoparticles in Environmental Remediation
Koodali T. Ranjit, Gavin Medine, Pethaiyan Jeevanandam, Igor N. Martyanov, and Kenneth J. Klabunde
17. Toward a Molecular Understanding of Environmental Catalysis: Studies of Metal Oxide Clusters and their Reactions
Elliot R. Bernstein and Yoshiyuki Matsuda
18. Biocatalysis in Environmental Remediation–Bioremediation
Gene F. Parkin
19. Bioengineering for the In Situ Remediation of Metals
Jennifer L. Nyman, Sarah M. Williams, and Craig S. Criddle
Section III
Environmental Catalysis in Green Chemical Processing
20. Selective Oxidation
Rick B. Watson and Umit S. Ozkan
21. Environmental Catalysis in Organic Synthesis
Jianliang Xiao
22. Catalytic Reactions of Industrial Importance in Aqueous Media
Nan Jiang and Chao-Jun Li
23. Zeolite-Based Catalysis in Supercritical CO2 for Green Chemical Processing
Yusuf G. Adewuyi
24. Green Biphasic Homogeneous Catalysis
Philip G. Jessop and David J. Heldebrant
25. Green Chemical Manufacturing with Biocatalysis
Jon D. Stewart

Chemical Reactor Design, Optimization, and Scaleup E. Bruce Nauman

Chemical Reactor Design, Optimization, and Scaleup

Table of Contents
1 Elementary Reactions in Ideal Reactors
2 Multiple Reactions in Batch Reactors
3 Isothermal Piston Flow Reactors
4 Stirred Tanks and Reactor Combinations
5 Thermal Effects and Energy Balances
6 Design and Optimization Studies
7 Fitting Rate Data and Using Thermodynamics
8 Real Tubular Reactors in Laminar Flow
9 Packed Beds and Turbulent Tubes
10 Heterogeneous Catalysis
11 Multiphase Reactors
12 Biochemical Reaction Engineering
13 Polymer Reaction Engineering
14 Unsteady Reactors
15 Residence Time Distributions
16 Reactor Design at Meso-, Micro-, and Nanoscales

Modeling and Simulation of Catalytic Reactors for Petroleum Refining
Jorge Ancheyta

Modeling and Simulation

Table of Contents
1. Petroleum Refining
2. Reactor Modeling in the Petroleum Refining Industry
3. Modeling of Catalitic Hydrotreating
4. Modeling of Catalytic Reforming
5. Modeling and Simulation of Fluidized-Bed Catalytic Cracking Converters
Rafael Maya-Yescas
Index

Procesos de Transporte
y Principios de Procesos de Separación 4 ed. Christie John Geankoplis

Geankoplis 4 edición

Tabla de Contenidos
PARTE 1
PROCESO DE TRANSPORTE: DE MOMENTO, DE CALOR Y DE MASA
1. Introducción a los principios de ingeniería y sus unidades
2. Principios de transferencia de momento lineal y balances globales
3. Principios de la transferencia de momento lineal y aplicaciones
4. Principios de la transferencia de calor en estado estacionario
5. Principios de la transferencia de calor en estado no estacionario
6. Principios de transferencia de masa
7. Principios de transferencia de masa convectiva en estado no estacionario
PARTE 2
PRINCIPIOS DE PROCESOS DE SEPARACIÓN (INCLUYE OPERACIONES UNITARIAS)
8. Evaporación
9. Secado de materiales de proceso
10. Procesos de separación gas-fluido por etapas y continuos
11. Proceso de separación vapor-líquido
12. Proceso de separación vapor-líquido y sólido-líquido
13. Procesos de separación a través de una membrana
14. Procesos de separación físico-mecánicos
APÉNDICES
Apéndice A.l Constantes fundamentales y factores de conversión
Apéndice A.2 Propiedades físicas del agua
Apéndice A.3 Propiedades físicas de compuestos inorgánicos y orgánicos
Apéndice A.4 Propiedades físicas de materiales alimenticios y biológicos
Apéndice A.S Propiedades de tuberías, duetos y tamices

Principios de Operaciones Unitarias Alan Foust, Leonard Wenzel,
Curtis Clump, Louis Maus, Bryce Andersen

Principios de Operaciones Unitarias

Tabla de Contenidos

1. Operaciones Unitarias en la Ingeniería Química

PARTE UNO: Operaciones en Etapas
2 Operaciones de Transferencia de Masa
3 Relaciones de Fases
4 Cálculos de Etapas de Equilibrio
5 Operaciones de Multietapas a Contracorriente
6 Operaciones de Multietapas a Contracorriente con Reflujo
7 Métodos Simplificados de Cálculo
8 Operaciones por Etapas con Multicomponentes

PARTE DOS: Transporte Molecular y Turbulento
9 Mecanismo de Transporte Molecular
10 Balances Dife~enciales de Masa, Calor y Momento
11 Ecuaciones de Cambio
12 Mecanismo de Transporte Turbulento
13 Fundamentos de los Mecanismos de Transferencia
14 Transferencia en la Interfase

PARTE TRES: Aplicaciones al Diseño de Equipo
15 Transferencia de Calor
16 Transferencia de Masa
17 Transferencia Simultánea de Calor y Masa-Humidificación
18 Transferencia Simultánea de Calor y Masa-Secado
19 Transferencia Simultánea de Calor y Masa-Evaporación y Cristalización
20 El Balance de Energía en Sistemas de Flujo
21 Aparatos para Impulsar Fluidos
22 Flujo y Separación de Partículas Sólidas por Medio de la Mecánica de Fluidos

APENDICE A Dimensiones y Unidades, Análisis Dimensional y Teoría de Modelos
APENDICE B Descripción de los Sólidos en Forma de Partículas
APENDIGE C Datos para Diseño de Equipo
APENDICE D Datos Físicos
APENDICE E Ecuaciones de Cambios para Varios Sistemas de Coordenadas

Introducción a la Ingeniería Química Walter L. Badger - Julius T. Banchero
Traducido por Ricardo Arriero

Badger - Banchero

Tabla de Contenidos
1. Introducción
2. Movimiento de fluidos
3. Transporte de fluidos
4. Transmisión del calor
5. Evaporación
6. Destilación
7. Extracción
8. Transferencia de masa en fase gaseosa. Humificación y acondicionamiento de aire
9. Absorción de gases
10. Secado
11. Cristalización
12. Filtración
13. Mezcla de materiales
14. Separación por tamaños
15. Trituración y molienda
16. Transporte
Apéndices
lndice

Organomagnesium Methods in Organic Synthesis Basil J. Wakefield

Organomagnesium

Table of Contents
Chapter 1. Introduction and General References
Chapter 2. General Considerations in the Application of Organomagnesium Compounds in Organic and Organometallic Synthesis
Chapter 3. Preparation of Organomagnesium Compounds
Chapter 4. Addition of Organomagnesium Compounds to Carbon-Carbon Multiple Bonds
Chapter 5. Addition of Organomagnesium Compounds to Carbon-Nitrogen Multiple Bonds
Chapter 6. Addition of Organomagnesium Compounds to Carbonyl Groups
Chapter 7. Carbophilic Addition of Organomagnesium Compounds to Thiocarbonyl Groups
Chapter 8. Substitution at Carbon by Organomagnesium Compounds
Chapter 9. Carbenoid and Arynoid Reactions of Organomagnesium Compounds
Chapter 10. Reactions of Organomagnesium Compounds with Proton Donors
Chapter 11. Formation of Carbon-Nitrogen Bonds via Organomagnesium Compounds
Chapter 12. Formation of Carbon-Oxygen Bonds via Organomagnesium Compounds
Chapter 13. Formation of Carbon-Sulfur, Carbon-Selenium and Carbon-Tellurium Bonds via Organomagnesium Compounds
Chapter 14. Formation of C'art~on-I-ialogen Bonds via Organomagnesium Compounds
Chapter 15. Synthesis of Organoboron, Organosilicon and Organophosphorus Compounds from Organomagnesium Compounds
Chapter 16. Organomagnesium Compounds in the Synthesis of Other Organometallic Compounds

Chemical, Biochemical
and Engineering Thermodynamics 4ed Stanley I. Sandler

Thermodynamics-Sandler

Table of Contents
1. Introduction.
2. Conservation of Mass.
3. Conservation of Energy.
4. Entropy: An Additional Balance Equation.
5. Liquefaction, Power Cycles, and Explosions.
6. The Thermodynamic Properties of Real Substances.
7. Equilibrium and Stability in One-Component Systems.
8. The Thermodynamics of Multicomponent Mixtures.
9. The Estimation of the Gibbs Free Energy and Fugacity of a Component in a Mixture.
10. Vapor-liquid Equilibrium in Mixtures.
11. Other types of Phase Equilibria in Fluid Mixtures.
12. Mixture Phase Equilibria Involving Solids.
13. Chemical Equilibrium.
14. The Balance Equations for Chemical Reactors and Electrochemistry.
15. Some Biochemical Applications of Thermodynamics.
Appendix A: Thermodynamic Data.
Appendix B: Computer Programs.

Scale-Up in Chemical Engineering Second, Completely Revised and Extended Edition
by Marko Zlokarnik

Scale-Up in Chemical Engineering

A solicitud de Rolando.

Table of Contents
1 Introduction
2 Dimensional Analysis
3 Generation of Pi-sets by Matrix Transformation
4 Scale Invariance of the Pi-space – the Foundation of the Scale-up
5 Important Tips Concerning the Compilation of the Problem Relevance List
6 Important Aspects Concerning the Scale-up
7 Preliminary Summary of the Scale-up Essentials
8 Treatment of Physical Properties by Dimensional Analysis
9 Reduction of the Pi-space
10 Typical Problems and Mistakes in the Use of Dimensional Analysis
11 Optimization of Process Conditions by Combining Process Characteristics
12 Selected Examples of the Dimensional-analytical Treatment of Processes in the Field of Mechanical Unit Operations
13 Selected Examples of the Dimensional-analytical Treatment of Processes in the Field of Thermal Unit Operations
14 Selected Examples for the Dimensional-analytical Treatment of Processes in the Field of Chemical Unit Operations
15 Selected Examples for the Dimensional-analytical Treatment of Processes whithin the Living World
16 Brief Historic Survey on Dimensional Analysis and Scale-up
17 Exercises on Scale-up and Solutions
18 List of important, named pi-numbers
19 References
Index

Vapor Pressure of Chemicals by J. Dykyj, J. Svoboda, R.C. Wilhoit, M. Frenkel, K.R. Hall

Vapor Pressure of Chemicals

Table of Contents
1 Introduction
2 Tabulated Data on Vapor Pressure of Hydrocarbons
3 Tabulated Data on Vapor Pressure of Sulfur, Selenium, and Tellurium Containing Organic Compounds
4 Tabulated Data on Vapor Pressure of Halogen Containing Organic Compounds