Modeling and Simulation of Catalytic Reactors for Petroleum Refining - Info and Reading Options
By Jorge Ancheyta
"Modeling and Simulation of Catalytic Reactors for Petroleum Refining" was published by Wiley & Sons, Incorporated, John in 2011 - New York, it has 1 pages and the language of the book is English.
“Modeling and Simulation of Catalytic Reactors for Petroleum Refining” Metadata:
- Title: ➤ Modeling and Simulation of Catalytic Reactors for Petroleum Refining
- Author: Jorge Ancheyta
- Language: English
- Number of Pages: 1
- Publisher: ➤ Wiley & Sons, Incorporated, John
- Publish Date: 2011
- Publish Location: New York
“Modeling and Simulation of Catalytic Reactors for Petroleum Refining” Subjects and Themes:
- Subjects: Cracking process - Petroleum, refining
Edition Specifications:
- Pagination: 525
Edition Identifiers:
- The Open Library ID: OL39885771M - OL21456283W
- ISBN-13: 9781283052337 - 9780470933558
- All ISBNs: 9781283052337 - 9780470933558
AI-generated Review of “Modeling and Simulation of Catalytic Reactors for Petroleum Refining”:
"Modeling and Simulation of Catalytic Reactors for Petroleum Refining" Description:
Open Data:
Intro -- MODELING AND SIMULATION OF CATALYTIC REACTORS FOR PETROLEUM REFINING -- CONTENTS -- PREFACE -- ABOUT THE AUTHOR -- 1: PETROLEUM REFINING -- 1.1 PROPERTIES OF PETROLEUM -- 1.2 ASSAY OF CRUDE OILS -- 1.3 SEPARATION PROCESSES -- 1.3.1 Crude Oil Pretreatment: Desalting -- 1.3.2 Atmospheric Distillation -- 1.3.3 Vacuum Distillation -- 1.3.4 Solvent Extraction and Dewaxing -- 1.3.5 Deasphalting -- 1.3.6 Other Separation Processes -- 1.4 UPGRADING OF DISTILLATES -- 1.4.1 Catalytic Reforming -- 1.4.2 Isomerization -- 1.4.3 Alkylation -- 1.4.4 Polymerization -- 1.4.5 Catalytic Hydrotreating -- 1.4.6 Fluid Catalytic Cracking -- 1.5 UPGRADING OF HEAVY FEEDS -- 1.5.1 Properties of Heavy Oils -- 1.5.2 Process Options for Upgrading Heavy Feeds -- 2: REACTOR MODELING IN THE PETROLEUM REFINING INDUSTRY -- 2.1 DESCRIPTION OF REACTORS -- 2.1.1 Fixed-Bed Reactors -- 2.1.2 Slurry-Bed Reactors -- 2.2 DEVIATION FROM AN IDEAL FLOW PATTERN -- 2.2.1 Ideal Flow Reactors -- 2.2.2 Intrareactor Temperature Gradients -- 2.2.3 Intrareactor Mass Gradients -- 2.2.4 Wetting Effects -- 2.2.5 Wall Effects -- 2.3 KINETIC MODELING APPROACHES -- 2.3.1 Traditional Lumping -- 2.3.2 Models Based on Continuous Mixtures -- 2.3.3 Structure-Oriented Lumping and Single-Event Models -- 2.4 REACTOR MODELING -- 2.4.1 Classification and Selection of Reactor Models -- 2.4.2 Description of Reactor Models -- 2.4.3 Generalized Reactor Model -- 2.4.4 Estimation of Model Parameters -- REFERENCES -- NOMENCLATURE -- 3: MODELING OF CATALYTIC HYDROTREATING -- 3.1 THE HYDROTREATING PROCESS -- 3.1.1 Characteristics of HDT Reactors -- 3.1.2 Process Variables -- 3.1.3 Other Process Aspects -- 3.2 FUNDAMENTALS OF HYDROTREATING -- 3.2.1 Chemistry -- 3.2.2 Thermodynamics -- 3.2.3 Kinetics -- 3.2.4 Catalysts -- 3.3 REACTOR MODELING -- 3.3.1 Effect of Catalyst Particle Shape
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