Cover image for Modeling of processes and reactors for upgrading of heavy petroleum
Title:
Modeling of processes and reactors for upgrading of heavy petroleum
Personal Author:
Series:
Chemical industries ; 136
Publication Information:
Boca Raton, Fla. : CRC Press, c2013
Physical Description:
xxiii, 537 p. : ill. ; 24 cm.
ISBN:
9781439880456

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30000010307036 TP690 A53 2013 Open Access Book Book
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Summary

Summary

The worldwide petroleum industry is facing a dilemma: the production level of heavy petroleum is higher than that of light petroleum. Heavy crude oils possess high amounts of impurities (sulfur, nitrogen, metals, and asphaltenes), as well as a high yield of residue with consequent low production of valuable distillates (gasoline and diesel). These characteristics, in turn, are responsible for the low price of heavy petroleum. Additionally, existing refineries are designed to process light crude oil, and heavy oil cannot be refined to 100 percent. One solution to this problem is the installation of plants for heavy oil upgrading before sending this raw material to a refinery.

Modeling of Processes and Reactors for Upgrading of Heavy Petroleum gives an up-to-date treatment of modeling of reactors employed in the main processes for heavy petroleum upgrading. The book includes fundamental aspects such as thermodynamics, reaction kinetics, chemistry, and process variables . Process schemes for each process are discussed in detail. The author thoroughly describes the development of correlations, reactor models, and kinetic models with the aid of experimental data collected from different reaction scales. The validation of modeling results is performed by comparison with experimental and commercial data taken from the literature or generated in various laboratory scale reactors.

Organized into three sections, this book deals with general aspects of properties and upgrading of heavy oils, describes the modeling of non-catalytic processes, as well as the modeling of catalytic processes. Each chapter provides detailed experimental data, explanations of how to determine model parameters, and comparisons with reactor model predictions for different situations, so that readers can adapt their own computer programs. The book includes rigorous treatment of the different topics as well as the step-by-step description of model formulation and application. It is not only an indispensable reference for professionals working in the development of reactor models for the petroleum industry, but also a textbook for full courses in chemical reaction engineering.

The author would like to express his sincere appreciation to the Marcos Moshinsky Foundation for the financial support provided by means of a Cátedra de Investigación.


Author Notes

Jorge Ancheyta is Research and Development Project Leader at the Mexican Institute of Petroleum (IMP). He works on the development and application of petroleum refining catalysts, kinetic and reactor models, and process technologies--mainly in catalytic cracking, catalytic reforming, middle distillate hydrotreating, and heavy oils upgrading.


Table of Contents

Heavy petroleum
Definitions
Properties
Assay of heavy petroleum
Problems during upgrading and refining of heavy petroleum
References
Process Options for Upgrading of Heavy Petroleum
Carbon rejection
Hydrogen addition
New technologies
Combined process schemes
References
Modeling of Visbreaking
Process description
Fundamentals
Modeling
References
Modeling of Gasification
Process description
Fundamentals
Modeling
References
Modeling of Coking
Process description
Fundamentals
Modeling
References
Modeling of Catalytic Hydroprocessing
Process description
Fundamentals
Modeling of Fixed-Bed Hydroprocessing
Modeling of Ebullated-Bed Reactors
References