
Mathematical Modeling of Complex Reaction Systems in the Oil and Gas Industry
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Mathematical Modeling of Complex Reaction Systems in the Oil and Gas Industry
About this book
Master the fundamentals of reaction systems modeling for the age of decarbonization
Reactor design is one of the most important parts of the oil and gas industry, with reactor processes and the accompanying technologies constantly evolving to meet industry needs. A crucial component of effective reactor design is modelling complex reaction systems, which can help predict commercial performance, shape safety procedures, and more. At a time when decarbonization and clean energy transition are among the fundamental global technological challenges, it has never been more important for engineers to grasp the cutting edge of reaction system modelling.
Mathematical Modeling of Complex Reaction Systems in the Oil and Gas Industry provides a systematic introduction to this timely subject. Each chapter provides a step-by-step description of the kinetic and reactor models for a particular kind of process and its accompanying systems. Backed by voluminous experimental data and incorporating extensive simulation results, the book constitutes an indispensable contribution to the global search for clean energy solutions.
Mathematical Modeling of Complex Reaction Systems in the Oil and Gas Industry readers will also find:
- All the required tools for developing new reactor models for different reaction scales
- Detailed discussion of topics including hydrocracking of heavy oils, catalyst deactivation, oxidative regeneration of catalysts, and many more
- Extensive treatment of both steady-state and dynamic simulations
Mathematical Modeling of Complex Reaction Systems in the Oil and Gas Industry is ideal for chemical and process engineers, computational chemists and modelers, catalysis researchers, and any other researchers or professionals in petrochemical engineering and the oil and gas industry.
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Information
Table of contents
- Cover
- Table of Contents
- Title Page
- Copyright Page
- List of Contributors
- Preface
- 1 Modeling the Kinetics of Hydrocracking of Heavy Oil with Mineral Catalyst
- 2 Modeling Catalyst Deactivation of Hydrotreating of Heavy Oils
- 3 Simulation of the Oxidative Regeneration of Coked Catalysts: Kinetics, Catalyst Pellet, and Bed Levels
- 4 Modeling of UnsteadyâState Catalytic and AdsorptionâCatalytic Processes: Novel Reactor Designs
- 5 Molecular Reconstruction of Complex Hydrocarbon Mixtures for Modeling of Heavy Oil Processing
- 6 Modeling of Catalytic Hydrotreating Reactor for Production of Green Diesel
- 7 Modeling of SlurryâPhase Hydrocracking Reactor
- 8 Modeling of FischerâTropsch Synthesis Reactor
- 9 Computational Fluid Dynamics Modeling of Mass Transfer Processes in Structured Beds of Microfibrous Catalysts
- Index
- End User License Agreement