Introduction
This
comprehensive Hydrotreating & Hydrocracking Process Technology training
course overlays the process fundamentals and sound knowledge of Hydrotreating
and Hydrocracking processes where Hydrogen is a key material in the upgrading
and treatment of refinery products and fractions. A review of the
state-of-the-art in process design, energy and mass integration will be
presented as potential key improvements.
In-depth practical review of
Hydrotreating/cracking technologies is provided across the course topics. The
contents focus on the Hydro-conversion of heavy products, distillates, diesel,
and naphtha into other hydrogenated/lower molecular weight products, besides saturated
products with enhanced Cetane number, free of sulphur, nitrogen and metals. The
course also discusses some process design/chemistry and engineering principles
for such processes and presents scope for improvements
Objectives
By the end of this Hydrotreating & Hydrocracking
Process Technology training course, participants will be able to :
·
Develop
deep understanding of mass/H2/energy balance in refining processes
·
Gain
in-depth knowledge of the state-of-the-art of material and energy integration
·
Evaluate
different flow schemes for hydrotreating and hydrocracking processes
·
Manipulated
process design and operation variables for better H2-conversion performances
·
Master
experiences of chemistry/kinetics, function of catalysts, clean production,
environmental issues of very typical upgraded fuel productions
Course Outline
Day One: Introduction: The Basics
• Fundamentals of
Mass/Hydrogen and Energy Balance in Refineries
• State-of-the-Art of
Material and Energy Integration
• Fundamentals of
Petroleum Refinery Processing: Downstream Crude Oil Refining
• Products’ Specifications and Characteristics
• Process
Design/Optimisation and Heat Integration Schemes
• Environmental and
Economic Issues
Day Two: HydroTreating – Fundamentals
and Principles
• Introduction to
Hydro-Conversion Processes and H2 Sources
• Process Flow Schemes
• Process Chemistry and
Kinetics
• Catalysts/ Heat of
Reactions
• Operating Conditions,
Principles and Design Considerations
• Hydrogen Requirements
for Hydrotreating
Day Three: HydroTreating – Advanced
Processing
• Reactors Design
• Applications to
Naphtha, Middle Distillate, Gas Oil and
• Atmospheric Residue
Desulphurisation
• Saturation of Benzene
in Gasoline
• Potential Improvements
for Material and Energy Savings
• Clean Diesel Hydrotreating Process Technology – Critical Issues
Day
Four: Hydrocracking – Fundamentals and
Principles
• Feed Stocks and Products
• Process Chemistry/Kinetics
• Catalysts/De-activation and Re-Generation
• Products Quality and Yields: Process
Configuration, Catalyst Type and Operating Process Variables and Parameters
• Reactors Technology for Hydrocracking
• Single Stage
Hydrocracking Process Technology
Day
Five: Hydrocracking – Advanced
Processing
• Two Stage Hydrocracking Process Technology
• Process Design Features
• Hydrogen Balance and Consumption
• Scope for Process Integration Improvements
• Hydrogen Balance/Integration and
Management
• Steam/Methane Reforming