CO2 Capture, Processing & Technologies

Start Date End Date Venue Fees (US $)
31 May 2026 Dubai, UAE $ 3,900 Register
30 Aug 2026 Riyadh, KSA $ 3,900 Register
13 Dec 2026 Kuala Lumpur, Malaysia $ 4,500 Register

CO2 Capture, Processing & Technologies

Introduction

In this course, the technology and costs of CCS capture technologies are addressed with a focus on surface facilities. The course discusses the main factors affecting separation, technology readiness, and level costs. It spans from the basics of CO2 capture to the details of the technologies discussed.  The course will include a couple of case studies with group exercises and process simulations that support CO2 capture technology design.

Objectives

    After the completion of this course, participants will be able to:

    • Understand the various technologies used in carbon capture
    • Identify the advantages and disadvantages of capture technologies
    • Distinguish the design and specifications of CO2 pipelines
    • Determine the properties of COand phase behaviour
    • Conduct basic design and comparison of some carbon capture technologies

Training Methodology

This is an interactive course. There will be open question and answer sessions, regular group exercises and activities, videos, case studies, and presentations on best practices. Participants will have the opportunity to share with the facilitator and other participants what works well and not so well for them, as well as work on issues from their own organizations. The online course is conducted online using MS-Teams/ClickMeeting.

Who Should Attend?

This course is intended for all surface technical personnel such as process engineers & technologists, facility engineers, and production engineers & technologists. Senior management executives will benefit from this training as covers an overview of the technical and commercial details of CO2 capture technologies and the risks involved.

Course Outline

Module 1: CO2 Sources

• Combustion

• Other Industries (Concrete, etc.)

• Industry Contributions

• Typical CO2 Flue/Exhaust Gas Example Compositions (Typical Combustion, Typical Turbine)

• Other Contaminants (NOx, SOx)

Module 2: Carbon Dioxide Properties and Phase Behaviour

• Pure Component Physical Properties – Density, Heat Capacity Prediction

• Pure Component Transport properties – Viscosity, Thermal Conductivity Prediction

• Mixture Properties & Prediction • Pure Component – Vapour Pressure

• Solubility in Water/Brine • Pure Component Water Content

• Phase Behaviour Prediction/Water Content Prediction (Low P, High P) Case Study 1 – Group Exercise on Properties Prediction and Phase Behaviour

Module 3: Capture Technologies

• Post-Combustion

• Pre-Combustion Combustion

• Absorption Technology – Chemical/Physical Solvents Case Study 2 – Group Exercise of Basic Design and Cost of Solvent System

Module 4: Capture Technologies

• Adsorption Technology – Solids (Activated Carbon, Mole Sieves, MOF)

• Membranes

Module 5: Capture Technologies and Types

• Technologies for Capture Types • Technology Readiness

• Direct Air Capture

Module 6: CO2 Compression

• Water Content

• Design Considerations

• Compressor Types

Module 7: CO2 Pipelines

• Specifications

• Design Considerations

Module 8: Capture Project & Costs

• Summary of Worldwide Projects

• Comparison to Emissions

• Capture, Compression and Pipeline Costs vs CO2 Value Case Study 3 - Capture, Compression and Pipeline Simulation Demonstration

Accreditation

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