Course curriculum

  • 1

    Introduction

    • Meet the teachers

    • Learning objectives and target audience

    • General introduction to this module

    • Good practices to use this platform

  • 2

    1: The need for the feasibility studies on CCU technologies

    • Introducing the need for the feasibility studies on CCU technologies

    • 1.1 The challenge in technology selection

    • 1.2 Why do existing tools fall short?

    • 1.3 What do the results of Map-it CCU brings to the table?

  • 3

    2: Understanding the Map-it CCU Tool for Technology Assessment

    • Getting started

    • 2.1 Overview of the Map-it CCU Tool

    • 2.2 How the components of the tool work together

    • 2.3 How is the Map-it CCU Tool enabling smarter choices?

  • 4

    3: Mastering the Technology Infosheets

    • Infosheets intro

    • 3.1 What do infosheets contain?

    • 3.2 Case Study: Compare Amine Absorption vs. Membrane Capture

    • 3.3 Solution for the case study

    • infosheet

  • 5

    4: Navigating the CCUS Value Chain

    • Introduction to the chapter

    • 4.1 Overview of the CCUS Chain

    • 4.2 Understanding CO₂ sources and their impact on capture technology

    • 4.3 Flue Gas Pre-treatment: why it matters

    • 4.4 CO₂ Capture: Key Technology Pathways

    • 4.5 CO₂ Purification: ensuring safe transport and use

    • 4.6 CO₂ Conditioning: preparing for transport

    • 4.7 CO₂ Transport: moving carbon safely and efficiently

  • 6

    5: Applying the Decision Support Tool

    • 5.1 Introduction to Decision Support Tool

    • 5.2 Tailoring Technology to stakeholders

    • 5.3 Key criteria explained

    • 5.4 Why these inputs are critical to CO₂ Capture success

    • Case Study: SME vs Large Emitter

    • Walkthrough: Filling the questionnaire

  • 7

    6: Using the CO₂ Capture Cost Calculator

    • 6.1 Introduction to Cost Calculator

    • 6.2 Inputs you need

    • 6.3 How does it work?

    • Interactive calculator exercise

  • 8

    7: Overview of CO₂ Utilization options

    • 7.1 What to do with CO₂?

    • 7.2 Overview of case studies and how to use them

  • 9

    8: E-fuels

    • 8.1 E-fuels - Process overview

    • 8.2 E-fuels - Scale and CO₂ purity requirements

    • 8.3 E-fuels - Policy aspects

  • 10

    9: Mineralisation

    • 9.1 Mineralisation - Process overview

    • 9.2 Mineralisation - Scale and CO₂ purity requirements

    • 9.3 Mineralisation - Policy aspects

  • 11

    10: Polymers

    • 10.1 Polymers - Process overview

    • 10.2 Polymers - Scale and CO₂ purity requirements

    • 10.3 Polymers - Policy aspects

  • 12

    Conclusion

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