Carbon Capture, Utilisation and Storage (CCS/CCUS) Training Courses > Techno-Economic Assessment (TEA) for Carbon Capture & Storage Project Decision-Making – Anchored by Exclusive CCS Industry Site Visits
Code Date Format Currency Team of 10
Per Person*
Team of 7
Per Person*
Early Bird Fee
Per Person
Normal Fee
Per Person
PE2384 25 - 29 Jan 2027 Bergen, Norway USD 6,149 6,435 6,950 7,150

*Fee per person in a team of 7 or 10 participating from the same organisation, registering 6 weeks before the course date
Request for a quote if you have different team sizes, content customisation, alternative dates or course timing requirements
Request for in-person classroom training or online (VILT) training format

Learn in teams and save more! Enjoy group discounts of up to 50% off normal fees for team based learning. Contact us on [email protected] to learn more today!

Code

PE2384

Date

25 - 29 Jan 2027

Format

Bergen, Norway

Currency

USD

Team of 10
Per Person*

6,149

Team of 7
Per Person*

6,435

Early Bird Fee
Per Person

6,950

Normal Fee
Per Person

7,150

*Fee per person in a team of 7 or 10 participating from the same organisation, registering 6 weeks before the course date
Request for a quote if you have different team sizes, content customisation, alternative dates or course timing requirements
Request for in-person classroom training or online (VILT) training format

About this Training Course

The global push toward decarbonisation has positioned Carbon Capture, Utilisation and Storage (CCUS) as a critical technology for reducing industrial and power-sector emissions. However, CCUS projects are capital intensive and technically complex, making early-stage project evaluation and technology selection particularly challenging. Techno-Economic Assessment (TEA) provides a structured framework to evaluate these projects by linking engineering performance, cost assumptions, and operational realities to economic outcomes that support informed decision-making.

This practitioner-led course focuses on how TEA should be applied as a decision-support framework rather than a purely modelling exercise. Participants will explore the structural drivers of capture costs, including capital intensity, operating expenditure, technology maturity, utilisation rates, and energy requirements. A central theme of the programme is the Levelised Cost of Capture (LCOC) framework, which connects technical configuration and operational assumptions to a single economic metric used to compare capture technologies and project concepts.

Through real-world case discussions, structured exercises, benchmarking workshops and exclusive CCS industry site visits, the programme demonstrates how to interpret TEA outputs, evaluate uncertainties and develop defensible project recommendations. Participants will connect classroom analysis with real operating environments, examining how technology validation, site integration, operational constraints, transport and storage interfaces, and project maturity influence economic outcomes. The programme brings together economic metrics, site characteristics, technology maturity and practical industry observations to support robust feasibility assessments, technology selection and investment decisions across CCUS projects.

By the end of the course, participants will be able to:

  • Understand how TEA supports early-stage project screening, concept selection, and investment discussions in CCUS projects.
  • Deconstruct LCOC into its capital, operating, utilisation, and financial components and explain how technical design decisions affect economic outcomes.
  • Analyse how factors such as discount rate, project lifetime, energy prices, plant utilisation and availability influence capture cost and project viability.
  • Apply qualitative screening and weighted quantitative KPI benchmarking approaches to compare capture technologies under realistic technical, operational and site constraints.
  • Evaluate how site characteristics, technology maturity, integration requirements and infrastructure conditions influence CAPEX, OPEX, utilisation, risk and uncertainty.
  • Integrate techno-economic analysis, benchmarking results, site context and real-world operational evidence to support credible CCUS technology selection and investment decisions.
  • Translate observations from operational CCS facilities into practical lessons for project feasibility, risk reduction, project assurance and decision-making across the CCS value chain.

This course is designed for professionals involved in CCUS project evaluation, concept development, technology selection, feasibility assessment, site integration and investment decision-making, particularly those who need to interpret techno-economic results and translate technical and operational evidence into credible project recommendations.

  • Engineering Managers
  • Project Development Managers
  • Process Engineering Leads
  • Concept Selection Leads
  • Carbon Capture Technology Specialists
  • Project Development Managers
  • Concept Selection Leads
  • EPC Project Engineers
  • Intermediate

The programme uses an interactive, practitioner-led approach combining expert instruction, real-world case discussions, LCOC calculations, sensitivity analysis, benchmarking workshops and team-based exercises. Learning is reinforced through technical site visits to operational CCS facilities, where participants connect classroom concepts with real-world technology performance, integration, risk and operational considerations. The programme concludes with facilitated discussions and an integration workshop to support practical CCUS project evaluation and decision-making.

Unlock the potential of your workforce with customized in-house training programs designed specifically for the energy sector. Our tailored, in-house courses not only enhance employee skills and engagement but also offer significant cost savings by eliminating travel expenses. Invest in your team’s success and achieve specific outcomes aligned with your organization’s goals through our expert training solutions. Request for further information regarding our on-site or in-house training opportunities.

In our ongoing commitment to sustainability and environmental responsibility, we will no longer providing hard copy training materials. Instead, all training content and resources will be delivered in digital format. Inspired by the oil and energy industry’s best practices, we are leveraging on digital technologies to reduce waste, lower our carbon emissions, ensuring our training content is always up-to-date and accessible. Click here to learn more.

To further optimise your learning experience from our courses, we also offer individualised coaching support. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It can be delivered virtually through video conference or face to face by one of our senior subject matter experts. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Learn more about our post training coaching services here.
1. What is Carbon Capture and Storage Techno-Economic Assessment?

Carbon Capture and Storage Techno-Economic Assessment evaluates the technical and economic viability of a CCS project. In addition, it connects engineering performance with project costs. Therefore, teams can use the results to support project decisions. Techno-Economic Assessment (TEA…

2. What are the main benefits of techno-economic assessment for CCS?

TEA helps teams identify the main cost drivers in a CCS project. Moreover, it helps them compare different project options. As a result, teams can understand how key assumptions affect project economics.

3. What is the Levelised Cost of Capture (LCOC)?

LCOC measures the cost of capturing CO₂ over a project’s life. For example, it considers capital costs, operating costs, and plant use. Therefore, teams can compare capture options on a common economic basis.

4. Is LCOC enough to compare CCS technologies?

LCOC provides useful cost information. However, project teams must also consider technology maturity and site conditions. In addition, infrastructure and operating limits can affect technology selection.

5. What factors can affect CCS project economics?

Many factors can change the economics of a CCS project. For example, energy prices and plant availability can influence capture costs. Moreover, transport distance and storage access can affect overall project costs.

6. How can TEA support CCS investment decisions?

Carbon Capture and Storage Techno-Economic Assessment combines cost, performance, and risk information. Therefore, teams can use TEA during feasibility and technology selection. As a result, decision-makers can compare options with greater clarity.

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