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CHE4803 · Carbon capture, storage and utilisation

Official Handbook

2026 Handbook6 credit pointsLevel 4Department of Chemical and Biological Engineering

Last checked: 23 Aug 2026 UTC

Overview

Carbon capture, storage, and utilisation (CCSU) are critical components of the global effort to combat climate change, making them essential study areas. As stewards of industrial processes and technology, engineers play a pivotal role in developing and implementing innovative solutions to address the escalating challenge of carbon emissions. In carbon capture, you will apply various chemical engineering techniques to capture CO2 emissions from sources, such as power plants and industrial facilities. The storage aspect of CCSU depends on geological and subsurface engineering. You will contribute to selecting suitable storage sites, assessing rock formations, and implementing secure injection and monitoring techniques. This interdisciplinary approach will have you collaborating with geologists, reservoir engineers, and environmental scientists to ensure the safe and effective storage of captured carbon. Carbon utilisation involves transforming captured CO2 into valuable products. You can devise catalytic processes to convert CO2 into chemicals, fuels, and materials. By studying CCSU, you will gain insights into electrochemical processes, thermochemical reactions, and catalyst design, allowing you to contribute to sustainable technologies that transform CO2 from a pollutant into a valuable resource. Addressing the challenges of carbon capture, storage, and utilisation requires a deep understanding of the underlying chemical and engineering principles, making it an essential field of study for those seeking to pioneer sustainable solutions and shape the future of industrial processes in a carbon-constrained world, aligning with the United Nations sustainable development goals, such SDG13: Climate Action.

Areas of study: Minor: Decarbonisation and net zero Minor: Sustainable energy transition

Offerings

CampusTeaching periodMode
MalaysiaFirst semesterTeaching activities are on-campus (ON-CAMPUS)

Assessment

The Handbook does not list a final examination among the assessment items. That is not a guarantee there is none.

#AssessmentTypeWeightHurdle
1Pre-class quizQuiz / Test10%
2In-workshop assessmentExercise10%
3Group assignmentProject40%
4Group oral presentation and assessmentPresentation40%

Continuous assessment: 100%

Assessment details may change. Please refer to the assessment information in Moodle closer to the start of the teaching period.

Requisites

prohibitions

  • CHE5833 — Carbon capture, storage and utilisation

Learning outcomes

  1. Demonstrate in-depth knowledge of various carbon capture technologies to capture CO2 emissions from diverse sources.
  2. Select and evaluate storage sites for securely storing captured carbon.
  3. Design innovative carbon utilisation processes by developing catalytic processes for converting CO2 into valuable products.
  4. Integrate the environmental and economic considerations into the design and implementation of CCUS processes.
  5. Demonstrate strong interdisciplinary collaboration skills from fields such as geology, reservoir engineering, environmental science and policy.

Workload

The minimum total expected workload to achieve the learning outcomes for this unit is 144 hours per semester typically comprising a mixture of 3-6 hours of scheduled learning activities and 6-9 hours of independent study per week. Scheduled activities may include a combination of teacher-directed learning, peer-directed learning and online engagement. Independent study may include associated readings, assessment and preparation for scheduled activities.

ActivityDuration
Assessments4 hours
Practical activities24 hours
Workshops24 hours

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