MEng Chemical Engineering (International Study)
Entry requirements
A Level: A*AA /AAAA to include A level Mathematics and Chemistry or Physics.. IB: 7,6,6 at HL, to include Mathematics and Chemistry or Physics HL grade 6 with a minimum of 32 points overall. We will consider Standard Level Maths grade 7.. BTEC: only considered when combined with other qualifications.
About this course
Master of Engineering in Chemical Engineering (International Study), a chemical engineering degree centred on the principles of industrial processing and sustainable technology. Core topics include Systems Design, Data Analysis, and Research Methods. Students spend their third year studying abroad at an international partner institution. The first year covers core foundations through Reaction, Equilibria and Thermodynamics, Chemistry and Materials, Introduction to Transport Phenomena, and Process Design and Analysis. The second year expands into Reactors, Catalysis and Thermodynamics, Sustainable Process Engineering, Mass, Heat and Momentum Transport, and Systems Design and Control. The final fourth year involves an independent research project and a major design project alongside advanced modules such as Advanced Transport Processes, Advanced Reactors and Thermodynamics, and Energy Systems Design and Policy.
Modules
- Reaction, Equilibria and Thermodynamics
- Chemistry and Materials
- Introduction to Transport Phenomena
- Discover: Labs and Data Analysis
- Modelling Concepts and Tools (MCT)
- Process Design and Analysis
- Reactors, Catalysis and Thermodynamics
- Sustainable Process Engineering
- Mass, Heat and Momentum Transport
- Process Integration and Unit Operations
- Product Design Exercise
- Systems Design and Control
- Chemical Engineering Year Abroad
- Advanced Transport Processes
- Design Project
- Research Project
- Advanced Reactors and Thermodynamics
- Advanced Biomaterials and Tissue Engineering
- Advanced Therapeutic Medicinal Products and Medical Devices
- Biopharmaceutical Bioprocessing
- Custom Manufacturing
- Energy Data Analytics and Modelling
- Energy Systems Design and Policy
- Formulation for Net Zero
- Industrial Biotechnology for Sustainability
- Industry 4.0 and Big Data
- Introduction to Hydrogen and Fuel Cells
- Nanoengineering for Sensors
- Strategy Development and Delivery
- Sustainable Food Structures for Performance
- Thermal Energy