Prof M Lucquiaud
1 year ago
GIF CDT: A Novel Gas/Liquid contactor for Direct Air Capture and industrial CO2 capture technologies University of Sheffield in United Kingdom
Degree Level
PhD
Field of study
Biochemistry
Funding
Fully Funded
Deadline
Expired
Country
United Kingdom
University
University of Sheffield

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Where to contact
Official Email
Keywords
Biochemistry
Environmental Science
Mechanical Engineering
Chemical Engineering
Materials Science
Carbon Capture And Storage
Environmental Engineering
Heat Transfer
Mass Transfer
Fluid Mechanics
Renewable Energy
Climate Science
Industrial Engineering
Magnetohydrodynamics
Air Quality Management
Process Engineering
English Language Teaching
Sustainable Energy
Separation Science
Wind Energy Engineering
Process Optimization
Air Pollution Control
Climate Change Policy
Non-equilibrium Thermodynamics
Separation Processes
Co2 Capture
Process Modelling
Scale-up Engineering
Scale-up
Eic Path Finder Challenge Project
Supervisors
Research & Innovation
(bio)process Design
International Opportunity
Green Industrial Futures
Net-zero Leadership Programme
Critical Barriers
Residential Taught Training
Gas/liquid Contactor
Formal Application
Packing Geometries
Direct Air Capture
Pressure Drop
Commercial Design
Engineering Guidelines
About this position
The Green Industrial Futures Centre for Doctoral Training (GIF CDT) is inviting applications for the following project, expected to commence in September 2024. This advert will close when a suitable candidate is identified, so early application is encouraged.The CDT boasts an exciting and challenging programme specifically designed for top performing junior researchers, in addition to the main area of research, including:Residential taught training courses at each of the partner universities to contextualise your research within the wider net zero industrial landscape.An industry challenge project with one of our industrial partners.An international opportunity in year 2 or 3 of the degree, with the option for a second international visit in year 3.A bespoke ‘net-zero leadership programme’, including regular exchanges with cohort members from the other universities.More information about the CDT can be found here.ProjectThe project aims to design and optimise a novel concept for contacting the combustion gases of gas turbines with solvents used for CO2 capture. It uses a first of a kind prototype system to obtain experimental data, combine the data with process modelling and scale up towards a commercial design. A second application is the removal of carbon dioxide from the air, a core technology of a $3.5 billion US government programme to establish four regional Direct Air Capture hubs across the country. This project has three objectives:Generate data on the pressure drop, hydrodynamics and mass transfer of novel packing geometries used for contacting ambient air/industrial gases with CO2 capture solvents.Characterise the operation of the prototype contactor for a range of CO2 capture solvent physical properties, such as density, viscosity and surface tension.Develop engineering guidelines for process optimisation and scale-up with an open-access solvent supported by new packing data from this project.Industrial PartnerThis project offers a unique opportunity for collaboration with Total Energies Research & Development. You will work closely with industry experts to identify critical barriers and opportunities to ensure your project contributes towards ‘real world’ solutions. Candidate RequirementsAs a minimum we require candidates to have a First-class or 2:1 MEng or and MSc with merit (over 60%) in a relevant area i.e. Chemical Engineering, Process Engineering, Mechanical Engineering, Chemistry etc. Applicants who have a First-class BSc/BEng (Hons) and can demonstrate significant relevant industry/research experience may also be considered.Non-UK applicants must meet our English language entry requirement.SupervisorsProfessor Mathieu Lucquiaud, Prof Jon Gibbins (https://www.sheffield.ac.uk/energy/people)Enquiries and ApplicationsInformal enquiries are encouraged. Direct these to Professor Mathieu Lucquiaud [email protected] make a formal application via the University of Sheffield’s online application form. Please ensure that you select the correct project and/or CDT-GIF options. For more information about the application process, visit the University of Sheffield’s ‘How to apply’ webpage.
Funding details
Fully Funded
How to apply
? Interested candidates should make a formal application via the University of Sheffield's online application form.
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