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We have 43 Energy Technologies (equality) PhD Projects, Programmes & Scholarships

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Energy Technologies (equality) PhD Projects, Programmes & Scholarships

We have 43 Energy Technologies (equality) PhD Projects, Programmes & Scholarships

Condition monitoring and non-destructive testing of dynamic cable for offshore renewable energy industry

Offshore wind energy is central to UK’s ambition of transitioning to a sustainable future electricity grid. The growth in power generation from floating wind turbines is increasingly further away from shore and utilising the floating wind turbine support structures. Read more

Ion irradiation of advanced nuclear fuels

Nuclear fission power currently accounts for 20% of UK energy production, making it a key low-carbon energy source for reducing greenhouse gases and meeting the governments New-Zero target by 2050. Read more

Multiscale investigation of corrosion deposition in high temperature high pressure water for nuclear power plants

We are pleased to present an exciting PhD opportunity in collaboration with Rolls-Royce, providing a unique chance for candidates to participate in a multiscale investigation of corrosion deposition in high-temperature, high-pressure water for nuclear power plants. Read more

Membrane-less Redox Flow Batteries

This project will focus on the development of membrane-less redox flow battery systems for grid-scale energy storage. We will use novel aqueous electrolytes and new types of cell chemistries as well as “bespoke” systems based on organic molecules. Read more

Condition monitoring and non-destructive testing of dynamic cable for offshore renewable energy industry

Offshore wind energy is central to UK’s ambition of transitioning to a sustainable future electricity grid. The growth in power generation from floating wind turbines is increasingly further away from shore and utilising the floating wind turbine support structures. Read more

Detecting and Quantifying Hydrogen Isotopes in Nuclear Fusion Breeding Materials using Laser Induced Breakdown Spectroscopy

Future fusion power reactors such as the UK’s STEP reactor, due to begin construction in the next 10 years, will require the tritium fuel to be generated (bred), extracted, separated, and regenerated into new fueling (either pellets or gas) prior to (re-)introduction into the fusion core. Read more

Hydrogen trapping and permeation in metallic and ceramic coatings for fusion powerplant applications

  Research Group: Coatings and Ceramics
Future fusion powerplants must maintain tritium inventory to ensure safe and sustainable plant operations. Structural materials in the breeder blanket and tritium extraction systems will be exposed to tritium and lithium. Read more

Sustainable Carbon Nanomaterials for Electrochemical Energy Conversion in Hydrogen Fuel Cells

The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Electrochemical processes are at the heart of the hydrogen economy providing a means to convert renewable energy into green hydrogen via electrolysis or converting hydrogen into electrical power using fuel cells. Read more

Nanocellulose as a Sustainable Electrolyte for Electrochemical Energy Conversion

The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Polymer electrolyte membrane water electrolysis (PEMWE) can convert renewable energy into green hydrogen, whilst polymer electrolyte membrane fuel cells (PEMFCs) convert hydrogen into electrical power. Read more

Modelling exsolution: materials design for sustainable energy

One of the primary challenges for the global community is the supply of plentiful and affordable energy, moving the world away from dependence on fossil fuels by providing green alternatives. Read more

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