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We have 59 Energy Technologies (energy storage) PhD Projects, Programmes & Scholarships

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Energy Technologies (energy storage) PhD Projects, Programmes & Scholarships

We have 59 Energy Technologies (energy storage) PhD Projects, Programmes & Scholarships

Lead-free materials for electrostatic energy storage

  Research Group: School of Chemical and Process Engineering
This multidisciplinary project spans materials science, chemistry and physics to develop lead-free environmental friendly materials for enhanced electrostatic energy storage. Read more

Soft Flexible and Stretchable Energy Storage Device Development

Hybrid energy storage offers multiple advantages in electrochemical energy storage especially for portable electronic gadgets and autonomous systems due to its high energy and power density. Read more

Energy Storage Modelling

Supervisory Team.   Prof Andrew Cruden, Prof Richard Wills, Prof Suleiman Sharkh. Project description. Applications are invited for a fully-funded PhD studentship to investigate the electrical, thermal and economic modelling of a range of electrical energy storage types (e.g. Read more

Material degradation study of energy storage materials for renewable technologies PhD

This is a self-funded PhD position to work with Dr Adnan Syed in the Surface Engineering and Precision Centre. The PhD project will focus studying high temperature corrosion mechanisms in details to identify the material degradation details in extreme environments. Read more

Develop Silicon-based Anode Materials for Next Generation Lithium-ion Batteries

This ARC Linkage project, a collaboration between UTS researchers and industry partner which aims to revolutionize lithium-ion battery technology by developing low-cost, high-performance silicon-based anode materials. Read more

Experimental study of ion transport in subsurface media for renewable energy storage

These projects are open to students worldwide, but have no funding attached. Therefore, the successful applicant will be expected to fund tuition fees at the relevant level (home or international) and any applicable additional research costs. Read more

Economic and environmental assessment of energy systems integration for increased utilisation and reduced curtailment of offshore wind farms

This Research Project is part of the EPSRC CDT in Offshore Wind Energy Resilience and Sustainability’s Energy Economics Cluster. The CDT is a partnership between Hull, Durham, Loughborough and Sheffield universities, along with over 40 industry partners. Read more

Delivering Sustainable Energy Solutions to Ports

Ports are major sources of greenhouse gas emissions as they commonly move up to 10,000 containers a day from ship to road or rail transport and correspondingly in the reverse direction from land transport onto ships. Read more

PhD in multi-energy systems analysis with Artificial Intelligence models

Background. The UK and the World are rapidly shifting towards multi-energy systems, such as districts and industrial parks with large amounts of renewable electricity, renewable heating & cooling, clean fuels (e.g. Read more

Oxidic Nanomaterials for High Density Storage in Li-ion Batteries

  Research Group: Chemistry and Biosciences
The oxides of a number of materials are very appealing candidates as substitutes for conventional anodes in lithium-ion batteries because of their high theoretical capacity, high electric conductivity low potential of lithium ion intercalation, as well as superior electron mobilities, with one such material, SnO2 being particularly appealing. Read more

Renewables and the UK Energy Market

PhD in the Engineering Hydrogen NetZero (EnerHy) CDT which is an EPSRC-funded Centre for Doctoral Training (CDT) focusing on research and training in the areas of Hydrogen and Wind Energy. Read more

Innovations in Waste Energy Minimisation from Maritime Engineering Power and Propulsion Systems

Supervisory Team.   Prof Alan J Murphy & Prof Dominic Hudson. Project description. Although maritime transport is one of the most energy efficient, the cumulative carbon footprint from global shipping is equivalent a large industrialised nation (~3% of global total). Read more

Advanced control of inverter-based resources to realize stable smart grids

Summary. The smart grid concept is paving the way towards efficient, reliable, and sustainable power systems. Inverter-based resources are among the most crucial components of the smart grid, interfacing renewable energy sources, storage devices, and electronic loads. Read more

Numerical modelling of multiphase flow and reactive transport in porous materials

Understanding reactive transport in porous materials is of utmost importance for a wide range of engineering applications, including subsurface energy storage, low-carbon building materials and fuel cells. Read more

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