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PhD Studentship in: Understanding risks from emerging contaminants (PFAS) to surface water resources
PhD Studentship in: Understanding risks from emerging contaminants (PFAS) to surface water resources Department of Civil and Structural Engineering PhD Research Project Directly Funded Students
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study: · search for the ‘Course Title’ using the programme code: 8040F · Research Area: Civil Engineering (Water Resources) · select ‘PhD Civil
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South West Water and the Centre for Doctoral Training in Water Infrastructure and Resilience. EPSRC PhD Studentship in: Big Data, Network Complexity and Machine Learning to Deliver Targeted Pro-active
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of opening up energy resource in deeper water than feasible with fixed solutions (e.g. monopiles or jackets) which become impractical in water depths over 45m for monopiles and 80m for jackets. While the UK
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Floating wind offers the possibility of opening up energy resource in deeper water than feasible with fixed solutions (e.g. monopiles or jackets) which become impractical in water depths over 45m
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of water for agriculture. This PhD will integrate environmental science, ecology, engineering and philosophy to explore the legal frameworks, farmer and regulator perspectives, water resource needs and
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technologies predominantly rely on freshwater, exacerbating strain on already limited resources. Seawater, as a vast and natural electrolyte source, provides an alternative but poses significant challenges
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fashion businesses will help reduce their consumption of resources used in production. At a glance Application deadline31 Jul 2024 Award type(s)PhD Start date30 Sep 2024 Duration of award3 years
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develop hydrogen production technologies with net-zero emissions of carbon dioxide for real-world applications embodying technical innovation, socio-economic factors, and water-energy resource management
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emissions, especially in light of sustained cost reductions and technological advancements that facilitate the utilisation of wind resources in deeper waters. Beyond electricity generation, offshore wind