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Field
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, shapes outcomes; whether integrated regulation, as England is now developing, alters capacity to address cross-cutting challenges including catchment management, agricultural pollution, and climate
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converting a widespread pollutant, nitrate, to a valuable fertiliser and chemical feedstock, ammonia. Harnessing sunlight as an abundant and sustainable source of energy to drive the upcycling of waste
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Primary supervisor - Dr David Lea-Smith Engineering biology has enormous potential to address global environmental challenges like bioremediation, biosequestration, pollutant monitoring, and
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barriers (modelling, experimentation, and monitoring), (ii) Determination of the impacts of subsurface exploitation and usage (induced seismicity, pollutant migration, CO₂ and associated impurities leakage
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fertilisers. While these fertilisers have transformed global food production, their manufacture is highly energy-intensive and their use contributes to significant environmental pollution. This project explores
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to 3 years. Research project and work environment: This research project addresses the profound impacts of environmental pollution on human health, specifically targeting how air- and foodborne
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infrastructure, urban greening, and connected public spaces – may simultaneously improve environmental sustainability, increase physical activity, reduce pollution exposure, and support mental and physical
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-derived pollutants (microplastics, pesticides, pharmaceuticals) into the very heart of these ecodiverse hotspots, making them vulnerable to far-field human interference. While this general knowledge is now
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)’. Unfortunately, this connection brings land-derived pollutants (microplastics, pesticides, pharmaceuticals) into the very heart of these ecodiverse hotspots, making them vulnerable to far-field human interference
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to the deep sea (Dissanayaka et al., 2023)’ . Unfortunately, this connection brings land-derived pollutants (microplastics, pesticides, pharmaceuticals) into the very heart of these ecodiverse hotspots, making