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Leverhulme Trust Leadership Award, which aims on sensing wastewater for real-time public health, particularly on the development of novel low-cost and rapid sensors for rapid and on-site wastewater
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imperative to safeguard both human well-being and the integrity of our natural environment. Currently, no water or wastewater treatment plants are designed to target micropollutants, resulting in the presence
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The exciting PhD opportunity was funded by 5-year Leverhulme Trust Leadership Award, which aims on sensing wastewater for real-time public health, particularly on the development of novel low-cost
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of chlorophyll & amino acids), averting the need for chemical nitrogen sources (artificial fertilizers) & turning C into biomass. Mi-Hy’s only inputs are atmospheric CO2, light & (household) wastewater stream
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Worldwide decentralized water and wastewater systems, including in UK rural areas and Islands, can have a high cost and be unreliable, often failing during treatment. This project is part of
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-September) Project description: The occurrence of per- and polyfluoroalkyl substances (PFAS) in biosolids of wastewater treatment plants is becoming a serious issue since these substances are persistent in
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Training Partnership (DTP). This project would suit students with a background in environmental and civil engineering, water and wastewater, molecular biology, microbiology, biochemistry, or other similar
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Russell Davenport, Sam Wilson and Tom Curtis together with the BEWISe Wastewater Research Facility team, and a Research Technician. This will be a collaborative project delivered by a consortium, led by
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which is the first of its type in Europe in large-scale wastewater treatment research using bacteria. #ncl-eng Newcastle University is a global University where everyone is treated with dignity and
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discriminating the impacts of storm overflows/wastewater treatment works versus other pollution sources on the water environment. In a previous proof-of-concept, Newcastle University researchers have detected a