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Engineering of biological activated carbon (BAC) filters for micropollutants removal in tertiary wastewater treatment. Micropollutants have been identified as contaminants of concern present in
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immediate need for innovative solutions to align with the EU Water Framework Directive’s criteria, set to be met by the end of 2027. This multifaceted challenge involves addressing nutrient (N and P) runoff
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this technology and we will study the interactions between PFAS molecules and an electrically charged carbon surface. The interplay between hydrophobic and charged-based interactions is of particular importance
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Electrospinning for production of 3D-structured bipolar membranes for water dissociation applications In water technology, the demand for bipolar membranes is steadily rising. Bipolar membranes
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treatment solutions have been investigated. Hollow-fiber nanofiltration has shown to be a highly effective and attractive treatment technology to remove micropollutants and produce high-quality greywater
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of PFAS is produced. To protect the source water bodies and reduce the overall PFAS load in the environment, additional treatment of these retentate streams is required. One promising removal technology to
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, extracellular enzymes, Fenton (like) reactions, and reactive oxygen species. The companies in the Groundwater technology theme aim to construct and study a 100m2 nature-based system at a drinking water
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complex engineering challenges, especially when dealing with diverse brine compositions. Despite past research on BPMED, the interaction between brine softening and BPMED remains relatively unexplored. By
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eutrophication, by engineering the controlled release of macro- and micronutrients. Such synthetic polymers, as functional additives with agricultural products, are effective but not degradable. They can