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wastewater, thereby reducing the bacterial load of the wastewater, and is therefore considered highly suitable for water reuse. Greywater treatment systems have successfully been implemented in the past years
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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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or systems. Critical infrastructures, such as wastewater treatment ecosystems, employ digital twins to monitor and control their facilities. In such complex infrastructures, many separately-controlled systems
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, this PhD position is for you. PhD project is a part of the “Intelligent Wastewater Treatment: Distributed Digital Twin for Clean Water (DDTclean)” project, funded by the NWO Merian Fund. The main use-case in
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regional municipal wastewater treatment residuals. Your assignment The research is interdisciplinary, involving applied microbiology, chemical engineering unit processes, and polymer science. You will
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assessment of chemicals, such as: Predicting the environmental biodegradability of chemicals (e.g. in wastewater treatment plants), based on molecular descriptors and/or environmental parameters. Predicting
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wastewater treatment plants), based on molecular descriptors and/or environmental parameters. Predicting the environmental toxicity of chemicals based on read-across from empirical toxicity data of chemicals
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will be involved in the following two key objectives: estimate future wastewater flows and treatment (using nitrogen as the first model pollutant) in the case study areas in China and the
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, performance and maintenance of the real-world counterpart, including its interaction with other objects or systems. Critical infrastructures, such as a wastewater treatment ecosystem, employ DTs to monitor and
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promises advancements in greenhouse gas mitigation from wastewater treatment but also holds the key to addressing heavy metal contamination. This interdisciplinary journey will allow you to immerse yourself