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Misfit between physical affectedness and regulatory embeddedness: the case of drinking water supply along the Rhine River
Ingold, K., Moser, A., Metz, F., Herzog, L., Bader, H. P., Scheidegger, R., & Stamm, C. (2018). Misfit between physical affectedness and regulatory embeddedness: the case of drinking water supply along the Rhine River. Global Environmental Change, 48, 136-150. https://doi.org/10.1016/j.gloenvcha.2017.11.006
Mitigation potential of sanitation infrastructure on groundwater contamination by nitrate in Maputo
Marques Arsénio, A., Câmara Salim, I., Hu, M., Matsinhe, N. P., Scheidegger, R., & Rietveld, L. (2018). Mitigation potential of sanitation infrastructure on groundwater contamination by nitrate in Maputo. Sustainability, 10(3), 858 (18 pp.). https://doi.org/10.3390/su10030858
Modelling biocide and herbicide concentrations in catchments of the Rhine basin
Moser, A., Wemyss, D., Scheidegger, R., Fenicia, F., Honti, M., & Stamm, C. (2018). Modelling biocide and herbicide concentrations in catchments of the Rhine basin. Hydrology and Earth System Sciences, 22(8), 4229-4249. https://doi.org/10.5194/hess-22-4229-2018
Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
Wongsoonthornchai, M., Scheidegger, R., Kwonpongsagoon, S., & Bader, H. P. (2017). Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand. International Journal of GEOMATE, 12(33), 65-70. https://doi.org/10.21660/2017.33.2578
Stoffstromanalyse zu verschiedenen Wasserinfrastruktursystemen in Frankfurter und Hamburger Quartieren
Davoudi, A., Milosevic, D., Scheidegger, R., Schramm, E., & Winker, M. (2016). Stoffstromanalyse zu verschiedenen Wasserinfrastruktursystemen in Frankfurter und Hamburger Quartieren. netWorks-Papers: Vol. 30. Berlin: Forschungsverbund netWorks.
Household analysis identifies water-related energy efficiency opportunities
Kenway, S. J., Binks, A., Scheidegger, R., Bader, H. P., Pamminger, F., Lant, P., & Taimre, T. (2016). Household analysis identifies water-related energy efficiency opportunities. Energy and Buildings, 131, 21-34. https://doi.org/10.1016/j.enbuild.2016.09.008
Method for analyzing trade-offs in biomass management in smallholder farming systems based on mass balance
Ruppen, S., Wolfgramm, B., Scheidegger, R., & Bader, H. P. (2016). Method for analyzing trade-offs in biomass management in smallholder farming systems based on mass balance. Mountain Research and Development, 36(1), 80-90. https://doi.org/10.1659/MRD-JOURNAL-D-14-00114.1
REXPO: a catchment model designed to understand and simulate the loss dynamics of plant protection products and biocides from agricultural and urban areas
Wittmer, I. K., Bader, H. P., Scheidegger, R., & Stamm, C. (2016). REXPO: a catchment model designed to understand and simulate the loss dynamics of plant protection products and biocides from agricultural and urban areas. Journal of Hydrology, 533, 486-514. https://doi.org/10.1016/j.jhydrol.2015.11.046
Municipal water reuse for urban agriculture in Namibia: modeling nutrient and salt flows as impacted by sanitation user behavior
Woltersdorf, L., Scheidegger, R., Liehr, S., & Döll, P. (2016). Municipal water reuse for urban agriculture in Namibia: modeling nutrient and salt flows as impacted by sanitation user behavior. Journal of Environmental Management, 169, 272-284. https://doi.org/10.1016/j.jenvman.2015.12.025
Assessment of mercury flows through fluorescent lamps and potential reduction scenarios in Thailand
Wongsoonthornchai, M., Kwonpongsagoon, S., & Scheidegger, R. (2016). Assessment of mercury flows through fluorescent lamps and potential reduction scenarios in Thailand. International Journal of Environmental Science and Development, 7(5), 340-345. https://doi.org/10.7763/IJESD.2016.V7.796
Modeling mercury flows in Thailand on the basis of mathematical material flow analysis
Wongsoonthornchai, M., Kwonpongsagoon, S., & Scheidegger, R. (2016). Modeling mercury flows in Thailand on the basis of mathematical material flow analysis. Clean: Soil, Air, Water, 44(1), 16-24. https://doi.org/10.1002/clen.201400670
Geogenic contamination handbook. Water Resource Quality (WRQ). Addressing arsenic and fluoride in drinking water
Bader, H. P., Berg, M., Bretzler, A., Gebauer, H., Huber, A. C., Hug, S. J., … Yang, H. (2015). Geogenic contamination handbook. Water Resource Quality (WRQ). Addressing arsenic and fluoride in drinking water. (A. Bretzler & C. A. Johnson, Eds.). Retrieved from https://www.eawag.ch/en/research/humanwelfare/drinkingwater/wrq/
Integrating spatial land use analysis and mathematical material flow analysis for nutrient management: a case study of the Bang Pakong River Basin in Thailand
Kupkanchanakul, W., Kwonpongsagoon, S., Bader, H. P., & Scheidegger, R. (2015). Integrating spatial land use analysis and mathematical material flow analysis for nutrient management: a case study of the Bang Pakong River Basin in Thailand. Environmental Management, 55(5), 1022-1035. https://doi.org/10.1007/s00267-014-0441-5
Small-scale water reuse for urban agriculture in Namibia: modeling water flows and productivity
Woltersdorf, L., Liehr, S., Scheidegger, R., & Döll, P. (2015). Small-scale water reuse for urban agriculture in Namibia: modeling water flows and productivity. Urban Water Journal, 12(5), 414-429. https://doi.org/10.1080/1573062X.2014.900691
Understanding and managing water-related energy use in Australien households. Preliminary results of a research project being carried out by the University of Queensland and the Smart Water Fund
Kenway, S., Binks, A., Bors, J., Pamminger, F., Lant, P., Head, B., … Bader, H. P. (2014). Understanding and managing water-related energy use in Australien households. Preliminary results of a research project being carried out by the University of Queensland and the Smart Water Fund. Water (Melbourne), 41(2), 184-188. Retrieved from http://clearwater.asn.au/resource-library/smart-water-fund-projects/water-energy-carbon-links-in-households-and-cities-a-new-paradigm.php
Substance flow analysis as a tool for mitigating the impact of pharmaceuticals on the aquatic system
Chèvre, N., Coutu, S., Margot, J., Wynn, H. K., Bader, H. P., Scheidegger, R., & Rossi, L. (2013). Substance flow analysis as a tool for mitigating the impact of pharmaceuticals on the aquatic system. Water Research, 47(9), 2995-3005. https://doi.org/10.1016/j.watres.2013.03.004
Water-related energy in households: a model designed to understand the current state and simulate possible measures
Kenway, S. J., Scheidegger, R., Larsen, T. A., Lant, P., & Bader, H. P. (2013). Water-related energy in households: a model designed to understand the current state and simulate possible measures. Energy and Buildings, 58, 378-389. https://doi.org/10.1016/j.enbuild.2012.08.035
Konzept für ein Tool zum Waste-Collection-Planning
Schuchardt, P., Wittmann, J., & Scheidegger, R. (2013). Konzept für ein Tool zum Waste-Collection-Planning. J. Wittmann & M. Müller (Eds.), (pp. 117-131). Presented at the Simulation in den Umwelt- und Geowissenschaften Workshop 2013. Aachen: Shaker Verlag.
Software für die Simulation der Aufnahme von Fluorid durch Essen und Trinken
Scheidegger, R., Asmussen, J., Brusch, F., Gleiche, P., Cheskis, E., Thiel-Clemen, T., … Bader, H. P. (2012). Software für die Simulation der Aufnahme von Fluorid durch Essen und Trinken. J. Wittmann & B. Page (Eds.), Berichte aus der Umweltinformatik. (pp. 155-167). Presented at the Simulation in Umwelt- und Geowissenschaften: Workshop Hamburg 2012. Hamburg: Shaker.
Copper flows in buildings, infrastructure and mobiles: a dynamic model and its application to Switzerland
Bader, H. P., Scheidegger, R., Wittmer, D., & Lichtensteiger, T. (2011). Copper flows in buildings, infrastructure and mobiles: a dynamic model and its application to Switzerland. Clean Technologies and Environmental Policy, 13(1), 87-101. https://doi.org/10.1007/s10098-010-0278-4
 

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