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Consumption-based approach for assessing the contribution of hospitals towards the load of pharmaceutical residues in municipal wastewater
Le Corre, K. S., Ort, C., Kateley, D., Allen, B., Escher, B. I., & Keller, J. (2012). Consumption-based approach for assessing the contribution of hospitals towards the load of pharmaceutical residues in municipal wastewater. Environment International, 45(1), 99-111. https://doi.org/10.1016/j.envint.2012.03.008
Methodological aspects of multi-criteria decision analysis for policy support: a case study on pharmaceutical removal from hospital wastewater
Schuwirth, N., Reichert, P., & Lienert, J. (2012). Methodological aspects of multi-criteria decision analysis for policy support: a case study on pharmaceutical removal from hospital wastewater. European Journal of Operational Research, 220(2), 472-483. https://doi.org/10.1016/j.ejor.2012.01.055
Options for urine treatment in developing countries
Pronk, W., & Koné, D. (2009). Options for urine treatment in developing countries. Desalination, 248(1–3), 360-368. https://doi.org/10.1016/j.desal.2008.05.076
Sources and mass flows of xenobiotics in urban water cycles-an overview on current knowledge and data gaps
Bester, K., Scholes, L., Wahlberg, C., & McArdell, C. S. (2008). Sources and mass flows of xenobiotics in urban water cycles-an overview on current knowledge and data gaps. Water, Air, and Soil Pollution: Focus, 8(5), 407-423. https://doi.org/10.1007/s11267-008-9189-3
Release of biocides from urban areas into aquatic systems
Burkhardt, M., Kupper, T., Hean, S., Schmid, P., Haag, R., Rossi, L., & Boller, M. (2007). Release of biocides from urban areas into aquatic systems (p. (7 pp.). Presented at the 6th international conference on sustainable techniques and strategies in urban water management (NOVATECH 2007). .
Soft paths in wastewater management – the pros and cons of urine source separation
Lienert, J., & Larsen, T. A. (2007). Soft paths in wastewater management – the pros and cons of urine source separation. GAIA: Ecological Perspectives for Science and Society, 16(4), 280-288. https://doi.org/10.14512/gaia.16.4.10
Fate of micropollutants in drinking and wastewater treatment and consequences for process design
Siegrist, H., Joss, A., & Ternes, T. (2007). Fate of micropollutants in drinking and wastewater treatment and consequences for process design (p. (8 pp.). Presented at the 4th leading edge conference on water and wastewater technologies. .
Wastewater management in Kunming, China: a stakeholder perspective on measures at the source
Medilanski, E., Chuan, L., Mosler, H. J., Schertenleib, R., & Larsen, T. A. (2006). Wastewater management in Kunming, China: a stakeholder perspective on measures at the source. Environment and Urbanization, 18(2), 353-368. https://doi.org/10.1177/0956247806069615
Nanofiltration for the separation of pharmaceuticals from nutrients in source-separated urine
Pronk, W., Palmquist, H., Biebow, M., & Boller, M. (2006). Nanofiltration for the separation of pharmaceuticals from nutrients in source-separated urine. Water Research, 40(7), 1405-1412. https://doi.org/10.1016/j.watres.2006.01.038
Towards sustainable urban stormwater management
Boller, M. (2004). Towards sustainable urban stormwater management. Water Science and Technology: Water Supply, 4(1), 55-65. https://doi.org/10.2166/ws.2004.0007
Waste design and source control lead to flexibility in wastewater management
Larsen, T. A., & Gujer, W. (2001). Waste design and source control lead to flexibility in wastewater management. Water Science and Technology, 43(5), 309-317. https://doi.org/10.2166/wst.2001.0313
Guiding the development of urban drainage systems by sustainability criteria
Krebs, P., & Larsen, T. A. (1997). Guiding the development of urban drainage systems by sustainability criteria. Water Science and Technology, 35(9), 89-98. https://doi.org/10.1016/S0273-1223(97)00187-X
Separate management of anthropogenic nutrient solutions (human urine)
Larsen, T. A., & Gujer, W. (1996). Separate management of anthropogenic nutrient solutions (human urine). Water Science and Technology, 34(3-4), 87-94. https://doi.org/10.1016/0273-1223(96)00560-4