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A comparison of agricultural pesticide and urban biocide occurrence in surface waters during rain events in a catchment of mixed land use
Wittmer, I., Bader, H. P., Scheidegger, R., Singer, H., Alder, A., Jaus, S., … Stamm, C. (2010). A comparison of agricultural pesticide and urban biocide occurrence in surface waters during rain events in a catchment of mixed land use (p. (2 pp.). Presented at the International conference on xenobiotics in the urban water cycle (Xenowac 2009). Paphos, Cyprus.
Dynamics of biocide and pesticide input
Wittmer, I., & Burkhardt, M. (2009). Dynamics of biocide and pesticide input. Eawag News [engl. ed.], 67, 8-11.
Dynamik von Biozid- und Pestizideinträgen
Wittmer, I., & Burkhardt, M. (2009). Dynamik von Biozid- und Pestizideinträgen. Eawag News [dtsch. Ausg.], 67, 8-11.
Dynamique des rejets de biocides et de pesticides
Wittmer, I., & Burkhardt, M. (2009). Dynamique des rejets de biocides et de pesticides. Eawag News [éd. fr.], 67, 8-11.
Environmental risk assessment of fluctuating diazinon concentrations in an urban and agricultural catchment using toxicokinetic-toxicodynamic modeling
Ashauer, R., Wittmer, I., Stamm, C., & Escher, B. I. (2011). Environmental risk assessment of fluctuating diazinon concentrations in an urban and agricultural catchment using toxicokinetic-toxicodynamic modeling. Environmental Science and Technology, 45(22), 9783-9792. https://doi.org/10.1021/es202413a
How a complete pesticide screening changes the assessment of surface water quality
Moschet, C., Wittmer, I., Simovic, J., Junghans, M., Piazzoli, A., Singer, H., … Hollender, J. (2014). How a complete pesticide screening changes the assessment of surface water quality. Environmental Science and Technology, 48(10), 5423-5432. https://doi.org/10.1021/es500371t
Influence of agricultural pesticide and urban biocide use on load dynamics in surface waters
Wittmer, I. K. (2010). Influence of agricultural pesticide and urban biocide use on load dynamics in surface waters (Doctoral dissertation). ETH Zürich, Zürich, 205 p.
Insektizide und Fungizide in Fliessgewässern. Wichtig zur Beurteilung der Gewässerqualität
Moschet, C., Wittmer, I., Stamm, C., Singer, H., & Hollender, J. (2015). Insektizide und Fungizide in Fliessgewässern. Wichtig zur Beurteilung der Gewässerqualität. Aqua & Gas, 95(4), 54-65.
Landnutzung entlang des Gewässernetzes. Quellen für Mikroverunreinigungen
Strahm, I., Munz, N., Leu, C., Wittmer, I., & Stamm, C. (2013). Landnutzung entlang des Gewässernetzes. Quellen für Mikroverunreinigungen. Aqua & Gas, 93(5), 36-44.
Loss rates of urban biocides can exceed those of agricultural pesticides
Wittmer, I. K., Scheidegger, R., Bader, H. P., Singer, H., & Stamm, C. (2011). Loss rates of urban biocides can exceed those of agricultural pesticides. Science of the Total Environment, 409(5), 920-932. https://doi.org/10.1016/j.scitotenv.2010.11.031
Micropolluants – Stratégie d’évaluation pour les micropolluants organiques de sources non ponctuelles. Etude réalisée sur mandat de l’OFEV
Wittmer, I., Stamm, C., Singer, H., & Junghans, M. (2014). Micropolluants – Stratégie d’évaluation pour les micropolluants organiques de sources non ponctuelles. Etude réalisée sur mandat de l’OFEV. Dübendorf: Eawag.
Mikroverunreinigungen - Beurteilungskonzept für organische Spurenstoffe aus diffusen Einträgen. Studie im Auftrag des Bundesamtes für Umwelt (BAFU)
Wittmer, I., Stamm, C., Singer, H., & Junghans, M. (2014). Mikroverunreinigungen - Beurteilungskonzept für organische Spurenstoffe aus diffusen Einträgen. Studie im Auftrag des Bundesamtes für Umwelt (BAFU). Dübendorf: Eawag.
Modellierung der Nährstoffflüsse von Aquakulturen in Thailand
Wittmer, I., Scheidegger, R., & Bader, H. P. (2006). Modellierung der Nährstoffflüsse von Aquakulturen in Thailand. In J. Wittmann & M. Müller (Eds.), Simulation in Umwelt- und Geowissenschaften. Workshop Leipzig 2006 (pp. 151-160). Aachen: Shaker.
Modelling biocide leaching from facades
Wittmer, I. K., Scheidegger, R., Stamm, C., Gujer, W., & Bader, H. P. (2011). Modelling biocide leaching from facades. Water Research, 45(11), 3453-3460. https://doi.org/10.1016/j.watres.2011.04.003
Pesticide risks in small streams - how to get as close as possible to the stress imposed on aquatic organisms
Spycher, S., Mangold, S., Doppler, T., Junghans, M., Wittmer, I., Stamm, C., & Singer, H. (2018). Pesticide risks in small streams - how to get as close as possible to the stress imposed on aquatic organisms. Environmental Science and Technology, 52(8), 4526-4535. https://doi.org/10.1021/acs.est.8b00077
Pestizidmessungen in Fliessgewässern. Schweizweite Auswertung
Munz, N., Leu, C., & Wittmer, I. (2012). Pestizidmessungen in Fliessgewässern. Schweizweite Auswertung. Aqua & Gas, 92(11), 32-41.
Plus de 100 pesticides dans les cours d'eau. Une forte pollution des cours d'eau suisses révélée par le programme NAWA SPE
Wittmer, I., Moschet, C., Simovic, J., Singer, H., Stamm, C., Hollender, J., … Leu, C. (2014). Plus de 100 pesticides dans les cours d'eau. Une forte pollution des cours d'eau suisses révélée par le programme NAWA SPE. Aqua & Gas, 94(11), 68-79.
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
Relevance of urban glyphosate use for surface water quality
Hanke, I., Wittmer, I., Bischofberger, S., Stamm, C., & Singer, H. (2010). Relevance of urban glyphosate use for surface water quality. Chemosphere, 81(3), 422-429. https://doi.org/10.1016/j.chemosphere.2010.06.067
Significance of urban and agricultural land use for biocide and pesticide dynamics in surface waters
Wittmer, I. K., Bader, H. P., Scheidegger, R., Singer, H., Lück, A., Hanke, I., … Stamm, C. (2010). Significance of urban and agricultural land use for biocide and pesticide dynamics in surface waters. Water Research, 44(9), 2850-2862. https://doi.org/10.1016/j.watres.2010.01.030