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  • (-) Eawag Departments = Environmental Chemistry UCHEM
  • (-) Publication Year = 2006 - 2018
  • (-) Keywords ≠ transformation products
  • (-) Journal ≠ Environmental Science and Technology
  • (-) Eawag Authors = Hollender, Juliane
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Emerging pollutants in the EU: 10 years of NORMAN in support of environmental policies and regulations
Dulio, V., van Bavel, B., Brorström-Lundén, E., Harmsen, J., Hollender, J., Schlabach, M., … Koschorreck, J. (2018). Emerging pollutants in the EU: 10 years of NORMAN in support of environmental policies and regulations. Environmental Sciences Europe, 30(1), 5 (13 pp.). https://doi.org/10.1186/s12302-018-0135-3
Spatiotemporal scales of river-groundwater interaction – The role of local interaction processes and regional groundwater regimes
Epting, J., Huggenberger, P., Radny, D., Hammes, F., Hollender, J., Page, R. M., … Auckenthaler, A. (2018). Spatiotemporal scales of river-groundwater interaction – The role of local interaction processes and regional groundwater regimes. Science of the Total Environment, 618, 1224-1243. https://doi.org/10.1016/j.scitotenv.2017.09.219
Comprehensive toxic plants-phytotoxins database and its application in assessing aquatic micropollution potential
Günthardt, B. F., Hollender, J., Hungerbühler, K., Scheringer, M., & Bucheli, T. D. (2018). Comprehensive toxic plants-phytotoxins database and its application in assessing aquatic micropollution potential. Journal of Agricultural and Food Chemistry, 66(29), 7577-7588. https://doi.org/10.1021/acs.jafc.8b01639
Comprehensive micropollutant screening using LC-HRMS/MS at three riverbank filtration sites to assess natural attenuation and potential implications for human health
Hollender, J., Rothardt, J., Radny, D., Loos, M., Epting, J., Huggenberger, P., … Singer, H. (2018). Comprehensive micropollutant screening using LC-HRMS/MS at three riverbank filtration sites to assess natural attenuation and potential implications for human health. Water Research X, 1, 100007 (12 pp.). https://doi.org/10.1016/j.wroa.2018.100007
Verteilung anthropogen eingetragener Stoffe im Grundwasser: ein Fallbeispiel aus der Nordschweiz
Moeck, C., Radny, D., Huggenberger, P., Affolter, A., Auckenthaler, A., Hollender, J., … Schirmer, M. (2018). Verteilung anthropogen eingetragener Stoffe im Grundwasser: ein Fallbeispiel aus der Nordschweiz. Grundwasser, 23(4), 297-309. https://doi.org/10.1007/s00767-018-0403-6
Solid-phase extraction as sample preparation of water samples for cell-based and other <i>in vitro</i> bioassays
Neale, P. A., Brack, W., Aït-Aïssa, S., Busch, W., Hollender, J., Krauss, M., … Escher, B. I. (2018). Solid-phase extraction as sample preparation of water samples for cell-based and other in vitro bioassays. Environmental Science: Processes and Impacts, 20(3), 493-504. https://doi.org/10.1039/C7EM00555E
Flussrevitalisierungsforschung. Wissenschaftliche Erkenntnisse zweier Forschungsprojekt im Einzugsgebiet der Thur
Radny, D., Schirmer, M., Luster, J., Guenat, C., Perona, P., Bayer, P., … Baumann, M. (2018). Flussrevitalisierungsforschung. Wissenschaftliche Erkenntnisse zweier Forschungsprojekt im Einzugsgebiet der Thur. Aqua & Gas, 98(4), 30-38.
An integrative approach combining passive sampling, bioassays and effect-directed analysis to assess the impact of wastewater effluent
Sonavane, M., Schollée, J. E., Hidasi, A. O., Creusot, N., Brion, F., Suter, M. J. F., … Aït-Aïssa, S. (2018). An integrative approach combining passive sampling, bioassays and effect-directed analysis to assess the impact of wastewater effluent. Environmental Toxicology and Chemistry, 37(8), 2079-2088. https://doi.org/10.1002/etc.4155
Aquatic exposures of chemical mixtures in urban environments: approaches to impact assessment
de Zwart, D., Adams, W., Burgos, M. G., Hollender, J., Junghans, M., Merrington, G., … Williams, R. (2018). Aquatic exposures of chemical mixtures in urban environments: approaches to impact assessment. Environmental Toxicology and Chemistry, 37(3), 703-714. https://doi.org/10.1002/etc.3975
Towards the review of the European Union Water Framework management of chemical contamination in European surface water resources
Brack, W., Dulio, V., Ågerstrand, M., Allan, I., Altenburger, R., Brinkmann, M., … Vrana, B. (2017). Towards the review of the European Union Water Framework management of chemical contamination in European surface water resources. Science of the Total Environment, 576, 720-737. https://doi.org/10.1016/j.scitotenv.2016.10.104
Variabilität der grundwasserqualität. Einflussfaktoren für die Grundwasserqualität Flussnaher Trinkwasserfassungen
Epting, J., Huggenberger, P., Page, R. M., Besmer, M. D., Hammes, F., Radny, D., … Borer, P. (2017). Variabilität der grundwasserqualität. Einflussfaktoren für die Grundwasserqualität Flussnaher Trinkwasserfassungen. Aqua & Gas, 97(2), 30-39.
Estimating the spatial distribution of artificial groundwater recharge using multiple tracers
Moeck, C., Radny, D., Auckenthaler, A., Berg, M., Hollender, J., & Schirmer, M. (2017). Estimating the spatial distribution of artificial groundwater recharge using multiple tracers. Isotopes in Environmental and Health Studies, 53(5), 484-499. https://doi.org/10.1080/10256016.2017.1334651
Pesticides drive risk of micropollutants in wastewater-impacted streams during low flow conditions
Munz, N. A., Burdon, F. J., de Zwart, D., Junghans, M., Melo, L., Reyes, M., … Stamm, C. (2017). Pesticides drive risk of micropollutants in wastewater-impacted streams during low flow conditions. Water Research, 110, 366-377. https://doi.org/10.1016/j.watres.2016.11.001
Multivariate Statistik. Zur Optimierung des Wasserressourcen-Managements im Hardwald
Möck, C., Radny, D., Stoll, S., Borer, P., Rothardt, J., Affolter, A., … Schirmer, M. (2017). Multivariate Statistik. Zur Optimierung des Wasserressourcen-Managements im Hardwald. Aqua & Gas, 97(2), 14-20.
Integrating chemical analysis and bioanalysis to evaluate the contribution of wastewater effluent on the micropollutant burden in small streams
Neale, P. A., Munz, N. A., Aїt-Aїssa, S., Altenburger, R., Brion, F., Busch, W., … Hollender, J. (2017). Integrating chemical analysis and bioanalysis to evaluate the contribution of wastewater effluent on the micropollutant burden in small streams. Science of the Total Environment, 576, 785-795. https://doi.org/10.1016/j.scitotenv.2016.10.141
Assessment of a novel device for onsite integrative large-volume solid phase extraction of water samples to enable a comprehensive chemical and effect-based analysis
Schulze, T., Ahel, M., Ahlheim, J., Aït-Aïssa, S., Brion, F., Di Paolo, C., … Brack, W. (2017). Assessment of a novel device for onsite integrative large-volume solid phase extraction of water samples to enable a comprehensive chemical and effect-based analysis. Science of the Total Environment, 581-582, 350-358. https://doi.org/10.1016/j.scitotenv.2016.12.140
Exploring micropollutant biotransformation in three freshwater phytoplankton species
Stravs, M. A., Pomati, F., & Hollender, J. (2017). Exploring micropollutant biotransformation in three freshwater phytoplankton species. Environmental Science: Processes and Impacts, 19(6), 822-832. https://doi.org/10.1039/C7EM00100B
On biotransformation of polar organic micropollutants in phytoplankton
Stravs, M. A. (2017). On biotransformation of polar organic micropollutants in phytoplankton [Doctoral dissertation, ETH Zürich]. https://doi.org/10.3929/ethz-b-000212315
Micropollutant-induced tolerance of <I>in situ</I> periphyton: establishing causality in wastewater-impacted streams
Tlili, A., Hollender, J., Kienle, C., & Behra, R. (2017). Micropollutant-induced tolerance of in situ periphyton: establishing causality in wastewater-impacted streams. Water Research, 111, 185-194. https://doi.org/10.1016/j.watres.2017.01.016
European demonstration program on the effect-based and chemical identification and monitoring of organic pollutants in European surface waters
Tousova, Z., Oswald, P., Slobodnik, J., Blaha, L., Muz, M., Hu, M., … Schulze, T. (2017). European demonstration program on the effect-based and chemical identification and monitoring of organic pollutants in European surface waters. Science of the Total Environment, 601-602, 1849-1868. https://doi.org/10.1016/j.scitotenv.2017.06.032
 

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