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  • (-) Eawag Departments = Environmental Chemistry UCHEM
  • (-) Publication Year = 2006 - 2018
  • (-) Eawag Authors ≠ Ort, Christoph
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Biomarkers' responses to reductive dechlorination rates and oxygen stress in bioaugmentation culture KB-1<sup>TM</sup>
Heavner, G. L. W., Mansfeldt, C. B., Debs, G. E., Hellerstedt, S. T., Rowe, A. R., & Richardson, R. E. (2018). Biomarkers' responses to reductive dechlorination rates and oxygen stress in bioaugmentation culture KB-1TM. Microorganisms, 6(1), 13 (15 pp.). https://doi.org/10.3390/microorganisms6010013
Swiss antibiotic resistance report 2018. Usage of antibiotics and occurrence of antibiotic resistance in bacteria from humans and animals in Switzerland
Heim, D., Kronenberg, A., Overesch, G., Plüss-Suard, C., Schüpbach, G., Bless, P., … Zimmermann-Steffens, S. (2018). Swiss antibiotic resistance report 2018. Usage of antibiotics and occurrence of antibiotic resistance in bacteria from humans and animals in Switzerland. (Report No.: 2018-OEG-87). Federal Office of Public Health.
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
Relating degradation of pharmaceutical active ingredients in a stream network to degradation in water-sediment simulation tests
Honti, M., Bischoff, F., Moser, A., Stamm, C., Baranya, S., & Fenner, K. (2018). Relating degradation of pharmaceutical active ingredients in a stream network to degradation in water-sediment simulation tests. Water Resources Research, 54(11), 9207-9223. https://doi.org/10.1029/2018WR023592
Performance of combined fragmentation and retention prediction for the identification of organic micropollutants by LC-HRMS
Hu, M., Müller, E., Schymanski, E. L., Ruttkies, C., Schulze, T., Brack, W., & Krauss, M. (2018). Performance of combined fragmentation and retention prediction for the identification of organic micropollutants by LC-HRMS. Analytical and Bioanalytical Chemistry, 410(7), 1931-1941. https://doi.org/10.1007/s00216-018-0857-5
Seasonal dynamics of glyphosate and AMPA in Lake Greifensee: rapid microbial degradation in the epilimnion during summer
Huntscha, S., Stravs, M. A., Bühlmann, A., Ahrens, C. H., Frey, J. E., Pomati, F., … Poiger, T. (2018). Seasonal dynamics of glyphosate and AMPA in Lake Greifensee: rapid microbial degradation in the epilimnion during summer. Environmental Science and Technology, 52(8), 4641-4649. https://doi.org/10.1021/acs.est.8b00314
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
Formation of brominated trihalomethanes during chlorination or ozonation of natural organic matter extracts and model compounds in saline water
Liu, Z. Q., Shah, A. D., Salhi, E., Bolotin, J., & von Gunten, U. (2018). Formation of brominated trihalomethanes during chlorination or ozonation of natural organic matter extracts and model compounds in saline water. Water Research, 143, 492-502. https://doi.org/10.1016/j.watres.2018.06.042
Integrative crop-soil-management modeling to assess global phosphorus losses from major crop cultivations
Liu, W., Yang, H., Ciais, P., Stamm, C., Zhao, X., Williams, J. R., … Schulin, R. (2018). Integrative crop-soil-management modeling to assess global phosphorus losses from major crop cultivations. Global Biogeochemical Cycles, 32(7), 1074-1086. https://doi.org/10.1029/2017GB005849
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
Environmental exposure of anthropogenic micropollutants in the Prut River at the Romanian-Moldavian border: a snapshot in the lower Danube river basin
Moldovan, Z., Marincas, O., Povar, I., Lupascu, T., Longree, P., Simovic Rota, J., … Alder, A. C. (2018). Environmental exposure of anthropogenic micropollutants in the Prut River at the Romanian-Moldavian border: a snapshot in the lower Danube river basin. Environmental Science and Pollution Research, 25(31), 31040-31050. https://doi.org/10.1007/s11356-018-3025-8
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
Internal concentrations in gammarids reveal increased risk of organic micropollutants in wastewater-impacted streams
Munz, N. A., Fu, Q., Stamm, C., & Hollender, J. (2018). Internal concentrations in gammarids reveal increased risk of organic micropollutants in wastewater-impacted streams. Environmental Science and Technology, 52(18), 10347-10358. https://doi.org/10.1021/acs.est.8b03632
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
Comparison of different types of landfill leachate treatments by employment of nontarget screening to identify residual refractory organics and principal component analysis
Pastore, C., Barca, E., Del Moro, G., Di Iaconi, C., Loos, M., Singer, H. P., & Mascolo, G. (2018). Comparison of different types of landfill leachate treatments by employment of nontarget screening to identify residual refractory organics and principal component analysis. Science of the Total Environment, 635, 984-994. https://doi.org/10.1016/j.scitotenv.2018.04.135
Pflanzenschutzmitteleinträge durch Erosion und Abschwemmung reduzieren
Prasuhn, V., Doppler, T., Spycher, S., & Stamm, C. (2018). Pflanzenschutzmitteleinträge durch Erosion und Abschwemmung reduzieren. Agrarforschung Schweiz, 9(2), 44-51.
Réduire les apports de produits phytosanitaires dus à l&#039;érosion et au ruissellement
Prasuhn, V., Doppler, T., Spycher, S., & Stamm, C. (2018). Réduire les apports de produits phytosanitaires dus à l'érosion et au ruissellement. Recherche Agronomique Suisse, 9(2), 44-51.
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.
Simultaneous exposure to a pulsed and a prolonged anthropogenic stressor can alter consumer multifunctionality
Salo, T., Räsänen, K., Stamm, C., Burdon, F. J., & Seppälä, O. (2018). Simultaneous exposure to a pulsed and a prolonged anthropogenic stressor can alter consumer multifunctionality. Oikos, 127(10), 1437-1448. https://doi.org/10.1111/oik.05310
Non-target screening to trace ozonation transformation products in a wastewater treatment train including different post-treatments
Schollée, J. E., Bourgin, M., von Gunten, U., McArdell, C. S., & Hollender, J. (2018). Non-target screening to trace ozonation transformation products in a wastewater treatment train including different post-treatments. Water Research, 142, 267-278. https://doi.org/10.1016/j.watres.2018.05.045