Search results
Results: 89
Number of items: 89
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Faber, A.-H., Annevelink, M., Gilissen, H. K., Schot, P., van Rijswick, M., de Voogt, P., & van Wezel, A. (2019). How to Adapt Chemical Risk Assessment for Unconventional Hydrocarbon Extraction Related to the Water System. Reviews of Environmental Contamination and Toxicology, 246, 1-32. https://doi.org/10.1007/398_2017_10
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Faust, M., Backhaus, T., Altenburger, R., Dulio, V., van Gils, J., Ginebreda, A., Kortenkamp, A., Munthe, J., Posthuma, L., Slobodnik, J., Tollefsen, K. E., van Wezel, A., & Brack, W. (2019). Prioritisation of water pollutants: the EU Project SOLUTIONS proposes a methodological framework for the integration of mixture risk assessments into prioritisation procedures under the European Water Framework Directive. Environmental Sciences Europe, 31, Article 66. https://doi.org/10.1186/s12302-019-0239-4 -
Munthe, J., Lexén, J., Skårman, T., Posthuma, L., Brack, W., Altenburger, R., Brorström-Lundén, E., Bunke, D., Faust, M., Rahmberg, M., Sleeuwaert, F., Slobodnik, J., van Gils, J., & van Wezel, A. (2019). Increase coherence, cooperation and cross-compliance of regulations on chemicals and water quality. Environmental Sciences Europe, 31, Article 64. https://doi.org/10.1186/s12302-019-0235-8 -
Posthuma, L., Backhaus, T., Hollender, J., Bunke, D., Brack, W., Müller, C., van Gils, J., Hollert, H., Munthe, J., & van Wezel, A. (2019). Exploring the ‘solution space’ is key: SOLUTIONS recommends an early-stage assessment of options to protect and restore water quality against chemical pollution. Environmental Sciences Europe, 31, Article 73. https://doi.org/10.1186/s12302-019-0253-6 -
Sjerps, R. M. A., Kooij, P. J. F., van Loon, A., & Van Wezel, A. P. (2019). Occurrence of pesticides in Dutch drinking water sources. Chemosphere, 235, 510-518. https://doi.org/10.1016/j.chemosphere.2019.06.207 -
Faber, A.-H., Annevelink, M. P. J. A., Schot, P. P., Baken, K. A., Schriks, M., Emke, E., de Voogt, P., & van Wezel, A. P. (2019). Chemical and bioassay assessment of waters related to hydraulic fracturing at a tight gas production site. Science of the Total Environment, 690, 636-646. https://doi.org/10.1016/j.scitotenv.2019.06.354 -
Fischer, A., van Wezel, A. P., Hollender, J., Cornelissen, E., Hofman, R., & van der Hoek, J. P. (2019). Development and application of relevance and reliability criteria for water treatment removal efficiencies of chemicals of emerging concern. Water Research, 161, 274-287. https://doi.org/10.1016/j.watres.2019.05.088 -
Brack, W., Ait-Aissa, S., Backhaus, T., Birk, S., Barceló, D., Burgess, R., Cousins, I., Dulio, V., Escher, B. I., Focks, A., van Gils, J., Ginebreda, A., Hering, D., Hewitt, L. M., Hilscherová, K., Hollender, J., Hollert, H., Köck, M., Kortenkamp, A., ... Altenburger, R. (2019). Strengthen the European collaborative environmental research to meet European policy goals for achieving a sustainable, non-toxic environment. Environmental Sciences Europe, 31, Article 63. https://doi.org/10.1186/s12302-019-0232-y -
Bäuerlein, P. S., Emke, E., Tromp, P., Hofman, J. A. M. H., Carboni, A., Schooneman, F., de Voogt, P., & van Wezel, A. P. (2017). Is there evidence for man-made nanoparticles in the Dutch environment? Science of the Total Environment, 576, 273-283. https://doi.org/10.1016/j.scitotenv.2016.09.206
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