Search results
Results: 16
Number of items: 16
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van de Loosdrecht, N. C. J., Visser, P. M., de Baat, M. L., Vermeij, M. J. A., & de Goeij, J. M. (2026). Macroalgal δ15N indicates land-derived elemental pollution on nearshore coral reefs of Curaçao, southern Caribbean. Marine Pollution Bulletin, 223, Article 118967. https://doi.org/10.1016/j.marpolbul.2025.118967 -
Boonstra, H., de Baat, M. L., van der Meer, F., Besselink, H., Roessink, I., & Kraak, M. H. S. (2025). Capturing temporal variation in aquatic ecotoxicological risks: Chemical- versus effect-based assessment. Science of the Total Environment, 967, Article 178797. https://doi.org/10.1016/j.scitotenv.2025.178797 -
Specker, J. C., Praetorius, A., de Baat, M. L., Sutton, N. B., & van Wezel, A. P. (2025). Risk characterisation of chemicals of emerging concern in real-life water reuse applications. Environment International, 195, Article 109226. https://doi.org/10.1016/j.envint.2024.109226 -
de Jong, C., van Os, I., Sepúlveda-Rodríguez, G., de Baat, M. L., & Schoepf, V. (2025). High-resolution temporal assessment of physicochemical variability and water quality in tropical semi-enclosed bays and coral reefs. Science of the Total Environment, 968, Article 178810. https://doi.org/10.1016/j.scitotenv.2025.178810 -
Hof, M., de Baat, M. L., Noorda, J., Peijnenburg, W. J. G. M., van Wezel, A. P., & Oomen, A. G. (2024). Informing the public about chemical mixtures in the local environment: Currently applied indicators in the Netherlands and ways forward. Journal of Environmental Management, 368, Article 122108. https://doi.org/10.1016/j.jenvman.2024.122108 -
Pronk, T. E., Hoondert, R. P. J., Kools, S. A. E., Kumar, V., & de Baat, M. L. (2024). Bioassay predictive values for chemical health risks in drinking water. Environment International, 188, Article 108733. https://doi.org/10.1016/j.envint.2024.108733 -
de Baat, M. L., Narain, D. M., de Weert, J., Giesen, D., Beeltje, H., Hamers, T., Helmus, R., de Voogt, P., & Kraak, M. H. S. (2024). Passive sampler housing and sorbent type determine aquatic micropollutant adsorption and subsequent bioassay responses. Environmental Pollution, 357, Article 124488. https://doi.org/10.1016/j.envpol.2024.124488 -
Weenink, E. F. J., Kraak, M. H. S., van Teulingen, C., Kuijt, S., van Herk, M. J., Sigon, C. A. M., Piel, T., Sandrini, G., Leon-Grooters, M., de Baat, M. L., Huisman, J., & Visser, P. M. (2022). Sensitivity of phytoplankton, zooplankton and macroinvertebrates to hydrogen peroxide treatments of cyanobacterial blooms. Water Research, 225, Article 119169. https://doi.org/10.1016/j.watres.2022.119169 -
Wieringa, N., van der Lee, G. H., de Baat, M. L., Kraak, M. H. S., & Verdonschot, P. F. M. (2022). Contribution of sediment contamination to multi-stress in lowland waters. Science of the Total Environment, 844, Article 157045. https://doi.org/10.1016/j.scitotenv.2022.157045 -
Nguyen, M. T., De Baat, M. L., Van Der Oost, R., Van Den Berg, W., & De Voogt, P. (2021). Comparative field study on bioassay responses and micropollutant uptake of POCIS, Speedisk and SorbiCell polar passive samplers. Environmental toxicology and pharmacology, 82, Article 103549. https://doi.org/10.1016/j.etap.2020.103549
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