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Time to reveal chemical identities of polymers and UVCBs
Wang, Z., Wiesinger, H., & Groh, K. (2021). Time to reveal chemical identities of polymers and UVCBs. Environmental Science and Technology, 55(21), 14473-14476. https://doi.org/10.1021/acs.est.1c05620
NORMAN digital sample freezing platform: a European virtual platform to exchange liquid chromatography high resolution-mass spectrometry data and screen suspects in "digitally frozen" environmental samples
Alygizakis, N. A., Oswald, P., Thomaidis, N. S., Schymanski, E. L., Aalizadeh, R., Schulze, T., … Slobodnik, J. (2019). NORMAN digital sample freezing platform: a European virtual platform to exchange liquid chromatography high resolution-mass spectrometry data and screen suspects in "digitally frozen" environmental samples. Trends in Analytical Chemistry, 115, 129-137. https://doi.org/10.1016/j.trac.2019.04.008
An ecotoxicological view on neurotoxicity assessment
Legradi, J. B., Di Paolo, C., Kraak, M. H. S., van der Geest, H. G., Schymanski, E. L., Williams, A. J., … Hollert, H. (2018). An ecotoxicological view on neurotoxicity assessment. Environmental Sciences Europe, 30(1), 46 (34 pp.). https://doi.org/10.1186/s12302-018-0173-x
Risk governance: contemporary and future challenges
Klinke, A., & Renn, O. (2010). Risk governance: contemporary and future challenges. In J. Eriksson, M. Gilek, & C. Rudén (Eds.), Regulating chemical risks. European and global challenges (pp. 9-27). https://doi.org/10.1007/978-90-481-9428-5_2
Developing methods to predict chemical fate and effect endpoints for use within REACH
Fenner, K., Canonica, S., Escher, B. I., Gasser, L., Spycher, S., & Tülp, H. C. (2006). Developing methods to predict chemical fate and effect endpoints for use within REACH. Chimia, 60(10), 683-690. https://doi.org/10.2533/chimia.2006.683