Letteratura scientifica selezionata sul tema "Ecotoxicité terrestre"
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Articoli di riviste sul tema "Ecotoxicité terrestre":
Cory, Wendy C., Allison M. Welch, Jessica N. Ramirez e Luke C. Rein. "Naproxen and Its Phototransformation Products: Persistence and Ecotoxicity to Toad Tadpoles ( Anaxyrus terrestris ), Individually and in Mixtures". Environmental Toxicology and Chemistry 38, n. 9 (12 agosto 2019): 2008–19. http://dx.doi.org/10.1002/etc.4514.
Leveque, Thibaut, Yvan Capowiez, Eva Schreck, Christophe Mazzia, Mélanie Auffan, Yann Foucault, Annabelle Austruy e Camille Dumat. "Assessing ecotoxicity and uptake of metals and metalloids in relation to two different earthworm species (Eiseina hortensis and Lumbricus terrestris)". Environmental Pollution 179 (agosto 2013): 232–41. http://dx.doi.org/10.1016/j.envpol.2013.03.066.
Yu, Shitong, e Huijuan Dong. "Uncover Cost-Benefit Disparity of Municipal Solid Waste Incineration in Chinese Provinces". Sustainability 12, n. 2 (18 gennaio 2020): 697. http://dx.doi.org/10.3390/su12020697.
Chaudhari, Sushil M., e Rohit B. Meshram. "A Comparative Life Cycle Assessment (LCA) of Gasoline Blending with Different Oxygenates in India". Nature Environment and Pollution Technology 20, n. 5 (25 dicembre 2021). http://dx.doi.org/10.46488/nept.2021.v20i05.010.
Puddephatt, Karen J., Lynda H. McCarthy e Bryant M. Serre. "Assessing the potential chronic, sublethal and lethal ecotoxicity of land-applying biosolids on Folsomia candida and Lumbricus terrestris". Ecotoxicology, 1 dicembre 2022. http://dx.doi.org/10.1007/s10646-022-02606-7.
Puddephatt, Karen J., Lynda H. McCarthy e Bryant M. Serre. "Correction to: Assessing the potential chronic, sublethal and lethal ecotoxicity of land-applying biosolids on Folsomia candida and Lumbricus terrestris". Ecotoxicology, 4 gennaio 2023. http://dx.doi.org/10.1007/s10646-022-02618-3.
Tesi sul tema "Ecotoxicité terrestre":
Schulz, Aurélie. "Analyse de l'impact du cycle de vie des NPs TiO2 manufacturées à l'échelle du site spécifiqe : cas de la vallée de la Thur, 68, France". Electronic Thesis or Diss., Strasbourg, 2020. http://www.theses.fr/2020STRAH022.
The impact of engineered TiO2 NPs was assessed using the Life cycle assessment methodology at a site-specific scale. A first approach was carried out to detect them in the environment. Experimental data collected in the field were used to characterize these nanoparticles for terrestrial ecotoxicity at a local scale. TiO2 NPs were detected in the water and sediments of the Thur river and in soils of the study area up to 2,5 km from a production site. The residence time (fate factor) of TiO2 NPs in area soils of Thann is approximately 8500 years. A specific effect factor (12,46 PAF.m3.kg-1) was also developed using date from a bibliographic synthesis on the toxicity of TiO2 NPs for organisms in terrestrial ecosystem. The determination of these two parameters allows us to calculate the first characterization factor for TiO2 NPs for terrestrial ecotoxicity in the Thann region (1,06.105 PAF.m3.an.kg-1)