Laboratoire Eau Environnement et Systèmes Urbains (Leesu)

Recent publications

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915.
titre
Small-Size Microplastics in Urban Stormwater Runoff are Efficiently Trapped in a Bioretention Cell
auteur
Kelsey Smyth, Shuyao Tan, Tim van Seters, Johnny Gasperi, Rachid Dris, Jennifer Drake, Elodie Passeport
article
, 2024, ⟨10.1021/acsestwater.4c00037⟩
titre
Comprehensive analysis of a widely pharmaceutical, furosemide, and its degradation products in aquatic systems: Occurrence, fate, and ecotoxicity
auteur
Fidji Sandré, Régis Moilleron, Christophe Morin, Laure Garrigue-Antar
article
, 2024, 348, pp.123799. ⟨10.1016/j.envpol.2024.123799⟩
titre
Time-varying microplastic contributions of a large urban and industrial area to river sediments
auteur
E. Dhivert, J. Pruvost, T. Winiarski, Johnny Gasperi, F. Delor-Jestin, Bruno Tassin, B. Mourier
article
, 2024, 347, pp.123702. ⟨10.1016/j.envpol.2024.123702⟩
titre
Comparative Microplastic Analysis in Urban Waters Using μ-FTIR And Py-GC-MS: A Case Study in Amsterdam
auteur
Feride Öykü Sefiloglu, Cleo Stratmann, Marthinus Brits, Martin J.M. van Velzen, Quinn Groenewoud, A. Dick Vethaak, Rachid Dris, Johnny Gasperi, Marja Lamoree
article
, 2024, pp.124088. ⟨10.1016/j.envpol.2024.124088⟩
titre
COVID lockdown significantly impacted microplastic bulk atmospheric deposition rates
auteur
Max Beaurepaire, Johnny Gasperi, Bruno Tassin, Rachid Dris
article
, 2024, 344, pp.123354. ⟨10.1016/j.envpol.2024.123354⟩

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Séminaire d’Adrian Tuck le 6 octobre 2011

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Le séminaire du LEESU du 6 octobre 2011 était constitué d’une intervention d’Adrian Tuck (Professeur à l’Imperial College London, précédemment à NOAA Earth System Research Laboratory, Boulder, Colorado, et actuellement professeur invité au LEESU) intitulée "Winter Storms: Dropsondes Over the Pacific Ocean - the multifractal scaling of temperature, wind and humidity"

Le résumé de la présentation est:
"During the NOAA Winter Storms 2004-2005-2006 projects, as a result of severe flooding on the west coast of the USA, observational data were taken in the ‘vertical’ at 2 Hz from research dropsondes for temperature, wind speed and relative humidity during the 800 s it takes to reach the surface from the 13 km altitude of the National Oceanic and Atmospheric Administration (NOAA) Gulfstream 4 SP aircraft. The observations were made mainly through the depth of the troposphere above the eastern Pacific Ocean from 15˚N to 60˚N. This sizeable data set was used to characterize representatively the statistical fluctuations in the ‘vertical’ structure from 13 km to the surface. The fluctuations are resolved at 5-10 metres altitude, so covering up to 3 orders of magnitude of typical tropospheric weighting functions for passive remote sounders. Average ‘vertical’ statistical multifractal scaling exponents H, C1 and alpha of temperature, wind speed and humidity fluctuations observed at this high resolution were computed and are available as potential generators of representative, scale invariant summaries of the vertical structure of the marine troposphere. Future investigations with drone aircraft are illustrated."