Laboratoire Eau Environnement et Systèmes Urbains (Leesu)

Recent publications

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917.
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⟩

Supervisory authorities

Member of

MIDI presentation

by Daniel Thevenot - published on

MIcroorganisms: actors governing the degradation of DIuron in sewage sludge during biological treatment

Duration: 2022-2024

Project name: MIcroorganisms: actors governing the degradation of DIuron in sewage sludge during biological treatment

Project acronym: MIDI

Keywords: microorganisms, wastewater treatment plants, biological treatment, micropollutants, ecotoxicology

Project leader: My Dung Jusselme and Régis Moilleron

1. Project presentation

The omnipresence of emerging micropollutants in effluents from wastewater treatment plants (WWTP) pose a serious concern due to theirs complex toxicological and ecotoxicological for aquatic environment. During biological treatment in WWTP, organic micropollutants are exposed to multiple degradation pathways and can undergo many reactions by various kinds of microbial resources present in sewage sludge. Under the activities of these microorganisms, numerous micropollutants are transformed into the other products and/or degraded into by-products, which are more toxic than the original products. Therefore, many micropollutants are found in the effluents in higher concentrations than those in the influents. However, the interactions between microorganisms and micropollutants are not well characterized. In this case, we interest in the microbial reactions on the transformation and degradation of micropollutants during biological wastewater treatment processes.

In this study, diuron will be used as a model for the understanding of the mechanisms of transformation and degradation through microbial reactions and this can being tested for other micropollutants.

2. Project objectives

  • The first objective is to test the hypothesis that an additional quantity of diuron is produced during wastewater treatment from the transformation of precursor compounds.
  • The second objective is to study the processes of diuron degradation by the microorganisms present in the activated sludge during the biological treatment.
  • The last one is to research the microbial inoculum capable of diuron degradation in different systems of wastewater treatment.

3. Financial support

The MIDI project (2022-2024) is funded by the «Initiative Structurante Ecosphère Continentale et Côtière» from the INSU department of CNRS (EC2CO).