Florent Louis, FRSC

@florentlouis59.bsky.social

Associate Professor @univlille.bsky.social Fellow RSC Subject chair #RSCposter #RSCEnv 2026 Associate Editor "Contaminants, Environment, Society" Gold medal @comeniusuni.bsky.social #ChemSky #VOCs #contaminants. Posts are my own.

Fier d'avoir contribué à la mise en place de cet accord et représenter mon Université @rechercheulille.bsky.social @univlille.bsky.social #SCF @ciccheminst.bsky.social Merci du soutien @franceaucanada.bsky.social

CNRS Hauts-de-France@cnrs-hautsdefrance.bsky.social · 3mo ago

#RésultatScientifique 🔎 | Signature d’une entente de coopération entre la Société Chimique de France et l’Institut de Chimie du Canada Félicitations @florentlouis59.bsky.social #PC2A, impulseur de cet accord ! 👏 ➡️ ottawa.office.cnrs.fr/signature-du... 👋 @cnrsingenierie.bsky.social

I am very happy to share that I have been honored to be associate editor in this new Canadian journal. Another stone in my growing French-Canada 🇫🇷 🇨🇦 network strengthening the international visibility of @univlille.bsky.social @rechercheulille.bsky.social @fst-ulille.bsky.social

Contaminants, Environment, and Society@contaminantsenvsoc.bsky.social · 7mo ago

Introducing Dr. Florent Louis (Université de Lille), Dr. William San Martín (WPI) and Dr. Rita de Cássia Franco Rêgo (UFBA), who contribute valuable insight to CES as Associate Editors! For a full list of editorial members ▶️ https://ow.ly/LEm450XXpW5 #Contaminants #EnvironmentalResearch

Profile photos and names of three associate editors for Contaminants, Environment, and Society journal on a blurred natural background.

As Associate Editor for this new journal from @cdnsciencepub.com I will be pleased to see your upcoming works dealing with the environmental fate of pollutants and contaminants in the air, water or soil.😉

Canadian Science Publishing@cdnsciencepub.com · 8mo ago

Our newest journal, Contaminants, Environment, and Society is live. Submit work on #pollutants, emerging #contaminants, environmental monitoring, or remediation to help advance knowledge. Learn more and get published ▶️ https://ow.ly/HUgs50XuoSm #EnvironmentalScience #Toxicology

Cover of Contaminants, Environment, and Society journal showing a wetland with trees and a blue sky. Announcement of submissions opening.

💚 #RSCPoster 2026.... The gift that keeps on giving! Cannot express how delighted I am to be involved in the inaugural year of Sustainable Science as a poster category. 💚

Royal Society of Chemistry@rsc.org · 9mo ago

📢 Exciting news! #RSCPoster 2026 introduces a new Sustainable Science category - spotlighting research for greener tech, responsible resource use, and a sustainable future. We can’t wait to see your innovative work! #ChemSky

Promotional image for the Royal Society of Chemistry and American Elements announcing a new category, Sustainable Science, for the #RSCPoster 2026 event. The text highlights the focus on sustainable science and provides a link for more information.

Don't miss to have a look at our last paper issued in The Journal of Physical Chemistry A pubs.acs.org/doi/10.1021/... Fruitful 🇨🇦 🇺🇾 collaboration @univlille.bsky.social @rechercheulille.bsky.social @cnrs-hautsdefrance.bsky.social @nadineborduas.bsky.social

Thermodynamic Properties of Gaseous Selenium Species of Atmospheric Interest

Selenium (Se) is an essential element for fauna, flora, and human health. Up to a third of Se can cycle through the atmosphere. The volatile organic Se species include dimethyl selenide (CH3SeCH3), dimethyl diselenide (CH3SeSeCH3), and methaneselenol (CH3SeH), and will undergo rapid atmospheric oxidation. To better constrain the fate of atmospheric Se compounds, high-level ab initio electronic structure calculations were performed to estimate the thermodynamic properties of 11 gaseous Se species (HSe•, H2Se, CH2Se, CH3SeH, •CH2SeH, CH3Se•, CH3SeSe•, CH3SeCH3, CH3Se•CH2, CH3SeSeCH3, and CH3SeSe•CH2) using their atomization reactions. Several corrections were applied to provide highly accurate calculated standard enthalpies of formation at 298 K, ΔfH°298 K. Standard molar entropy at 298 K, S°298 K, and heat capacity, Cp(T) over the temperature range 300–1500 K, from vibrational, translational, and external rotation contributions were computed using statistical thermodynamics based on the vibrational frequencies and structures obtained at the CCSD(T)/aVTZ level of theory. Hindered rotational contributions to S°298 K and Cp(T) were calculated from the energy levels, where the internal rotation potential was calculated at the MP2/aVTZ level of theory. The bond dissociation energies at 298 K for H–Se, Se–Se, and C–Se bonds in the Se molecules were derived from their calculated ΔfH°298 K values. The same protocol was applied to O and S species for comparison with Se. Their ΔfH°298 K, S°298 K, and Cp(T) values were in good agreement with the corresponding available literature data. This work provided the first thermodynamic properties for the organic Se species. The data obtained in this work could be used in chemical-transport models to assess the fate of atmospheric Se and its speciation unravelling the Se biogeochemical cycles.

pubs.acs.org

66 substances recherchées en mer, 3/4 retrouvées t au moins une fois, notre des herbicides, y compris des molécules interdites, comme l’atrazine, employée jusqu’en 2003 ou le metolachlore banni en 2023. En tout "sept herbicides présents et mesurés dans plus de 70 % des analyses en eau de mer"

Des pesticides et des substances pharmaceutiques relevés sur l’ensemble du littoral français

De 2021 à 2024, les scientifiques de l’Ifremer et du laboratoire EPOC, rattaché entre autres au CNRS, ont recherché dans l’eau de mer et dans des mollusques la présence d’une centaine de contaminants.

lemonde.fr

Looking for the pdf file for the following paper link.springer.com/article/10.1... Any help would be welcome DM open

Reactivity of hydroxyl radicals with neonicotinoid insecticides: mechanism and changes in toxicity - Photochemical & Photobiological Sciences

The reactivity of hydroxyl radicals (HO·) towards three neonicotonoid insecticides, namely imidacloprid, thiacloprid and acetamiprid was investigated. These radicals were generated by photolysis of H2O2 solutions. Flash photolysis experiments were used to determine the rate constants of 5.5 × 1010 M−1s−1, 6 × 1010 M−1s−1, and 7.5 × 1010 M−1s−1, for the reactions of HO· with acetamiprid, imidacloprid, and thiacloprid, respectively. Continuous irradiation experiments in the absence and presence of H2O2 allowed the identification and toxicity evaluation of the primary photo- and oxidation products of the insecticides. In all cases, the less toxic 6-chloronicotinic acid was found to be the major product at higher degrees of oxidation. The results reported here indicate that the half life of the insecticides due to their reaction with HO· radicals in natural aquatic reservoirs may vary between 5 h and 19 days, and therefore the hydroxyl radical-mediated oxidation may be a significant abiotic elimination route. However, elimination of the insecticide under such conditions might not improve the quality of the contaminated water, as the primary products of degradation still show considerable toxicity to Vibrio fischeri assays.

link.springer.com

Less than a month until I'll be in beautiful Victoria for #CEW2025 representing @contaminantsenvsoc.bsky.social at the @cdnsciencepub.com booth. Please make sure to stop by, or let me know if you're giving a talk you want me to see!

Contaminants, Environment, and Society@contaminantsenvsoc.bsky.social · last yr.

We can't wait to meet you at #CEW2025! Make a stop by our booth part of your conference plan and meet the Contaminants, Environment, and Society team this October in Victoria.