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CORDIS - Résultats de la recherche de l’UE
CORDIS

Climate-resilient management for safe disinfected and non-disinfected water supply systems

CORDIS fournit des liens vers les livrables publics et les publications des projets HORIZON.

Les liens vers les livrables et les publications des projets du 7e PC, ainsi que les liens vers certains types de résultats spécifiques tels que les jeux de données et les logiciels, sont récupérés dynamiquement sur OpenAIRE .

Livrables

Data Management Plan - initial (s’ouvre dans une nouvelle fenêtre)

The data management plan ensures that SafeCREW's data follows the FAIR guidelines and adheres to the Guidelines to the Rules on the Open Access to Scientific Publications and Open Data Access to Research Data in Horizon Europe. The initial plan will be prepared. (Task 6.2)

Advanced analytical procedures for the characterization of disinfection by-products and methodology for remote sensing of natural organic matter (s’ouvre dans une nouvelle fenêtre)

"This deliverable will present a novel analytical method to identify previously unknown disinfection by-products in drinking water based on an emerging analytical instrument, supercritical fluid chromatography-high resolution mass spectrometry. This deliverable will also introduce a method to measure the natural organic matter in large scale surface water using remote sensing data in CS #3. (Tasks 1.1, 1.3)"

Summary of communication and clustering activities in year 1 (s’ouvre dans une nouvelle fenêtre)

Envisaged as a common deliverable with EU project under the same call topic if it fits into their objectives. This deliverable will summarize clustering activities with “sister projects” as well as communication, dissemination and cooperation activities of the first year. It builds on DoA, section 2.2, tables 2.2c and 2.2d, (Task 5.2, 5.5)

Robust analytical methods to comprehensively characterise natural organic matter and related disinfection by-products formation potential (s’ouvre dans une nouvelle fenêtre)

This deliverable will present a comprehensive analytical procedure for characterizing natural organic matter in drinking water by combining different analytical tools such as Fourier transform-ion cyclotron resonance mass spectrometry, size exclusion chromatography, and fluorescence spectroscopy. The characteristic of natural organic matter will also be associated with the formation potential of disinfection by-products. (Task 1.2)

Test protocol for effect-based in-vitro toxicity assessment of disinfection by-products (s’ouvre dans une nouvelle fenêtre)

This protocol is a human cell-based bioassay for the toxicity assessment of disinfection by-products and will be applied to evaluate the health effects of disinfection approaches in drinking water production. (Task 1.4)

Project website and flyer release (s’ouvre dans une nouvelle fenêtre)

Publication of the first communication pack. Project website will be online, project flyer (pdf) and press release on project start will be published. Visual branding will be defined. Screenshots, images and links will document this deliverable. (Task 5.2)

Publications

ZeroPollution4Water Cluster: The overview and the inventory of 32 case studies in drinking and groundwater (s’ouvre dans une nouvelle fenêtre)

Auteurs: European Research Executive Agency, Remmert-Rieper, M., Meilmann, D., Martins, R., Charpentier, L. et al.,
Publié dans: 2025
Éditeur: Publications Office of the European Union
DOI: 10.2848/3536872

Characterizing Macroporous Ion Exchange Membrane Adsorbers for Natural Organic Matter (NOM) Removal—Adsorption and Regeneration Behavior (s’ouvre dans une nouvelle fenêtre)

Auteurs: Jon Wullenweber, Julia Bennert, Tomi Mantel, Mathias Ernst
Publié dans: Membranes, Numéro 14(6), 2024, ISSN 2077-0375
Éditeur: Molecular Diversity Preservation International
DOI: 10.3390/membranes14060124

Formation of regulated and novel disinfection by-products during chlorine and chlorine dioxide disinfection of surface water and groundwater (s’ouvre dans une nouvelle fenêtre)

Auteurs: Maolida Nihemaiti, Jon Wullenweber, Mattia Stefanoni, Laura Kahle, Oliver J. Lechtenfeld, Beatrice Cantoni, Manuela Antonelli, Mathias Ernst, Thorsten Reemtsma
Publié dans: Water Research, 2025, ISSN 0043-1354
Éditeur: Elsevier BV
DOI: 10.1016/J.WATRES.2025.124996

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