CORDIS proporciona enlaces a los documentos públicos y las publicaciones de los proyectos de los programas marco HORIZONTE.
Los enlaces a los documentos y las publicaciones de los proyectos del Séptimo Programa Marco, así como los enlaces a algunos tipos de resultados específicos, como conjuntos de datos y «software», se obtienen dinámicamente de OpenAIRE .
Resultado final
This deliverable will be a public summary about the three Water Safety Plants for small drinking water supply systems that will be created in the project, transferring knowledge and good practices to Ukrainian practitioners.
Guideline for monitoring water quality and management of disinfection by-products in drinking water distribution networks. (se abrirá en una nueva ventana)This guideline will allow utilities to decide on the type and frequency of water characterization when relining is adopted and also support the commissioning of renovated pipes after installation.It will also describe the developed water management tool for disinfection by-products minimization that will be based on model predictions and risk assessment. (Tasks 3.3, 3.4)
Report “Climate-resilient management for safe water supply systems” (se abrirá en una nueva ventana)Summary of the key achievements of the project targeted at water professionals and multipliers. The public report “Climate-resilient management for safe water supply systems” shall give a brief overview about the key outcomes and shall provide guidance towards the deeper insights (20 pages,including summary and compilation of training modules, workshops, webinars, access and guidance on the trainingmaterial) (Task 5.6)
CEWM roadmap: public summary (se abrirá en una nueva ventana)This deliverable will be a public summary of the roadmap for establishing the Centre of Excellence in Water Management (CEWM). It will include a mission statement, a potential management structure and an analysis of funding options, as well as general focuses of the Centre, to be used in seeking post-SafeCREW funding and collaboration opportunities.
Protocols for testing materials in contact with disinfected water, integrating batch- and continuous-flow conditions (se abrirá en una nueva ventana)This protocol will introduce adapted procedures at regulatory context to test materials in contact with drinking water, considering the leaching of chemicals from relining materials as well as their effects on disinfectants decay and formation of disinfection by-products. (Task 1.6)
Final summary of clustering, dissemination and communication activities and plans beyond project (se abrirá en una nueva ventana)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 final period. It builds on DoA, section 2.2, tables 2.2c and 2.2d, A plan for communication and dissemination beyond project duration will be defined. (Task 5.1, 5.2, 5.4, 5.5, 5.6)
"Report on seasonal bacteria fluctuation in raw water of non-disinfected case studies in Northern Germany (CS#1)" (se abrirá en una nueva ventana)"This deliverable will cover a report on seasonal bacterial numbers in non-disinfected case study sites in Northern Germany (CS#1). Bacterial numbers will be tracked with flow cytometry and cultivation-based methods for comparison. (Task 2.1)"
Policy brief regarding disinfection and disinfection-by-products (se abrirá en una nueva ventana)This policy brief will summarize outcomes of WP 2, WP 3 and WP 4 on disinfection and disinfection-by-products in a well understandable and concise way and will provide policy makers and regulators with the new knowledge needed for well adapted legislation and regulation. (Task 5.4)
Report on natural organic matter transformation via ozone oxidation and advanced oxidation processes (se abrirá en una nueva ventana)"This report will cover the effect of ozone oxidation as well as the effect of advanced oxidation processes on transformation of natural organic matter in CS#3. The data includes quality and quantity of natural organic matter in full scale systems. (Tasks 2.4, 2.5)"
Advanced analytical procedures for the characterization of disinfection by-products and methodology for remote sensing of natural organic matter (se abrirá en una nueva ventana)"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)"
Public summary “Midterm achievements and lessons learned” (se abrirá en una nueva ventana)This report (2 pages) will summarize the key results achieved and open tasks and will highlight lessons learned for the improvement of technical management (Task 6.2)
Summary of communication and clustering activities in year 1 (se abrirá en una nueva ventana)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)
Midterm review of communication and dissemination activities and plans (se abrirá en una nueva ventana)This report will summarize the main communication, dissemination and clustering activities conducted until midterm of the project. It will include anecdotal impressions and outcomes of the activities as well as achievements referring to DoA, section 2.2, tables 2.2c and 2.2d and D5.1. Based on these achievements the PEDR for the last period of the project will be readjusted and defined. (Task 5.1, 5.2, 5.4, 5.5, 5.6)
Application guideline about disinfection-by-product precursor removal by different materials (se abrirá en una nueva ventana)A guideline will be established that ranks different adsorption materials and their ability to remove disinfection-by-product precursors. (Task 2.3)
A set of climate change scenarios and related impacts summarised through infographics, and guidelines for tipping point identification (se abrirá en una nueva ventana)This deliverable will include data collected through a literature survey related to relevant climate change scenarios and their impacts on source waters. Climate change scenarios will be reported in terms of expected average atmospheric and water sources temperature increase, evaporation rates increase, precipitation events frequency and quantity variation. The estimated impacts of these climate change scenarios on drinking water sources quality parameters (e.g. DOC, NOM concentration, DBPs formation potential) will be described for each simulated scenario. Finally, guidelines will be reported to explain how to use the correlations found between climate change scenarios and related impacts to identify future tipping points, that are situations at which the drinking water supply system needs changes in disinfection management. The deliverable will also include infographics to easily visualize the data. (Task 4.1)
State of DW production in western Ukraine & future outlook (se abrirá en una nueva ventana)This report on status quo of drinking water treatment in Ukraine will include the structure/organization of water supply, the types and quality of source waters, the status and quality of drinking water treatment. It will also describe whether standards for approval of treatment materials and materials in contact with drinking water exist and which are existing Research&Development institutes and their focuses and possible knowledge gaps. The questions what the impact of war on water supply has been will be answered as well as differences in parameters and guidance values between European and Ukrainian drinking water legislation shown.
Robust analytical methods to comprehensively characterise natural organic matter and related disinfection by-products formation potential (se abrirá en una nueva ventana)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)
Report on material properties of conductive membrane for optimal disinfection by-product precursor removal (se abrirá en una nueva ventana)"In order to develop a chemical-free natural organic matter removal technique based on electro-sorption in CS #1, a suitable UF membrane has to be selected as a first step. The material properties of the membrane will be described in this deliverable as an important step of task 2.2. Membrane material description will include for example: type of polymer of membrane support and filtration layer, molecular weight cut-off and intrinsic charge (zeta-potential) of the membrane."
Test protocol for effect-based in-vitro toxicity assessment of disinfection by-products (se abrirá en una nueva ventana)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)
Guidelines to develop and validate soft sensors for target contaminants, as backbone of an early-warning system (se abrirá en una nueva ventana)This guideline will provide instructions over the planning of the monitoring campaign, useful to collect valuable data and information for the development of soft-sensors, which are virtual sensors mimicking physical sensors. Moreover, this guideline will report the soft-sensors development steps, including the used AI techniques, code details, and validation methods. Finally, this guideline will allow utilities to use already available data, even not specific for targeting disinfection by-products, to manage their systems in real time in order to optimize disinfection. (Task 4.2)
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)
Data Management Plan - midterm (se abrirá en una nueva ventana)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 intial plan will be updated at midterm. (Task 6.2)
Data Management Plan - final (se abrirá en una nueva ventana)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 final plan will be prepared. (Task 6.2)
This policy brief will present the main findings of the research project, providing evidence-based policy and management advice for the transition from non-disinfected to disinfected networks. In particular, it will provide decision makers and utilities with the best practices to test and apply the most effective techniques identified during the project to prevent, reduce and manage DBPs in the drinking water treatment plants and in the distribution network.(Task 4.4)
An integrated modelling framework for risk management optimization, combining Effect-Based-Trigger, Quantitative Microbial Risk Assessment and Quantitative Chemical Risk Assessment (se abrirá en una nueva ventana)This deliverable will describe the steps performed to combine results coming from the three methodologies in a unique risk-based approach, able to provide indications of the overall risk associated disinfection management scenarios. Moreover, it will present examples from the investigated case studies to show the potential of this combination in optimizing the risk management over the system. The deliverable will also include infographics to easily visualize data and outputs. (Task 4.3)
Disinfection-by-product prediction models. (se abrirá en una nueva ventana)"This deliverable will describe the modelling strategy developed and implemented in the site of Tarragona, CS #3, to predict the disinfection by-products along the distribution network.(Task 3.3)"
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)
Publicaciones
Autores:
Nihemaiti, Maolida; Ruhl, Aki Sebastian; Behnisch, Peter Alexander; Fargas-Marques, Andreu; Jubany, Irene; ANTONELLI, Manuela; McInnes, Andrew; Reemtsma, Thorsten
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18852424
Autores:
Nihemaiti, Maolida
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18853651
Autores:
Behnisch, Peter Alexander
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18853700
Autores:
Arca, Massimiliano; Epifani, Ilenia; Trovò, Francesco; Lange Souza Borges Dos Santos, Danillo; Martynov, Serhii; Kupchyk, Larysa
Editor:
SafeCREW
DOI:
10.5281/ZENODO.18965943
Autores:
Nihemaiti, Maolida
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18852970
Autores:
Langenbach, David
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18864855
Autores:
Behnisch, Peter Alexander; Grieb, Anissa; Ernst, Mathias; Remmert-Rieper, Margarete
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18847521
Autores:
Kalweit, Cynthia; ANTONELLI, Manuela; Ernst, Mathias; Fargas-Marques, Andreu; Jubany, Irene; Martynov, Serhii
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18852789
Autores:
Punta, CARLO
Editor:
SafeCREW project
DOI:
10.5281/ZENODO.18864996
Autores:
David Langenbach, Cynthia Kalweit, Dominik Kaczmarek, Aki S. Ruhl
Publicado en:
ACS ES&T Water, Edición 6, 2026, ISSN 2690-0637
Editor:
American Chemical Society (ACS)
DOI:
10.1021/ACSESTWATER.5C01355
Autores:
Serhii Martynov, Serhii Klimov, Alla Kucherova
Publicado en:
Problems of Water supply, Sewerage and Hydraulic, 2025, ISSN 2524-0021
Editor:
Kyiv National University of Construction and Architecture
DOI:
10.32347/2524-0021.2025.52.74-80ZENODO.ORG/RECORDS/19563397
Autores:
Jon Wullenweber, Julia Bennert, Tomi Mantel, Mathias Ernst
Publicado en:
Membranes, Edición 14(6), 2024, ISSN 2077-0375
Editor:
Molecular Diversity Preservation International
DOI:
10.3390/membranes14060124
Autores:
Ehsan Ranjbar, Dominik Kaczmarek, Hamed Khorasani, Aki Sebastian Ruhl
Publicado en:
Water Research, Edición 288, 2025, ISSN 0043-1354
Editor:
Elsevier BV
DOI:
10.1016/J.WATRES.2025.124673
Autores:
Maolida Nihemaiti, Jon Wullenweber, Mattia Stefanoni, Laura Kahle, Oliver J. Lechtenfeld, Beatrice Cantoni, Manuela Antonelli, Mathias Ernst, Thorsten Reemtsma
Publicado en:
Water Research, 2025, ISSN 0043-1354
Editor:
Elsevier BV
DOI:
10.1016/J.WATRES.2025.124996
Autores:
Jon Wullenweber, Shahrokh Vahedi, Julia Bennert, Mathias Ernst
Publicado en:
Journal of Water Process Engineering, Edición 85, 2026, ISSN 2214-7144
Editor:
Elsevier BV
DOI:
10.1016/J.JWPE.2026.109770
Autores:
Nihemaiti, Maolida; Wullenweber, Jon; Stefanoni, Mattia; Kahle, Laura; Lechtenfeld, Oliver J.; Cantoni, Beatrice; Antonelli, Manuela; Ernst, Mathias; Reemtsma, Thorsten
Publicado en:
Water Research, Edición Volume 290, 2026, ISSN 0043-1354
Editor:
Elsevier BV
DOI:
10.1016/J.WATRES.2025.124996
Autores:
European Research Executive Agency, Remmert-Rieper, M., Meilmann, D., Martins, R., Charpentier, L. et al.,
Publicado en:
2025
Editor:
Publications Office of the European Union
DOI:
10.2848/3536872
Autores:
P. Behnisch, H. Besselink, J. Wullenweber, B. Cantoni, M. Antonelli, M. Ernst, A. Grieb, M. Magna
Publicado en:
Toxicology Letters
Editor:
Elsevier
DOI:
10.1016/J.TOXLET.2025.07.1048
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