Acronym:
GEREMIA Funding:
Interreg Marittimo Short Overview:
GEREMIA’s general objective is to train and support, through innovative tools, the harbour’s stakeholders. The harmonization of the workpackages dedicated to detection, monitoring, analysis on wide scale and modelling will lead to a Decison Support System (DSS), specifically developped for harbour waters. GEREMIA will allow not only provide an innovative management strategies but also their application in various harbours: (…)
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2021
Articles
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Gestione dei reflui per il miglioramento delle acque portuali
13 June 2019, by Hugues BRISSET -
IBRAHIM Farah
18 September 2020Research Topics
CHEMISTRY OF FUNCTIONAL POLYMERS -
MicroplastiX
19 October 2020, by JFBAcronym :
MicroplastiX Funding :
JPI OCEANS (EU) Short Overview:
Integrated approach to the fate of Microplastics (MPs) towards healthy marine ecosystems : MicroplastiX is an international interdisciplinary project bringing together 15 partners from 7 countries. The main goal of the project is to improve our understanding of the degradation mechanisms that affect microplastics (MPs) in environmental conditions, an issue of pressing urgency on which there is still relatively scarce (…) -
Quorum sensing interference in Pseudomonas and related strains isolated from marine ecosystems
21 October 2020Acronym :
SENPSEUDOMAR Funding:
PHC TASSILI Short Overview:
This project aims at better understand how Pseudomonas strains found in marine environment survive in particular in complex biofilms and to evaluate approaches that could limit their development. Involved MAPIEM permanent members: MOLMERET Maëlle BARAQUET Claudine BLACHE YvesPartners:Nom de l’organisation partenaire
Géomatique, Ecologie Et Environnement (GEE), Université Mustapha STAMBOULI Mascara Algeria
MELIANI Amina (…) -
Study of marine biofilms as bio-indicators of seawater quality in costal Mediterranean environments
7 October 2021, by RBBeginning: October 2021
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Accounting for BIOfouling through established Protocols of quantification +
13 June 2019, by Hugues BRISSETAcronym:
ABIOP+ Funding:
France Energie Marine – ANR (Investissements d’Avenir) Short overview:
Caractériser qualitativement et quantitativement le biofouling en fonction des sites EMR et des composants concernés grâce à des protocoles innovants, peu couteux et applicables au niveau mondial, reposant sur de solides analyses de données. Involved MAPIEM permanent members: BRESSY Christine BRIAND Jean-FrançoisPartners: France Énergies Marines (FEM, Brest) Ifremer (Brest) Université de (…) -
Clean Antifouling Coating (REVêtement Antifouling Propres)
3 July 2018, by Hugues BRISSETAcronym :
REVAP Funding:
Programme de soutien à la Recherche (PSR-SIIRI) du ministère Economie, Science et Innovation du Quebec Short Overview:
The aim of the REVAP project will be to assess the antifouling efficacy of a new type of coating based on xerogel and consequently environmentally friendly. This three years project, initiated by Pr Karine Lemarchand (UQAR/ISMER Rimouski, QC) will be achieved in collaboration with Dr. Jean-François Briand (UTLN, France) and the Mirapakon (…) -
Bioindication of Mediterranean coastal environments associated with biofilms
30 March 2021, by JFBAcronym :
BIOFINDIC Funding :
Agence de l’Eau RMC Short Overview:
L’objectif du projet est d’étudier le potentiel des biofilms comme outil de bioindication de la qualité des masses d’eau méditerranéennes côtières. Elle repose sur deux parties complémentaires : (1) une étude directement couplée à la campagne en mer SUCHIMED, opéré par l’IFREMER, sur les biofilms qui auront colonisés 150 plaques A4 en PE immergées du 16 mars au 7 juillet 2021 sur 50 sites le long des 1800 km des côtes (…) -
Design of biosourced and self-healing protective coatings for the marine environment and studies of their durability
14 December 2021, by RBBeginning: November 2021
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Control of biological and mineral fouling on ships
1 September 2020Acronym :
ExUS Funding:
FUI 25 Short Overview:
The ExUS project aims to develop an ecological alternative system for the prevention of mineral and bacterial deposits on the ships hulls and in heat exchangers, based on the use of ultrasonic guided waves associated with the heterodyne effect of multiple frequencies. Involved MAPIEM permanent members: MARGAILLAN AndréPartners: Sofchem MCI NOVALL Barriquand LRGP
Laboratoire MAPIEM (UR 4323)