STAR ELITE (Q141589)

From EU Knowledge Graph
Revision as of 13:48, 12 October 2020 by DG Regio (talk | contribs) (‎Created claim: summary (P836): This project is part of a specialisation area: DPS – Environmental engineering and metrology for highly resource-consuming activities. It is also part of the strategic activities of the DREAM cluster: alternative water and soil treatments (DAS 3); the pole strongly supports this project. It has been labelled by the competitiveness cluster VEGEPOLYS, because it is part of the enhancement of plant properties (filter properties) and the use of envi...)
Jump to navigation Jump to search
Project in France financed by DG Regio
Language Label Description Also known as
English
STAR ELITE
Project in France financed by DG Regio

    Statements

    0 references
    86,531.79 Euro
    0 references
    288,307.0 Euro
    0 references
    30.01 percent
    0 references
    1 June 2016
    0 references
    31 May 2019
    0 references
    J.VOISIN
    0 references
    0 references

    47°31'46.99"N, 0°33'17.86"E
    0 references
    37360
    0 references
    Ce projet s’inscrit dans un domaine de spécialisation : DPS - Ingénierie et métrologie environnementales pour les activités fortement consommatrices de ressources naturelles. Il s’inscrit également dans le domaine d’activités stratégiques du pôle DREAM : traitements alternatifs des eaux et des sols (DAS 3) ; le pôle soutient fortement ce projet. Il a été labellisé par le pôle de compétitivité VEGEPOLYS, car s’inscrivant dans la valorisation des propriétés des végétaux (propriétés de filtres) et l’utilisation de méthodes respectueuses de l’environnement pour doper leur croissance et leurs performances. Le projet STAR ELITE vise à proposer une solution de phytoépuration optimisée et innovante dont les coûts d’investissement, d’exploitation et d’entretien seront nettement inférieurs à ceux des autres types de stations d’épuration utilisées par les cibles visées : -petites et moyennes collectivités jusqu’à 5000 Equivalent Habitant, -privés tels que les villages de vacances, les campings, -industriels et en premier lieu, les industries agro-alimentaires, -exploitations agricoles et en particulier, viticoles. Deux types d’intensifications seront apportés : application d’une aération forcée dans la zone saturée en fond de filtres et application de la bio-augmentation aux roseaux afin de favoriser leur croissance. Les objectifs de ces innovations sont : -d’améliorer le traitement de l’azote – passer de 30% à plus de 85% de rendement sur l’azote total (meilleure dénitrification), (French)
    0 references
    This project is part of a specialisation area: DPS – Environmental engineering and metrology for highly resource-consuming activities. It is also part of the strategic activities of the DREAM cluster: alternative water and soil treatments (DAS 3); the pole strongly supports this project. It has been labelled by the competitiveness cluster VEGEPOLYS, because it is part of the enhancement of plant properties (filter properties) and the use of environmentally friendly methods to boost their growth and performance. The STAR ELITE project aims to offer an optimised and innovative plant treatment solution whose investment, operation and maintenance costs will be significantly lower than those of other types of sewage treatment plants used by the target targets: Small and medium-sized communities up to 5000 Equivalent Inhabitant, -private such as holiday villages, campsites, industrial and, in the first place, agri-food industries, -agricultural holdings and in particular, wine-growing. Two types of intensifications will be provided: application of forced aeration in the saturated area at the bottom of filters and application of bio-increase to reeds to promote their growth. The objectives of these innovations are: —improve nitrogen treatment – increase from 30 % to more than 85 % yield on total nitrogen (better denitrification), (English)
    12 October 2020
    0 references
    The experimental platform for wastewater treatment by bio-enhanced and augmented plant filters. (English)
    OPURE/ Joëlle Paing (2017)
    0 references

    Identifiers

    2180
    0 references
    5274
    0 references