AEROCOINS
AEROCOINS | |
Titre : | Aerogel-Based Composite/Hybrid Nanomaterials for Cost-Effective Building Super-Insulation Systems |
Budget : | 4 304 k€ |
Subventions : | FP7-NMP (3 000 k€) |
Sous-programme : | EeB.NMP.2010-1 |
Type de contrat : | Collaborative project (generic) |
Début : | 16 juin 2011 |
Fin : | 15 juin 2015 |
Site officiel : | http://aerocoins.eu/ |
AEROCOINS est l'acronyme du projet européen Aerogel-Based Composite/Hybrid Nanomaterials for Cost-Effective Building Super-Insulation Systems, qui a pour référence sur le service CORDIS 260141[1].
Note : Les objectifs suivants sont repris de la fiche du projet sur Cordis
- Objective
In the context of global climate control policies, improving the energy efficiency of existing buildings represents a great challenge, worldwide as well as at the European level. Reducing the energy consumption of buildings is nowadays preferably achieved by increasing the thermal resistance of the insulation layer in the building envelope. The AEROCOINs project will make a significant contribution to the future reduction of energy consumption by decreasing heating and cooling demands of existing-buildings. A clever combination of sol-gel science and nanotechnology can greatly advance design and development of novel super-insulating aero-gels.
The AEROCOINs project proposes to create a new class of mechanically strong super-insulating aerogel composite/hybrid materials by overcoming the two major obstacles which have endured for so long and have prevented a more wide-spread use of silica-based aerogel insulation components in the building industry: i) strengthening of silica aero-gels by cross-linking with cellulosic polymers or the incorporation of cellulose-based nano-fibres and ii) lowering the production cost of monolithic plates or boards of composite/hybrid aero-gel materials via ambient drying and continuous production technology.
Acting on these two incentives, new super-insulating aero-gel-based monolithic materials with improved thermo-mechanical properties will be synthesized at the laboratory scale, developed further to the pilot scale under the shape of super-insulating panels, integrated in well-suited envelope components which will then be used for energy and ageing evaluation purposes via the integration of the aero-gel-based components in a demonstration wall. In addition, a complete LCA study of the component will be realized and a fabrication concept for cost effective mass production (based on a continuous elaboration process) will be laid out for further pre-industrial development...Les partenaires du projet
Coordinateur du projet
- Fundacion tecnalia research & innovation - Derio (Espagne)
Partenaires
- Separex SA - Champigneulles (Lorraine, France) - Contact : Michel Perrut
- Teknologian tutkimuskeskus VTT - Espoo (Finlande)
- Commissariat à l'énergie atomique et aux énergies alternatives (CEA) - Paris (Île-de-France, France)
- Association pour la recherche et le développement des méthodes et processus industriels (ARMINES) - Paris (Île-de-France, France)
- Acciona infraestructuras SA - Alcobendas (Espagne)
- Eidgenoessische materialpruefungs- Und forschungsanstalt - Dübendorf (Suisse)
- Produits chimiques auxiliaires et de synthèse SA - Longjumeau (Île-de-France, France)
- Bayerisches zentrum für angewandteenergieforschung ZAE EV - Wurtzbourg (Bavière - Allemagne)
- Politechnika Lodza - Łódź (Pologne)
Financement
- Coût total du projet : 4 304 124 €
- Subvention de la Commission européenne (programme FP7-NMP) : 3 000 000 €
Dates importantes
- Date de début : 16 juin 2011
- Date de fin : 15 juin 2015
Voir aussi
Liens externes
- Le site officiel du projet
- Le site officiel de la Fundacion tecnalia research & innovation
Notes
- ↑ La fiche du projet sur CORDIS