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  1. Progetti

BAROLO C - Progetto n.826013 UE H2020 "IMPRESSIVE" (General MGA Multi - Joint Action 3)

Progetto
Laminated glass is obtained by bonding glass layers using a polymeric interlayer. Polyvinyl Butyral (PVB) is used as interlayer in laminated glass and their use in construction components is growing, therefore the end-of-life should be addressed. In EU, glass waste from Renovation and Demolition are quantified on 1.540.704 tons/year. The proper recycling of all building glass waste could avoid 925.000 tons of landfilled waste every year. Up to now, most of the post-consume PVB material in laminated glass is incinerated/landfilled, and only a 9 % is recycled in secondary uses. Recycling of PVB present several difficulties related with the contents of glass, humidity, mixing of compositions and polymer optical degradation which impede reusing as interlayer. SUNRISE will demonstrate within the current glass recycling business the application of an innovative optical multi-sensor sorting tool based on industrial in-line techniques (Raman, IRS, Fluorescence and Optical Spectroscopy) and AI algorithms which will allow optimal classification of laminated glass according to composition and degradation. Therefore, allowing the tailored mechano-chemical treatment for purification which will enable the post-consume PVB recycling and reusing as interlayer film. In order to ensure the success, the project counts with glass recycling associations and companies and main actors in mechano-chemical treatment of PVB and optical in-line systems. Industrials partners will validate the suitability of the final products in a market environment. Other transdisciplinary aspects will be incorporated including modelling, health, safety and environmental issues, dissemination & exploitation and standardisation. The success of SUNRISE will increase the European market in 360 million €/year by the proper collection and recycling of 1.250.352 tons/ year of laminated glass, which will avoid PVB wastes of more than 125.000 tons, representing benefits at economic, environmental and social level.
  • Dati Generali
  • Pubblicazioni

Dati Generali

Partecipanti

BAROLO Claudia   Responsabile scientifico  

Dipartimenti coinvolti

CHIMICA   Principale  

Tipo

H2020 Research and Innovation action

Finanziatore

EUROPEAN COMMISSION
Ente Finanziatore

Partner

Università degli Studi di TORINO

Periodo di attività

Gennaio 1, 2019 - Giugno 30, 2022

Durata progetto

42 mesi

Pubblicazioni

Pubblicazioni (3)

Structure-activity relationship in NIR photosensitizers for transparent Dye-Sensitized Solar Cells 
2023
Abstract
Open Access
Hybrid sulfurothioate-based electrolyte improving aesthetics, performance, and stability of transparent NIR-dye-sensitized solar cells 
CELL REPORTS PHYSICAL SCIENCE
2023
Articolo
Open Access
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Toward transparent and colorless Dye-Sensitized Solar Cells for non-intrusive BIPV 
2023
Contributo in Atti di convegno
Open Access
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