Cel
SMART-Plant will scale-up in real environment eco-innovative and energy-efficient solutions to renovate existing wastewater treatment plants and close the circular value chain by applying low-carbon techniques to recover materials that are otherwise lost. 7+2 pilot systems will be optimized fore > 2 years in real environment in 5 municipal water treatment plants, inclunding also 2 post-processing facilities. The systems will be authomatisedwith the aim of optimizing wastewater treatment, resource recovery, energy-efficiency and reduction of greenhouse emissions. A comprehensive SMART portfolio comprising biopolymers, cellulose, fertilizersand intermediates will be recoveredand processed up to the final commercializable end-products. The integration of resource recovery assets to system-wide asset management programs will be evaluated in each site following the resource recovery paradigm for the wastewater treatment plant of the future, enabled through SMART-Plant solutions. The project will prove the feasibility of circular management of urban wastewater and environmental sustainability of the systems, to be demonstrated through Life Cycle Assessment and Life Cycle Costing approaches to prove the global benefit of the scaled-up water solutions. Dynamic modeling and superstructure framework for decision support will be developed and validated to identify the optimum SMART-Plant system integration options for recovered resources and technologies.Global market deployment will be achieved as right fit solution for water utilities and relevant industrial stakeholders, considering the strategic implications of the resource recovery paradigm in case of both public and private water management. New public-private partnership models will be explored connecting the water sector to the chemical industry and its downstream segments such asthe contruction and agricultural sector, thus generating new opportunities for funding, as well as potential public-private competition.
Dziedzina nauki
- inżynieria i technologiainżynieria materiałowamateriały kompozytowebiokompozyty
- inżynieria i technologiainżynieria śodowiskaprocesy uzdatniania wodyprocesy oczyszczania ścieków
- inżynieria i technologiainżynieria śodowiskazarządzanie zasobami naturalnymigospodarka wodna
- inżynieria i technologiabiotechnologia środowiskabioremediacjakompost
- nauki społeczneekonomia i biznesbiznes i zarządzaniemodel biznesowy
Program(-y)
Zaproszenie do składania wniosków
H2020-WATER-2015-two-stage
Zobacz inne projekty w ramach tego zaproszenia
System finansowania
IA - Innovation actionKoordynator
60121 Ancona
Włochy
Uczestnicy (28)
00185 Roma
UB8 3PH Uxbridge
MK43 0AL Cranfield - Bedfordshire
08290 Cerdanyola Del Valles
08500 Vic Barcelona
157 80 Athina
10709 Berlin
3060-197 Cantanhede
47012 Valladolid
WA8 3AA Widnes Cheshire
Zakończenie uczestnictwa
36031 Dueville
20200 Shefa Amr
7801 Namsos
2781-901 Oeiras
11146 Athina
31044 Montebelluna
61201 Tel Aviv
08241 Manresa
1442 LD Purmerend
Zakończenie uczestnictwa
6340 Baar
CV1 2LZ Coventry
14564 Kifisia
Zakończenie uczestnictwa
LL13 9UZ Wrexham
41092 Sevilla
8008 Zurich
36031 Dueville Vi
B90 4QT Solihull
37129 Verona