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DETTAGLI PROGETTO  COMETHY
(Num. 279075)


Num. Contratto:
279075

Coordinatore: ENEA (Italia)

Responsabile ENEA: GIACONIA ALBERTO - TERIN-DEC-H2V (CASACCIA)

Ruolo ENEA: COORD

Sito Web: Sito WEB non disponibile

Programma Quadro: Settimo Programma Quadro R&ST (2007-2013)

Programma UE: JTI - Hydrogen - Joint Technology Initiatives - Idrogeno

Area Tematica: Energy - hydrogen

Tipo Progetto: CP - Progetto di collaborazione

Descrizione:

Sustainable decentralized hydrogen production requires development of efficient fuel-flexible units adaptable to renewable sources. CoMETHy aims at developing a compact steam reformer to convert reformable fuels (methane, bioethanol, glycerol, etc.) to pure hydrogen, adaptable to several heat sources (solar, biomass, fossil, refuse derived fuels, etc.) depending on the locally available energy mix. The following systems and components will be developed: • a structured open-celled catalyst for the low-temperature (< 550°C) steam reforming processes • a membrane reactor to separate hydrogen from the gas mixture • the use of an intermediate low-cost and environmentally friendly liquid heat transfer fluid (molten nitrates) to supply process heat from a multi fuel system. Reducing reforming temperatures below 550°C by itself will significantly reduce material costs. The process involves heat collection from several energy sources and its storage as sensible heat of a molten salts mixture at 550°C. This molten salt stream provides the process heat to the steam reformer, steam generator, and other units. The choice of molten salts as heat transfer fluid allows: • improved compactness of the reformer; • rapid and frequent start-up operations with minor material ageing concerns; • improved heat recovery capability from different external sources; • coupling with intermittent renewable sources like solar in the medium-long term, using efficient heat storage to provide the renewable heat when required. Methane, either from desulfurized natural gas or biogas, will be considered as a reference feed material to be converted to hydrogen. The same system is flexible also in terms of the reformable feedstock: bioethanol and/or glycerol can be converted to hydrogen following the same reforming route. The project involves RTD activities ion the single components, followed by proof-of-concept of the integrated system at the pilot scale (2 Nm2/h of hydrogen) and cost-benefit analysis.


Attività svolta da ENEA:

L'ENEA coordina il progetto ed è coinvolta in tutte le attività di ricerca, sviluppo sperimentale e dimostrazione previste nel workpackage 6 che costituiscono il piano di lavoro.


Note:

Disp.comm. 255/2013: aumento del contributo finanziario a ENEA di 85.305,08 per un totale di 436.773 euro


Posizione:
1180

Codice Atto:
0HI04

Atto di approvazione ENEA:
543/2011/COMM

Unità alla stipula:
UTRINN-STD

Costo eleggibile del Progetto: 4.318.737,80

Contributo al Progetto: 2.484.095,00



Costo eleggibile per ENEA: 676.127,00

Contributo ad ENEA: 436.773,00

Anno di stipula:
2011

Durata in mesi:
36

Data di inizio:
01-12-2011

Data di scadenza:
30-11-2014


Indice                               Costo Tot. Contr. UE
               
0 GKN SINTER METALS ENGINEERING GMBH Industrie Germania
1 IKTS FRAUNHOFER INSTITUTE FOR CERAMIC TECHNOLOGIES AND SYSTEMS Istituti di ricerca Germania
2 CERTH - CENTRE FOR RESEARCH AND TECHNOLOGY HELLAS Istituti di ricerca Grecia
3 UNIV. ARISTOTLE OF THESSALONIKI (AUTH) Università Grecia
4 ACKTAR LTD Piccole e medie imprese Israele
5 TECHNION ISRAEL INSTITUTE OF TECHNOLOGY Università Israele
6 ENEA Istituti di ricerca Italia COORD
7 PROCESSI INNOVATIVI SRL Industrie Italia
8 UNIV. CAMPUS BIOMEDICO DI ROMA Università Italia
9 UNIV. ROMA LA SAPIENZA Università Italia
10 UNIV. SALERNO Università Italia
11 ECN ENERGY RESEARCH CENTRE OF THE NETHERLANDS Istituti di ricerca Paesi Bassi

 Argomento  Macro Key  Keyword
Energy HYDROGEN AND FUEL CELLS Hydrogen production
RENEWABLE SOURCES OF ENERGY RENEWABLE SOURCES OF ENERGY

 Indice


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