Coordinatore | STIFTELSEN SINTEF
Organization address
address: Strindveien 4 contact info |
Nazionalità Coordinatore | Norway [NO] |
Totale costo | 11˙922˙930 € |
EC contributo | 8˙234˙108 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2013-LARGE-7 |
Funding Scheme | CP-IP |
Anno di inizio | 2014 |
Periodo (anno-mese-giorno) | 2014-01-01 - 2017-12-31 |
# | ||||
---|---|---|---|---|
1 |
STIFTELSEN SINTEF
Organization address
address: Strindveien 4 contact info |
NO (TRONDHEIM) | coordinator | 1˙235˙034.00 |
2 |
CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE
Organization address
address: Rue Michel -Ange 3 contact info |
FR (PARIS) | participant | 976˙745.00 |
3 |
UNIVERSITEIT GENT
Organization address
address: SINT PIETERSNIEUWSTRAAT 25 contact info |
BE (GENT) | participant | 847˙720.00 |
4 |
B.T.G. BIOMASS TECHNOLOGY GROUP BV
Organization address
address: Josink Esweg 34 contact info |
NL (ENSCHEDE) | participant | 839˙925.00 |
5 |
STICHTING ENERGIEONDERZOEK CENTRUM NEDERLAND
Organization address
address: WESTERDUINWEG 3 contact info |
NL (PETTEN) | participant | 812˙602.00 |
6 |
PROCESS DESIGN CENTER BV
Organization address
address: CATHARINASTRAAT 21F contact info |
NL (BREDA) | participant | 682˙450.00 |
7 |
JOHNSON MATTHEY PLC.
Organization address
address: FARRINGDON STREET 25 - 5th floor contact info |
UK (LONDON) | participant | 650˙757.00 |
8 |
GRACE GMBH & CO KG
Organization address
address: IN DER HOLLERHECKE 1 contact info |
DE (WORMS) | participant | 530˙248.00 |
9 |
UNIVERSITAET STUTTGART
Organization address
address: Keplerstrasse 7 contact info |
DE (STUTTGART) | participant | 508˙567.00 |
10 |
REPSOL SA
Organization address
address: CALLE MENDEZ ALVARO 44 contact info |
ES (MADRID) | participant | 313˙233.00 |
11 |
NORGES TEKNISK-NATURVITENSKAPELIGEUNIVERSITET NTNU
Organization address
address: HOGSKOLERINGEN 1 contact info |
NO (TRONDHEIM) | participant | 282˙716.00 |
12 |
"BORESKOV INSTITUTE OF CATALYSIS, SIBERIAN BRANCH OF RUSSIAN ACADEMY OF SCIENCES"
Organization address
address: Prospect Akademika Lavrentieva 5 contact info |
RU (NOVOSIBIRSK) | participant | 262˙497.00 |
13 |
SAINT-GOBAIN CENTRE DE RECHERCHES ET D'ETUDES EUROPEEN
Organization address
address: AVENUE D ALSACE 18 LES MIROIRS 18 contact info |
FR (COURBEVOIE) | participant | 176˙714.00 |
14 |
ENI S.p.A.
Organization address
address: Piazzale Enrico Mattei 1 contact info |
IT (ROMA) | participant | 114˙900.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'To meet short term European 20-20-20 objectives and long term targets of European Energy Roadmap 2050, an energy paradigm shift is needed for which biomass conversion into advanced biofuels is essential. This new deal has challenges in catalyst development which so far hinders implementation at industrial level: Firstly, biomass is much more complex and reactive than conventional feedstock; secondly development of such catalysts is traditionally done by lengthy empirical approaches. FASTCARD aims at: -Developing a novel 'rational design' of nano-catalysts for better control; optimised based on advanced characterisation methods and systematic capture of knowledge by scalable mathematical and physical models, allowing prediction of performance in the context of bio-feedstocks; -Developing industrially relevant, insightful Downscaling methodologies to allow evaluation of the impact of diverse and variable bio-feedstocks on catalyst performance; -Addressing major challenges impacting on the efficiency and implementation of 4 key catalytic steps in biobased processes: • Hydrotreating (HT) and co-Fluid Catalytic Cracking forming the pyrolysis liquid value chain for near term implementation in existing refining units as a timely achievement of the 20-20-20 objectives: addressing challenges of selectivity and stability in HT; increased bio-oil content in co-FCC. • Hydrocarbon (HC) reforming and CO2 tolerant Fischer Tropsch (FT) forming the gasification value chain for longer term implementation in new European relevant infrastructure, representing 100% green sustainable route for Energy Roadmap 2050: addressing challenges of stability and resistance in HC reforming; stability and selectivity for FT. Advances in rational design of nano-catalysts will establish a fundamental platform that can be applied to other energy applications. The project will thus speed-up industrialisation of safer, greener, atom efficient, and stable catalysts, while improving the process efficiency.'
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