Coordinatore | HELMHOLTZ-ZENTRUM GEESTHACHT ZENTRUM FUR MATERIAL- UND KUSTENFORSCHUNG GMBH
Organization address
address: Max-Planck-Strasse 1 contact info |
Nazionalità Coordinatore | Germany [DE] |
Totale costo | 4˙070˙711 € |
EC contributo | 2˙273˙682 € |
Programma | FP7-JTI
Specific Programme "Cooperation": Joint Technology Initiatives |
Code Call | FCH-JU-2011-1 |
Funding Scheme | JTI-CP-FCH |
Anno di inizio | 2012 |
Periodo (anno-mese-giorno) | 2012-04-01 - 2015-09-30 |
# | ||||
---|---|---|---|---|
1 |
HELMHOLTZ-ZENTRUM GEESTHACHT ZENTRUM FUR MATERIAL- UND KUSTENFORSCHUNG GMBH
Organization address
address: Max-Planck-Strasse 1 contact info |
DE (GEESTHACHT) | coordinator | 332˙211.00 |
2 |
INSTITUTT FOR ENERGITEKNIKK
Organization address
address: Instituttveien 18 contact info |
NO (KJELLER) | participant | 328˙128.00 |
3 |
AARHUS UNIVERSITET
Organization address
address: Nordre Ringgade 1 contact info |
DK (AARHUS C) | participant | 327˙907.00 |
4 |
"NATIONAL CENTER FOR SCIENTIFIC RESEARCH ""DEMOKRITOS"""
Organization address
address: Patriarchou Gregoriou Str. contact info |
EL (AGHIA PARASKEVI) | participant | 262˙125.00 |
5 |
UNIVERSITA DEGLI STUDI DI TORINO
Organization address
address: Via Giuseppe Verdi 8 contact info |
IT (TORINO) | participant | 254˙220.00 |
6 |
ZOZ GMBH
Organization address
address: MALTOZSTRASSE contact info |
DE (WENDEN) | participant | 237˙240.00 |
7 |
ABENGOA HIDROGENO SA
Organization address
address: "C/ Energia Solar, Campus Palmas Altas 1" contact info |
ES (SEVILLA) | participant | 230˙025.00 |
8 |
EIDGENOESSISCHE MATERIALPRUEFUNGS- UND FORSCHUNGSANSTALT
Organization address
address: Ueberlandstrasse 129 contact info |
CH (DUEBENDORF) | participant | 160˙000.00 |
9 |
KATCHEM SPOL SRO
Organization address
address: JOSEFOV ELISKY KRASNOHORSKE 6 contact info |
CZ (PRAHA 1) | participant | 141˙826.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'BOR4STORE proposes an integrated, multidisciplinary approach for the development and testing of novel, optimised and cost-efficient boron hydride based H2 storage materials with superior performance (capacity more than 8 wt.% and 80 kg H2/m^3) for specific fuel cell applications.
Building on the results of past and ongoing EC funded projects on H2 storage, BOR4STORE aspires to tackle the S&T challenges that still hinder the practical use of the extremely attractive boron hydrides. The technical objectives of the project reflect an innovative and carefully designed strategy involving (a) new methods for the synthesis and modification of stable and unstable boron hydrides, as well as their combinations resulting in Reactive Hydride Composites and eutectic mixtures, (b) systematic and rationalised investigation of the effect of special catalysts and additives, and (c) adaptation of scaffolding concepts, in an attempt to use all possible ways for understanding and tailoring the key aspects of boron hydrides H2 storage performance (storage capacity, reaction pathways and enthalpies, hydrogenation/dehydrogenation kinetics, cycling stability).
The most promising material(s), to be indicated by rigorous a downselection processes, will be used for the development of a prototype laboratory H2 storage system that will be integrated and tested in connection with a 1 kW SOFC (representative for fuel cell applications e.g. for stationary power supply).
Special attention will be given, practically for the first time, to significant cost reduction by pursuing cost efficient material synthesis and processing methods (target material price <50 EUR /kg) but also by investigating the level of tolerable impurities of the new materials (target system price 500 EUR /kg of stored H2).'
Development and Manufacture Scoop Intake and Channel incl. ice and debris protection and acoustic absorbers
Read MoreWeather INformation Fusion and Correlation for weather and traffic situational awareness
Read MoreLORD Engine Mounting System for the SAGE2 Open-Rotor demonstrator
Read More