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FP7-ENERGY (5)

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Ricerca avanzata

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1
NANOSTRUCTURED ELECTROLYTE MEMBRANES BASED ON POLYMER-IONIC LIQUIDS-ZEOLITE COMPOSITES FOR HIGH TEMPERATURE PEM FUEL CELL
ID: 209481
Data di inizio: 2008-01-01, Termine: 2010-12-31
The PEMFC represents one of the most promising technologies in the field of fuel cells. One of the keys to the success of the PEMFC technology is the development of improved electrolyte membrane materials which can be produced in mass and can operate within a temperature rang...
Programme: FP7-ENERGY
Record Number: 85730
Last updated on: 2017-05-29
Innovative Dual mEmbrAne fueL Cell
[PROGETTO] IDEAL-CELL - Innovative Dual mEmbrAne fueL Cell
ID: 213389
Data di inizio: 2008-01-01, Termine: 2011-12-31
IDEAL-Cell proposes to develop a new innovative and competitive concept of a high temperature Fuel Cell, operated in the range 600-700°C, based on the junction between a PCFC anode/electrolyte part and a SOFC electrolyte/cathode, through a mixed H2 and O2 conducting porous ce...
Programme: FP7-ENERGY
Record Number: 85762
Last updated on: 2017-05-29
Understanding of Degradation Mechanisms to Improve Components and Design of PEFC
ID: 213295
Data di inizio: 2008-01-01, Termine: 2011-03-31
The main objective of the planned project DECODE is to increase the life-time of fuel cells for automotive applications. It is well-known that liquid water plays a crucial role in the degradation processes of fuel cells. However, this specific degradation influence is not add...
Programme: FP7-ENERGY
Record Number: 85759
Last updated on: 2017-05-29
Development of next generation metal based SOFC stack technology
ID: 211940
Data di inizio: 2008-04-01, Termine: 2011-12-31
Today ceramic anode-supported SOFC cells represent the state-of-the-art with respect to high-temperature fuel cells. However the use of ceramic SOFC cells inherently impose limits in terms of reliability, cost and ability to handle transients. The objective of the METSOFC pro...
Programme: FP7-ENERGY
Record Number: 88401
Last updated on: 2017-05-29
Novel Nanocomposites for Hydrogen Storage Applications
ID: 210092
Data di inizio: 2008-01-01, Termine: 2011-12-31
In order to meet the international goals for hydrogen storage materials, the work in NANOHy aims at combining the latest developments in the metal hydride field with novel concepts for tailoring materials properties. Leading expertise in the field of complex hydride synthesis...
Programme: FP7-ENERGY
Record Number: 85733
Last updated on: 2017-05-29
List retrieved on: 2018-11-17