Description: Reactive Hydride Composites reveal great potential as hydrogen storage materials as they overcome the thermodynamic limitations hindering the use of light-weight complex hydrides. However, their sorption kinetics is still slow due to the fact that the hydrogen sorption process takes place within complex solid state reactions. It is aim of this project to explore the fundamental mechanisms involved in these reactions. For this, experimental studies on sorption kinetics, thermodynamics, crystal structure and electronic properties of the nano-structured materials are cross-linked to ab-initio calculations and theoretical modelling. The results will provide a basis to improve material properties and to develop new catalysts for hydrogen sorption. Finally, the optimization of synthesis methods and in particular the up-scaling of hydrogen storage materials preparation will be explored in collaboration with manufacturers.
Types:
SupportProgram
Origins:
/Bund/UBA/UFORDAT
Tags:
Katalysator
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Wasserstoff
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Verfahrensoptimierung
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Bewertung
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Energietechnik
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Studie
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Verfahrenstechnik
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Modellierung
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Bildung
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Soziale Aspekte
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Regionalentwicklung
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Zusammenarbeit
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Energie
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Nanomaterialien
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Information
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Aggregatzustand/Erscheinungsform
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Bodeneffizienz
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Coordination
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Hydrid
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Media
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Scientific Research
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Thermodynamik
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Training
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Wasserstofflagerung
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Wasserstofflogistik
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Region:
Schleswig-Holstein
Bounding boxes:
9.75° .. 9.75° x 54.2° .. 54.2°
License: cc-by-nc-nd/4.0
Language: Englisch/English
Organisations
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Eidgenössische Materialprüfungs- und Forschungsanstalt, Department Environment, Energy and Mobility, Section Hydrogen and Energy (Mitwirkung)
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European Synchrotron Radiation Facility, Materials Science Group (Mitwirkung)
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GKSS Forschungszentrum Geesthacht GmbH in der Helmholtz Gemeinschaft, Institut für Werkstoffforschung,Werkstofftechnologie (Projektverantwortung)
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Karlsruher Institut für Technologie (KIT), Institut für Nanotechnologie (Mitwirkung)
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Kommission der Europäischen Gemeinschaften Brüssel (Finanzielle Förderung)
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Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden e.V. (Mitwirkung)
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The Chancellor, Masters and Scholars of the University of Oxford, Department of Materials (Mitwirkung)
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Umweltbundesamt (Bereitstellung)
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Universita Degli Studi di Torino, NIS - Dipartimento Di Chimica I.F.M. (Mitwirkung)
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Universitat Autonoma de Barcelona, Departament de Fisica, Area de Fisica Aplicada (Mitwirkung)
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Universiteit Twente, Faculty of Science and Technology, Mesa and Research Institute (Mitwirkung)
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Vereniging voor Christelijk Hoger Onderwijs Wetenschappelijk Onderzoek en Patientenzorg, Faculty of Science, Department of Physics and Astronomy Condensed Matter Physics (Mitwirkung)
Time ranges:
2006-11-01 - 2010-10-31
Resources
Status
Quality score
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Reusability: 0.67
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- Contact info: false
- Publisher info: true
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