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  1. Attività

Nanoradiator-Equipped Adsorbents for Safe and Energy Saving Methane Storage

Progetto
Development of safe and energy-saving storage of natural gas using an efficient adsorbent is requisite for a clean-energy society (e.g. smart cities) in the near future. With this awareness, we aim to develop a new type of adsorbent that enables construction of a safe natural gas storage system with self-release of heat on adsorption and self-heating for desorption. This objective can be attained by synergetic hybridization of honeycomb-structured graphene and high surface area metal organic framework (MOFs). Therefore, we develop optimum preparation routes for the honeycomb-structured graphene and MOF nanocrystals and search the most synergetic hybridization of the graphene and MOF crystals with the state-of–the-artbased international teams. Shinshu University is in charge of the development of the
optimum nanostructured graphene and accessible porosity evaluation with N2 and Ar adsorption, as well as electrical and thermal conductivity studies of the graphene-MOF hybrid materials. University of Milano synthesizes optimum MOF nanocrystals and
determines their precise structures with X-ray diffraction. University of Paris designs the synergetic hybridization of the nanostructured graphene and MOF nanocrystals with molecular simulation. Budapest University of Technology and Economics evaluates the total nanoporosity including very narrow micropores with small angle X-ray scattering and examine the effect of coexistent water on the effective nanoporosity. Alicante University evaluates the methane adsorption characteristics of the developed graphene and MOF nanocrystals using high pressure adsorption system, ultramicroporosity with CO2 adsorption and specific heats of adsorption using microcalorimetry.
Only the research alliance proposed here can attain the final goal able to provide the clean energy that society needs with sufficient safety.
  • Academic Signature
  • Dati Generali

Academic Signature

Il servizio di classificazione ACADEMIC SIGNATURE è IN BETA TESTING e i risultati potrebbero non essere corretti

Academic Signature (31)

graphene
graphene
adsorbent
small-angle x-ray scattering
small-angle x-ray scattering
Activities Facet
Graphene
Aromatic compounds
Small-angle x-ray scattering
Collisions (Nuclear physics)
Metal-Organic Frameworks
Macromolecular Substances
adsorbent
Materials (hierarchy name)
adsorbent
Materials Facet
Metal-organic frameworks
Molecules
Metal-Organic Frameworks
Organic Chemicals
Graphene
Organic compounds
Metal-organic frameworks
Organic compounds
Metal-Organic Frameworks
Organometallic Compounds
Metal-organic frameworks
Organometallic compounds
Small-angle x-ray scattering
Particles
Graphene
Polycyclic aromatic hydrocarbons
Metal-Organic Frameworks
Polymers
Metal-organic frameworks
Polymers
small-angle x-ray scattering
Processes and Techniques (hierarchy name)
Small-angle x-ray scattering
Scattering (Physics)
Small-angle x-ray scattering
Small-angle scattering
Small-angle x-ray scattering
X-rays--Scattering
Grafene
carbon
graphene
carbon
adsorbents
chemical substances
adsorbent
material
small-angle x-ray scattering
physicochemical processes
adsorbent
sorbent
small-angle x-ray scattering
x-ray scattering

Dati Generali

Partecipanti

CARLUCCI LUCIA   Responsabile scientifico  

Dipartimenti coinvolti

Dipartimento di Chimica   Principale  

Tipo

RL_DG-UNI - Bandi DG Università, ricerca e open innovation

Finanziatore

REGIONE LOMBARDIA
Organizzazione Esterna Ente Finanziatore

Periodo di attività

Aprile 1, 2013 - Marzo 31, 2015

Durata progetto

24 mesi
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Realizzato con VIVO | Progettato da Cineca | 26.5.0.0