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An innovative approach for renewable energy storage by a combination of hydrogen carriers and heat storage

Livrables

Powder and pellets production

Powder and pellets production M25 Industrialscale of powder at tonnage level Pellets production

Tank production

Tank production and preliminary test

Data Management Plan

Data Management Plans DMP with information on the handling of research data during after the end of the project what data will be collected processed andor generated which methodology standards will be applied whether data will be sharedmade open access and how data will be curated preserved including after the end of the project

LCA analysis

LCA analysis starting from boundary conditions and achieving an assessment of the overall environmental impact

System specification

System specification M3 Report on relevant regulatory boundary conditions and codes standards preliminary HAZID and HAZOP study HyCARE system specification

Annual Data Reporting 3

The quantitative project data will be collected according to specific templates to be made available to the FCH2 JU in a dedicated platformtool accessible online and passwordprotected

PCM selection, P&I and design

PCM selection PI and design M15 PCM selection and characterisation PI and design of the heat recovery system

Techno-economic analysis of the integrated system

Technoeconomic analysis of the integrated system M48 Full techno economic analysis of the hydrogen storage solution

FEM analysis and validation

FEM analysis and validation M22 FEM modelling and validation of the heat recovery system

Annual Data Reporting 1

The quantitative project data will be collected according tospecific templates to be made available to the FCH2 JU in a dedicated platformtool accessible online and passwordprotected

Annual Data Reporting 2

The quantitative project data will be collected according tospecific templates to be made available to the FCH2 JU in a dedicated platformtool accessible online and passwordprotected

Collaboration infrastructure

Collaboration infrastructure M2 This deliverable consists in the definition of a collaborative workspace an issue tracking system and a teleconferencing system Also includes basic guidelines and procedures for use of the tools within the project

Publications

Optimized alloy composition

Auteurs: Erika Michela Dematteis; Fermin Cuevas; Michel Latroche
Publié dans: Numéro 1, 2020
Éditeur: Zenodo
DOI: 10.5281/zenodo.3712826

Data Management Plan M6

Auteurs: Sabina Fiorot
Publié dans: Numéro 1, 2020
Éditeur: Zenodo
DOI: 10.5281/zenodo.3824773

Selected alloy characterisation

Auteurs: Dematteis, Erika Michela; Cuevas, Fermin; Latroche, Michel
Publié dans: Numéro 1, 2020
Éditeur: Zenodo
DOI: 10.5281/zenodo.3712849

System Specification

Auteurs: Sebastien Quesnel; Nouaamane Kezibri; Quentin Nouvelot; Camel Makhloufi
Publié dans: 2019
Éditeur: Zenodo
DOI: 10.5281/zenodo.4009237

Characterisation of powder and pellets

Auteurs: Dematteis, Erika Michela; Cuevas, Fermin; Latroche, Michel
Publié dans: 2021
Éditeur: Zenodo
DOI: 10.5281/zenodo.4638519

Design of hydrogen-heat-storage module

Auteurs: Capurso, Giovanni
Publié dans: Numéro 1, 2020
Éditeur: Zenodo
DOI: 10.5281/zenodo.4639812

Processing parameters

Auteurs: Dematteis, Erika Michela; Cuevas, Fermin; Latroche, Michel
Publié dans: 2020
Éditeur: Zenodo
DOI: 10.5281/zenodo.3712858

Solid-State Hydrogen Storage Systems and the Relevance of a Gender Perspective

Auteurs: Erika Michela Dematteis; Jussara Barale; Marta Corno; Alessandro Sciullo; Marcello Baricco; Paola Rizzi
Publié dans: Energies, 2021, ISSN 1996-1073
Éditeur: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en14196158

Metal (boro-) hydrides for high energy density storage and relevant emerging technologies

Auteurs: L. J. Bannenberg; Michael Heere; Michael Heere; H. Benzidi; Jorge Montero; Erika Michela Dematteis; Erika Michela Dematteis; Suwarno Suwarno; Tomasz Jaroń; M. Winny; P. A. Orłowski; Wojciech Wegner; Agnieszka Starobrat; Karol J. Fijalkowski; Wojciech Grochala; Zhao Qian; J.-P. Bonnet; Ioana Nuta; Wiebke Lohstroh; Claudia Zlotea; Omar Mounkachi; Fermin Cuevas; C. Chatillon; Michel Latroche; Maxim
Publié dans: International Journal of Hydrogen Energy, Numéro 7, 2020, ISSN 0360-3199
Éditeur: Pergamon Press Ltd.
DOI: 10.1016/j.ijhydene.2020.08.119

Hydrogen storage properties of Mn and Cu for Fe substitution in TiFe0.9 intermetallic compound

Auteurs: Erika M. Dematteis, Fermin Cuevas, Michel Latroche
Publié dans: Journal of Alloys and Compounds, Numéro 851, 2021, Page(s) 156075, ISSN 0925-8388
Éditeur: Elsevier BV
DOI: 10.1016/j.jallcom.2020.156075

Substitutional effects in TiFe for hydrogen storage: a comprehensive review

Auteurs: Erika Michela Dematteis; Erika Michela Dematteis; Nicola Berti; Fermin Cuevas; Michel Latroche; Marcello Baricco
Publié dans: Materials Advances, Numéro 2, 2021, Page(s) 2524, ISSN 2633-5409
Éditeur: Royal Society of Chemistry
DOI: 10.1039/d1ma00101a

Fundamental hydrogen storage properties of TiFe-alloy with partial substitution of Fe by Ti and Mn

Auteurs: Erika Michela Dematteis; David Michael Dreistadt; Giovanni Capurso; Julian Jepsen; Julian Jepsen; Fermin Cuevas; Michel Latroche
Publié dans: Journal of Alloys and Compounds, Numéro 8, 2021, Page(s) 159925, ISSN 0925-8388
Éditeur: Elsevier BV
DOI: 10.1016/j.jallcom.2021.159925

Metal Hydrides and Related Materials. Energy Carriers for Novel Hydrogen and Electrochemical Storage

Auteurs: A. El Kharbachi, E. M. Dematteis, K. Shinzato, S. C. Stevenson, L. J. Bannenberg, M. Heere, C. Zlotea, P. Á. Szilágyi, J.-P. Bonnet, W. Grochala, D. H. Gregory, T. Ichikawa, M. Baricco, B. C. Hauback
Publié dans: The Journal of Physical Chemistry C, Numéro 124/14, 2020, Page(s) 7599-7607, ISSN 1932-7447
Éditeur: American Chemical Society
DOI: 10.1021/acs.jpcc.0c01806

Recherche de données OpenAIRE...

Une erreur s’est produite lors de la recherche de données OpenAIRE

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