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CORDIS

Hydrogen Storage In European Subsurface

Leistungen

Scenario definition for modelling of the European energy system
Summary report of all non-sour gas tests conducted by the University of Leoben (autoclave, permeation & TDS)

Summary report of all nonsour gas tests conducted by the University of Leoben autoclave permeation TDS

"European Case Study #1"

European Case Study 1

European energy system model description
Ranking and selection of geological stores
Major results of techno-economic assessment of future scenarios for deployment of underground renewable hydrogen storages

Major results of technoeconomic assessment of future scenarios for deployment of underground renewable hydrogen storages

Final definition of the impact categories and indicators for the E-LCA and S-LCA

Final definition of the impact categories and indicators for the ELCA and SLCA

"European Case Study #5"

European Case Study 5

Report on the environmental impact of the underground H2 storage
Synthesis of the risks and actions to correct these risks depending on the environment
Modelling of the bacteria reactions linked to the geological reactions on the storage full scale under different environments
Life Cycle Cost Assessment of an underground storage site
Report on opportunities for geological storage of hydrogen
Summary report of all sour gas tests conducted by the University of Leoben (autoclave)

Summary report of all sour gas tests conducted by the University of Leoben autoclave

"European Case Study #4"

European Case Study 4

Change of the gas composition of the test batches due to microbial hydrogen consumption
Final protocol for Material Testing
Full steel characterization report
Final conference
Conceptual design of salt cavern and porous media underground storage site
Definition of screening criteria
List of the steel grades to be tested
Assessment of the Regulatory Framework
Report into the social impact of the underground H2 storage
"European Case Study #3"

European Case Study 3

Results of the Ripple Load tests conducted by the subcontracted laboratory
Definition and results of the sensitivity analysis within the energy system modelling
Benchmarking of individual case studies and final conclusions
Assumptions and input parameters for modelling of the European energy system
Synthesis of the material and corrosion investigations
Kinetic modelling of chemical interactions of hydrogen with reservoir and caprock minerals
3D multi-realisation simulations for fluid flow and mixing issues at European scale

3D multirealisation simulations for fluid flow and mixing issues at European scale

Synthesis of the bacteria reactions and definition of most favourable environments for H2 storage
Joint Methodology for individual EU Case Studies
Techno-economic requirements for underground renewable hydrogen storage
"European Case Study #2"

European Case Study 2

Veröffentlichungen

An Insight into Underground Hydrogen Storage in Italy

Autoren: Erika Barison 1,*,Federica Donda 1,Barbara Merson 1,Yann Le Gallo 2 andArnaud Réveillère 2
Veröffentlicht in: Sustainability, 2023, ISSN 2071-1050
Herausgeber: MDPI Open Access Publishing
DOI: 10.3390/su15086886

Modeling hydrogen – rock – brine interactions for the Jurassic reservoir and cap rocks from Polish Lowlands

Autoren: Krzysztof Labus a, Radosław Tarkowski b
Veröffentlicht in: International Journal of Hydrogen Energy, 2022, ISSN 1879-3487
Herausgeber: Elsevier
DOI: 10.1016/j.ijhydene.2022.01.134

Assessment of the potential for underground hydrogen storage in salt domes

Autoren: Leszek Lankof, Kazimierz Urbańczyk, Radosław Tarkowski
Veröffentlicht in: Renewable and Sustainable Energy Reviews, 2022, ISSN 1879-0690
Herausgeber: Elsevier
DOI: 10.1016/j.rser.2022.112309

Influence of capillary threshold pressure and injection well location on the dynamic CO2 and H2 storage capacity for the deep geological structure

Autoren: Katarzyna Luboń, Radosław Tarkowski
Veröffentlicht in: International Journal of Hydrogen Energy, 2021, ISSN 1879-3487
Herausgeber: Elsevier
DOI: 10.1016/j.ijhydene.2021.06.119

Assessing and modeling hydrogen reactivity in underground hydrogen storage: A review and models simulating the Lobodice town gas storage

Autoren: Joachim Tremosa; Rasmus Jakobsen; Yann Le Gallo
Veröffentlicht in: Frontiers in Energy Research, Ausgabe 20, 2023, ISSN 2296-598X
Herausgeber: Frontiers
DOI: 10.3389/fenrg.2023.1145978

First assessment of an area potentially suitable for underground hydrogen storage in Italy

Autoren: S. Mattera a, F. Donda a, U. Tinivella a, E. Barison a, Y. Le Gallo b, C. Vincent c
Veröffentlicht in: International Journal of Hydrogen Energy, 2023, ISSN 1879-3487
Herausgeber: Elsevier
DOI: 10.1016/j.ijhydene.2023.01.192

Wodór jako paliwo przysz³oœci. Wyzwania dla polskiej geologii

Autoren: Radoslaw Tarkowski
Veröffentlicht in: Przegl¹d Geologiczny Journal, Ausgabe vol. 69, nr 4, 2021, 2021, ISSN 0033-2151
Herausgeber: Panstwowy Instytut Geologiczny

Four Ways to Store Large Quantities of Hydrogen

Autoren: Louis Londe
Veröffentlicht in: Paper presented at the Abu Dhabi International Petroleum Exhibition & Conference, Abu Dhabi, UAE, Ausgabe November 2021., 2021, ISBN 978-1-61399-834-2
Herausgeber: OnePetro
DOI: 10.2118/208178-ms

Enabling Large-Scale Hydrogen Storage in Salt Caverns: Recent Developments.

Autoren: Réveillère, A. , Fournier, C., Karimi-Jafari, M., Courault, C.
Veröffentlicht in: 2022
Herausgeber: SMRI

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