Explore the words cloud of the STOREandGO project. It provides you a very rough idea of what is the project "STOREandGO" about.
The following table provides information about the project.
Coordinator |
DVGW DEUTSCHER VEREIN DES GAS- UND WASSERFACHES - TECHNISCH-WISSENSCHAFTLICHER VEREIN EV
Organization address contact info |
Coordinator Country | Germany [DE] |
Project website | https://www.storeandgo.info/ |
Total cost | 27˙973˙369 € |
EC max contribution | 17˙937˙358 € (64%) |
Programme |
1. H2020-EU.3.3. (SOCIETAL CHALLENGES - Secure, clean and efficient energy) |
Code Call | H2020-LCE-2015-3 |
Funding Scheme | IA |
Starting year | 2016 |
Duration (year-month-day) | from 2016-03-01 to 2020-02-29 |
Take a look of project's partnership.
This proposal is an application to the EU programme “Horizon 2020” and its topic “Large scale energy storage” (LCE-09-2015). The presented project “STORE&GO” will demonstrate three “innovative Power to Gas storage concepts” at locations in Germany, Switzerland and Italy in order to overcome technical, economic, social and legal barriers. The demonstration will pave the way for an integration of PtG storage into flexible energy supply and distribution systems with a high share of renewable energy. Using methanation processes as bridging technologies, it will demonstrate and investigate in which way these innovative PtG concepts will be able to solve the main problems of renewable energies: fluctuating production of renewable energies; consideration of renewables as suboptimal power grid infrastructure; expensive; missing storage solutions for renewable power at the local, national and European level. At the same time PtG concepts will contribute in maintaining natural gas or SNG with an existing huge European infrastructure and an already advantageous and continuously improving environmental footprint as an important primary/secondary energy carrier, which is nowadays in doubt due to geo-political reasons/conflicts. So, STORE&GO will show that new PtG concepts can bridge the gaps associated with renewable energies and security of energy supply. STORE&GO will rise the acceptance in the public for renewable energy technologies in the demonstration of bridging technologies at three “living” best practice locations in Europe.
Study describing the short, medium and long term perspectives of various dedicated market segments for ‘green gases’ | Documents, reports | 2020-04-06 11:45:34 |
Real time implementation of grid models | Documents, reports | 2020-04-06 11:45:34 |
Full CBA analysis of power-to-gas in the context of various reference scenarios | Documents, reports | 2020-04-06 11:45:34 |
Analysis on future technology options and on techno-economic optimization | Documents, reports | 2020-04-06 11:45:34 |
Report on the acceptance and future acceptability of certificate-based green gases | Documents, reports | 2020-04-06 11:45:34 |
Report on the optimal time profile and operation of the conversion technology during a representative year, in the perspective of the available storage capacities | Documents, reports | 2020-04-06 11:45:34 |
Design and development of the 3-day training programme, including online learning programmes, case development and other information bases | Documents, reports | 2020-04-06 11:45:34 |
Report on experience curves and economics of scale | Documents, reports | 2020-04-06 11:45:34 |
Report on the model of the power system with PtG | Documents, reports | 2020-04-06 11:45:34 |
Impact Analysis and Scenarios design | Documents, reports | 2020-04-06 11:45:34 |
Report on social and public acceptance determinants in selected EU-countries | Documents, reports | 2020-04-06 11:45:34 |
Midterm communication and dissemination report | Documents, reports | 2020-04-06 11:45:34 |
Report on the full socio-economic costs and benefits of energy mix diversification and the role of power-to-gas in this regard | Documents, reports | 2020-04-06 11:45:34 |
Report on the costs involved with PtG technologies and their potentials across the EU | Documents, reports | 2020-04-06 11:45:34 |
PtG demonstration plant Falkenhagen commissioned | Other | 2020-04-06 11:45:34 |
Report on full CBA based on the relevant environmental impact data | Documents, reports | 2020-04-06 11:45:33 |
Public and private STORE&GO web site opened | Other | 2020-04-06 11:45:33 |
Report on the licensing modalities, regulatory regimes and complexities at the three demo sites | Documents, reports | 2020-04-06 11:45:33 |
Report on opportunities and options for PtG in the power system | Documents, reports | 2020-04-06 11:45:33 |
Econometric analysis of the future demand for ‘green gases’ and related flexibility | Documents, reports | 2020-04-06 11:45:33 |
Integrated communication and dissemination concept | Documents, reports | 2020-04-06 11:45:33 |
Concept for utilizing the demo sites as communication platforms | Documents, reports | 2020-04-06 11:45:33 |
Report on the various licensing regimes across Europe regarding electrolysis, methanation, biomethane grid injection, large-scale and small-scale storage | Documents, reports | 2020-04-06 11:45:33 |
Take a look to the deliverables list in detail: detailed list of STOREandGO deliverables.
year | authors and title | journal | last update |
---|---|---|---|
2020 |
Eduard Alexandru Morosanu, Fabio Salomone, Raffaele Pirone, Samir Bensaid Insights on a Methanation Catalyst Aging Process: Aging Characterization and Kinetic Study published pages: 283, ISSN: 2073-4344, DOI: 10.3390/catal10030283 |
Catalysts 10/3 | 2020-04-24 |
2019 |
Jachin Gorre, Felix Ortloff, Charlotte van Leeuwen Production costs for synthetic methane in 2030 and 2050 of an optimized Power-to-Gas plant with intermediate hydrogen storage published pages: 113594, ISSN: 0306-2619, DOI: 10.1016/j.apenergy.2019.113594 |
Applied Energy 253 | 2020-04-06 |
2020 |
Jachin Gorre, Fabian Ruoss, Hannu Karjunen, Johannes Schaffert, Tero Tynjälä Cost benefits of optimizing hydrogen storage and methanation capacities for Power-to-Gas plants in dynamic operation published pages: 113967, ISSN: 0306-2619, DOI: 10.1016/j.apenergy.2019.113967 |
Applied Energy 257 | 2020-04-06 |
2017 |
M. Gruber¹; C. Wieland²; P. Habisreuther²; D. Schollenberger²; S.
Bajohr²; D. Trimis²; O. von Morstein³; S. Schirrmeister³
¹ Karlsruher Institut für Technologie (KIT), Karlsruhe/D;
² Karlsruhe Institute of Technology/ Engler-Bunte-Institute, Karlsruhe/D;
³ ThyssenKrupp Industrial Solutions AG, Dortmund/D Oral Presentation: Modelling and design of a catalytic wall reactor for the methanation of carbon dioxide published pages: , ISSN: , DOI: |
2020-04-06 | |
2018 |
Herib Blanco, André Faaij A review at the role of storage in energy systems with a focus on Power to Gas and long-term storage published pages: 1049-1086, ISSN: 1364-0321, DOI: 10.1016/j.rser.2017.07.062 |
Renewable and Sustainable Energy Reviews 81 | 2020-04-06 |
2017 |
Schollenberger, D.; Bajohr, S.; Gruber, M.; Kolb, T.
Engler-Bunte-Institut, Karlsruher Institut für Technologie (KIT) Poster Presentation: Scale-Up of innovative honeycomb reactors for Power-To-Gas applications - The project Store&Go published pages: , ISSN: , DOI: |
2020-04-06 | |
2018 |
Eduard Alexandru Morosanu, Andrés Saldivia, Massimiliano Antonini, Samir Bensaid Process Modeling of an Innovative Power to LNG Demonstration Plant published pages: 8868-8879, ISSN: 0887-0624, DOI: 10.1021/acs.energyfuels.8b01078 |
Energy & Fuels 32/8 | 2020-04-06 |
2018 |
Andrea Mazza, Ettore Bompard, Gianfranco Chicco Applications of power to gas technologies in emerging electrical systems published pages: 794-806, ISSN: 1364-0321, DOI: 10.1016/j.rser.2018.04.072 |
Renewable and Sustainable Energy Reviews 92 | 2020-04-06 |
2018 |
Dominik Schollenberger, Siegfried Bajohr, Manuel Gruber, Rainer Reimert, Thomas Kolb Scaleâ€Up of Innovative Honeycomb Reactors for Powerâ€toâ€Gas Applications – The Project Store&Go published pages: 696-702, ISSN: 0009-286X, DOI: 10.1002/cite.201700139 |
Chemie Ingenieur Technik 90/5 | 2020-04-06 |
2018 |
Elimar Frank, Jachin Gorre, Fabian Ruoss, Markus J. Friedl Calculation and analysis of efficiencies and annual performances of Power-to-Gas systems published pages: 217-231, ISSN: 0306-2619, DOI: 10.1016/j.apenergy.2018.02.105 |
Applied Energy 218 | 2020-04-06 |
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