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SMART WAYS FOR IN-SITU TOTALLY INTEGRATED AND CONTINUOUS MULTISOURCE GENERATION OF HYDROGEN

Deliverables

1st Progress Activity Report

this deliverable will include the technical report at the middle of the project duration(M24)

First level Use case

report including an initial analysis of the Switch use cases to direct the design and engineering of the PID

Designed communication material, progress M30

Design of a brochure with key information on SWITCH system, main results and impact, and market deployment strategy

Report on the functional and operational check of the SWITCH system

Identification of the functional and operative checks and inspections for the Switch system

Final Progress Activity Report

this deliverable will include the technical report at the end of the project (M51).

Report on the in-field testing of the SWITCH system under real conditions

Report on the final and full tests performed at the Shell Technology Center in Amsterdam on the Switch system

Revised Implementation Plan

a detailed plan of activities will be developed to timely monitor the progress of SWITCH activities during the first project amendment (M47)

Annual Data Reporting 2021

Data fro annual reporting in the platform Trust and update of data and photos related to Switch project

Annual Data Reporting 2022

Data reporting for trust platform as an update for the project including visual material

Annual Data Reporting 2024

Data fro annual reporting in the platform Trust and update of data and photos related to Switch project

Annual Data Reporting 2023

Data fro annual reporting in the platform Trust and update of data and photos related to Switch project

Project website and visual identity

Project public website and visual identity characterising SWITCH as a unique brand. The website will be regularly updated during the project.

Designed communication material, progress M10

Design of postcards and leaflets to be used in all dissemination and communication activities (M10).

Publications

Performance assessment of a 25 kW solid oxide cell module for hydrogen production and power generation

Author(s): Diana M. Amaya Dueñas, Dirk Ullmer, Marc Riedel, Santiago Salas Ventura, Matthias Metten, Marius Tomberg, Marc P. Heddrich, S. Asif Ansar
Published in: International Journal of Hydrogen Energy, Issue Volume 59, 2024, Page(s) 570-581, ISSN 0360-3199
Publisher: Pergamon Press Ltd.
DOI: 10.1016/j.ijhydene.2024.01.346

Fast online diagnosis for solid oxide fuel cells: Optimisation of total harmonic distortion tool for real-system application and reactants starvation identification

Author(s): Hamza Moussaoui; Gerald Hammerschmid; Jan Van herle; Vanja Subotić
Published in: Journal of Power Sources, Issue 1, 2022, ISSN 0378-7753
Publisher: Elsevier BV
DOI: 10.1016/j.jpowsour.2022.232352

Experimental validation of a dynamic modelling of a Reversible Solid Oxide Cells

Author(s): Michele Bolognese, Matteo Testi, Lorenzo De Bortoli, Ruben Bartali and Luigi Crema
Published in: E3S Web Conference, Issue 334, 2022
Publisher: EDP Sciences
DOI: 10.1051/e3sconf/202233401003

Local Characterization of a Solid Oxide Cell Operated in Fuel Cell and Electrolysis Mode Using Lock-in Thermography

Author(s): Jeanmonod, Guillaume; Van herle, Jan
Published in: Issue 1, 2021, Page(s) 1227-1237
Publisher: ECS Transactions - The Electrochemical Society
DOI: 10.1149/10301.1227ecst

Modeling Nickel Microstructural Evolution in Ni-YSZ Electrodes Using a Mathematical Morphology Approach

Author(s): Moussaoui, Hamza; Nakajo, Arata; Rinaldi, Giorgio; Hubert, Maxime; Laurencin, Jérôme; Van herle, Jan
Published in: Issue 1, 2021, Page(s) 997-1009
Publisher: ECS Transactions - The Electrochemical Society
DOI: 10.1149/10301.0997ecst

Operation Analysis of a Flexible Solid Oxide Cell Module for Power to Hydrogen and Polygeneration

Author(s): S. Salas Ventura, M. Metten, M. Tomberg, D. Ullmer, M. P. Heddrich, S. A. Ansar
Published in: Chemie Ingenieur Technik - Special Issue: (Bio)Process Engineering, Issue Volume 94, Issue 9, 2022, Page(s) 1321-1321
Publisher: Wiley Online Library
DOI: 10.1002/cite.202255103

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