Published October 2, 2026
| Version v1
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Solar-aided Thermochemical Cycle using Sulphur as an Energy Vector
Authors/Creators
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Skyfta, Georgia1, 2
- Barkatsa, Alexandra1
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Poravou, Charikleia1
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Zacharopoulou, Vasiliki1
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Tsongidis, Nikolaos1
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votis, konstantinos3
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Karagiannakis, George1
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Dimitrakis, Dimitrios4
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AGRAFIOTIS, Christos4
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Thomey, Dennis4
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Roeb, Martin4
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Sattler, Christian4
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Sau, Giovanni Salvatore5
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Tizzoni, Anna Chiara6
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Harth, Stefan7
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Trimis, Dimosthenis7
- Kentri, Chara8
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Boghosian, Soghomon8
- Svets, Igor9
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Chiew, Yoon Lin10
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Zackrisson, Mats11
- Vieten, Josua12
- Mougard-Camacho, Pierre-Francois13
- Vespa, Pierrick13
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1.
Centre for Research and Technology Hellas
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2.
Aristotle University of Thessaloniki
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3.
Information Technologies Institute
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4.
Deutsches Zentrum für Luft- und Raumfahrt e. V. (DLR)
- 5. ENEA
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6.
ENEA Casaccia Research Centre
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7.
Karlsruhe Institute of Technology
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8.
University of Patras
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9.
Trinity College Dublin
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10.
RISE Research Institutes of Sweden
- 11. RISE Research Institutes of Sweden AB
- 12. ExoMatter GmbH
- 13. Saint-Gobain Research Provence
Description
This presentation introduces a solar-aided thermochemical cycle using elemental sulphur as a long-term energy storage vector. It outlines the integration of concentrated solar power with the sulphur cycle and presents the synthesis, shaping, characterization and catalytic evaluation of Fe-, Cu- and Ce-based oxide catalysts for high-temperature SO₃ splitting.
Presented at RHODES 2024, the 11th International Conference on Sustainable Solid Waste Management, Rhodes, Greece, 19 June 2024.
Funded by the European Union through the SULPHURREAL project under Grant Agreement No. 101115538.
Files
Rhodes2024_Skyfta.pdf
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(5.0 MB)
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