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CORDIS - Forschungsergebnisse der EU
CORDIS

Air-Brayton cycle concentrated solar power future plants via redox oxides-based structured thermochemical heat exchangers/thermal boosters

CORDIS bietet Links zu öffentlichen Ergebnissen und Veröffentlichungen von HORIZONT-Projekten.

Links zu Ergebnissen und Veröffentlichungen von RP7-Projekten sowie Links zu einigen Typen spezifischer Ergebnisse wie Datensätzen und Software werden dynamisch von OpenAIRE abgerufen.

Leistungen

Data Management Plan (öffnet in neuem Fenster)

Data Management Plan distinguishing data as private, publishable and Open Access, and defining the main criteria adopted to distinguish among them. Referred to Task 8.2.

Thermochemical properties variation with temperature. (öffnet in neuem Fenster)

Results of investigations of powders' defect chemistry, structural changes, oxygen uptake/release and lattice expansion as a function of doping and operating temperature under long-term cyclic redox operation. Referred to Task 2.3.

Powder redox-relevant properties variation with temperature and pressure. (öffnet in neuem Fenster)

Results of lab-studies on powders of synthesized materials investigating oxygen release/uptake and reaction enthalpies as a function of metal cations composition within a broad temperature and pressure window. Comparison of properties between pristine materials and materials after cyclic testing. Referred to Tasks 2.2 and 2.3.

Project management plan with Gantt chart and Work Breakdown Structure (öffnet in neuem Fenster)

Detailed Project Management Plan with a Gantt chart and a Work Breakdown Structure WBS including a schedule per task responsible partner related subtasks related deliverables and dependencies on other tasks 1st version submitted in M3 Referred to Task 12

Computationally-screened shortlisted redox compositions for further research (öffnet in neuem Fenster)

First shortlist of redox oxide compositions of interest as identified through computational and thermodynamic properties' modeling and calculation of thermodynamic parameters of interest with the aid of commercial and in-house developed codes and software packages. Referred to Task 2.1.

Quality management plan (öffnet in neuem Fenster)

Quality Management Plan to serve as a guide for internal use stating the main procedures and rules on project management implemented for quality assurance of the project and describing the provisions and guidelines adopted by the partners in order to ensure the control of the quality of the project results Referred to Task 12

Project’s website and electronic communications network (öffnet in neuem Fenster)

Launch of project’s website, protected acronym, electronic communications network and social media account. Referred to Task 8.1.

Veröffentlichungen

Porous monolithic perovskite structures for high-temperature thermochemical heat storage in Concentrated Solar Power (CSP) plants and renewable electrification of industrial processes (öffnet in neuem Fenster)

Autoren: C. Agrafiotis, M. Pein, A. Eltayeb, L. deOliveira, L. Klaas, A.K. Singh, M. Roeb, C. Sattler
Veröffentlicht in: SolarPaces Conference, 2024, ISSN 2751-9899
Herausgeber: TIB Open Publishing
DOI: 10.52825/SOLARPACES.V2I.862

Calcium Manganite Based Materials for Thermochemical Energy Storage in High Temperature Solar Thermal Plants: Materials Screening (öffnet in neuem Fenster)

Autoren: Chrysa Pagkoura; Georgia Kastrinaki; George Karagiannakis
Veröffentlicht in: SolarPACES Conference Proceedings, 2024, ISSN 2751-9899
Herausgeber: TIB Open Publishing
DOI: 10.52825/SOLARPACES.V2I.906

Case Studies in Thermal Engineering (öffnet in neuem Fenster)

Autoren: Z. Cao, B. de Leeuw, T. Xie, A.K. Singh
Veröffentlicht in: Case Studies in Thermal Engineering, Ausgabe 63, 105315, 2024, ISSN 2214-157X
Herausgeber: Elsevier BV
DOI: 10.1016/J.CSITE.2024.105315N

Thermochemical oxygen pumping with perovskite reticulated porous ceramics for enhanced reduction of ceria in thermochemical fuel production (öffnet in neuem Fenster)

Autoren: M. Pein, J. Keller, C. Agrafiotis, A. Eltayeb, L. Klaas, M. Roeb, C. Sattler
Veröffentlicht in: Advanced Energy Materials,, Ausgabe 14(19), 2304454, 2024, ISSN 1614-6840
Herausgeber: Wiley
DOI: 10.1002/aenm.202304454

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