CORDIS oferuje możliwość skorzystania z odnośników do publicznie dostępnych publikacji i rezultatów projektów realizowanych w ramach programów ramowych HORYZONT.
Odnośniki do rezultatów i publikacji związanych z poszczególnymi projektami 7PR, a także odnośniki do niektórych konkretnych kategorii wyników, takich jak zbiory danych i oprogramowanie, są dynamicznie pobierane z systemu OpenAIRE .
Rezultaty
The exploitation actions will proceed in parallel and interact with the dissemination activities; both strategies will be reported within three common deliverables. Measures regarding the possibility of patenting the major outcomes and the exploitation (licensing/royalty agreements) of the produced results, monitoring of plans, progress and generation of exploitable results. Referred to Task 7.2.
Finalized morphology and geometry of the redox oxide based porous structure (odnośnik otworzy się w nowym oknie)The optimized redox material will be developed in foam and honeycomb structures with different morphology and geometries. These structures will be evaluated for stability, porosity void fraction, pore size distribution, and surface area after going through the expected operating conditions. Referred to tasks 1.3 and 1.4
Shortlist of redox compositions identified via computational screening process as in principle promising for further development (odnośnik otworzy się w nowym oknie)A first shortlist of most promising redox materials via computational screening using Density Function Theory (DFT) and thermodynamic calculations. For these calculations, commercial software and in-house built codes will be used. Referred to task 1.1
Project’s website, protected acronym, electronic communications network (odnośnik otworzy się w nowym oknie)Launch of projects website, protected acronym, electronic communications network and social media account. Referred to Task 7.1
Quality and risk management plan (odnośnik otworzy się w nowym oknie)Quality and risk management plan will provide main procedures and rules on the quality assurance and risk management of the project. Referred to task 8.4
Report on thermophysical properties of the reactive material at the relevant temperatures (odnośnik otworzy się w nowym oknie)Thermophysical properties (reaction enthalpy, heat capacity, effective thermal conductivity, heat transfer coefficient) and energy storage density of the optimized metal oxide will be determined using commercial and in-house built measurement systems. Referred to task 2.1
Report on thermomechanical properties of the synthesized redox material structure (odnośnik otworzy się w nowym oknie)The thermo-mechanical properties such as microstructure, density, porosity, pore size distribution, permeability, refractoriness, mechanical strength, and thermal shock resistance will be comparatively evaluated for the synthesized structures using Hg and N2 porosimetry, XRD, SEM, and mechanical strength and thermal shock resistance tests. Possible failure mechanism will be identified and corrective actions for the improvement of reactive material will be taken. Referred to task 2.2.
Redox material reactivity results after cyclic operation (odnośnik otworzy się w nowym oknie)The optimized redox material porous structures will be tested for the long-term cyclic operations (at least 200 cycles) to determine the potential loss in oxygen transfer activity, reaction enthalpy, and/or thermal performance stability. Referred to task 1.5
Finalized list of container and insulation materials (odnośnik otworzy się w nowym oknie)A list of suitable storage container and insulation materials based on thermal conductivity, mechanical and structural strength at higher-temperatures (> 1100 oC), operating temperature, corrosion, and cost will be determined. These materials will be further developed in this WP for the storage module fabrication and testing. Referred to task 4.1
Data Management Plan distinguishing data as private, publishable and Open Access, and defining the main criteria adopted to distinguish among them. Referred to Task 8.5
Publikacje
Autorzy:
Zhen Cao, Bas Joris de Leeuw, Tianchao Xie, Abhishek K. Singh
Opublikowane w:
Case Studies in Thermal Engineering, Numer 63, 2024, ISSN 2214-157X
Wydawca:
Elsevier BV
DOI:
10.1016/j.csite.2024.105315
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