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CORDIS - Resultados de investigaciones de la UE
CORDIS

Supercritical CO2 power cycles demonstration in Operational environment Locally valorising industrial Waste Heat

Resultado final

sCO2 material compatibility tests

Identification of most suitable material for the turboexpander according to literature, modeling and experimental investigation.

Potential electric markets for CO2OLHEAT and cycle configurations

Starting from D1.1 guidelines and modeling results, assessment of alternative CO2OLHEAT cycle configurations and potential role on EU electric markets (according to market regulatory framework and trends) of CO2OLHEAT WH2P system.

Operational flexibility and control architecture requirements

According to WP1 preliminary outcomes, preliminary operational flexibility assessment of the CO2OLHEAT layout and definition of preliminary control architecture.

Public communication materials (i.e. logo, leaflet, poster)

Presentation of project communication printable materials.

CO2OLHEAT Public Website

Presentation of project website integrated with social medias.

Publicaciones

Thermo-fluid dynamic modeling of a supercritical carbon dioxide compressor for waste heat recovery applications

Autores: Giacomo Persico, Alessandro Romei, Paolo Gaetani, Ernani Fulvio Bellobuono, Lorenzo Toni, Roberto Valente
Publicado en: Energy, 2024, ISSN 0360-5442
Editor: Pergamon Press Ltd.
DOI: 10.1016/j.energy.2024.130874

Supercritical carbon dioxide recovery system applied to cement industries

Autores: G Cevolani, A Giovannelli, G Messina
Publicado en: Journal of Physics, 2023, ISSN 1742-6588
Editor: Institute of Physics
DOI: 10.1088/1742-6596/2648/1/012023

Supercritical CO2 Compressor and Expander Design for Industrial Waste-Heat Valorization

Autores: Lorenzo Toni, Valentina Bisio, Alberto Milani, Davide Biliotti, Ernani Fulvio Bellobuono, Roberto Valente, Matteo Dozzini, Manuele Bigi, Giulio Generini
Publicado en: ASME Digital Collection, 2023, ISBN 978-0-7918-8707-3
Editor: American Society of Mechanical Engineers
DOI: 10.1115/gt2023-102558

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