Supercritical CO2 Power Technology: Strengths but Challenges

Author:

Molière Michel12,Privat Romain1,Jaubert Jean-Noël1ORCID,Geiger Frédéric3

Affiliation:

1. Laboratoire Réactions et Génie des Procédés, Université de Lorraine, 54000 Nancy, France

2. Institut Carnot de Bourgogne-Université de Technologie de Belfort Montbéliard (ICB-UTBM), 90000 Belfort, France

3. Département Sciences et Énergies, UFR-STGI, Université de Franche-Comté, 90000 Belfort, France

Abstract

In the late 1960s, a handful of inspired researchers predicted the great potential of supercritical CO2 (“sCO2”) cycles for the production of electricity and highlighted the prospects for dramatic reductions in component sizes and efficiency increases. Since then, considerable development programs have been deployed around the world to “tame” this new technology. Despite these efforts, in-depth engineering studies and extensive testing are still necessary today before viable designs can be released for large-scale industrial applications. This raises questions as to the reasons for this delay, this debate being rarely addressed in the current literature. This situation has motivated the present study. Trying to unravel such an intricate topic requires to understand the distinctive properties of supercritical CO2 and the particular requirements of closed, high-pressure power systems. This article aims then to provide a broad overview of sCO2 power cycles, highlighting their main advantages and limitations and reflecting the challenges associated with the industrialization of that technology which actually requires disruptive and innovative designs.

Publisher

MDPI AG

Reference64 articles.

1. (2024, January 22). STEP 10 MWe Pilot (NETL), Available online: https://netl.doe.gov/carbon-management/sco2/step10pilotplant.

2. Marion, J. (2024, January 22). Supercritical CO2-10 MW Demonstration project under construction. Turbomachinery Magazine, 22 October 2022. Available online: https://www.gti.energy/wp-content/uploads/2022/09/Supercritical-CO2-10-MW-Demonstration-Project-Under-Construction-Sept-Oct-2022.pdf.

3. High efficiency and low cost of electricity generation from fossil fuels while eliminating atmospheric emissions 2013;Allam;Energy Procedia,2013

4. Perspectives for the Liquid Phase Compression Gas Turbine;Angelino;J. Eng. Power,1967

5. Carbon dioxide condensation cycles for power production;Angelino;J. Eng. Power,1968

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