Author
Listed:
- Anna Hnydiuk-Stefan
(Department of Process Engineering and Environmental Engineering, Opole University of Technology, 45-758 Opole, Poland)
- Carlos Vargas-Salgado
(Departamento de Inginiería Eléctrica, Universitat Politècnica de València, 46022 Valencia, Spain)
Abstract
Many countries rely on coal for energy security during renewable transitions. This study conducts a technical, economic, and environmental analysis of hybridizing a supercritical coal-fired power unit with photovoltaics (PV) to create a sustainable hybrid system at a plant in Silesian Voivodeship, Poland. The goal is to assess costs and optimal operating conditions for a coal–PV hybrid under varying scenarios, using a decision-support model that integrates fuel prices, CO 2 emission charges (EUA), and technical parameters. Two main scenarios are modeled. In auxiliary-only PV (112 MW system), real-time power supplies pumps and fans, cutting coal consumption without storage; LCOE decreases with annual hours (2800–7000), outperforming conventional coal across EUA prices (20–50 EUR/t). In PV surplus export, excess generation (1300 h/year) is grid-fed for revenue, amplifying LCOE reductions—hybrid superiority emerges above 34 EUR/t EUA, per equivalence thresholds. Results show coal electricity exceeds low-emission costs above 34 EUR/t CO 2 , with maximum disparity at 50 EUR/Mg. The hybrid leverages existing infrastructure, mitigates solar intermittency via auxiliary supply, ensures baseload continuity, boosts flexibility, and prolongs asset life—reducing >123,000 EUA/year at 145,000 MWh PV output. This sustainable hybrid promotes energy transition, reduces fossil fuel dependence, and aligns with global sustainability goals.
Suggested Citation
Anna Hnydiuk-Stefan & Carlos Vargas-Salgado, 2026.
"Techno-Economic and Environmental Assessment of a Hybrid Supercritical Coal—Photovoltaic Power Plant,"
Sustainability, MDPI, vol. 18(6), pages 1-22, March.
Handle:
RePEc:gam:jsusta:v:18:y:2026:i:6:p:3150-:d:1901532
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