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Article

Heat Recovery from Sewage: A Case Study of a Selected Example of a Sewage Treatment Plant in Gorzyce, Poland

by
Jarosław Gawdzik
1,
Jolanta Latosińska
1,*,
Paulina Berezowska-Kominek
1,
Katarzyna Stokowiec
1,
Michał Kopacz
2 and
Piotr Olczak
2
1
Department of Environmental Engineering, Geomatics and Renewable Energy, Kielce University of Technology, 25-314 Kielce, Poland
2
Mineral and Energy Economy Research Institute, Polish Academy of Science, 31-261 Krakow, Poland
*
Author to whom correspondence should be addressed.
Energies 2026, 19(5), 1314; https://doi.org/10.3390/en19051314
Submission received: 4 December 2025 / Revised: 16 February 2026 / Accepted: 2 March 2026 / Published: 5 March 2026
(This article belongs to the Special Issue Environmental Sustainability and Energy Economy: 2nd Edition)

Abstract

The increasing cost of energy and the need for low-carbon solutions have strengthened interest in wastewater as a stable and underutilized source of recoverable heat. This study assesses the technical feasibility, economic viability, and environmental benefits of a wastewater heat recovery system based on a case study of the Gorzyce municipal wastewater treatment plant in Poland. Water-to-water heat pump configurations and application scenarios are analyzed together with data-driven forecasting of wastewater outflow using artificial neural networks (MLP and RBF). Operational data from 2025 were used to estimate thermal potential and support system sizing. RBF networks provided more accurate flow forecasts than MLP models, improving reliability of energy recovery planning. Results show that even with a 1 K cooling depth, the annual heat recovery potential reaches about 1.16 GWh. The proposed heat pump system achieved the COP values of 3.0–3.4 and seasonal COP around 3.2, confirming high technical performance supported by stable wastewater temperatures. The recovered heat can fully cover the facility’s heating demand, demonstrating clear technical feasibility. The economic analysis indicates annual savings of about EUR 2310 compared to gas heating, with a simple payback period of roughly 13 years, reduced to 7–8 years when combined with on-site photovoltaics. Environmental benefits include CO2 emission reductions of about 5.5 tones per year. Overall, wastewater heat recovery supported by predictive modeling and renewable electricity is a practical, cost-effective, and environmentally friendly solution for municipal infrastructure.
Keywords: heat recovery; wastewater; heat pumps; artificial neural networks; wastewater inflow forecasting; energy efficiency heat recovery; wastewater; heat pumps; artificial neural networks; wastewater inflow forecasting; energy efficiency

Share and Cite

MDPI and ACS Style

Gawdzik, J.; Latosińska, J.; Berezowska-Kominek, P.; Stokowiec, K.; Kopacz, M.; Olczak, P. Heat Recovery from Sewage: A Case Study of a Selected Example of a Sewage Treatment Plant in Gorzyce, Poland. Energies 2026, 19, 1314. https://doi.org/10.3390/en19051314

AMA Style

Gawdzik J, Latosińska J, Berezowska-Kominek P, Stokowiec K, Kopacz M, Olczak P. Heat Recovery from Sewage: A Case Study of a Selected Example of a Sewage Treatment Plant in Gorzyce, Poland. Energies. 2026; 19(5):1314. https://doi.org/10.3390/en19051314

Chicago/Turabian Style

Gawdzik, Jarosław, Jolanta Latosińska, Paulina Berezowska-Kominek, Katarzyna Stokowiec, Michał Kopacz, and Piotr Olczak. 2026. "Heat Recovery from Sewage: A Case Study of a Selected Example of a Sewage Treatment Plant in Gorzyce, Poland" Energies 19, no. 5: 1314. https://doi.org/10.3390/en19051314

APA Style

Gawdzik, J., Latosińska, J., Berezowska-Kominek, P., Stokowiec, K., Kopacz, M., & Olczak, P. (2026). Heat Recovery from Sewage: A Case Study of a Selected Example of a Sewage Treatment Plant in Gorzyce, Poland. Energies, 19(5), 1314. https://doi.org/10.3390/en19051314

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