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January 25, 2026Energies1 citationsOpen Access

Medium-Temperature Heat Pumps for Sustainable Urban Heating: Evidence from a District Network in Italy

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MRMosè RossiDSDanilo SalviGCGabriele Comodi

Key Points

  • This study aims to evaluate the performance and viability of medium-temperature heat pumps in district heating networks.
  • Analyzed 5256 hours of medium-temperature heat pump operation within the Osimo District Heating Network.
  • Developed surrogate performance models to assess system efficiency.
  • Evaluated the techno-economic and environmental impacts of the heating system.
  • Achieved a weighted average Coefficient of Performance (COP) of 3.96.
  • Measured a weighted average thermal output of 134.5 kW.
  • Estimated a payback period of approximately six years and a Levelised Cost of Heat (LCOH) of 0.0245 €/kWh.
  • Reduced CO2 emissions by about 120 tons compared to conventional gas-fired boilers.

Abstract

The decarbonisation of urban heating systems represents a key challenge for the transition towards sustainable cities. This study investigates the field integration of a Medium-Temperature Heat Pump (MTHP) within the Osimo District Heating Network (DHN) in Italy, demonstrating how low-grade return flows (30–50 °C) can be effectively upgraded to supply temperatures of 65–75 °C, in line with 4th-generation district heating requirements. Specifically, 5256 h of MTHP operation within the DHN were analysed to validate the initial design assumptions, develop surrogate performance models, and assess the system’s techno-economic and environmental performance. The results indicate stable and reliable operation, with a weighted average Coefficient of Performance (COP) of 3.96 and a weighted average thermal output of 134.5 kW. From an economic perspective, the system achieves a payback period of approximately six years and a Levelised Cost of Heat (LCOH) of 0.0245 €/kWh. Environmentally, the MTHP enables CO2 emission reductions of about 120 t compared with conventional gas-fired boilers. Beyond its technical performance, the study highlights the strong replicability of MTHP solutions for small- and medium-scale DHNs across Europe. The proposed approach offers urban utilities a scalable and cost-competitive pathway towards low-carbon heat supply, directly supporting municipal climate strategies and aligning with key EU policy frameworks, including the European Green Deal, REPowerEU, and the “Fit-for-55” package.

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Cite This Study

Rossi et al. (2026) studied this question.

synapsesocial.com/papers/6975b1a9feba4585c2d6d26chttps://doi.org/10.3390/en19020560
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