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May 6, 2026Buildings0 citationsOpen Access

Energy Performance of Existing Italian Residential Buildings: Retrofitting Scenarios with Hybrid Solutions

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DPDomenico PalladinoSTSilvia Di TuriINIole Nardi

Key Points

  • To investigate hybrid heating systems as transitional solutions for decarbonizing existing Italian residential buildings.
  • Conducted large-scale numerical parametric simulation analysis using representative models of Italian residential buildings.
  • Analyzed energy performance and climatic interactions under standardized assumptions.
  • Explored the effects of hybrid systems on energy demand and CO2 emissions.
  • Hybrid systems reduced non-renewable primary energy by up to 44% and CO2 emissions by approximately 58%.
  • Total primary energy may increase by 2-26% due to renewable energy from heat pumps.
  • Operating cost savings ranged from 25-40% depending on climate conditions.

Abstract

The decarbonization of existing buildings remains a major challenge, particularly in contexts characterized by high energy demand and heating systems based on fossil fuels. While electrification is widely recognized as a key pathway, its direct application is often limited by building and operating conditions. This study investigates the potential of hybrid heating systems as transitional solutions through a large-scale numerical parametric simulation analysis based on representative models of the Italian residential building stock. The analysis explores the interaction between climatic conditions, system operation, and energy performance under standardized assumptions. The results reveal that hybrid systems achieve significant reductions in non-renewable primary energy (up to 39–44%) and CO2 emissions (approximately 50–58%), primarily through the substitution of natural gas with electricity. Conversely, total primary energy may increase (approximately 2–26%) due to the contribution of renewable energy associated with heat pump operation. Operating cost savings are observed in the 25–40% range, with slight variation depending on climatic conditions. The effectiveness is not uniform, with maximum benefits in intermediate climate zones and reduced performance under more severe conditions. Overall, hybrid systems show stable and reliable performance across heterogeneous building configurations, supporting their role as robust mid-term transition technologies toward building decarbonization.

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Cite This Study

Palladino et al. (2026) studied this question.

synapsesocial.com/papers/69fa980604f884e66b531e57https://doi.org/10.3390/buildings16091812
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