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Evolution of the Payback Period for Energy-Efficient Residential Buildings in Romania in the Last Decade

Author

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  • Szilárd Karda

    (Department of Civil Engineering and Building Services, Faculty of Construction, Politehnica University of Timișoara, Victoriei Square, No. 2, 300006 Timișoara, Romania)

  • Tamás Nagy-György

    (Department of Civil Engineering and Building Services, Faculty of Construction, Politehnica University of Timișoara, Victoriei Square, No. 2, 300006 Timișoara, Romania)

  • Iosif Boros

    (Boros Cons S.R.L., Gheorghe Pituț Street, No. 2, bl. Z2, sc. B, ap. 5, 415200 Beiuș, Romania)

Abstract

The European Union set ambitious targets to achieve climate neutrality by 2050, and one of the measures taken towards this goal was the implementation of nearly Zero-Energy Buildings. Despite the commitments of the EU member states, many householders and investors had a disposition to incredulity regarding the energy efficiency of the buildings due to the higher cost of the investment and the relatively long payback time. However, at the end of 2021, the energy crisis significantly rewrote the circumstances, and energy prices and the costs of construction materials began to rise. In this situation, it was necessary to reconsider the importance of energy efficiency for buildings due to the maintenance costs. This article aims to assess changes in payback periods over the past 13 years and conduct life cycle cost evaluations by comparing energy-efficient residential buildings with traditional houses. The analysis considers variations in construction materials and labor costs in Romania, as well as energy price changes during the building’s operational phase. Through these methodologies, it has been demonstrated that the implementation of energy-efficient buildings offers a cost-effective solution already in the medium term, providing incentives for investors and future houseowners to reduce their dependence on energy and pursue long-term decarbonization.

Suggested Citation

  • Szilárd Karda & Tamás Nagy-György & Iosif Boros, 2023. "Evolution of the Payback Period for Energy-Efficient Residential Buildings in Romania in the Last Decade," Sustainability, MDPI, vol. 15(11), pages 1-19, June.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:11:p:8986-:d:1162537
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    References listed on IDEAS

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    1. Yuhji Matsuo, 2022. "Re-Defining System LCOE: Costs and Values of Power Sources," Energies, MDPI, vol. 15(18), pages 1-39, September.
    2. Sofia Tsemekidi Tzeiranaki & Paolo Bertoldi & Francesca Diluiso & Luca Castellazzi & Marina Economidou & Nicola Labanca & Tiago Ribeiro Serrenho & Paolo Zangheri, 2019. "Analysis of the EU Residential Energy Consumption: Trends and Determinants," Energies, MDPI, vol. 12(6), pages 1-27, March.
    3. Maria Ferrara & Valentina Monetti & Enrico Fabrizio, 2018. "Cost-Optimal Analysis for Nearly Zero Energy Buildings Design and Optimization: A Critical Review," Energies, MDPI, vol. 11(6), pages 1-32, June.
    4. Walter Leal Filho & Mariia Fedoruk & Lyudmyla Zahvoyska & Lucas Veiga Avila, 2021. "Identifying and Comparing Obstacles and Incentives for the Implementation of Energy Saving Projects in Eastern and Western European Countries: An Exploratory Study," Sustainability, MDPI, vol. 13(9), pages 1-16, April.
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    Cited by:

    1. Beata Piotrowska & Daniel Słyś, 2023. "Analysis of the Life Cycle Cost of a Heat Recovery System from Greywater Using a Vertical “Tube-in-Tube” Heat Exchanger: Case Study of Poland," Resources, MDPI, vol. 12(9), pages 1-17, August.
    2. Janis Kramens & Oskars Svedovs & Amanda Sturmane & Edgars Vigants & Vladimirs Kirsanovs & Dagnija Blumberga, 2024. "Exploring Energy Security and Independence for Small Energy Users: A Latvian Case Study on Unleashing Stirling Engine Potential," Sustainability, MDPI, vol. 16(3), pages 1-27, January.
    3. Olimpia-Iuliana Ban & Simona Dzitac & Attila Simó & Adrian Florea, 2023. "Romania Residents’ Attitude Investigation toward the Transition to Renewable Energy Sources through Importance-Performance Analysis," Sustainability, MDPI, vol. 15(20), pages 1-19, October.

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