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Exploring the Generation Z Attitude towards Energy Efficiency Improvement and Decarbonization through Heat Pumps: An Empirical Study in Romania

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  • Adrian Tantau

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

  • Simona Irina Goia (Agoston)

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

  • Violeta Mihaela Dincă

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

  • Carmen Păunescu

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

  • Stere Stamule

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

  • Tănase Stamule

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

  • Anca Bogdan

    (Faculty of Business Administration in Foreign Languages, Bucharest University of Economic Studies, Calea Griviței 2-2A, 010731 Bucharest, Romania)

Abstract

This article aims to analyze the attitude of Generation Z representatives from Romania regarding the improvement in energy efficiency and decarbonization through the utilization of modern integrated technologies such as heat pumps, thermal energy storage, and smart control systems. It uses primary data from a questionnaire-based survey conducted between March and June 2023, with 389 valid responses, for the following purposes: (1) to analyze the attitude of young respondents towards the utilization of sustainable modern integrated technologies, such as heat pumps, in order to increase energy efficiency and reduce carbon footprints; (2) to identify the factors that may influence their attitude regarding these technologies; (3) to understand the influence that the resulting factors may exert on the attitude towards utilization of heat pumps, implicitly leading to energy efficiency improvement and decarbonization in Romania; and (4) to formulate policy recommendations for improving energy efficiency and stimulating decarbonization in Romania. This study employs various descriptive statistics, factor analysis, and multiple regression. The results show that there are six categories of factors influencing the attitude of Generation Z representatives, with “Drivers for improving energy efficiency” along with “Traditional measures for improving energy efficiency” having the largest influence on driving a positive attitude toward energy efficiency improvement and decarbonization. The main policy recommendation derived from this study refers to developing policies and strategies that incentivize citizens not only to have a positive attitude toward energy efficiency and decarbonization through the utilization of heat pumps but also trigger concrete action for installing heat pump technology. Another recommendation concerns the further development and expansion of national and local programs for insulating the external surface of buildings and the replacement of windows and exterior doors that do not have thermal insulation. The third major recommendation is related to awareness creation campaigns among the population about modern measures for improving energetic efficiency, such as heat pumps.

Suggested Citation

  • Adrian Tantau & Simona Irina Goia (Agoston) & Violeta Mihaela Dincă & Carmen Păunescu & Stere Stamule & Tănase Stamule & Anca Bogdan, 2024. "Exploring the Generation Z Attitude towards Energy Efficiency Improvement and Decarbonization through Heat Pumps: An Empirical Study in Romania," Sustainability, MDPI, vol. 16(3), pages 1-18, February.
  • Handle: RePEc:gam:jsusta:v:16:y:2024:i:3:p:1250-:d:1331674
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    References listed on IDEAS

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    1. Kern, Florian & Rogge, Karoline S. & Howlett, Michael, 2019. "Policy mixes for sustainability transitions: New approaches and insights through bridging innovation and policy studies," Research Policy, Elsevier, vol. 48(10).
    2. Lauren A. Fleishman & Wändi Bruine De Bruin & M. Granger Morgan, 2010. "Informed Public Preferences for Electricity Portfolios with CCS and Other Low‐Carbon Technologies," Risk Analysis, John Wiley & Sons, vol. 30(9), pages 1399-1410, September.
    3. Killip, Gavin & Owen, Alice, 2020. "The construction industry as agents of energy demand configuration in the existing housing stock," Energy Policy, Elsevier, vol. 147(C).
    4. Pietzcker, Robert C. & Osorio, Sebastian & Rodrigues, Renato, 2021. "Tightening EU ETS targets in line with the European Green Deal: Impacts on the decarbonization of the EU power sector," Applied Energy, Elsevier, vol. 293(C).
    5. PELELLA, Francesco & ZSEMBINSZKI, Gabriel & VISCITO, Luca & William MAURO, Alfonso & CABEZA, Luisa F., 2023. "Thermo-economic optimization of a multi-source (air/sun/ground) residential heat pump with a water/PCM thermal storage," Applied Energy, Elsevier, vol. 331(C).
    6. Thomaßen, Georg & Kavvadias, Konstantinos & Jiménez Navarro, Juan Pablo, 2021. "The decarbonisation of the EU heating sector through electrification: A parametric analysis," Energy Policy, Elsevier, vol. 148(PA).
    7. Violeta Mihaela Dincă & Mihail Busu & Zoltan Nagy-Bege, 2022. "Determinants with Impact on Romanian Consumers’ Energy-Saving Habits," Energies, MDPI, vol. 15(11), pages 1-18, June.
    8. Michael Siegrist & George Cvetkovich, 2000. "Perception of Hazards: The Role of Social Trust and Knowledge," Risk Analysis, John Wiley & Sons, vol. 20(5), pages 713-720, October.
    9. Mohammad Fazle Rabbi & József Popp & Domicián Máté & Sándor Kovács, 2022. "Energy Security and Energy Transition to Achieve Carbon Neutrality," Energies, MDPI, vol. 15(21), pages 1-18, October.
    10. Pietzcker, Robert & Osorio, Sebastian & Rodrigues, Renato, 2021. "Tightening EU ETS targets in line with the European Green Deal: Impacts on the decarbonization of the EU power sector," EconStor Preprints 222579, ZBW - Leibniz Information Centre for Economics, revised 2021.
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