Peer-reviewed articles 17,970 +



Title: CLUB CONVERGENCE IN ENERGY TRANSITION OF EU MEMBER STATES

CLUB CONVERGENCE IN ENERGY TRANSITION OF EU MEMBER STATES
Claudia Popescu; Mihaela Covrig
10.5593/sgem2023v/4.2
1314-2704
English
23
4.2
•    Prof. DSc. Oleksandr Trofymchuk, UKRAINE 
•    Prof. Dr. hab. oec. Baiba Rivza, LATVIA
The European Union stands apart through its ambitious blueprint to reach carbon neutrality by 2050. Playing a pivotal role within this process, the energy transition in EU is challenged by the trilemma of supply security, competitiveness and sustainability. Historical contingencies and contextual factors trigger different evolutionary trajectories in terms of temporalities and geographies. Testing the club convergence hypothesis, studies addressed the heterogeneity of EU member states either from energy or environmental perspectives. Our study relying on two streams of research on club convergence and core-periphery model is set to provide: (1) an up-to-date assessment of energy transition pathways pursued by EU members; and (2) a comprehensive outlook based on multiple variables to capture the economic, environmental, energy, social and policy dimensions of energy transition. We employ time-series data issued by EUROSTAT at the level of EU-27 national economies from 2015 (Climate Paris Agreement) to 2021 (European Green Deal). The analysis is based on the measurement of absolute, conditional and relative convergence to test the assumption that EU member states are organized into convergence clubs along core-periphery patterns. Absolute and conditional beta convergence, as well as sigma convergence have been confirmed by data, and five convergence clubs have been identified. However, their membership does not confirm the core-periphery theory in its classical tenets; it rather reflects multiple energy transition paths. We intent to contribute to the scholarship on climate and energy aiming to endorse informed policy across EU.
[1] Sarrica M., Brondi S., Cottone P., Mazzara, B. M., One, no one, one hundred thousand energy transitions in Europe: The quest for a cultural approach, Energy Research & Social Science, vol. 13, pp 1-14, 2016.
[2] Kounetas K.E., Energy consumption and CO2 emissions convergence in European Union member countries. A tonneau des Danaides?, Energy Economics, vol. 69, pp 111- 127, 2018 https://doi.org/10.1016/j.eneco.2017.11.015.
[3] Emir F., Balcilar M., Shahbaz M., Inequality in carbon intensity in EU-28: analysis based on club convergence, Environmental Science and Pollution Research, vol. 26, pp 3308-3319, 2019.
[4] Ulucak R., Apergis N., Does convergence really matter for the environment? An application based on club convergence and on the ecological footprint concept for the EU countries, Environmental Science & Policy, vol. 80, pp 21-27, 2018
[5] Morales-Lage R., Bengochea-Morancho, A., Camarero, M., Martinez-Zarzoso I., Club convergence of sectoral CO2 emissions in the European Union, Energy Policy, vol. 135, 111019, 2019, https://doi.org/10.1016/j.enpol.2019.111019.
[6] Cialani C., Mortazavi R., Sectoral analysis of club convergence in EU countries’ CO2 emissions, Energy, vol. 235, 121332, 2021.
[7] Presno M. J., Landajo M., Gonzalez P. F., GHG emissions in the EU-28. A multilevel club convergence study of the Emission Trading System and Effort Sharing Decision mechanisms, Sustainable Production and Consumption, vol. 27, pp 998-1009, 2021.
[8] Presno M.J., Landajo, M., EU-28’s progress toward the 2020 renewable energy share: a club convergence analysis, Environmental Science and Pollution Research, vol. 28, pp 66830–66844, 2021, https://doi.org/10.1007/s11356-021-15084-x.
[9] Kasman A., Kasman S., Convergence of renewable energy consumption in the EU- 15: evidence from stochastic and club convergence tests, Environmental Science and Pollution Research, vol. 27, pp 5901–5911, 2020, https://doi.org/10.1007/s11356-019- 07378-y
[10] Balezentis T., Butkus M., Streimikiene D., Energy productivity and GHG emission in the european agriculture: The club convergence approach, Journal of Environmental Management, vol. 342, 118238, 2023.
[11] Menegaki A., Tiwari A. K., Energy Efficiency in Europe: Stochastic-Convergent and Non-Convergent Countries, Energy and Environmental Strategies in the Era of Globalization, pp 305-333, 2019.
[12] Kijek T., Kijek A., Bolibok P., Matras-Bolibok, A., The patterns of energy innovation convergence across European countries, Energies, vol. 14/issue 10, 2755, 2021.
[13] Delgado F. J., Freire-Gonzalez J., Presno, M. J., Environmental taxation in the European Union: Are there common trends?, Economic Analysis and Policy, vol. 73, pp 670-682, 2022.
[14] Famulska T., Kaczmarzyk J., Grzaba-Wloszek M., Environmental Taxes in the Member States of the European Union—Trends in Energy Taxes, Energies, vol. 15/issue 22, 8718; 2022,https://doi.org/10.3390/en15228718.
[15] Anastasiou A., Zaroutieri E., Energy poverty and the convergence hypothesis across EU member states, Energy Efficiency, vol. 16/issue 5, 38, 2023, https://doi.org/10.1007/s12053-023-10113-9.
[16] Huang Z., Ming X., Duan H., Heterogeneous effects of energy poverty convergence in Europe, Energy Strategy Reviews, vol. 41, 100822, 2022, https://doi.org/10.1016/j.esr.2022.100822.
[17] Bouzarovski S., Herrero S. T., Energy poverty in Central and Eastern Europe: Understanding the European Union’s core-periphery divide, Post-Socialist Urban Infrastructures (OPEN ACCESS), pp 21-37, 2019.
[18] Phillips P.C.B., Sul D., Transition modeling and econometric convergence tests, Econometrica vol. 75, pp 1771–1855, 2007.
[19] Wieland T., REAT: A Regional Economic Analysis Toolbox for R, REGION, European Regional Science Association, vol. 6, pp 1-57, 2019.
[20] Sichera R., Pizzuto, P., ConvergenceClubs: A Package for Performing the Phillips and Sul's Club Convergence Clustering Procedure, R Journal, 11.2, p. 142, 2019.
conference
Proceedings of 23rd International Multidisciplinary Scientific GeoConference SGEM 2023
23rd International Multidisciplinary Scientific GeoConference SGEM 2023, 28-30 November, 2023
Proceedings Paper
STEF92 Technology
International Multidisciplinary Scientific GeoConference-SGEM
SWS Scholarly Society; Acad Sci Czech Republ; Latvian Acad Sci; Polish Acad Sci; Russian Acad Sci; Serbian Acad Sci and Arts; Natl Acad Sci Ukraine; Natl Acad Sci Armenia; Sci Council Japan; European Acad Sci, Arts and Letters; Acad Fine Arts Zagreb Croatia; Croatian Acad Sci and Arts; Acad Sci Moldova; Montenegrin Acad Sci and Arts; Georgian Acad Sci; Acad Fine Arts and Design Bratislava; Russian Acad Arts; Turkish Acad Sci.
159-166
28-30 November, 2023
website
9445
energy transition, climate change, club convergence, core-periphery patterns, EU member states