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Research Article

Sustainable and socially just transition to a post-lignite era in Greece: a multi-level perspective

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References

  • Achkari, O., and A. El Fadar. 2020. Latest developments on TES and CSP technologies – Energy and environmental issues, applications and research trends. Applied Thermal Engineering 167:114806. doi:10.1016/j.applthermaleng.2019.114806.
  • Agoris, D., K. Tigas, G. Giannakidis, F. Siakkis, S. Vassos, N. Vassilakos, V. Kilias, and M. Damassiotis. 2004. An analysis of the Greek energy system in view of the Kyoto commitments. Energy Policy 32 (18):2019–33. doi:10.1016/S0301-4215(03)00177-0.
  • Allen, C., G. Metternicht, and T. Wiedmann. 2016. National pathways to the Sustainable Development Goals (SDGs): A comparative review of scenario modelling tools. Environmental Science & Policy 66:199–207. doi:10.1016/j.envsci.2016.09.008.
  • Antosiewicz, M., A. Nikas, A. Szpor, J. Witajewski-Baltvilks, and H. Doukas. 2019. Pathways for the transition of the Polish power sector and associated risks. Environmental Innovation and Societal Transitions. doi:10.1016/j.eist.2019.01.008.
  • Apostolou, D., and P. Enevoldsen. 2019. The past, present and potential of hydrogen as a multifunctional storage application for wind power. Renewable and Sustainable Energy Reviews 112:917–29. doi:10.1016/j.rser.2019.06.049.
  • Arabatzis, G., G. Kyriakopoulos, and P. Tsialis. 2017. Typology of regional units based on RES plants: The case of Greece. Renewable and Sustainable Energy Reviews 78:1424–34. doi:10.1016/j.rser.2017.04.043.
  • Arantegui, R. L., and A. Jäger-Waldau. 2018. Photovoltaics and wind status in the European Union after the Paris Agreement. Renewable and Sustainable Energy Reviews 81:2460–71. doi:10.1016/j.rser.2017.06.052.
  • Arapostathis, S., and Y. Fotopoulos. 2019. Transnational energy flows, capacity building and Greece’s quest for energy autarky, 1914–2010. Energy Policy 127:39–50. doi:10.1016/j.enpol.2018.11.022.
  • Argyriadis, X., and E. Bonataki. 2006. Integration of natural gas plants in the Greek electrical production system: Recursion-technologies. Accessed January 19, 2020. https://www.dei.gr/documents/energytec%202006%20argyriadis%201.pdf.
  • Arribas, E. C., J. H. Lantarón, C. A. Porro, and M. J. P. Gómez. 2019. Management and operation of small hydropower plants through a climate service targeted at end-users. 2019 IEEE international conference on environment and electrical engineering and 2019 IEEE industrial and commercial power systems Europe (EEEIC/I&CPS Europe) Genova, Italy.
  • Asimakopoulos, D. A., M. Santamouris, I. Farrou, M. Laskari, M. Saliari, G. Zanis, G. Giannakidis, K. Tigas, J. Kapsomenakis, and C. Douvis. 2012. Modelling the energy demand projection of the building sector in Greece in the 21st century. Energy and Buildings 49:488–98. doi:10.1016/j.enbuild.2012.02.043.
  • Autor, D. H., D. Dorn, and G. H. Hanson. 2016. The china shock: Learning from labor-market adjustment to large changes in trade. Annual Review of Economics 8:205–40. doi:10.1146/annurev-economics-080315-015041.
  • Azam, M., A. Q. Khan, E. Zafeiriou, and G. Arabatzis. 2016. Socio-economic determinants of energy consumption: An empirical survey for Greece. Renewable and Sustainable Energy Reviews 57:1556–67. doi:10.1016/j.rser.2015.12.082.
  • Bachmann, O., C. D. Deering, J. S. Ruprecht, C. Huber, A. Skopelitis, and S. Schnyder. 2012. Evolution of silicic magmas in the Kos-Nisyros volcanic center, Greece: A petrological cycle associated with caldera collapse. Contributions to Mineralogy and Petrology 163 (1):151–66. doi:10.1007/s00410-011-0663-y.
  • Badera, J., and P. Kocoń. 2014. Local community opinions regarding the socio-environmental aspects of lignite surface mining: Experiences from central Poland. Energy Policy 66:507–16. doi:10.1016/j.enpol.2013.11.048.
  • Bauer, C. 2008. Life cycle assessment of fossil and biomass power generation chains: An analysis carried out for ALSTOM power services. Switzerland: Paul Scherrer Institut Villigen.
  • Bednarczyk, Z. 2017. Landslide monitoring and counteraction technologies in polish lignite opencast mines. Workshop on world landslide forum, Ljubljana, Slovenia.
  • Bel, G., and S. Joseph. 2015. Emission abatement: Untangling the impacts of the EU ETS and the economic crisis. Energy Economics 49:531–39. doi:10.1016/j.eneco.2015.03.014.
  • Belaïd, F., and M. H. Zrelli. 2019. Renewable and non-renewable electricity consumption, environmental degradation and economic development: evidence from mediterranean countries. Energy Policy 133:110929. doi:10.1016/j.enpol.2019.110929.
  • Berkhout, F., A. Smith, and A. Stirling. 2004. Socio-technological regimes and transition contexts. System Innovation and the Transition to Sustainability: Theory, Evidence and Policy 44 (106):48–75.
  • Bhat, I. K., and R. Prakash. 2009. LCA of renewable energy for electricity generation systems—A review. Renewable and Sustainable Energy Reviews 13 (5):1067–73. doi:10.1016/j.rser.2008.08.004.
  • Biska, A., and N. Oikonomou. 2006. Environmental consideration of ready-mixed concrete production. Tech-Chronicle Science Journal. 35–48.
  • Botelho, A., P. Ferreira, F. Lima, L. M. C. Pinto, and S. Sousa. 2017. Assessment of the environmental impacts associated with hydropower. Renewable and Sustainable Energy Reviews 70:896–904. doi:10.1016/j.rser.2016.11.271.
  • Carlsson, B., and R. Stankiewicz. 1991. On the nature, function and composition of technological systems. Journal of Evolutionary Economics 1 (2):93–118. doi:10.1007/BF01224915.
  • Celik, A. N., T. Muneer, and P. Clarke. 2009. A review of installed solar photovoltaic and thermal collector capacities in relation to solar potential for the EU-15. Renewable Energy 34 (3):849–56. doi:10.1016/j.renene.2008.05.025.
  • Chalvatzis, K. J., and E. Hooper. 2009. Energy security vs. climate change: Theoretical framework development and experience in selected EU electricity markets. Renewable and Sustainable Energy Reviews 13 (9):2703–09. doi:10.1016/j.rser.2009.07.013.
  • CIEMAT. 2004. ExternE externalities of energy vol XX: National implementation. Accessed January 19, 2020. http://www.externe.info/externe_d7/sites/default/files/vol10.pdf.
  • Cikankowitz, A., and V. Laforest. 2013. Using BAT performance as an evaluation method of techniques. Journal of Cleaner Production 42:141–58. doi:10.1016/j.jclepro.2012.10.005.
  • Collins, C. 2019. Beyond coal: Phase-out policies in the EU and implications for the United States. A Climate Institute Publication. Accessed January 19, 2020. http://climate.org/wp-content/uploads/2019/05/Beyond-Coal-Phaseout-policies-in-the-EU-and-implication-for-the-United-States.pdf.
  • Congdon, P., S. Shouls, and S. Curtis. 1997. A multi‐level perspective on small‐area health and mortality: A case study of England and Wales. International Journal of Population Geography 3 (3):243–63. doi:10.1002/(SICI)1099-1220(199709)3:3<243::AID-IJPG70>3.0.CO;2-V.
  • da Graça Carvalho, M. 2012. EU energy and climate change strategy. Energy 40 (1):19–22. doi:10.1016/j.energy.2012.01.012.
  • Dam, N., A. Ricketts, B. Catlett, and J. Henriques. 2017. Wearable sensors for analyzing personal exposure to air pollution. 2017 systems and information engineering design symposium (SIEDS), Charlottesville, VA, USA.
  • Danias, N., J. K. Swales, and P. McGregor. 2013. The Greek electricity market reforms: Political and regulatory considerations. Energy Policy 62:1040–47. doi:10.1016/j.enpol.2013.08.010.
  • De Felice, M., M. B. Soares, A. Alessandri, and A. Troccoli. 2019. Scoping the potential usefulness of seasonal climate forecasts for solar power management. Renewable Energy 142:215–23. doi:10.1016/j.renene.2019.03.134.
  • de Haan, J. H., and J. Rotmans. 2011. Patterns in transitions: Understanding complex chains of change. Technological Forecasting and Social Change 78 (1):90–102. doi:10.1016/j.techfore.2010.10.008.
  • de Lima Andrade, A., and M. A. Dos Santos. 2015. Hydroelectric plants environmental viability: Strategic environmental assessment application in Brazil. Renewable and Sustainable Energy Reviews 52:1413–23. doi:10.1016/j.rser.2015.07.152.
  • Dones, R., C. Bauer, R. Bolliger, B. Burger, M. F. Emmenegger, R. Frischknecht, T. Heck, N. Jungbluth, A. Röder, and M. Tuchschmid. 2007. Life cycle inventories of energy systems: Results for current systems in Switzerland and other UCTE countries. Final Report Ecoinvent Data v2.0 No. 5, Paul Scherrer Institut villigen, Swiss Centre for Life Cycle Inventories, Düberdorf, CH.
  • Doukas, H., A. Flamos, and J. Psarras. 2011. Risks on the security of oil and gas supply. Energy Sources, Part B: Economics, Planning, and Policy 6 (4):417–25. doi:10.1080/15567240903047442.
  • Doukas, H., A. Nikas, M. González-Eguino, I. Arto, and A. Anger-Kraavi. 2018. From integrated to integrative: Delivering on the Paris Agreement. Sustainability 10 (7):2299. doi:10.3390/su10072299.
  • Doukas, H., A. Tsiousi, V. Marinakis, and J. Psarras. 2014b. Linguistic multi-criteria decision making for energy and environmental corporate policy. Information Sciences 258:328–38. doi:10.1016/j.ins.2013.08.027.
  • Doukas, H., C. Karakosta, A. Flamos, and J. Psarras. 2014a. Foresight for energy policy: Techniques and methods employed in Greece. Energy Sources, Part B: Economics, Planning, and Policy 9 (2):109–19. doi:10.1080/15567241003735217.
  • Doukas, H., K. D. Patlitzianas, A. G. Kagiannas, and J. Psarras. 2008. Energy policy making: An old concept or a modern challenge? Energy Sources, Part B: Economics, Planning, and Policy 3 (4):362–71. doi:10.1080/15567240701232378.
  • Doukas, H., W. Mannsbart, K. D. Patlitzianas, J. Psarras, M. Ragwitz, and B. Schlomann. 2007. A methodology for validating the renewable energy data in EU. Renewable Energy 32 (12):1981–98. doi:10.1016/j.renene.2006.10.007.
  • Drosatos, P., N. Nikolopoulos, E. Karampinis, G. Strotos, P. Grammelis, and E. Kakaras. 2020. Numerical comparative investigation of a flexible lignite-fired boiler using pre-dried lignite or biomass as supporting fuel. Renewable Energy 145:1831–48. doi:10.1016/j.renene.2019.07.071.
  • EC (European Commission). 2018. Coal regions in transition. Accessed January 19, 2020. https://ec.europa.eu/energy/en/topics/oil-gas-and-coal/EU-coal-regions/coal-regions-transition.
  • Edsand, H. E. 2017. Identifying barriers to wind energy diffusion in Colombia: A function analysis of the technological innovation system and the wider context. Technology in Society 49:1–15. doi:10.1016/j.techsoc.2017.01.002.
  • EEA (European Environment Agency). 2018. CO2 emission intensity. Accessed March 31, 2020. https://www.eea.europa.eu/data-and-maps/daviz/co2-emission-intensity-5.
  • Efstratiadis, A. 2019. Dams and their environmental impacts in Greece: Insights, problems and challenges. Accessed January 19, 2020. https://www.itia.ntua.gr/en/docinfo/1951/.
  • Eleftheriadis, I. M., and E. G. Anagnostopoulou. 2015. Identifying barriers in the diffusion of renewable energy sources. Energy Policy 80:153–64. doi:10.1016/j.enpol.2015.01.039.
  • Elliott, D. 2016. A balancing act for renewables. Nature Energy 1:15003. doi:10.1038/nenergy.2015.3.
  • Enevoldsen, P., and G. Xydis. 2019. Examining the trends of 35 years growth of key wind turbine components. Energy for Sustainable Development 50:18–26. doi:10.1016/j.esd.2019.02.003.
  • ENTSO-E (European Network of Transmission System Operators for Electricity). 2019. ENTSO-E transmission system map. Accessed January 19, 2020. https://www.entsoe.eu/data/map/.
  • Evans, A., V. Strezov, and T. J. Evans. 2010. Sustainability considerations for electricity generation from biomass. Renewable and Sustainable Energy Reviews 14 (5):1419–27. doi:10.1016/j.rser.2010.01.010.
  • Falkner, R. 2016. The Paris Agreement and the new logic of international climate politics. International Affairs 92 (5):1107–25. doi:10.1111/1468-2346.12708.
  • Fernández, A. G., J. Gomez-Vidal, E. Oró, A. Kruizenga, A. Solé, and L. F. Cabeza. 2019. Mainstreaming commercial CSP systems: A technology review. Renewable Energy 140:152–76. doi:10.1016/j.renene.2019.03.049.
  • Forouli, A., N. Gkonis, A. Nikas, E. Siskos, H. Doukas, and C. Tourkolias. 2019. Energy efficiency promotion in Greece in light of risk: Evaluating policies as portfolio assets. Energy 170:818–31. doi:10.1016/j.energy.2018.12.180.
  • Fotiadi, I. 2009. The slow development of wind farms. Kathimerini, May 30. Accessed January 19, 2020. https://www.kathimerini.gr/359658/article/epikairothta/ellada/me-ry8moys-xelwnas-ta-aiolika-parka.
  • Frantzeskaki, N. 2011. Dynamics of societal transitions; driving forces and feedback loops. Doctoral Thesis, TU Delft.
  • Fritsche, U., and L. Rausch. 2009. Life cycle analysis of GHG and air pollutant emissions from renewable and conventional electricity, heating, and transport fuel options in the EU until 2030. Technical Paper No. 18, The European Topic Centre on Air and Climate Change, Öko-Institut.
  • Gambhir, A., F. Green, and P. J. G. Pearson. 2018. Towards a just and equitable low-carbon energy transition. Briefing Paper No. 26, Grantham Institute, Imperial College London.
  • Gao, P., and H. Yun. 2009. Liquidity backstop, corporate borrowings, and real effects. https://ssrn.com/abstract=1421908.
  • Ge, T. S., R. Z. Wang, Z. Y. Xu, Q. W. Pan, S. Du, X. M. Chen, T. Ma, X. N. Wu, X. L. Sun, and J. F. Chen. 2018. Solar heating and cooling: Present and future development. Renewable Energy 126:1126–40. doi:10.1016/j.renene.2017.06.081.
  • Geels, F. W. 2002. Technological transitions as evolutionary reconfiguration processes: A multi-level perspective and a case-study. Research Policy 31 (8–9):1257–74. doi:10.1016/S0048-7333(02)00062-8.
  • Geels, F. W. 2005a. Co-evolution of technology and society: The transition in water supply and personal hygiene in the Netherlands (1850–1930)—A case study in multi-level perspective. Technology in Society 27 (3):363–97. doi:10.1016/j.techsoc.2005.04.008.
  • Geels, F. W. 2005b. Processes and patterns in transitions and system innovations: Refining the co-evolutionary multi-level perspective. Technological Forecasting and Social Change 72 (6):681–96. doi:10.1016/j.techfore.2004.08.014.
  • Geels, F. W. 2005c. Technological transitions and system innovations: A co-evolutionary and socio-technical analysis. Edward Elgar Publishing, Cheltenham, UK.
  • Geels, F. W. 2011. The multi-level perspective on sustainability transitions: Responses to seven criticisms. Environmental Innovation and Societal Transitions 1 (1):24–40. doi:10.1016/j.eist.2011.02.002.
  • Geels, F. W. 2012. A socio-technical analysis of low-carbon transitions: Introducing the multi-level perspective into transport studies. Journal of Transport Geography 24:471–82. doi:10.1016/j.jtrangeo.2012.01.021.
  • Geels, F. W. 2014. Regime resistance against low-carbon transitions: Introducing politics and power into the multi-level perspective. Theory, Culture & Society 31 (5):21–40. doi:10.1177/0263276414531627.
  • Geels, F. W., A. McMeekin, and B. Pfluger. 2018. Socio-technical scenarios as a methodological tool to explore social and political feasibility in low-carbon transitions: Bridging computer models and the multi-level perspective in UK electricity generation (2010–2050). Technological Forecasting and Social Change, Vol. 151. pp. 119258.
  • Geels, F. W., and J. Schot. 2007. Typology of sociotechnical transition pathways. Research Policy 36 (3):399–417. doi:10.1016/j.respol.2007.01.003.
  • Georgakellos, D. A. 2006. The marginal external cost of electricity coming from a typical oil power plant in Greece. Proceedings of IASME/WSEAS international conference on energy, environment, and sustainable development, Vouliagmeni, Greece, July 11–13.
  • Georgakellos, D. A. 2010. Impact of a possible environmental externalities internalisation on energy prices: The case of the greenhouse gases from the Greek electricity sector. Energy Economics 32 (1):202–09. doi:10.1016/j.eneco.2009.05.010.
  • Georgakellos, D. A. 2012. Climate change external cost appraisal of electricity generation systems from a life cycle perspective: The case of Greece. Journal of Cleaner Production 32:124–40. doi:10.1016/j.jclepro.2012.03.030.
  • Giannini, E., A. Moropoulou, Z. Maroulis, and G. Siouti. 2015. Penetration of photovoltaics in Greece. Energies 8 (7):6497–508. doi:10.3390/en8076497.
  • Gibson, H. D., S. G. Hall, and G. S. Tavlas. 2012. The Greek financial crisis: Growing imbalances and sovereign spreads. Journal of International Money and Finance 31 (3):498–516. doi:10.1016/j.jimonfin.2011.10.009.
  • Griggs, D., M. Stafford-Smith, O. Gaffney, J. Rockström, M. C. Öhman, P. Shyamsundar, W. Steffen, G. Glaser, N. Kanie, and I. Noble. 2013. Policy: Sustainable development goals for people and planet. Nature 495 (7441):305. doi:10.1038/495305a.
  • Gupta, J., and C. Vegelin. 2016. Sustainable development goals and inclusive development. International Environmental Agreements: Politics, Law and Economics 16 (3):433–48. doi:10.1007/s10784-016-9323-z.
  • Gurgul, H. 2011. The role of coal consumption in the economic growth of the Polish economy in transition. Energy Policy 39 (4):2088–99. doi:10.1016/j.enpol.2011.01.052.
  • Hatalis, M. 2012. Greek sovereign debt and the rocky road to recovery. Paper No. 12, Lehigh University. Accessed January 19, 2020. https://preserve.lehigh.edu/perspectives-v30/12/.
  • Hatziargyriou, N., I. Margaris, I. Stavropoulou, S. Papathanassiou, and A. Dimeas. 2017. Noninterconnected island systems: The Greek case. IEEE Electrification Magazine 5 (2):17–27. doi:10.1109/MELE.2017.2685739.
  • He, S., L. Zhao, S. Ding, S. Liang, L. Dong, J. Wang, Y. Feng, and L. Liu. 2019. Mapping economic drivers of China’s NOx emissions due to energy consumption. Journal of Cleaner Production 241:118130. doi:10.1016/j.jclepro.2019.118130.
  • IEA (International Energy Agency). 2017. Data and statistics. Accessed January 19, 2020. https://www.iea.org/data-and-statistics.
  • IEA (International Energy Agency). 2018. World energy balances 2018. Paris: OECD Publishing.
  • IEA (International Energy Agency). 2019. Data and statistics. Accessed January 19, 2020. https://www.iea.org/data-and-statistics?country=GREECE&fuel=CO2%20emissions&indicator=CO2%20emissions%20by%20energy%20source.
  • IENE (Institute of Energy of South East Europe). 2012. The role of lignite power plants for further development of the electricity sector of Greece. Accessed January 19, 2020. https://www.iene.gr/energy-development2012/articlefiles/session2/%CE%9Cizan.pdf.
  • Iliadou, E. N. 2009. Electricity sector reform in Greece. Utilities Policy 17 (1):76–87. doi:10.1016/j.jup.2008.03.002.
  • IPTO (Independent Power Transmission Operator). 2019a. Monthly energy reports. Accessed January 19, 2020. http://www.admie.gr/en/market-statistics/montlhy-energy-balance/.
  • IPTO (Independent Power Transmission Operator). 2019b. Transmission system description. Accessed January 19, 2020. http://www.admie.gr/en/transmission-system/system-data-description/transmission-system-description/.
  • Ivashina, V., and D. Scharfstein. 2010. Bank lending during the financial crisis of 2008. Journal of Financial Economics 97 (3):319–38. doi:10.1016/j.jfineco.2009.12.001.
  • Jäger-Waldau, A. 2019. PV status report 2019. EUR 29938 EN, Publications Office of the European Union, Luxembourg.
  • Jäger-Waldau, A., C. Bucher, K. H. B. Frederiksen, R. Guerro-Lemus, G. Mason, B. Mather, C. Mayr, D. Moneta, J. Nikoletatos, and M. B. Roberts. 2018. Self-consumption of electricity produced from PV systems in apartment buildings-comparison of the situation in Australia, Austria, Denmark, Germany, Greece, Italy, Spain, Switzerland and the USA. 2018 IEEE 7th world conference on photovoltaic energy conversion (WCPEC) (A joint conference of 45th IEEE PVSC, 28th PVSEC & 34th EU PVSEC), Waikoloa Village, HI, US.
  • Jungbluth, N., and E. R. Dones. 2007. Sachbilanzen von Energiesystemen: Grundlagen fur den okologischen Vergleich von Energiesystemen und den Einbezug von Energiesystemen in Okobilanzen fur die Schweiz. Ecoinvent Report No. 6, Swiss Centre for Life Cycle Inventories, Dübendorf, CH.
  • Jungmeier, G., G. Resch, and J. Spitzer. 1998. Environmental burdens over the entire life cycle of a biomass CHP plant. Biomass & Bioenergy 15 (4–5):311–23. doi:10.1016/S0961-9534(98)00039-7.
  • Kabir, E., P. Kumar, S. Kumar, A. A. Adelodun, and K. H. Kim. 2018. Solar energy: Potential and future prospects. Renewable and Sustainable Energy Reviews 82:894–900. doi:10.1016/j.rser.2017.09.094.
  • Kaldellis, J. K. 2005. Social attitude towards wind energy applications in Greece. Energy Policy 33 (5):595–602. doi:10.1016/j.enpol.2003.09.003.
  • Kaldellis, J. K. 2020. What is the wind energy progress in Greece? Prospects and problems. Editors: A. Sayigh, D. Milborrow, In The Age of wind energy, 23–40. Cham, Switzerland: Springer.
  • Kaldellis, J. K., and D. Apostolou. 2018. Wind power contribution in achieving global renewable energy targets: Current status and future prospects. Renewable Energy Engineering: Solar, Wind, Biomass, Hydrogen and Geothermal Energy Systems 3:238–71.
  • Kaldellis, J. K., D. Zafirakis, and E. Kondili. 2009. Contribution of lignite in the Greek electricity generation: Review and future prospects. Fuel 88 (3):475–89. doi:10.1016/j.fuel.2008.09.021.
  • Kaldellis, J. K., G. T. Vlachos, A. G. Paliatsos, and E. M. Kondili. 2005. Detailed examination of the Greek electricity sector nitrogen oxides emissions for the period 1995–2002. Environmental Science & Policy 8 (5):502–14. doi:10.1016/j.envsci.2005.06.001.
  • Kaldellis, J. K., and M. Kapsali. 2014. Evaluation of the long-term environmental performance of Greek lignite-fired power stations. Renewable and Sustainable Energy Reviews 31:472–85. doi:10.1016/j.rser.2013.12.012.
  • Kaldellis, J. K., M. Kapsali, and E. Katsanou. 2012. Renewable energy applications in Greece—What is the public attitude? Energy Policy 42:37–48. doi:10.1016/j.enpol.2011.11.017.
  • Katsaprakakis, D. A. 2016. Hybrid power plants in non-interconnected insular systems. Applied Energy 164:268–83. doi:10.1016/j.apenergy.2015.11.085.
  • Kavadias, K. A., P. Alexopoulos, and G. Charis. 2019. Techno-economic evaluation of geothermal-solar power plant in Nisyros island in Greece. Energy Procedia 159:136–41. doi:10.1016/j.egypro.2018.12.031.
  • Kavouridis, K. 2008. Lignite industry in Greece within a world context: Mining, energy supply and environment. Energy Policy 36 (4):1257–72. doi:10.1016/j.enpol.2007.11.017.
  • Kelektsoglou, K. 2018. Carbon capture and storage: A review of mineral storage of CO2 in Greece. Sustainability 10 (12):4400. doi:10.3390/su10124400.
  • Kellenberger, D., H. J. Althaus, N. Jungbluth, T. Künniger, M. Lehmann, and P. Thalmann. 2007. Life cycle inventories of building products. Final Report Ecoinvent Data v2.0 No. 7, EMPA Dübendorf, Swiss Centre for Life Cycle Inventories, Dübendorf, CH.
  • Kis, Z., N. Pandya, and R. H. E. M. Koppelaar. 2018. Electricity generation technologies: Comparison of materials use, energy return on investment, jobs creation and CO2 emissions reduction. Energy Policy 120:144–57. doi:10.1016/j.enpol.2018.05.033.
  • Koçak, E., and A. Şarkgüneşi. 2017. The renewable energy and economic growth nexus in Black sea and Balkan countries. Energy Policy 100:51–57. doi:10.1016/j.enpol.2016.10.007.
  • Köhler, J., F. W. Geels, F. Kern, J. Markard, E. Onsongo, A. Wieczorek, F. Alkemade, F. Avelino, A. Bergek, F. Boons, et al. 2019. An agenda for sustainability transitions research: State of the art and future directions. Environmental Innovation And Societal Transitions 31:1–32. doi:10.1016/j.eist.2019.01.004.
  • Kolovos, C. J. 2006. Technical aspects regarding the opening of a new mine with old already-existing equipment. Energy Sources, Part B: Economics, Planning, and Policy 1 (1):1–7. doi:10.1080/009083190892704.
  • Konstantinidis, C., and A. Vlachou. 2018. Appropriating nature in crisis-ridden Greece: Deepening neoliberal capitalism, part 2. Capitalism Nature Socialism 29 (2):108–21. doi:10.1080/10455752.2016.1264712.
  • Kordas, I. J. 2006. Lignite as contributory factor to regional development of Greece-The case of Megalopolis basin at Central Peloponnese. European regional science association. 46th congress, Volos.
  • Korre, A., and S. Durucan. 2009. Life cycle assessment of aggregates, EVA025–Final report: Aggregates industry life cycle assessment model: Modelling tools and case studies. Waste and Resources Action Programme, Oxon.
  • Kotroyannos, D., S. I. Tzagkarakis, E. Mavrozacharakis, and A. Kamekis. 2017. Utopian left-wing expectations and the social consequences of the 3rd memorandum in Greece. European Quarterly of Political Attitudes and Mentalities 6 (2):55–66.
  • Koukiadaki, A., and L. Kretsos. 2012. Opening pandora’s box: The sovereign debt crisis and labour market regulation in Greece. Industrial Law Journal 41 (3):276–304. doi:10.1093/indlaw/dws031.
  • Koukouzas, N., Z. Kypritidou, G. Purser, C. A. Rochelle, C. Vasilatos, and N. Tsoukalas. 2018. Assessment of the impact of CO2 storage in sandstone formations by experimental studies and geochemical modeling: The case of the Mesohellenic Trough, NW Greece. International Journal of Greenhouse Gas Control 71:116–32. doi:10.1016/j.ijggc.2018.01.016.
  • Koutsovitis, P. 2012. Gabbroic rocks in ophiolitic occurrences from East Othris, Greece: Petrogenetic processes and geotectonic environment implications. Mineralogy and Petrology 104 (3–4):249–65. doi:10.1007/s00710-011-0191-5.
  • Kyritsis, A., D. Voglitsis, N. Papanikolaou, S. Tselepis, C. Christodoulou, I. Gonos, and S. A. Kalogirou. 2017. Evolution of PV systems in Greece and review of applicable solutions for higher penetration levels. Renewable Energy 109:487–99. doi:10.1016/j.renene.2017.03.066.
  • LAGIE. 2015. Monthly report on electricity production trading system. Accessed January 19, 2020. http://www.lagie.gr/fileadmin/groups/EDRETH/DAS_Monthly_Reports/201511_DAS_Monthly_Report.pdf.
  • LAGIE. 2019a. Monthly reports on energy. Accessed January 19, 2020. http://www.admie.gr/deltia-agoras/miniaia-deltia-energeias/doccat/list/Document/.
  • LAGIE. 2019b. RES & CHP monthly statistics of special accounts. Accessed January 19, 2020. http://www.lagie.gr/systima-eggyimenon-timon/ape-sithya/miniaia-deltia-eidikoy-logariasmoy-ape-sithya/.
  • LAGIE. 2019c. RES & CHP monthly statistics. Accessed January 19, 2020. http://www.lagie.gr/en/feed-in-tariffs/res-chp/res-chp-monthly-statistics/.
  • Lavidas, G. 2019. Energy and socio-economic benefits from the development of wave energy in Greece. Renewable Energy 132:1290–300. doi:10.1016/j.renene.2018.09.007.
  • Lieu, J., N. A. Spyridaki, R. Alvarez-Tinoco, W. van der Gaast, A. Tuerk, and O. van Vliet. 2018. Evaluating consistency in environmental policy mixes through policy, stakeholder, and contextual interactions. Sustainability 10 (6):1896. doi:10.3390/su10061896.
  • Lioutas, N., S. Lazarou, G. Marmidis, E. Pyrgioti, and D. Agoris. 2007. Overhead line and cable mapping of the Greek electric transmission system, for the study of transitional overvoltages, using EMTP-ATP. 15th international symposium on high voltage engineering, ISH 2007, Ljubljana, Slovenia.
  • Magganas, A., and P. Koutsovitis. 2015. Composition, melting and evolution of the upper mantle beneath the Jurassic Pindos ocean inferred by ophiolitic ultramafic rocks in East Othris, Greece. International Journal of Earth Sciences 104 (5):1185–207. doi:10.1007/s00531-014-1137-z.
  • Markard, J., and B. Truffer. 2008. Technological innovation systems and the multi-level perspective: Towards an integrated framework. Research Policy 37 (4):596–615. doi:10.1016/j.respol.2008.01.004.
  • Martinopoulos, G., and G. Tsalikis. 2018. Diffusion and adoption of solar energy conversion systems–The case of Greece. Energy 144:800–07. doi:10.1016/j.energy.2017.12.093.
  • McDowall, W. 2014. Exploring possible transition pathways for hydrogen energy: A hybrid approach using socio-technical scenarios and energy system modelling. Futures 63:1–14. doi:10.1016/j.futures.2014.07.004.
  • Melikoglu, M. 2018. Current status and future of ocean energy sources: A global review. Ocean Engineering 148:563–73. doi:10.1016/j.oceaneng.2017.11.045.
  • Michas, S., V. Stavrakas, S. Papadelis, and A. Flamos. 2020. A transdisciplinary modeling framework for the participatory design of dynamic adaptive policy pathways. Energy Policy 139:111350. doi:10.1016/j.enpol.2020.111350.
  • Ministry of Energy. 2018a. Annual environmental report Agios Dimitrios 2018. Accessed January 19, 2020. http://www.ypeka.gr/LinkClick.aspx?fileticket=RY264YS6JRE%3d&tabid=965&language=el-GR
  • Ministry of Energy. 2018b. Annual environmental report amyntaio 2018. Accessed January 19, 2020 http://ypeka.gr/LinkClick.aspx?fileticket=0iWGOZ9O3vE%3D&tabid=965&language=el-GR.
  • Ministry of Energy. 2018c. Annual environmental report Kardia 2018. Accessed January 19, 2020 http://www.ypeka.gr/LinkClick.aspx?fileticket=6Bp5W875IAA%3d&tabid=965&language=el-GR.
  • Ministry of Energy. 2018d. Annual environmental report Megalopoli A 2018. Accessed January 19, 2020 http://www.ypeka.gr/LinkClick.aspx?fileticket=lo7WI%2BImUNY%3D&tabid=965&language=el-GR.
  • Ministry of Energy. 2018e. Annual environmental report Megalopoli B 2018. Accessed January 19, 2020 http://www.ypeka.gr/LinkClick.aspx?fileticket=M5%2FtDfy%2Bi%2Fo%3D&tabid=965&language=el-GR.
  • Ministry of Energy. 2018f. Annual environmental report melitis 2018. Accessed January 19, 2020. http://www.ypeka.gr/LinkClick.aspx?fileticket=3JJbqLNoFs0%3D&tabid=966&language=el-GR.
  • Mirek, K., and J. Mirek. 2011. Correlation between ground subsidence and induced mining seismicity, Upper Silesia coal basin case study. Polish Journal of Environmental Studies 20 (4A):253–57.
  • Moallemi, E. A., F. J. de Haan, J. M. Webb, B. A. George, and L. Aye. 2017. Transition dynamics in state-influenced niche empowerments: Experiences from India’s electricity sector. Technological Forecasting and Social Change 116:129–41. doi:10.1016/j.techfore.2016.10.067.
  • Mortazavi, M., and R. S. J. Sparks. 2004. Origin of rhyolite and rhyodacite lavas and associated mafic inclusions of Cape Akrotiri, Santorini: The role of wet basalt in generating calcalkaline silicic magmas. Contributions to Mineralogy and Petrology 146 (4):397–413. doi:10.1007/s00410-003-0508-4.
  • Moustakas, K., P. Parmaxidou, and S. Vakalis. 2019. Anaerobic digestion for energy production from agricultural biomass waste in Greece: Capacity assessment for the region of Thessaly. Energy. Vol. 191, pp. 116556.
  • Nádudvari, A., M. J. Fabiańska, L. Marynowski, B. Kozielska, J. Konieczyński, D. Smołka-Danielowska, and S. Ćmiel. 2018. Distribution of coal and coal combustion related organic pollutants in the environment of the Upper Silesian industrial region. Science of the Total Environment 628:1462–88. doi:10.1016/j.scitotenv.2018.02.092.
  • Naftemporiki. 2019. Public Power Company: The new tender for lignite units has been launched. Naftemporiki, March 8. Accessed January 19, 2020. https://www.naftemporiki.gr/finance/story/1452097/dei-prokiruxthike-o-neos-diagonismos-gia-tis-lignitikes-monades.
  • Nelson, R. R., and S. G. Winter. 1982. An evolutionary theory of economic change. Cambridge, MA: Belknap Press.
  • Neuhoff, K., K. K. Martinez, and M. Sato. 2006. Allocation, incentives and distortions: The impact of EU ETS emissions allowance allocations to the electricity sector. Climate Policy 6 (1):73–91. doi:10.1080/14693062.2006.9685589.
  • New Climate Institute. 2019. De-risking onshore wind investment – Case study: South East Europe. Study on behalf of Agora Energiewende. www.agora-energiewende.de. Accessed April 2, 2020. https://www.agora-energiewende.de/fileadmin2/Projekte/2019/De-risking_SEE/161_Unlocking_SEE_EN_WEB.pdf.
  • Newman, H. R. 2013. The mineral industry of Greece. Minerals Yearbook-Area Reports: International Review: 2011, Europe and Central Eurasia 3:14.
  • Nguyen, T. T., T. T. Nguyen, V. N. Hoang, C. Wilson, and S. Managi. 2019. Energy transition, poverty and inequality in Vietnam. Energy Policy 132:536–48. doi:10.1016/j.enpol.2019.06.001.
  • Nikas, A., E. Ntanos, and H. Doukas. 2019. A semi-quantitative modelling application for assessing energy efficiency strategies. Applied Soft Computing 76:140–55. doi:10.1016/j.asoc.2018.12.015.
  • Nikas, A., H. Doukas, J. Lieu, R. A. Tinoco, V. Charisopoulos, and W. van der Gaast. 2017. Managing stakeholder knowledge for the evaluation of innovation systems in the face of climate change. Journal of Knowledge Management 21 (5):1013–34. doi:10.1108/JKM-01-2017-0006.
  • Nikas, A., N. Gkonis, A. Forouli, E. Siskos, A. Arsenopoulos, A. Papapostolou, E. Kanellou, C. Karakosta, and H. Doukas. 2019. From near-term actions to long-term pathways–risks and uncertainties associated with the national energy efficiency framework. In Hanger-Kopp, S., Lieu, J., Nikas, A. (eds.) Narratives of Low-Carbon Transitions. pp. 180–197. Routledge, London, UK.
  • Nikas, A., V. Stavrakas, A. Arsenopoulos, H. Doukas, M. Antosiewicz, J. Witajewski-Baltvilks, and A. Flamos. 2018. Barriers to and consequences of a solar-based energy transition in Greece. Environmental Innovation and Societal Transitions. doi:10.1016/j.eist.2018.12.004.
  • Nikolaidis, G., A. Karaolia, A. Matsikaris, A. Nikolaidis, M. Nicolaides, and G. C. Georgiou. 2019. Blue energy potential analysis in the Mediterranean. Frontiers in Energy Research 7 (62):12. doi:10.3389/fenrg.2019.00062.
  • Nikolaou, A., and D. Diakoulaki. 2003. Life cycle assessment of a bio-electricity system in Greece. Proceedings of the 8th international conference on environmental science and technology, Lemnos Island, Greece, September 8–10. Full paper vol. B.
  • Noll, D., D. Wiedenhofer, A. Miatto, and S. J. Singh. 2019. The expansion of the built environment, waste generation and EU recycling targets on Samothraki, Greece: An island’s dilemma. Resources, Conservation and Recycling 150:104405. doi:10.1016/j.resconrec.2019.104405.
  • Nykvist, B., and L. Whitmarsh. 2008. A multi-level analysis of sustainable mobility transitions: Niche development in the UK and Sweden. Technological Forecasting and Social Change 75 (9):1373–87. doi:10.1016/j.techfore.2008.05.006.
  • Oikonomou, V., A. Flamos, D. Zeugolis, and S. Grafakos. 2012. A qualitative assessment of EU energy policy interactions. Energy Sources, Part B: Economics, Planning, and Policy 7 (2):177–87. doi:10.1080/15567240902788996.
  • Oikonomou, V., A. Flamos, and S. Grafakos. 2014. Combination of energy policy instruments: Creation of added value or overlapping? Energy Sources, Part B: Economics, Planning, and Policy 9 (1):46–56. doi:10.1080/15567241003716696.
  • Orfanos, N., D. Mitzelos, A. Sagani, and V. Dedoussis. 2019. Life-cycle environmental performance assessment of electricity generation and transmission systems in Greece. Renewable Energy 139:1447–62. doi:10.1016/j.renene.2019.03.009.
  • Pantusa, D., and G. R. Tomasicchio. 2019. Large-scale offshore wind production in the Mediterranean sea. Cogent Engineering 6 (1):1661112. doi:10.1080/23311916.2019.1661112.
  • Papada, L., N. Katsoulakos, I. Doulos, D. Kaliampakos, and D. Damigos. 2019. Analyzing energy poverty with Fuzzy cognitive maps: A step-forward towards a more holistic approach. Energy Sources, Part B: Economics, Planning, and Policy 14 (5):159–82. doi:10.1080/15567249.2019.1634162.
  • Papadelis, S., A. Flamos, and J. Psarras. 2013. A framework to address uncertainties in energy policy formulation. Energy Sources, Part B: Economics, Planning, and Policy 8 (3):270–78. doi:10.1080/15567240903419377.
  • Papadelis, S., V. Stavrakas, and A. Flamos. 2016. What do capacity deployment rates tell us about the efficiency of electricity generation from renewable energy sources support measures in Greece? Energies 9 (1):38. doi:10.3390/en9010038.
  • Papadopoulos, M. 2018. The establishment and development of Public Power Company. Kathimerini, April 16. Accessed January 19, 2020. https://www.kathimerini.gr/959053/gallery/epikairothta/ellada/h-idrysh-kai-anapty3h-ths-deh.
  • Papagiannis, A., D. Roussos, M. Menegaki, and D. Damigos. 2014. Externalities from lignite mining-related dust emissions. Energy Policy 74:414–24. doi:10.1016/j.enpol.2014.08.026.
  • RAE. 2001. Map of power stations and transmission network. Accessed January 19, 2020. rae.gr/old/sub3/3B/3b3.htm.
  • RAE. 2013. Thermal power plants in the interconnected system. Accessed January 19, 2020. http://www.rae.gr/site/file/categories_new/about_rae/factsheets/2013/mods/07112013?p=file&i=0.
  • RAE. 2014. Non-interconnected islands. Accessed January 19, 2020. www.rae.gr/site/categories_new/electricity/market/mdn.cs.
  • RAE. 2019a. Electricity supply & competition. Accessed January 19, 2020. http://www.rae.gr/site/categories_new/consumers/know_about/electricity/competition.csp.
  • RAE. 2019b. The Greek energy system – Natural Gas. Accessed January 19, 2020. http://www.rae.gr/old/sub3/3B/3b2.htm.
  • Rip, A., and R. Kemp. 1998. Technological change. In Human choice and climate change. Vol. 2, 327–99. Columbus, OH: Battelle Press.
  • Rogge, K. S., B. Pfluger, and F. W. Geels. 2018. Transformative policy mixes in socio-technical scenarios: The case of the low-carbon transition of the German electricity system (2010–2050). Technological Forecasting and Social Change, Vol. 151. pp. 119259.
  • Roinioti, A., and C. Koroneos. 2019. Integrated life cycle sustainability assessment of the Greek interconnected electricity system. Sustainable Energy Technologies and Assessments 32:29–46. doi:10.1016/j.seta.2019.01.003.
  • Roumpos, C., and E. Papacosta. 2013. Strategic mine planning of surface mining projects incorporating sustainability concepts. Proceedings, 6th international conference on sustainable development in the minerals industry (SDIMI 2013), Milos Island, Greece, June.
  • Roupas, C., A. Flamos, and J. Psarras. 2011. Comparative analysis of EU member countries vulnerability in oil and gas. Energy Sources, Part B: Economics, Planning, and Policy 6 (4):348–56. doi:10.1080/15567240802706742.
  • Saccani, E., and A. Photiades. 2004. Mid-ocean ridge and supra-subduction affinities in the Pindos ophiolites (Greece): Implications for magma genesis in a forearc setting. Lithos 73 (3–4):229–53. doi:10.1016/j.lithos.2003.12.002.
  • Sachs, J., G. Schmidt-Traub, C. Kroll, G. Lafortune, and G. Fuller. 2019. Sustainable development report 2019. New York, NY: Bertelsmann Stiftung and Sustainable Development Solutions Network (SDSN).
  • Sachs, J. D. 2012. From millennium development goals to sustainable development goals. The Lancet 379 (9832):2206–11. doi:10.1016/S0140-6736(12)60685-0.
  • Sagani, A., M. Hagidimitriou, and V. Dedoussis. 2019. Perennial tree pruning biomass waste exploitation for electricity generation: The perspective of Greece. Sustainable Energy Technologies and Assessments 31:77–85. doi:10.1016/j.seta.2018.11.001.
  • Sakellaridis, N., J. Mantzaris, C. Nakos, G. Giannakidis, and K. Tigas. 2011. Hellenic power generation system: Towards meeting the national targets up to 2020. 2011 10th international conference on environment and electrical engineering, Rome, Italy   .
  • Samara, C., G. Argyropoulos, T. Grigoratos, A. Kouras, E. Manoli, S. Andreadou, F. Pavloudakis, and C. Sahanidis. 2018. Chemical characterization and receptor modeling of PM 10 in the surroundings of the opencast lignite mines of Western Macedonia, Greece. Environmental Science and Pollution Research 25 (13):12206–21. doi:10.1007/s11356-017-9655-4.
  • Sari, R., E. Voyvoda, M. Lacey-Barnacle, E. Karababa, C. Topal, and D. Islambay. 2017. Energy justice-a social sciences and humanities cross-cutting theme report. Cambridge: SHAPE ENERGY.
  • Schot, J. 1998. The usefulness of evolutionary models for explaining innovation. The case of the Netherlands in the nineteenth century. History and Technology, an International Journal 14 (3):173–200. doi:10.1080/07341519808581928.
  • Sebastián, F., J. Royo, and M. Gómez. 2011. Cofiring versus biomass-fired power plants: GHG (Greenhouse gases) emissions savings comparison by means of LCA (Life cycle assessment) methodology. Energy 36 (4):2029–37. doi:10.1016/j.energy.2010.06.003.
  • Smith, A. 2007. Translating sustainabilities between green niches and socio-technical regimes. Technology Analysis & Strategic Management 19 (4):427–50. doi:10.1080/09537320701403334.
  • Sorman, A. H., X. García-Muros, C. Pizarro-Irizar, and M. González-Eguino. 2020. Lost (and found) in transition: Expert stakeholder insights on low-carbon energy transitions in Spain. Energy Research & Social Science 64:101414. doi:10.1016/j.erss.2019.101414.
  • Soukissian, T., F. Karathanasi, P. Axaopoulos, E. Voukouvalas, and V. Kotroni. 2018. Offshore wind climate analysis and variability in the Mediterranean sea. International Journal of Climatology 38 (1):384–402. doi:10.1002/joc.5182.
  • Spilanis, G. 1999. Summary of the report on the regional development plan 2000–2006. Island area development. University of the Aegean. Accessed January 19, 2020. http://www1.aegean.gr/lid/internet/elliniki_ekdosi/Dimosieuseis/Espace-Insulaire.htm.
  • Spiliotis, E., A. Arsenopoulos, E. Kanellou, J. Psarras, and P. Kontogiorgos. 2020. A multi-sourced data based framework for assisting utilities identify energy poor households: A case-study in Greece. Energy Sources, Part B: Economics, Planning, and Policy 1–23. doi:10.1080/15567249.2020.1739783.
  • Stavrakas, V., and A. Flamos. 2020. A modular high-resolution demand-side management model to quantify benefits of demand-flexibility in the residential sector. Energy Conversion and Management 205:112339. doi:10.1016/j.enconman.2019.112339.
  • Stavrakas, V., S. Papadelis, and A. Flamos. 2019. An agent-based model to simulate technology adoption quantifying behavioural uncertainty of consumers. Applied Energy 255:113795. doi:10.1016/j.apenergy.2019.113795.
  • Stouraiti, C., I. Pantziris, C. Vasilatos, C. Kanellopoulos, P. Mitropoulos, P. Pomonis, R. Moritz, and M. Chiaradia. 2017. Ophiolitic remnants from the upper and intermediate structural unit of the attic-cycladic crystalline belt (Aegean, Greece): Fingerprinting geochemical affinities of magmatic precursors. Geosciences 7 (1):14. doi:10.3390/geosciences7010014.
  • Strantzali, E., K. Aravossis, and G. A. Livanos. 2017. Evaluation of future sustainable electricity generation alternatives: The case of a Greek island. Renewable and Sustainable Energy Reviews 76:775–87. doi:10.1016/j.rser.2017.03.085.
  • Swain, R. B., and A. Karimu. 2020. Renewable electricity and sustainable development goals in the EU. World Development 125:104693. doi:10.1016/j.worlddev.2019.104693.
  • Tasianas, A., and N. Koukouzas. 2016. CO2 storage capacity estimate in the lithology of the Mesohellenic trough, Greece. Energy Procedia 86:334–41. doi:10.1016/j.egypro.2016.01.034.
  • TEE. 2008. Electricity production from fossil fuels. Accessed January 19, 2020. library.tee.gr/digital/m2483/m2483_bonataki.pdf.
  • TEE. 2010. The hydroelectric power production of PPC S.A. Accessed January 19, 2020. http://library.tee.gr/digital/m2483/m2483_argirakis.pdf.
  • Tourkolias, C., S. Mirasgedis, D. Damigos, and D. Diakoulaki. 2009. Employment benefits of electricity generation: A comparative assessment of lignite and natural gas power plants in Greece. Energy Policy 37 (10):4155–66. doi:10.1016/j.enpol.2009.05.015.
  • Tranberg, B., O. Corradi, B. Lajoie, T. Gibon, I. Staffell, and G. B. Andresen. 2019. Real-time carbon accounting method for the European electricity markets. Energy Strategy Reviews 26:100367. doi:10.1016/j.esr.2019.100367.
  • Tsirambides, A., and A. Filippidis. 2012. Metallic mineral resources of Greece. Open Geosciences 4 (4):641–50. doi:10.2478/s13533-012-0110-2.
  • Tsirogiannis, E., P. Angelidis, and N. Kotsovinos. 2019. Hydrodynamic circulation under tide conditions at the Gulf of Evoikos, Greece. Computational Water, Energy, and Environmental Engineering 8 (3):57. doi:10.4236/cweee.2019.83004.
  • Tzogopoulos, G. N. 2017. Greece, Israel, and China’s belt and road initiative. Mideast Security and Policy Studies No. 139, The Begin-Sadat Center for Strategic Studies Bar-Ilan University.
  • Upham, P., P. Kivimaa, P. Mickwitz, and K. Åstrand. 2014. Climate policy innovation: A sociotechnical transitions perspective. Environmental Politics 23 (5):774–94. doi:10.1080/09644016.2014.923632.
  • Vagiona, D., and M. Kamilakis. 2018. Sustainable site selection for offshore wind farms in the South Aegean—Greece. Sustainability 10 (3):749.
  • van der Gaast, W., V. Oikonomou, and A. Flamos. 2013. Domestic offsets in practice: Modalities and implications. Energy Sources, Part B: Economics, Planning, and Policy 8 (2):144–53. doi:10.1080/15567240903330392.
  • van Driel, H., and J. Schot. 2005. Radical innovation as a multilevel process: Introducing floating grain elevators in the port of Rotterdam. Technology and Culture 46 (1):51–76. doi:10.1353/tech.2005.0011.
  • van Sluisveld, M. A., A. F. Hof, S. Carrara, F. W. Geels, W. Nilsson, K. Rogge, K. Turnheim, and D. P. van Vuuren. 2018. Aligning integrated assessment modelling with socio-technical transition insights: An application to low-carbon energy scenario analysis in Europe. Technological Forecasting and Social Change. Vol. 151. pp. 119177.
  • van Soest, H. L., D. P. van Vuuren, J. Hilaire, J. C. Minx, M. J. H. M. Harmsen, V. Krey, A. Popp, K. Riahi, and G. Luderer. 2019. Analysing interactions among sustainable development goals with integrated assessment models. Global Transitions 1:210–25. doi:10.1016/j.glt.2019.10.004.
  • Vapur, H., and S. Top. 2017. Comparison of coal-based energy production with other resources to determine an effective method in Turkey. Energy Sources, Part B: Economics, Planning, and Policy 12 (3):282–88. doi:10.1080/15567249.2015.1112859.
  • Vasilakos, N. 2019. Energy transition challenges and development priorities for the Greek energy sector in the coming decade. Robert Schuman Centre for Advanced Studies Research Paper No. RSCAS 37..
  • Vatalis, K. I., A. Laaksonen, G. Charalampides, and N. P. Benetis. 2012. Intermediate technologies towards low-carbon economy. The Greek zeolite CCS outlook into the EU commitments. Renewable and Sustainable Energy Reviews 16 (5):3391–400. doi:10.1016/j.rser.2012.02.031.
  • Verbong, G., and F. W. Geels. 2007. The ongoing energy transition: Lessons from a socio-technical, multi-level analysis of the Dutch electricity system (1960–2004). Energy Policy 35 (2):1025–37. doi:10.1016/j.enpol.2006.02.010.
  • Weaver, P. M., and J. Rotmans. 2006. Integrated sustainability assessment: What is it, why do it and how? International Journal of Innovation and Sustainable Development 1 (4):284–303. doi:10.1504/IJISD.2006.013732.
  • World Commission on Dams. 2000. Dams and development: A new framework for decision-making. New York: World Commission on Dams.
  • WSA. 2011. Methodology report - Life cycle inventory study for steel products. Brussels: World Steel Association.
  • Wu, Y., R. Li, L. Cui, Y. Meng, H. Cheng, and H. Fu. 2020. The high-resolution estimation of sulfur dioxide (SO2) concentration, health effect and monetary costs in Beijing. Chemosphere 241:125031. doi:10.1016/j.chemosphere.2019.125031.
  • WWF. 2019. Greece commits to phase out lignite and single use plastics. Accessed January 19, 2020. https://www.wwf.gr/en/news/2311-greece-commits-to-phase-out-lignite-and-single-use-plastic.
  • Yücel, G. 2010. Analyzing transition dynamics: The actor-option framework for modelling socio-technical systems. Doctoral Thesis, TU Delft.
  • Zafeiratou, E., and C. Spataru. 2015. Investigation of high renewable energy penetration in the island of Syros following the interconnection with the national grid system. Energy Procedia 83:237–47. doi:10.1016/j.egypro.2015.12.178.
  • Zafeiratou, E., and C. Spataru. 2017. Potential economic and environmental benefits from the interconnection of the Greek islands. International Journal of Global Warming 13 (3/4):426–58. doi:10.1504/IJGW.2017.087211.
  • Zafeiratou, E., and C. Spataru 2019. Long term analysis of submarine transmission grid extensions between the Greek islands and the mainland. 2019 international conference on smart energy systems and technologies (SEST), 1–6. IEEE, Porto, Portugal.
  • Zevgolis, I. E., A. V. Deliveris, and N. C. Koukouzas. 2019. Slope failure incidents and other stability concerns in surface lignite mines in Greece. Journal of Sustainable Mining 18 (4):182–97. doi:10.1016/j.jsm.2019.07.001.

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