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Sustainable energy development: performance and prospects

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  • Jefferson, Michael

Abstract

Concerns about sustainability, and the harsh realities of environmental catastrophe, can be traced back at least 4000 years. This paper points out how human pressures on the surrounding environment have had severe consequences over this period, coal burning has had adverse consequences traceable over the past 750 years, and the adverse environmental impacts of using other fossil fuels have aroused attention more recently. Heightened awareness of the need for sustainable development is a modern development, evident in international and national debates since the early 1970s. With the Brundtland Commission report published in 1987 came a framework for sustainable energy development. However, performance under the four elements of that framework have been almost uniformly disappointing. Fossil fuel use has continued to rise; renewable energy use has made insufficient inroads; waste and inefficiency in energy usage continues to be far too high; too many people remain without modern energy services or are exposed to severe pollution in the home and local atmosphere; there are mounting concerns about the conventional oil resource base—and future supplies and prices of oil and natural gas; greenhouse gas emissions continue to rise and evidence of human-induced climate change continues to mount. Indices of national environmental performance suggest no country is performing adequately; population, housing and transportation pressures result in greater pollution, loss of natural habitats, and species reduction; and poor governance is frequently cited as a major cause of poor environmental performance. The prospects for sustainable energy are bleak on current trends.

Suggested Citation

  • Jefferson, Michael, 2006. "Sustainable energy development: performance and prospects," Renewable Energy, Elsevier, vol. 31(5), pages 571-582.
  • Handle: RePEc:eee:renene:v:31:y:2006:i:5:p:571-582
    DOI: 10.1016/j.renene.2005.09.002
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    Cited by:

    1. Hatefi, S.M. & Torabi, S.A., 2010. "A common weight MCDA-DEA approach to construct composite indicators," Ecological Economics, Elsevier, vol. 70(1), pages 114-120, November.
    2. Kundu, Nobinkhor, 2014. "Sustainable energy for Development: Access to finance on renewable energy and energy efficiency technologies for Bangladesh," MPRA Paper 65154, University Library of Munich, Germany, revised 20 Jun 2014.
    3. Girard, A. & Gago, E.J. & Ordoñez, J. & Muneer, T., 2016. "Spain's energy outlook: A review of PV potential and energy export," Renewable Energy, Elsevier, vol. 86(C), pages 703-715.
    4. Stanisław Bielski & Anna Zielińska-Chmielewska & Renata Marks-Bielska, 2021. "Use of Environmental Management Systems and Renewable Energy Sources in Selected Food Processing Enterprises in Poland," Energies, MDPI, vol. 14(11), pages 1-16, May.
    5. Hussain, Shahid & Xuetong, Wang & Maqbool, Rashid & Hussain, Mustansar & Shahnawaz, Muhammad, 2022. "The influence of government support, organizational innovativeness and community participation in renewable energy project success: A case of Pakistan," Energy, Elsevier, vol. 239(PC).
    6. Tavana, Alireza & Emami Javid, Alireza & Houshfar, Ehsan & Mahmoudzadeh Andwari, Amin & Ashjaee, Mehdi & Shoaee, Saeed & Maghmoomi, Abtin & Marashi, Fatima, 2019. "Toward renewable and sustainable energies perspective in Iran," Renewable Energy, Elsevier, vol. 139(C), pages 1194-1216.
    7. Martínez, E. & Sanz, F. & Blanco, J. & Daroca, F. & Jiménez, E., 2008. "Economic analysis of reactive power compensation in a wind farm: Influence of Spanish energy policy," Renewable Energy, Elsevier, vol. 33(8), pages 1880-1891.
    8. Zhou, P. & Ang, B.W. & Poh, K.L., 2007. "A mathematical programming approach to constructing composite indicators," Ecological Economics, Elsevier, vol. 62(2), pages 291-297, April.
    9. Pietrosemoli, Licia & Rodríguez-Monroy, Carlos, 2019. "The Venezuelan energy crisis: Renewable energies in the transition towards sustainability," Renewable and Sustainable Energy Reviews, Elsevier, vol. 105(C), pages 415-426.
    10. Berk, Istemi & Kasman, Adnan & Kılınç, Dilara, 2020. "Towards a common renewable future: The System-GMM approach to assess the convergence in renewable energy consumption of EU countries," Energy Economics, Elsevier, vol. 87(C).
    11. Aleksandra Matuszewska-Janica & Dorota Żebrowska-Suchodolska & Agnieszka Mazur-Dudzińska, 2021. "The Situation of Households on the Energy Market in the European Union: Consumption, Prices, and Renewable Energy," Energies, MDPI, vol. 14(19), pages 1-21, October.
    12. Jia, Junxi & Abudula, Abuliti & Wei, Liming & Sun, Baozhi & Shi, Yue, 2015. "Thermodynamic modeling of an integrated biomass gasification and solid oxide fuel cell system," Renewable Energy, Elsevier, vol. 81(C), pages 400-410.
    13. Pattara, C. & Cappelletti, G.M. & Cichelli, A., 2010. "Recovery and use of olive stones: Commodity, environmental and economic assessment," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(5), pages 1484-1489, June.
    14. Ordóñez, J. & Jadraque, E. & Alegre, J. & Martínez, G., 2010. "Analysis of the photovoltaic solar energy capacity of residential rooftops in Andalusia (Spain)," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(7), pages 2122-2130, September.
    15. Ali, Ghaffar & Bashir, Muhammad Khalid & Ali, Hassan & Bashir, Muhammad Hamid, 2016. "Utilization of rice husk and poultry wastes for renewable energy potential in Pakistan: An economic perspective," Renewable and Sustainable Energy Reviews, Elsevier, vol. 61(C), pages 25-29.
    16. Renata Marks-Bielska & Stanisław Bielski & Katarzyna Pik & Krystyna Kurowska, 2020. "The Importance of Renewable Energy Sources in Poland’s Energy Mix," Energies, MDPI, vol. 13(18), pages 1-23, September.
    17. Ciprian Cristea & Maria Cristea & Dan Doru Micu & Andrei Ceclan & Radu-Adrian Tîrnovan & Florica Mioara Șerban, 2022. "Tridimensional Sustainability and Feasibility Assessment of Grid-Connected Solar Photovoltaic Systems Applied for the Technical University of Cluj-Napoca," Sustainability, MDPI, vol. 14(17), pages 1-23, August.
    18. Li, Qing'an & Maeda, Takao & Kamada, Yasunari & Murata, Junsuke & Furukawa, Kazuma & Yamamoto, Masayuki, 2016. "The influence of flow field and aerodynamic forces on a straight-bladed vertical axis wind turbine," Energy, Elsevier, vol. 111(C), pages 260-271.
    19. Kundu, Nobinkhor, 2014. "Sustainable Renewable Energy for Development: Access to Finance on Solar Energy for Bangladesh," MPRA Paper 68084, University Library of Munich, Germany, revised 15 Sep 2014.
    20. Cheng Peng & Xunbo Wu & Yelin Fu & Kin Keung Lai, 2017. "Alternative approaches to constructing composite indicators: an application to construct a Sustainable Energy Index for APEC economies," Operational Research, Springer, vol. 17(3), pages 747-759, October.
    21. Ewa Chomać-Pierzecka & Anna Sobczak & Edward Urbańczyk, 2022. "RES Market Development and Public Awareness of the Economic and Environmental Dimension of the Energy Transformation in Poland and Lithuania," Energies, MDPI, vol. 15(15), pages 1-18, July.
    22. Yanzhao Yang & Zhiping Guo & Yanfeng Zhang & Ho Jinyama & Qingan Li, 2017. "Numerical Investigation of the Tip Vortex of a Straight-Bladed Vertical Axis Wind Turbine with Double-Blades," Energies, MDPI, vol. 10(11), pages 1-18, October.
    23. Pietrosemoli, Licia & Rodríguez Monroy, Carlos, 2013. "The impact of sustainable construction and knowledge management on sustainability goals. A review of the Venezuelan renewable energy sector," Renewable and Sustainable Energy Reviews, Elsevier, vol. 27(C), pages 683-691.
    24. Vogt, Kristiina A. & Vogt, Daniel J. & Patel-Weynand, Toral & Upadhye, Ravi & Edlund, David & Edmonds, Robert L. & Gordon, John C. & Suntana, Asep S. & Sigurdardottir, Ragnhildur & Miller, Michael & R, 2009. "Bio-methanol: How energy choices in the western United States can help mitigate global climate change," Renewable Energy, Elsevier, vol. 34(1), pages 233-241.
    25. Maqbool, Rashid, 2018. "Efficiency and effectiveness of factors affecting renewable energy projects; an empirical perspective," Energy, Elsevier, vol. 158(C), pages 944-956.

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