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Aggregation and internalisation of electricity externalities in South Africa

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  • Thopil, George Alex
  • Pouris, Anastassios

Abstract

Energy-environmental impacts associated with non-renewable electricity generation have attained critical importance in South Africa. These impacts are quantified in order to obtain a monetary cost relative to local electricity prices. The methodology used to perform the analysis is the Impact Pathway Approach. Numerous energy-environmental external impacts have been evaluated in this study. The primary externality contributors were found to be GHG (green-house gas) emissions and public health effects from coal combustion. Other minor but important contributors to externalities are also identified and mentioned within the paper. Aggregated central externality costs were found to range from 5.86 to 35.36 SA c/kWh (1.31–7.95 US c/kWh), with central externalities estimates at 13.43 SA c/kWh (3.02 US c/kWh). These central estimates were found to be 68.5% of average electricity prices during the year 2008. Conversion of externality costs from South African currency to US currency has been made with purchasing power parity exchange rates for the year 2008. This study provides sufficient methodological parity for countries with similar electricity generation backgrounds in Southern Africa and Africa as well as other developing countries, considering South Africa generates roughly 45% of the electricity on the African continent.

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  • Thopil, George Alex & Pouris, Anastassios, 2015. "Aggregation and internalisation of electricity externalities in South Africa," Energy, Elsevier, vol. 82(C), pages 501-511.
  • Handle: RePEc:eee:energy:v:82:y:2015:i:c:p:501-511
    DOI: 10.1016/j.energy.2015.01.059
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    1. Chung-Ling Chien, John & Lior, Noam, 2011. "Concentrating solar thermal power as a viable alternative in China's electricity supply," Energy Policy, Elsevier, vol. 39(12), pages 7622-7636.
    2. Lin, Boqiang & Liu, Jianghua, 2011. "Principles, effects and problems of differential power pricing policy for energy intensive industries in China," Energy, Elsevier, vol. 36(1), pages 111-118.
    3. Hainoun, A. & Almoustafa, A. & Seif Aldin, M., 2010. "Estimating the health damage costs of syrian electricity generation system using impact pathway approach," Energy, Elsevier, vol. 35(2), pages 628-638.
    4. Czarnowska, Lucyna & Frangopoulos, Christos A., 2012. "Dispersion of pollutants, environmental externalities due to a pulverized coal power plant and their effect on the cost of electricity," Energy, Elsevier, vol. 41(1), pages 212-219.
    5. Milan, Christian & Bojesen, Carsten & Nielsen, Mads Pagh, 2012. "A cost optimization model for 100% renewable residential energy supply systems," Energy, Elsevier, vol. 48(1), pages 118-127.
    6. Collins, Alan R. & Hansen, Evan & Hendryx, Michael, 2012. "Wind versus coal: Comparing the local economic impacts of energy resource development in Appalachia," Energy Policy, Elsevier, vol. 50(C), pages 551-561.
    7. Sundqvist, Thomas, 2004. "What causes the disparity of electricity externality estimates?," Energy Policy, Elsevier, vol. 32(15), pages 1753-1766, October.
    8. Jamasb, T. & Pollitt, M., 2000. "Benchmarking and regulation: international electricity experience," Utilities Policy, Elsevier, vol. 9(3), pages 107-130, September.
    9. Ingemar Leksell & Ari Rabl, 2001. "Air Pollution and Mortality: Quantification and Valuation of Years of Life Lost," Risk Analysis, John Wiley & Sons, vol. 21(5), pages 843-843, October.
    10. Rafaj, Peter & Kypreos, Socrates, 2007. "Internalisation of external cost in the power generation sector: Analysis with Global Multi-regional MARKAL model," Energy Policy, Elsevier, vol. 35(2), pages 828-843, February.
    11. Gómez, Antonio & Zubizarreta, Javier & Dopazo, César & Fueyo, Norberto, 2011. "Spanish energy roadmap to 2020: Socioeconomic implications of renewable targets," Energy, Elsevier, vol. 36(4), pages 1973-1985.
    12. Klaassen, Ger & Riahi, Keywan, 2007. "Internalizing externalities of electricity generation: An analysis with MESSAGE-MACRO," Energy Policy, Elsevier, vol. 35(2), pages 815-827, February.
    Full references (including those not matched with items on IDEAS)

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