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White Paper on Renewable Energy for the 3GFLAC

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(Eds.), Global Energy Assessment: Toward a Sustainable Future. Cambridge and New York: Cambridge University Press. 64 IRENA (2013). Medium-term Strategy of IRENA. Available at: http://bit.ly/IRENA2012 65 Ebinger J and W. Vergara (2011). The Imapcts of Climate Change in Energy Systems. World Bank. 66 The Andean Community includes Colombia, Ecuador, Peru, and Bolivia. Secretaría General Comunidad Andina. (2008). El cambio climático no tiene fronteras. Impacto del cambio climático en la Comunidad Andina. See also: Kumar, A., T. Schei, A. Ahenkorah, R. Caceres Rodriguez, J.-M. Devernay, M. Freitas, D. Hall, Å. Killingtveit, Z. Liu, 2011: Hydropower. In IPCC Special Report on Renewable Energy Sources and Climate Change Mitigation [O. Edenhofer, R. Pichs-Madruga, Y. Sokona, K. Seyboth, P. Matschoss, S. Kadner, T. Zwickel, P. Eickemeier, G. Hansen, S. Schlömer, C. von Stechow (eds)], Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA. 67 Vergara, Walter; Deeb, Alejandro; Toba, Natsuko; Cramton, Peter; Leino, Irene. 2010. Wind Energy in Colombia : A Framework for Market Entry. World Bank. http://bit.ly/WindCol 68 Yépez-García, R. A., & Dana, J. (2012). Mitigating vulnerability to high and volatile oil prices: Power sector experience in Latin America and the Caribbean. Washington, DC: The World Bank, Energy Sector Management Assistance Program. 69 National Renewable Energy Lab (1997). Dollars from Sense: The Economic Benefits of Renewable Energy. See also: Kammen, D., Kapadia, K., & Fripp, M. (2004). Putting renewables to work: How many jobs can the clean energy industry generate? RAEL Report. Berkeley, CA: University of California, Berkeley, Renewable and Appropriate Energy Laboratory. 70 IEA-RETD (Renewable Energy Technology Deployment). (2012). Renewable Energy and Employment (Policy Brief). http://bit.ly/REemploy. See also: Ethan Pollack (2012). Counting Up to Green. Assessing the green economy and its implications for growth and equity. Economic Policy Institute. Briefing Paper #349. http://bit.ly/EPIbp349. See also: Renner, M., Sweeney, S., & Kubit, J. (2008). Green jobs: Towards decent work in a sustainable, low-carbon world. Washington, DC: Worldwatch Institute. Prepared for the United Nations Environment Programme. 71 Casillas, C. and Kammen, D. M. (2010) “The energy-poverty- climate nexus,” Science, 330, 1182 – 1182. DOI: 10.1126/science.1197412 72 Several methodologies are available to quantify local environmental benefits. See for example: ExternE. (2013). ExternE Methodology - External Costs of Energy. Available at: www.externe.info. See also: Instituto Mexicano para la Competitividad A.C. - IMCO. (2013). Externalidades asociadas a la generación de electricidad. Medio Ambiente / Cambio Climático. OSINERGMIN, 2011. Valorización de las externalidades y recomposición del parque óptimo de generación. Documento de Trabajo N° 28. Oficina de Estudios Económicos. Available at: http://bit.ly/IMCompet 73 Ledec, G. and Quintero, J.D. (2003). Good Dams and bad dams: Environmental criteria for site selection of hydroelectric power plants. Latin America and the Caribbean Region Sustainable Development Working Paper 16. The World Bank, Latin America and the Caribbean Region, Environmentally and Socially Sustainable Development Department. 74 Fearnside, P. (2009). As hidrelétricas de Belo Monte e Altamira (Babaquara) como fontes de gases efeito estufa. Instituto Nacional de Pesquisas da Amazonia (INPA). Novos Cadernos NAEA. 75 Natural Resources Defense Council – NRDC. (2012). Stopping the massive HidraAysén Dam Project to Protect Patagonia’s Natural Heritage. Available at: http://bit.ly/ChileNRDC 76 Yasuni ITT Initiative. (2013). Crea Un Nuevo Mundo. Available at: http://yasuni-itt.gob.ec/inicio.aspx 77 Hill, D. (2013). UN Urges Peru to suspend US$480M Gas Plans “Immediately”. Huffington Post. Available at: http://bit.ly/GasPeruUN 78 e.g. Mosey, G., & Vimmerstedt, L. (2009). Renewable electricity benefits quantification methodology: A request for technical assistance from the California Public Utilities Commission. Golden, CO: National Renewable Energy Laboratory. 79 Mark Bolinger. (2013). Revisiting the Long-Term Hedge Value of Wind Power in an Era of Low Natural Gas Prices. Lawrence Berkeley National Laboratory (pre-print of an article submitted to Energy Policy). http://bit.ly/LBNL6103e 80 Contreras, J. L., Frantzis, L., Blazewicz, S., Pinault, D., & Sawyer, H. (2008). Photovoltaics value analysis. Golden, CO: National Renewable Energy Laboratory; Schell, L. (2010). Small-scale solar photovoltaics in California: Incremental value not captured in the 2009 Market Price Referent - Description of methodology: California Solar Energy Industries Association (CalSEIA); Beach, R. T., & McGuire, P. G. (2012). Evaluating the benefits and costs of net energy metering for residential customers in California. Berkeley, CA: Crossborder Energy. Prepared for the Vote Solar Initiative; Perez, R., Zweibel, K., & Hoff, T. E. (2011). Solar power generation in the US: Too expensive, or a bargain? Energy Policy, 39(11), 7290-7297. 81 Americans for Solar Power. (2005). Build-Up of PV Value in California – Methodology, April 13th, 2005. Contreras, J. L., Frantzis, L., Blazewicz, S., Pinault, D., & Sawyer, H. (2008). Photovoltaics value analysis. Golden, CO: National Renewable Energy Laboratory. 82 Gischler, C., & Janson, N. (2011). Perspectives for distributed generation with renewable energy in Latin America and the Caribbean: Analysis of case studies for Rethinking our energy future p. 28

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