False Shades of Green: The Case of Brazilian Amazonian Hydropower

Energies - Tập 7 Số 9 - Trang 6063-6082
James R. Kahn1,2, Carlos Edwar de Carvalho Freitas3,1, Miguel Petrere4,5
1Department of Fishery Science, Universidade Federal do Amazonas, Av. Rodrigo Otávio 3000, Manaus, AM 69077-000, Brazil
2Environmental Studies Program/Economics Department, Washington and Lee University, Holekamp Hall 206, Lexington, VA 24450, USA
3Department of Biology, Washington and Lee University, Lexington, VA 24450, USA
4Programa de Pós-graduação em Diversidade Biológica e Conservação (PPGDBC), Centro de Ciências e Tecnologias para a Sustentabilidade (CCTS), Universidade Federal de São Carlos (UFSCar), Rod. João Leme dos Santos, km 110 – Sorocaba, São Paulo 18052-780, Brazil
5UNISANTA, Programa de Pós-Graduação em Sustentabilidade de Ecossistemas Costeiros e Marinhos, Rua Oswaldo Cruz, 277 (Boqueirão), Santos (SP) 11045-907, Brazil

Tóm tắt

The Federal Government of Brazil has ambitious plans to build a system of 58 additional hydroelectric dams in the Brazilian Amazon, with Hundreds of additional dams planned for other countries in the watershed. Although hydropower is often billed as clean energy, we argue that the environmental impacts of this project are likely to be large, and will result in substantial loss of biodiversity, as well as changes in the flows of ecological services. Moreover, the projects will generate significant greenhouse gas emissions from deforestation and decay of organic matter in the reservoirs. These emissions are equivalent to the five years of emissions that would be generated by gas powered plants of equivalent capacity. In addition, we examine the economic benefits of the hydropower in comparison to new alternatives, such as photovoltaic energy and wind power. We find that current costs of hydropower exceed alternatives, and the costs of costs of these alternatives are likely to fall substantially below those of hydropower, while the environmental damages from the dams will be extensive and irreversible.

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Tài liệu tham khảo

Miesen, P., and Hubert, J. (2010). Renewable Energy Potential of Brazil, Global Energy Network Institute.

Little, P.E. Megaprojects in the Amazon Region: A geopolitical and socio-environmental analysis with proposals of better government for the Amazon. Available online:http://dar.org.pe/archivos/publicacion/145_megaproyectos_ingles_final.pdf.

ECOA (Ecologia em Ação) International Rivers and Fundacion Proteger, Dams in Amazonia. Available online:http://www.dams-info.org/en.

Finer, 2012, Proliferation of hydroelectric dams in the Andean Amazon and implications for Andes-Amazon connectivity, PLoS One, 7, e35126, 10.1371/journal.pone.0035126

Krutilla, 1967, Conservation reconsidered, Am. Econ. Rev., 57, 777

Arrow, 1970, Uncertainty and the evaluation of public investment decisions, Am. Econ. Rev., 60, 364

Fisher, 1972, The economics of environmental preservation: A theoretical and empirical analysis, Am. Econ. Rev., 62, 605

Krutilla, J., and Fisher, A.C. (1985). The Economics of Natural Environments, Resources for the Future.

Arrow, 1975, Environmental preservation, uncertainty, and irreversibility, Q. J. Econ., 88, 312, 10.2307/1883074

Filizola, 2011, Fluxo de sedimentos em suspensão nos rios da Amazônia, Revista Brasileira de Geociências, 41, 566, 10.25249/0375-7536.2011414566576

Guyot, 2009, Contrasting regional discharge evolutions in the Amazon basin (1974–2004), J. Hydrol., 375, 297, 10.1016/j.jhydrol.2009.03.004

Kahn, 1999, Ecological interaction as a source of economic irreversibility, South. Econ. J., 66, 381

Ansar, 2014, Should we build more large dams? The actual costs of hydropower megaproject development, Energy Policy, 69, 43, 10.1016/j.enpol.2013.10.069

Kahneman, 1993, Timid choices and bold forecasts: A cognitive perspective on risk taking, Manag. Sci., 39, 17, 10.1287/mnsc.39.1.17

(2000). FUNCATE-INPE-ANEEL, Mapeamento por satélite das áreas inundadas por reservatórios de hidrelétricas brasileiras. Relatório do Convênio FUNCATE/INPE/ANEEL, National Institute for Space Research (INPE). (In Portuguese).

Sá, A.A., Brilha, J., Rocha, D., Couto, H., Rabano, I., Medina, J., Gutierrez-Marco, J.C., Cachao, M., and Valerio, M. (2008). Geoparque Arouca. Geologia e Património Geológico, (In Portuguese).

Empresa de Pesquisa Energética(EPE)/ Ministério de Minas e Energia (Brasil), Balanço Energético Nacional 2005—Ano Base 2004. (In Portuguese).

Empresa de Pesquisa Energética(EPE)/ Ministério de Minas e Energia (2007). (Brasil), Plano Nacional de Energia 2030. Empresa de Pesquisa Energética. Rio de Janeiro, (In Portuguese).

Barletta, 2010, Fish and habitat aquatic conservation in South America: An overview with emphasis on Neotropical systems’, J. Fish Biol., 76, 2118, 10.1111/j.1095-8649.2010.02684.x

Instituto Humanitas Unisinos Governo muda limites de unidades de preservação para viabilizar hidrelétricas. Available online:http://www.ihu.unisinos.br/noticias/510903-governo-muda-limites-de-unidades-de-preservacao-para-viabilizar-hidreletricas.

Castello, 2013, The vulnerability of Amazon freshwater ecosystems, Conserv. Lett., 6, 217, 10.1111/conl.12008

Rudd, 1993, Are hydroelectric reservoirs significant sources of greenhouse gases?, Ambio, 22, 246

Fearnside, 1995, Hydroeletric dams in the Brazilian Amazon as source of greenhouse gases, Environ. Conserv., 22, 7, 10.1017/S0376892900034020

Abril, 2005, Carbon dioxide and methane emissions and the carbon budget of a 10-year old tropical reservoir (Petit Saut, French Guiana), Glob. Biochem. Cycles, 19, 1

Kemenes, 2007, Methane release below a tropical hydroelectric dam, Geophys. Res. Lett., 34, 12805, 10.1029/2007GL029479

Lal, R., Kimble, J.R., and Stewart, B.A. (2000). Global Climate Change and Tropical Ecosystems: Advances in Soil Science, CRC Press.

Cederberg, 2011, Including carbon emissions from deforestation in the carbon footprint of brazilian beef, Environ. Sci. Technol., 45, 1773, 10.1021/es103240z

US Energy Information Agency (2010). Brazil Overview Data, Available online:http://www.eia.gov/countries/country-data.cfm?fips=BR.

Intergovernmental Panel on Climate Change (IPCC) Third Assessment Report: Climate Change 2001: Synthesis Report. Available online:http://www.grida.no/publications/other/ipcc_tar/.

Stern, N. (2006). Stern Review on the Economics of Climate Change (pre-publication edition). Executive Summary, HM Treasury.

Medvigy, 2011, Effects of deforestation on spatiotemporal distributions of precipitation in South America, J. Clim., 24, 2147, 10.1175/2010JCLI3882.1

Marengo, 2004, Climatology of the low-level jet east of the Andes as derived from the NCEP–NCAR. Reanalyses: Characteristics and Temporal Variability, J. Clim., 17, 2261, 10.1175/1520-0442(2004)017<2261:COTLJE>2.0.CO;2

Rosenberg, 1995, Environmental and social impacts of large scale hydroelectric development: Who is listening?, Glob. Environ. Chang., 5, 127, 10.1016/0959-3780(95)00018-J

Lerer, 1999, Health impacts of large dams, Environ. Impact Assess. Rev., 19, 113, 10.1016/S0195-9255(98)00041-9

McClain, 2008, Andean influences on the biogeochemistry and ecology of the Amazon River, BioSciences, 58, 325, 10.1641/B580408

Junk, 1999, The flood pulse concept of large rivers: Learning from the tropics, Arch. Hydrobiol., 11, 261

Cushing, 1990, Plankton production and yearclass strength in fish populations—An update of the match-mismatch hypothesis, Adv. Mar. Biol., 26, 249, 10.1016/S0065-2881(08)60202-3

Barthem, 1991, Life strategies of some long-distance migratory catfish in relation to hydroeletric dams in the Amazon Basin, Biol. Conserv., 55, 339, 10.1016/0006-3207(91)90037-A

Ribeiro, 1995, Ecological integrity and fisheries ecology of the Araguaia—Tocantins River Basin, Brazil, Regul. Rivers Res. Manag., 11, 325, 10.1002/rrr.3450110308

Wearn, 2012, Extinction debt and windows of conservation opportunity in the brazilian amazon, Science, 337, 228, 10.1126/science.1219013

Rangel, 2012, Amazonian extinction debts, Science, 337, 162, 10.1126/science.1224819

Tilt, 2009, Social impacts of large dam projects: A comparison of international case studies and implications for best pratices, J. Environ. Manag., 90, S249, 10.1016/j.jenvman.2008.07.030

World Commission on Dams (2000). Dams and Development a New Framework for Decision-Making: The Report of The World Commission on Dams, Earthscan Publications Ltd.

Petrere, 1996, Fisheries in large tropical reservoirs in South America, Lakes Reserv. Res. Manag., 2, 111, 10.1111/j.1440-1770.1996.tb00054.x

Guyot, 2004, Evolution du débit de l’Amazone à Óbidos de 1903 à 1999, Hydrol. Sci. J. Sci. Hydrol., 49, 85

USNREL-US National Energy Research Laboratory (2012). Energy Analysis: Utility Scale Energy Technology Capacity Factors, Available online:http://www.nrel.gov/analysis/tech_cap_factor.html.

U.S Department of Energy (2013). Revolution Now: The Future Arrives for Four Clean Energy Technologies, Available online:http://energy.gov/sites/prod/files/2013/09/f2/200130917-revolution-now.pdf.

ICF Consulting Ltd. Unit Costs of Constructing New Transmission Assets at 380 kV within the European Union, Norway and Switzerland, 2002. Available online:http://ec.europa.eu/energy/electricity/publications/doc/comp_cost_380kV_en.pdf.

Lyons, C. The Dam Boom in the Amazon. Available online:http://www.nytimes.com/2012/07/01/opinion/sunday/the-dam-boom-in-the-amazon.html.

Romero, S. Amid Brazil’s Rush to Develop, Workers Resist. Available online:http://www.nytimes.com/2012/05/06/world/americas/brazilsrush-to-develop-hydroelectric-power-brings-unrest.html?ref=americas.

Pimenta, 2008, Combining meteorological stations and satellite data to evaluate the offshore wind power resource of Southeastern Brazil, Renew. Energy, 33, 2375, 10.1016/j.renene.2008.01.012

(2012). NOTA TÉCNICA EPE. (In Portuguese).

USDOE-US Department of Energy, 2011a (2011). 2010 Solar Technologies Market Report, Available online:http://www.nrel.gov/docs/fy12osti/51847.pdf.

USDOE-US Department of Energy (2011). USDOE-US Department of Energy, 2010 Wind Technologies Market Report, Available online:http://www1.eere.energy.gov/wind/pdfs/51783.pdf.

Stickler, 2013, Dependence of hydropower energy generation on forests in the Amazon Basin at local and regional scales, Proc. Natl. Acad. Sci. USA, 110, 9601, 10.1073/pnas.1215331110

Pacala, 2004, Stabilization Wedges: Solving the climate problem for the next 50 years with current technologies, Science, 305, 968, 10.1126/science.1100103