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4 - Utility and energy externalities

Published online by Cambridge University Press:  05 October 2014

Benjamin K. Sovacool
Affiliation:
Aarhus Universitet, Denmark
Michael H. Dworkin
Affiliation:
Vermont Law School
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Summary

In 1945, planners in Orissa, India, faced a dilemma. The upper draining basin of the Mahanadi River passed through Orissa (later renamed the state of Odisha), causing massive floods in some years coupled with devastating droughts in others. Hydrological and engineering assessments concluded that a series of storage reservoirs, dykes, and dams could help regulate this uneven distribution of water. These assessments revealed that the best place to locate the largest of these projects would be 15 kilometers from Sambalpur, where a 5 kilometer long earthen dam could prevent the Mahanadi River from swelling during the monsoon season and regulate the drainage of 83,400 square kilometers of land, providing flood control to the districts of Cuttack and Puri. Such a dam could also help irrigate 75,000 square kilometers of crops throughout the districts of Sambalpur, Bargarh, Bolangir, and Subarnpu, in addition to providing 307.5 MW of hydroelectricity. At the time, in aggregate, these benefits would reach upwards of 3 million people.

However, achieving these benefits would come at the cost of flooding almost 150,000 acres (600 square kilometers) of land that would become a permanent reservoir. It would also require the forced relocation of more than 150,000 people from 22,000 families. In short, building the dam would necessitate “substantial mass agitation.”

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Chapter
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Global Energy Justice
Problems, Principles, and Practices
, pp. 125 - 156
Publisher: Cambridge University Press
Print publication year: 2014

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References

Baboo, Balgovind, “Politics of Water: The Case of the Hirakud Dam in Orissa, India,” International Journal of Sociology and Anthropology 1(8) (December 2009), pp. 139–144Google Scholar
Penz, Peter, “Development, Displacement and Ethics,” Forced Migration Review 12 (January 2002), p. 5Google Scholar
Owen, Anthony D., “Environmental Externalities, Market Distortions, and the Economics of Renewable Energy Technologies,” Energy Journal 25(3) (2004), pp. 127–152CrossRefGoogle Scholar
Sachs, Noah, “Planning the Funeral at the Birth: Extended Producer Responsibility in the European Union and the US,” Harvard Environmental Law Review 30 (2006), p. 56Google Scholar
Hawken, Paul, The Ecology of Commerce: A Declaration of Sustainability (New York: Harper Collins, 1994), p. 79Google Scholar
Levitt, Steven D. and Dubner, Stephen J., Freakonomics: A Rogue Economist Explores the Hidden Side of Everything (New York: Penguin Books, 2006)Google Scholar
IPCC, Climate Change 2013: Summary for Policymakers (Geneva: IPCC, 2013)Google Scholar
Claussen, Eileen and Peace, Janet, “Energy Myth Twelve – Climate Policy Will Bankrupt the U. S. Economy,” in Sovacool, B. K. and Brown, M. A. (eds.), Energy and American Society – Thirteen Myths (New York: Springer, 2007)Google Scholar
Stern, Nicholas, The Economics of Climate Change: The Stern Review (Cambridge University Press, 2007)CrossRefGoogle ScholarPubMed
Dasgupta, Partha, “Comments on the Stern Review’s Economics of Climate Change,” University of Cambridge, November 11, 2006 (revised: December 12)
Varian, Hal R., “Recalculating the Costs of Global Climate Change,” New York Times, December 14, 2006Google Scholar
Reddy, B. Sudhakara and Assenza, Gaudenz B., “The Great Climate Debate,” Energy Policy 37 (2009), pp. 2997–3008CrossRefGoogle Scholar
Madrid, Jorge, Gordon, Kate, and Ramos, Tina, America’s Future under “Drill, Baby, Drill”: Where We’ll Be in 2030 if We Stay on Our Current Oil-Dependent Path (Washington, DC: Center for American Progress, May 2012)Google Scholar
Asian Development Bank, The Economics of Climate Change in Southeast Asia: A Regional Review (Manila: Asian Development Bank, April 2009)Google Scholar
Economics of Climate Adaptation Working Group, Shaping Climate-Resilient Development: A Framework for Decision-Making (Washington, DC: Global Environment Facility, European Commission, McKinsey & Company, The Rockefeller Foundation, Standard Chartered Bank, and Swiss Re, 2009)Google Scholar
Yusuf, Arief Anshory and Francisco, Herminia A., Climate Change Vulnerability Mapping for Southeast Asia (Singapore: International Development Research Centre, January 2009)Google Scholar
Royal United Services Institute, Socioeconomic and Security Implications of Climate Change in China (Washington, DC: Center for Naval Analysis, November 4, 2009)Google Scholar
Center for Naval Analysis, Climate Change, State Resilience, and Global Security (Center for Naval Analysis Conference Center, Alexandria, Virginia, November 4, 2009)Google Scholar
Jacobson, Mark Z. and Masters, Gilbert M., “Exploiting Wind Versus Coal,” Science 293 (2001), pp. 1438–1439CrossRefGoogle ScholarPubMed
International Energy Agency, World Energy Outlook 2008 (Paris: OECD, 2008)Google Scholar
Sovacool, Benjamin K., The Dirty Energy Dilemma: What’s Blocking Clean Power in the United States (Westport: Praeger, 2008)Google Scholar
Sovacool, Benjamin K., “A Transition to Plug-In Hybrid Electric Vehicles (PHEVs): Why Public Health Professionals Must Care,” Journal of Epidemiology and Community Health 64(3) (March 2010), pp. 185–187CrossRefGoogle ScholarPubMed
Lovins, Amory and the Rocky Mountain Institute, Reinventing Fire: Bold Business Solutions for the New Energy Era (White River Junction: Chelsea Green Publishing Company, 2011), p. 43Google Scholar
Godoy, Julio, “Auto Emissions Killing Thousands,” Common Dreams News Release, June 3, 2004, available at Google Scholar
Wheelan, Charles, Naked Economics: Undressing the Dismal Science (New York: W.W. Norton & Company, 2003), p. xviiiGoogle Scholar
Waskow, David and Welch, Carol, “The Environmental, Social, and Human Rights Impacts of Oil Development,” in Tsalik, Svetlana and Schiffrin, Anya (eds.), Covering Oil: A Reporter’s Guide to Energy and Development (New York: Open Society Institute, 2005), pp. 101–123Google Scholar
Sovacool, B. K., “Cursed by Crude: The Corporatist Resource Curse and the Baku–Tbilisi–Ceyhan (BTC) Pipeline,” Environmental Policy and Governance 21(1) (January/February 2011), pp. 42–57CrossRefGoogle Scholar
Andruchow, J. E., Soskolne, C. L., Racioppi, F. et al., “Cancer Incidence and Mortality in the Industrial City of Sumgayit, Azerbaijan,” International Journal of Occupational Environmental Health 12(3) (2006), pp. 234–241CrossRefGoogle ScholarPubMed
Bickham, J. W., Matson, C. W., Islamzadeh, A. et al., “The Unknown Environmental Tragedy in Sumgayit, Azerbaijan,” Ecotoxicology 12 (2003), pp. 505–508CrossRefGoogle ScholarPubMed
Bernhardt, Emily S. and Palmer, Margaret A., “The Environmental Costs of Mountaintop Mining Valley Fill Operations for Aquatic Ecosystems of the Central Appalachians,” Annals of the New York Academy of Sciences 1223 (2001), 39–57CrossRefGoogle Scholar
Palmer, M. A., Bernhardt, E. S., Schlesinger, W. H., Eshleman, K. N., Foufoula-Georgiou, E., Hendryx, M. S., Lemly, A. D., Likens, G. E., Loucks, O. L., Power, M. E., White, P. S., and Wilcock, P. R., “Mountaintop Mining Consequences,” Science 327 (January 8, 2010), pp. 148–149CrossRefGoogle ScholarPubMed
Natural Resources Defense Council, Mountain Top Removal Coal Mining, June 23, 2011
Muller, Nicholas Z., Mendelsohn, Robert, and Nordhaus, William, “Environmental Accounting for Pollution in the United States Economy,” American Economic Review, 101(5) (August 2011), pp. 1649–1675CrossRefGoogle Scholar
Thorpe, David, “Extracting Disaster,” Guardian, December 5, 2008Google Scholar
Shatalov, V. V., Fazlullin, M. I., Romashkevich, R. I., Smirnova, R. N., and Adosik, G. M., “Ecological Safety of Underground Leaching of Uranium,” Atomic Energy 91(6) (2001), pp. 1009–1015CrossRefGoogle Scholar
Mudd, Gavin M. and Disendorf, Mark, “Sustainability of Uranium Mining and Milling: Toward Quantifying Resources and Eco-Efficiency,” Environmental Science & Technology 42 (2008), pp. 2624–2629CrossRefGoogle ScholarPubMed
Friends of the Earth, Uranium Mining for Belgian Nuclear Power Stations: Environmental and Human Rights Impacts (Brussels: Friends of the Earth, 2008)Google Scholar
Krockenberger, Michael, “Unclean, Unsafe, and Unwanted: The Nuclear Industry Nightmare,” Habitat (Melbourne: Australian Conservation Foundation, June 1996)Google Scholar
Macfarlane, Allison, “The Problem of Used Nuclear Fuel: Lessons for Interim Solutions from a Comparative Cost Analysis,” Energy Policy 29 (2001), pp. 1379–1389CrossRefGoogle Scholar
Sovacool, B. K. and Cooper, C., “Nuclear Nonsense: Why Nuclear Power Is No Answer to Climate Change and the World’s Post-Kyoto Energy Challenges,” William & Mary Environmental Law & Policy Review 33(1) (Fall 2008), pp. 1–119Google Scholar
United Kingdom Atomic Energy Authority, Decommissioning Fact Sheet, 2005, p. 2
Taboas, Anibal, Mohgissi, A. Alan, and LaGuardia, Thomas S., The Decommissioning Handbook, 2004, p. 140
Nuclear Energy Agency, The Regulatory Challenges of Decommissioning Reactors (2003), pp. 15 and 18
WEC, The Role of Nuclear Power in Europe (London: WEC, January 2007)Google Scholar
European Bank for Reconstruction and Development, Chernobyl 25 Years On: New Safe Confinement and Spent Fuel Storage Facility (London: ERD, 2011)Google Scholar
McCurry, Justin, “Fukushima Two Years On: The Largest Nuclear Decommissioning Finally Begins,” Guardian, March 6, 2013Google Scholar
Watkiss, Dan, “The Middle Ages of Our Energy Policy – Will the Renaissance be Nuclear?,” Electric Light and Power (May 2008)Google Scholar
NRC Committee on Decontamination and Decommissioning of Uranium Enrichment Facilities, Affordable Cleanup? Opportunities for Cost Reduction in the Decontamination and Decommissioning of the Nation’s Uranium Enrichment Facilities (Washington, DC: NRC, 1996), pp. 49–50Google Scholar
Greenpeace, France’s Nuclear Failures: The Great Illusion of Nuclear Energy (Amsterdam: Greenpeace International, November 2008), p. 15Google Scholar
Lim, S. S. et al., “A Comparative Risk Assessment of Burden of Disease and Injury Attributable to 67 Risk Factors and Risk Factor Clusters in 21 Regions, 1990–2010: A Systematic Analysis for the Global Burden of Disease Study 2010,” Lancet, 380 (2012), pp. 2224–2260CrossRefGoogle ScholarPubMed
UNEP, Natural Selection: Evolving Choices for Renewable Energy Technology and Policy (New York: UN, 2000)Google Scholar
NRC, Hidden Costs of Energy: Unpriced Consequences of Energy Production and Use (Washington, DC: The National Academies Press, 2009)Google Scholar
Sandel, Michael J., Justice: What’s the Right Thing to Do? (New York: Farrar, Straus, and Giroux, 2009), p. 34Google Scholar
Bentham, Jeremy, “Principles of Morals and Legislation,” in Sandel, Michael J. (ed.), Justice: A Reader (Oxford University Press, 2007), pp. 9–14Google Scholar
Brink, David, “Mill’s Moral and Political Philosophy,” in Zalta, Edward N. (ed.), The Stanford Encyclopedia of Philosophy (Fall 2008 edn.)Google Scholar
Bentham, Jeremy, The Rationale of Reward (London: R. Heward, 1830), p. 1Google Scholar
MacIntyre, Alasdair, A Short History of Ethics: A History of Moral Philosophy from the Homeric Age to the Twentieth Century (New York: Macmillan Publishing Company, 1966), p. 234CrossRefGoogle Scholar
Driver, Julia, “Ideal Decision Making and Green Virtues,” in Sinnott-Armstrong, Walter and Howarth, Richard B. (eds.), Perspectives on Climate Change: Science, Economics, Politics, Ethics (Amsterdam: Elsevier, 2005), pp. 249–264CrossRefGoogle Scholar
Corbridge, Stuart, “Development as Freedom: The Spaces of Amartya Sen,” Progress in Development Studies 2(3) (2002), pp. 183–217CrossRefGoogle Scholar
Mill, J. S., Essays on Ethics, Religion and Society, ed. Robson, J. M. (University of Toronto Press, 1969), p. 234Google Scholar
Brink, David, “Mill’s Moral and Political Philosophy,” in Zalta, (ed.), The Stanford Encyclopedia of Philosophy (Fall 2008 edn.)Google Scholar
Mill, J. S., “Utilitarianism,” in Morgan, M. L. (ed.), Classics of Moral and Political Theory (Cambridge: Hackett Publishing Co., 1992)Google Scholar
Mill, John Stuart, “Utilitarianism,” in Sandel, (ed.), Justice: A Reader, pp. 14–47
Brink, , “Mill’s Moral and Political Philosophy,” in Zalta, (ed.), The Stanford Encyclopedia of Philosophy (Fall 2008 edn.)Google Scholar
Taebi, Behnam, Nuclear Power and Justice between Generations: A Moral Analysis of Fuel Cycles (The Netherlands: Center for Ethics and Technology, 2010)Google Scholar
Walsh, Vivian, “Amartya Sen on Rationality and Freedom,” Science & Society 71(1) (January 2007), pp. 59–83CrossRefGoogle Scholar
de-Shalit, Avner, Why Posterity Matters: Environmental Policies and Future Generations (London: Routledge, 1995)Google Scholar
Mill, John Stuart, On Liberty (London: Longmans, Green, and Co., 1913)Google Scholar
Sidgwick, Henry, Methods of Ethics (London: MacMillan, 1874), p. 379Google Scholar
Congressional Budget Office, Limiting Carbon Dioxide Emissions: Prices Versus Caps, Economic Budget Issue Brief (2005), p. 4Google Scholar
Congressional Budget Office, The Economic Effects of Legislation to Reduce Greenhouse Gas Emissions (Washington, DC: Congressional Budget Office, 2009)Google Scholar
Cooper, Richard N., “Toward a Real Global Warming Treaty,” Foreign Affairs 77(2) (March/April 1998), pp. 66–79CrossRefGoogle Scholar
Parenteau, Patrick and Barnes, Abigail, “A Bridge Too Far: Building Off-Ramps on the Shale Gas Superhighway,” Idaho Law Review, 49 (2013), pp.325–365Google Scholar
Navarro, Mireya, “Emissions Fell under Cap and Trade Program, Report Says,” New York Times, June 4, 2012Google Scholar
Boyle, Godfrey, Assessing the Environmental and Health Impacts of Energy Use, Energy Systems and Sustainability (Oxford University Press, 2003), pp. 519–566Google Scholar
Matthews, H. Scott and Lave, Lester B., “Applications of Environmental Valuation for Determining Externality Costs,” Environmental Science & Technology 34 (2000), pp. 1390–1395CrossRefGoogle Scholar
Holdren, John P. and Smith, Kirk R., “Energy, the Environment, and Health,” in Kjellstrom, Tord, Streets, David, and Wang, Xiadong (eds.), World Energy Assessment: Energy and the Challenge of Sustainability (New York: UN Development Program, 2000), pp. 61–110Google Scholar
Krewitt, W., Mayerhofer, P., Friedrich, R., Trukenmuller, A., Eyre, N., and Holland, M., “External Costs of Fossil Fuel Cycles,” in Hohmeyer, Olav, Ottinger, Richard L., and Rennings, Klaus (eds.), Social Costs and Sustainability: Valuation and Implementation in the Energy and Transport Sector (New York: Springer, 1997), pp. 127–135Google Scholar
National Association of Regulatory Utility Commissioners, Environmental Externalities and Electric Regulation (Washington, DC: National Association of Regulatory Commissioners, September 1993, ORNL/Sub/95X-SH985C)Google Scholar
Hohmeyer, Olav, “Renewables and the Full Costs of Energy,” Energy Policy 20(4) (1992), pp. 365–375CrossRefGoogle Scholar
Holdren, John P., “Energy and Human Environment: The Generation and Definition of Environmental Problems,” in Goodman, G. T., Kristoferson, L., and Hollander, J. (eds.), The European Transition from Oil: Societal Impacts and Constraints on Energy Policy (London: Academic Press, 1981), pp. 100–101Google Scholar
Stobaugh, Robert and Yergin, Daniel, “Toward a Balanced Energy Program,” in Stobaugh, Robert and Yergin, Daniel (eds.), Energy Future: Report of the Energy Project at the Harvard Business School (New York: Random House, 1979), pp. 216–227Google Scholar
Ramsay, William, Unpaid Costs of Electrical Energy: Health and Environmental Impacts from Coal and Nuclear Power (Baltimore: Johns Hopkins University Press, 1979)Google Scholar
Schurr, Sam H., Darmstadter, Joel, Perry, Harry, Ramsay, William, and Russell, Milton, Energy in America’s Future: The Choices before Us (Baltimore: Johns Hopkins University Press, 1979), pp. 343–369Google Scholar
Budnitz, Robert J. and Holdren, John, “Social and Environmental Costs of Energy Systems,” Annual Review of Energy 1 (1976), pp. 553–580CrossRefGoogle Scholar
Sundqvist, Thomas and Soderholm, Patrik, “Valuing the Environmental Impacts of Electricity Generation: A Critical Survey,” Journal of Energy Literature 8(2) (2002), pp. 1–18Google Scholar
Sundqvist, Thomas, “What Causes the Disparity of Electricity Externality Estimates?,” Energy Policy 32 (2004), pp. 1753–1766CrossRefGoogle Scholar
US Office of Technology Assessment, Energy Efficiency: Challenges and Opportunities for Electric Utilities (Washington, DC: US Government Printing Office, September 1993), pp. 31–32Google Scholar
Roth, Ian F. and Ambs, Lawrence L., “Incorporating Externalities into a Full Cost Approach to Electric Power Generation Life-Cycle Costing,” Energy 29 (2004), pp. 2125–2144CrossRefGoogle Scholar
Norland, Douglas L. and Ninassi, Kim Y., Price It Right: Energy Pricing and Fundamental Tax Reform (Washington, DC: ASE, 1998)Google Scholar
Brown, Lester R., Eco-Economy: Building an Economy for the Earth (New York: Norton and Company, 2001), pp. 236–237Google Scholar
Browne, Gerald R., “A Utility View of Externalities: Evolution, Not Revolution,” Electricity Journal 4(2) (March 1991), pp. 34–39CrossRefGoogle Scholar
Beck, Ulrich, “From Industrial Society to the Risk Society: Questions of Survival, Social Structure and Ecological Enlightenment,” Theory, Culture, & Society 9 (1992), pp. 97–123CrossRefGoogle Scholar
Smith, Zachary A., The Environmental Policy Paradox, 5th edn. (Upper Saddle River: Prentice Hall, 2009)Google Scholar
Brulle, R. J. and Pellow, D. N., “Environmental Justice: Human Health and Environmental Inequalities,” Annual Review of Public Health 27 (2006), pp. 103–124CrossRefGoogle ScholarPubMed
Orr, David W., Earth in Mind: On Education, Environment, and the Human Prospect (Washington, DC: Island Press, 1994), p. 172Google Scholar
Cornwell, Laura and Costanza, Robert, “Environmental Bonds: Implementing the Precautionary Principle in Environmental Policy,” in Raffensperger, Carolyn and Tickner, Joel A. (eds.), Protecting Public Health and the Environment: Implementing the Precautionary Principle (Washington, DC: Island Press, 1999), pp. 220–240Google Scholar
Khalique, Farah, “Could ‘Green’ Bonds Help Tackle Climate Change?,” Financial Times, June 26, 2012Google Scholar
Cherney, Mike, “Massachusetts Goes ‘Green,’Wall Street Journal, June 4, 2013Google Scholar

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