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Published online by Cambridge University Press:  01 June 2011

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Climate Policy Foundations
Science and Economics with Lessons from Monetary Regulation
, pp. 229 - 240
Publisher: Cambridge University Press
Print publication year: 2011

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References

Brown, L. (2008), Plan B 3.0, W.W. Norton & Company.Google Scholar
Cox, J. (2005), Climate Crash, Joseph Henry Press.Google Scholar
Fagan, B. (2004), The Long Summer: How Climate Changed Civilization, Basic Books.Google Scholar
Flannery, T. (2005), The Weather Makers, Atlantic Monthly Press.Google Scholar
Linden, E. (2006), The Winds of Change, Simon and Schuster.Google Scholar
Lovelock, J. (1991), Gaia, The Practical Science of Planetary Medicine.
Romm, J. (2007), Hell and High Water, HarperCollins.Google Scholar
Ruddiman, W. (2005), Plows, Plagues & Petroleum, Princeton University Press.Google Scholar
Weart, S. (2003), The Discovery of Global Warming, Harvard University Press.Google Scholar
Aldy, J. and Stavins, R., ed. (2007), Architectures for Agreement, Cambridge University Press.CrossRefGoogle Scholar
Alley, R. (2000), “The Younger Dryas Cold Interval as Viewed from Central Greenland,” Quaternary Science Reviews 19: 213–226.CrossRefGoogle Scholar
Alvarez, L., Alvarez, W., Asaro, F., and Michel, H. (1980), “Extraterrestrial Cause for the Cretaceous–Tertiary Extinction,” Science 208: 1095–1108.CrossRefGoogle ScholarPubMed
Ahman, M. et al. (2005), “The Ten Year Rule,” Resources for the Future.
Ambrose, S. (1998), “Late Pleistocene Human Population Bottlenecks, Volcanic Winter, and Differentiation of Modern Humans,” Journal of Human Evolution 34: 623–651.CrossRefGoogle Scholar
An, F. and Sauer, A. (2004), “Comparison of Passenger Vehicle Fuel Economy and GHG Emission Standards around the World,” PEW Center.
Andres, R., Fielding, D., Marland, G., Boden, T., and Kumar, N. (1999), “Carbon Dioxide Emissions from Fossil-Fuel Use, 1751–1950,” Tellus 51: 759–765.CrossRefGoogle Scholar
Archibald, J. and Fastovsky, D. (2004), “Dinosaur Extinction,” in The Dinosauria, edited by Weishampel, D. et al., University of California Press, 672–684.Google Scholar
Barnett, T. et al. (2005), “Penetration of Human-Induced Warming into the World's Oceans,” Science 309: 284–287.CrossRefGoogle ScholarPubMed
Barras, J. et al. (2003), “Historical and Projected Coastal Louisiana Land Changes: 1978–2050,” Open File Report 03–334, U.S. Geological Survey.
Barrett, S. (2007), “A Multi-track Climate Treaty System,” in Architectures for Agreement, edited by Aldy, J. and Stavins, R., Cambridge University Press.Google Scholar
Berger, A. (1978), “Long-term Variations of Daily Insolation and Quaternary Climatic Changes,” Journal of the Atmospheric Sciences 35: 2362–2367.2.0.CO;2>CrossRefGoogle Scholar
Bernanke, B. et al. (2001), Inflation Targeting: Lessons from the International Experience, Princeton University Press.Google Scholar
Betz, R., Eichhammer, W., and Schleich, J. (2004), “Designing National Allocation Plans for EU Emissions Trading – A First Analysis of the Outcomes,” Energy & Environment 15: 375–425.CrossRefGoogle Scholar
Blackman, J. and Kantamaneni, R. (2003), “EPA's SF6 Emissions Reduction Partnership for Electric Power Systems,” Environmental Protection Agency.
Blyth, W. and Baron, R. (2003), “Green Investment Schemes: Options and Issues,” International Energy Agency.
Bonan, G. (2008), “Forests and Climate Change: Forcings, Feedbacks, and the Climate Benefits of Forests,” Science 320: 1444–1449.CrossRefGoogle ScholarPubMed
Bosello, F., Roson, R., and Tol, R. (2006), “Economy-Wide Estimates of the Implications of Climate Change: Human health,” Ecological Economics 58: 579–591.CrossRefGoogle Scholar
Bosello, F., Roson, R., and Tol, R. (2007), “Economy-Wide Estimates of the Implications of Climate Change: Sea Level Rise,” Environmental & Resource Economics 37: 549–571.CrossRefGoogle Scholar
Bottke, W., Vokrouhlicky, D., and Nesvorny, D. (2007), “An Asteroid Breakup 160 My Ago as the Probable Source of the K-T Impactor,” Nature 449: 48–53.CrossRefGoogle Scholar
Bowman, D. et al. (2009), “Fire in the Earth System,” Science 324: 481–484.CrossRefGoogle ScholarPubMed
,BP (2008), “Statistical Review of World Energy.”
Brainard, W. (1967), “Uncertainty and the Effectiveness of Policy,” American Economic Review 57(2): 411–425.Google Scholar
Broecker, W. (1997), “Will Our Ride into the Greenhouse Future Be a Smooth One?GSA Today 7(5): 1–13.Google Scholar
Broecker, W. and Stocker, T. (2006), “The Holocene CO2 Rise: Anthropogenic or Natural?Eos 87(3): 27–29.CrossRefGoogle Scholar
Broeke, M. et al. (2009), “Partitioning Recent Greenland Mass Loss,” Science 326: 984–986.CrossRefGoogle ScholarPubMed
Burke, E., Brown, S., and Christidis, N. (2006), “Modeling the Recent Evolution of Global Drought and Projections for the Twenty-First Century with the Hadley Centre Climate Model,” Journal of Hydrometeorology 7: 1113–1125.CrossRefGoogle Scholar
Burtraw, D. (2008), “Cap, Auction, and Trade,” testimony before the House Select Committee on Energy Independence and Global Warming, January 23.
Burtraw, D. (2007), “Climate Change: Lessons Learned from Existing Cap-and-trade Programs,” testimony before the House Committee on Energy and Commerce, March 29.
Burtraw, D., Kahn, D., and Palmer, K. (2006), “Dynamic Adjustment to Incentive-Based Policy to Improve Efficiency and Performance,” Resources for the Future.
Burtraw, D., Palmer, K., Bharvirkar, R., and Paul, A. (2002), “The Effect on Asset Values of the Allocation of Carbon Dioxide Emission Allowances,” Resources for the Future.
Buyuksahin, B. et al. (2008), “Fundamentals, Trader Activity, and Derivative Pricing,” Commodity Futures Trading Commission.
,CAIT (2010), Climate Analysis Indicators Tool, version 7.0, World Resources Institute.
,CAN (Climate Action Network)–Europe (2007), “Status of the EU ETS,” available at: http://www.climnet.org/EUenergy/ET/ETS_Status.htm#1st
Carlin, A. (2007), “The Inadequacy of Global Climate Change Policy,” Environmental Forum 24(5): 42–47.Google Scholar
,CCAP (Center for Clean Air Policy), 1998a, “US Carbon emissions Trading: Some Options That Include Downstream Sources.”
Chan, M. (2009), “Lessons Learned from the Financial Crisis: Designing Carbon Markets for Environmental Effectiveness and Financial Stability,” testimony before the Ways and Means Committee, March 26.
Chen, J., Wilson, C., Blankenship, D., and Tapley, B. (2009), “Accelerated Antarctic Ice Loss from Satellite Gravity Measurements,” Nature Geoscience 2: 859–862.CrossRefGoogle Scholar
Cheney, E. (1996), “Sequence Stratigraphy and Plate Tectonic Significance of the Transvaal Succession of Southern Africa and Its Equivalent in Western Australia,” Precambrian Research 79: 3–24.CrossRefGoogle Scholar
Church, J. and White, N. (2006), “A 20th Century Acceleration in Global Sea-Level Rise,” Geophysical Research Letters 33: L01602.CrossRefGoogle Scholar
Clarke, L. et al. (2006), “Synthesis and Assessment Product,” Climate Change Science Program Review, including a data supplement at: http://www.sc.doe.gov/ober/CPDAC/database_scenarios_information.xls.
Cline, W. (1992), The Economics of Global Warming, Institute of International Affairs.
,CNA Corporation (2007), “National Security and the Threat of Climate Change,” available at: http://www.securityandclimate.cna.org.
Coase, R. (1960), “Problem of Social Cost,” Journal of Law and Economics 3: 1–44.CrossRefGoogle Scholar
Condon, D., Prave, A., and Benn, D., (2002) “Neoproterozoic Glacial-Rainout Intervals: Observations and Implications,” Geology 30: 35–38.2.0.CO;2>CrossRefGoogle Scholar
Cooper, R. (2006), “Alternatives to Kyoto: The Case for a Carbon Tax,” working paper, Harvard University.
Corfee-Morlot, J. and Hoehne, N., (2003), “Climate Change: Long-Term Targets and Short-Term Commitments,” Global Environmental Change 13: 277–293.CrossRefGoogle Scholar
Cox, P. et al. (2000), “Acceleration of Global Warming Due to Carbon-Cycle Feedbacks in a Coupled Climate Model,” Nature 408: 184–187.CrossRefGoogle Scholar
Cox, P. et al. (2003), “Amazon Die-Back under Climate-Carbon Cycle Projections for the 21st Century,” Hadley Centre technical, note 42.
Cronin, T. et al. (2003), “Medieval Warm Period, Little Ice Age and 20th Century Temperature Variability from Chesapeake Bay,” Global and Planetary Change 36: 17–29.CrossRefGoogle Scholar
,DEFRA (2007), “The Social Cost of Carbon and the Shadow Price of Carbon,” Department for Environment, Food, and Rural Affairs, Government of the United Kingdom.
Demiralp, S., Preslopsky, B., and Whitesell, W. (2006), “Overnight Interbank Loan Markets,” Journal of Economics and Business 58: 67–83.CrossRefGoogle Scholar
Pater, I. and Lissauer, J. (2001), Planetary Sciences, Cambridge University Press.Google Scholar
,Dept. Finance, Canada (2006), “Oil and Gas Prices, Taxes and Consumers.”
Dessler, A. and Parson, E. (2006), The Science and Politics of Global Climate Change, Cambridge University Press.Google Scholar
Diaz-Pulido, G. et al. (2009), “Doom and Boom on a Resilient Reef: Climate Change, Algal Overgrowth and Coral Recovery,” PLoS ONE 4(4): e5239.CrossRefGoogle ScholarPubMed
Dicus, C. and Delfino, A. (2003), “A Comparison of California Forest Practice Rules and Two Forest Certification Systems,” California Forest Products Commission.
Dinan, T. (2007), “Trade-Offs in Allocating Allowances for CO2 Emissions,” Congressional Budget Office.
Dinan, T. and Shackleton, R. (2005) “Limiting Carbon Dioxide Emissions: Prices versus Caps,” Congressional Budget Office.
,DOE (U.S. Department of Energy) (2006), “The Electricity Delivery System.”
Doggett, L. and Cooper, J. (2009), “The Safe Markets Development Act” (H.R. 1666).
Dlugokencky, E. et al. (2003), “Atmospheric Methane Levels off: Temporary Pause or New Steady State?Geophysical Research Letters 30: 1992.CrossRefGoogle Scholar
Durner, G. et al. (2007), “Predicting the Future Distribution of Polar Bear Habitat in the Polar Basin from Resource Selection Functions Applied to 21st Century General Circulation Model Projections of Sea Ice,” United States Geological Survey.
Duxbury, Alyn, Duxbury, Alison, and Sverdrup, K. (2000), World's Oceans, McGraw Hill.Google Scholar
,ECCP (European Climate Change Programme) (2006), “EU Action Against Climate Change,” available at: http://ec.europa.eu/environment/climat/pdf/eu_climate_change_progr.pdf
Edge, R., Laubach, T., and Williams, J. (2004), “Learning and Shifts in Long-Run Productivity Growth,” Board of Governors of the Federal Reserve System.
,EIA (U.S. Energy Information Agency) (2009), “International Energy Outlook.”
Eichengreen, B., Rose, A., and Wyplosz, C. (1994), “Speculative Attacks on Pegged Exchange Rates: An Empirical Exploration with Special Reference to the European Monetary System,” working paper # W4898, National Bureau of Economic Research.
Eijffinger, S. and Haan, J. (1996), “The Political Economy of Central Bank Independence,” Princeton University.
Elderfield, H. and Ganssen, G. (2000), “Past Temperature of Surface Ocean Waters Inferred from Foraminiferal Mg/Ca Ratios,” Nature 405: 442–445.CrossRefGoogle ScholarPubMed
Elguindi, N. and Giorgi, F. (2006), “Projected Changes in the Caspian Sea Level for the 21st Century Based on the Latest AOGCM Simulations,” Geophysical Research Letters 33: L08706.CrossRefGoogle Scholar
Elmendorf, D. (2009), “Flexibility in the Timing of Emission Reductions under a Cap-and-Trade Program,” Congressional Budget Office.
,EPA (U.S. Environmental Protection Agency) (2007), “Inventory of U.S. Greenhouse Gas Emissions and Sinks: 1990–2005.”
,EPA (U.S. Environmental Protection Agency) (2001), “The United States Experience with Economic Incentives for Protecting the Environment.”
,EPICA Community (56 authors) (2004), “Eight Glacial Cycles from an Antarctic Ice Core,” Nature 429: 623–628.CrossRefGoogle Scholar
,ETAAC (Economic and Technology Advancement Advisory Committee) (2008), “Technologies and Policies to Consider for Reducing Greenhouse Gases in California.”
,EU (European Union) (1991), “The Protection of Waters against Pollution Caused by Nitrates from Agricultural Sources,” 91/676/EEC.
,EU (European Union) (2005), “Winning the Battle against Global Climate Change,” press release, February 9.
,EU (European Union) Commission (2007), “Limiting Global Climate Change to 2°C,” http://www.europa-eu-un.org/Articles/en/Article_6666_en.htm
Fankhauser, S. (1995), Valuing Climate Change – The Economics of the Greenhouse, EarthScan.
,FBR (Friedman, Billings, Ramsey) (2006), “Bloom to Come off the Rose: Decline of SO2 Story Driving BTU Convergence.”
Feely, R. et al. (1999), “Influence of El Niño on the Equatorial Pacific Contribution to Atmospheric CO2 Accumulation,” Nature 398: 597–601.CrossRefGoogle Scholar
Fernandez, L. (2009), “Influence of Temperature and Rainfall on the Evolution of Cholera Epidemics in Lusaka, Zambia, 2003–2006,” Transactions of the Royal Society of Tropical Medicine and Hygiene 103(2): 137–143.CrossRefGoogle Scholar
Fettweis, X. et al. (2008), “A Record Negative Greenland Ice Sheet Surface Mass Balance Rate in 2007,” Geophysical Research Abstracts 10: EGU2008–0033388.Google Scholar
Fischer, C. and Toman, M. (2000), “Environmentally and Economically Damaging Subsidies: Concepts and Illustrations,” Resources for the Future.
Fischer, H. et al. (1999), “Ice Core Records of Atmospheric CO2 around the Last Three Glacial Terminations,” Science 283: 1712–1714.CrossRefGoogle ScholarPubMed
Fischer, S. (1995), The Future of Central Banking, Cambridge University Press.Google Scholar
Foukal, P., North, G., and Wigley, T. (2004), “A Stellar View on Solar Variations and Climate,” Science 306: 68–69.CrossRefGoogle ScholarPubMed
Frankel, J. (2007), “Formulas for Quantitative Emission Targets,” in Architectures for Agreement, edited by Aldy, J. and Stavins, R., Cambridge University Press.Google Scholar
Friedlingstein, P. et al. (2001), “Positive Feedback between Future Climate Change and the Carbon Cycle,” Geophysical Research Letters 28: 1543–1546.CrossRefGoogle Scholar
Friedlingstein, P. et al. (2006), “Climate-Carbon Cycle Feedback Analysis: Results from C4MIP Model Intercomparison,” Journal of Climate 19: 3337–3353.CrossRefGoogle Scholar
Friedman, M. (1968), “The Role of Monetary Policy,” presidential address to the American Economic Association.
Gordon, R. (1986), The American Business Cycle; Continuity and Change, National Bureau of Economic Research.CrossRefGoogle Scholar
Goulder, L. and Pizer, W. (2008), “The Economics of Climate Change,” The New Palgrave Dictionary of Economics.
Hanna, E. et al. (2008), “Increased Runoff from Melt from the Greenland Ice Sheet: A Response to Global Warming,” Journal of Climate.CrossRefGoogle Scholar
Hansen, J. (2007), “Dangerous Human-Made Interference with Climate,” testimony before the Select Committee on Energy Independence and Global Warming, U.S. House of Representatives, April 26.
Hansen, J. et al. (2001), “A Closer Look at United States and Global Surface Temperature Change,” Journal of Geophysical Research 106: 23947–23963.CrossRefGoogle Scholar
Hansen, J. et al. (2008), “Target Atmospheric CO2: Where Should Humanity Aim?” working paper, Columbia University.
Hansen, J., Ruedy, R., Glascoe, J., and Sato, M. (1999), “GISS Analysis of Surface Temperature Change,” Goddard Institute: pubs.giss.nasa.gov/docs/1999/1999_HansenRuedyG.pdf
Hansen, J., Sato, M., Ruedy, R., Lo, K., Lea, D., and Medina-Elizalde, M. (2006), “Global Temperature Change,” Proceedings of the National Academy of Sciences, Sept. 25.
Hardin, G. (1968), “The Tragedy of the Commons,” Science 162: 1243–1248.Google ScholarPubMed
Hargrave, T. (1998), “U.S. Carbon Emissions Trading: Description of an Upstream Approach,” Center for Clean Air Policy (http://www.ccap.org).
Hartmann, D. (1994), Global Physical Climatology, Academic Press.Google Scholar
Harrabin, R. (2007), “CO2 Row Threatens Climate Report,” BBC, May 2: http://news.bbc.co.uk/2/hi/science/nature/6615025.stm
Heath, J. et al. (2005), “Rising Atmospheric CO2 Reduces Sequestration of Root-Derived Soil Carbon,” Science 309: 1711–1713.CrossRefGoogle ScholarPubMed
Held, I. and Soden, B. (2006), “Robust Responses of the Hydrological Cycle to Global Warming,” Journal of Climate 18: 5686–5699.CrossRefGoogle Scholar
Helme, N. (2009), “The Road to Copenhagen and Beyond: Elements of a Global Climate Deal between Developed and Developing Countries,” testimony before the Senate Committee on Foreign Relations, April 22.
Helme, N., Schmidt, J., Lee, J., and Houdashelt, M. (2006), “Sector-based Approach to the Post-2012 Climate Change Policy Architecture,” Center for Clean Air Policy.
Hoffman, P., Kaufman, A., Halverson, G., and Schrag, D. (1998), “A Neoproterozoic Snowball Earth,” Science 281: 1342–1346.CrossRefGoogle ScholarPubMed
Hope, C. and Newbery, D. (2007), “Calculating the Social Cost of Carbon,” working paper, Cambridge University.
Houweling, S. et al. (1999), “Inverse Modeling of Methane Sources and Sinks Using the Adjoint of a Global Transport Model,” Journal of Geophysical Research 104: 26137–26160.CrossRefGoogle Scholar
Howell, Katie (2009), “New Chemicals Could Better Capture CO2 from Coal Plants,” Scientific American.
,IEA (International Energy Agency) (2010), “Analysis of the Scope of Energy Subsidies and Suggestions for the G-20 Initiative,” International Energy Agency, Organization of Petroleum Exporting Countries, Organization for Economic Cooperation and Development, and the World Bank.
,IEA (2009), “World Energy Outlook.”
,IISD (International Institute for Sustainable Development) (2009), “Summary of the Bangkok Climate Change Talks,” Earth Negotiations Bulletin 12: 439.Google Scholar
,IMF (International Monetary Fund) (2008), “World Economic Outlook.”
,IMF (International Monetary Fund)IPCC (Intergovernmental Panel on Climate Change) (2001), Third Assessment Report, http://www.ipcc.chGoogle Scholar
,IMF (International Monetary Fund)IPCC (Intergovernmental Panel on Climate Change) (2007), Fourth Assessment Report, http://www.ipcc.chGoogle Scholar
Jaffe, J. and Stavins, R. (2008), “Linkage of Tradable Permit Systems in International Climate Policy Architecture,” working paper RWP08–053, Harvard Kennedy School.
Jakosky, B., Haberle, R., and Arvidson, R. (2005), “The Changing Picture of Volatiles and Climate on Mars,” Science 310: 1439–1440.CrossRefGoogle ScholarPubMed
Jetz, W., Wilcove, D., and Dobson, A. (2007), “Projected Impacts of Climate and Land-Use Change on the Global Diversity of Birds,” PLoS Biology.
Jirikowic, A. and Damon, P. (1994), “The Medieval Solar Activity Maximum,” Climate Change 26: 309–316.CrossRefGoogle Scholar
Jouzel, J. et al. (2007), “Orbital and Millennial Antarctic Climate Variability over the Past 800,000 Years,” Science 317: 793–796.CrossRefGoogle ScholarPubMed
Kasting, J. (1988), “Runaway and Moist Greenhouse Atmospheres and the Evolution of Earth and Venus,” Icarus 74: 472–494.CrossRefGoogle ScholarPubMed
Kaufman, D. et al. (2009), “Recent Warming Reverses Long-Term Arctic Cooling,” Science 325: 1236–1239.CrossRefGoogle ScholarPubMed
Keeling, C. and Whorf, T. (2005), “Atmospheric Carbon Dioxide Concentrations at 10 Locations,” Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory.
Keller, G. et al. (2008), “Main Deccan Volcanism Phase Ends Near the K-T boundary: Evidence from the Krishna-Godavari Basin, SE India,” Earth and Planetary Science Letters 268: 293–311.CrossRefGoogle Scholar
Kennett, D. et al. (2009), “Shock-Synthesized Hexagonal Diamonds in Younger Dryas Boundary Sediments,” Proceedings of the National Academy of Sciences 106: 12623–12628.CrossRefGoogle ScholarPubMed
Kerr, S. and Mare, D. (1997), “Transaction Costs and Tradable Permit Markets: The United States Lead Phasedown” working paper, University of Maryland.
Kidland, F. and Prescott, E. (1977), “Rules Rather than Discretion; The Inconsistency of Optimal Plans,” Journal of Political Economy 85: 473–491.CrossRefGoogle Scholar
Kirschvink, J. (1992), “Late Proterozoic low-latitude global glaciation: the Snowball Earth”, in The Proterozoic Biosphere: A Multidisciplinary Study, edited by Schopf, J. and Klein, C., Cambridge University Press.Google Scholar
Kirschvink, J., Ripperdan, R. and Evans, D. (1997), “Evidence for a Large-Scale Reorganization of Early Cambrian Continental Masses by Inertial Interchange True Polar Wander,” Science 25: 541–545.CrossRefGoogle Scholar
Kleiven, H. et al. (2008), “Reduced North Atlantic Deep Water Coeval with the Glacial Lake Agassiz Freshwater Outburst,” Science 319: 60–64.CrossRefGoogle ScholarPubMed
Knight, F. (1921), Risk, Uncertainty, and Profit, Houghton Mifflin.Google Scholar
Knittel, C. (2009), “The Implied Cost of Carbon Dioxide under the Cash for Clunkers Program,” working paper, U. of California Energy Institute.
Kriegler, E., Hall, J., Held, H., Dawson, R., and Schellnhuber, H. (2009), “Imprecise Probability Assessment of Tipping Points in the Climate System,” Proceedings of the National Academy of Sciences.
Kohler, P. and Fischer, H. (2006), “Simulating Low Frequency Changes in Atmospheric CO2 during the Last 740,000 Years,” Climate of the Past Discussions 2: 1–42.CrossRefGoogle Scholar
Kopp, R. (2007), “Greenhouse Gas Regulation in the United States,” Resources for the Future discussion paper 07–16.
Kopp, R. et al. (2005), “The Paleoproterozoic Snowball Earth: A Climate Disaster Triggered by the Evolution of Oxygenic Photosynthesis,” Proceedings of the National Academy of Sciences 102: 11131.CrossRefGoogle ScholarPubMed
Kutzbach, J. and Liu, Z. (1997), “Response of the African Monsoon to Orbital Forcing and Ocean Feedbacks in the Middle Holocene,” Science 278: 440–443.CrossRefGoogle Scholar
Kvenvolden, K. (1995) “A Review of the Geochemistry of Methane in Natural Gas HydrateOrganic Geochemistry 23(11–12): 997–1008.CrossRefGoogle Scholar
LaJeunnesse, T. et al. (2009), “Outbreak and Persistence of Opportunistic Symbiotic Dinoflagellates during the 2005 Caribbean Mass Coral ‘Bleaching’ Event,” Proceedings of the Royal Society B.
Larter, R. (2007), Presentation at a conference at the University of Texas at Austin, March 28.
Quere, C. et al. (2008), “Response to Comments on ‘Saturation of the Southern Ocean CO2 Sink Due to Recent Climate Change’,” Science 319, Technical comment 570c.CrossRefGoogle Scholar
Lea, D., Pak, D., and Spero, H. (2000), “Climate Impact of Late Quaternary Equatorial Pacific Sea Surface Temperature Variations,” Science 289: 1719–1724.CrossRefGoogle ScholarPubMed
Lear, C., Elderfield, H., and Wilson, P. (2000), “Cenozoic Deep-Sea Temperatures and Global Ice Volumes from Mg/Ca in Benthic Foraminiferal Calcite,” Science 287: 269–282.CrossRefGoogle ScholarPubMed
Leuliette, E., Nerem, R., and Mitchum, G. (2004), “Calibration of TOPEX/Poseidon and Jason Altimeter Data to Construct a Continuous Record of Mean Sea Level Change,” Marine Geodesy 27: 79–94.CrossRefGoogle Scholar
Lenton, T. et al. (2008), “Tipping Elements in the Earth's Climate System,” Proceedings of the National Academy of Sciences 105: 1786–1793.CrossRefGoogle ScholarPubMed
Liberman, E. (2003), “A Life Cycle Assessment and Economic Analysis of Wind Turbines Using Monte Carlo Analysis,” master's thesis, Air Force Institute of Technology.
Liu, Z. and Herbert, T. (2004), “High-Latitude Influence on the Eastern Equatorial Pacific Climate in the Early Pleistocene Epoch,” Nature 427: 720–723.CrossRefGoogle ScholarPubMed
Lomborg, B. (2007), “Perspective on Climate Change,” testimony before the U.S. Congressional subcommittees, March 21.
,Majaess (2008), “New Constraints on the Asteroid 298 Baptistina, the Alleged Family Member of the K/T Impactor,” Journal of the Royal Astronomical Society of Canada.Google Scholar
Mann, M., Bradley, R., and Hughes, M. (1998), “Global-scale Temperature Patterns and Climate Forcing over the Past Six Centuries,” Nature 392: 779–787.CrossRefGoogle Scholar
Mann, M. et al. (1999), “Northern Hemisphere Temperatures during the Past Millenium: Inferences, Uncertainties, and Limitations,” Geophysical Research Letters 26: 759–762.CrossRefGoogle Scholar
Marland, G., Boden, T., and Andres, R. (2007), “Global, Regional, and National CO2 Emissions,” Carbon Dioxide Information Analysis Center, U.S. Department of Energy.
Marshak, S. (2005), Earth: Portrait of a Planet, second edition, Norton.Google Scholar
McCarthy, J. (2005), “Clean Air Act: A Summary of the Act and its Major Requirements,” Congressional Research Service.
McCarthy, J., Parker, L., and Meltz, R. (2009), “Clean Air after the CAIR Decision: Back to Square One,” Congressional Research Service.
McKerrow, W., Scotese, C., and Brasier, M. (1992), “Early Cambrian Continental Reconstructions,” Journal of the Geological Society, London 149: 599–606.CrossRefGoogle Scholar
McKibbon, W. and Wilcoxen, P. (2006), “A Credible Foundation for Long Term International Cooperation on Climate Change,” Lowy Institute working paper no. 1.06.
McManus, W. (2007), “Economic Analysis of Feebates to Reduce Greenhouse Gas Emissions from Light Vehicles for California,” University of Michigan Transportation Research Institute.
Medina-Elizalde, M. and Lea, D. (2005), “The Mid-Pleistocene Transition in the Tropical Pacific,” Science 310: 1009–1012.CrossRefGoogle ScholarPubMed
Mehling, M. and Haites, E. (2009), “Mechanisms for Linking Emissions Trading Schemes,” Climate Policy 9: 169–184.CrossRefGoogle Scholar
Metcalf, G. (2009), “Price Volatility in Climate Change Legislation,” testimony before the Ways and Means Committee, March 26.
Michaelowa, A. (2007), “Graduation and Deepening,” in Architectures for Agreement edited by Aldy, J. and Stavins, R., Cambridge University Press.Google Scholar
Milkov, A. (2004), “Global Estimates of Hydrate-Bound Gas in Marine Sediments: How Much Is Really Out There?Earth-Science Review 66 (3–4), 183–197.CrossRefGoogle Scholar
,MIT (Massachusetts Institute of Technology) (2007), “The Future of Coal,” available at: http://web.mit.edu/coal
Mullen, L. (2004), “Multiple Impacts,” Astrobiology Magazine.
Murray, B., Newell, R., and Pizer, W. (2009), “Balancing Cost and Emissions Certainty: An Allowance Reserve for Cap-and-Trade,” working paper 14258, National Bureau of Economic Research.
Nadel, S. (2006), “Energy Efficiency Resource Standards: Experience and Recommendations,” American Council for an Energy-Efficient Economy.
Nemai, R. et al. (2003), “Climate-Driven Increases in Global Terrestrial Net Primary Production from 1982 to 1999,” Science 300: 1560–1563.CrossRefGoogle Scholar
Newell, R., Pizer, W., and Zhang, J. (2005), “Managing Permit Markets to Stabilize Prices,” Environment and Resource Economics 31(2): 133–157.CrossRefGoogle Scholar
Norby, R. et al. (2005), “Forest Response to Elevated CO2 is Conserved Across a Broad Range of Productivity,” Science 102: 18052–18056.Google ScholarPubMed
Nordhaus, W. (2005), “Life after Kyoto: Alternative Approaches to Global Warming Policies,” working paper, http://nordhaus.econ.yale.edu/kyoto_long_2005.pdf
Nordhaus, W. (2006a), “The Economics of Hurricanes in the United States,” working paper, http://nordhaus.econ.yale.edu/hurr_122106a.pdf
Nordhaus, W. (2006b), “The Stern Review on the Economics of Climate Change,” working paper, http://nordhaus.econ.yale.edu/SternReviewD2.pdf
Nordhaus, W. (2007), “The Challenge of Global Warming: Economic Models and Environmental Policy,” working paper, http://nordhaus.econ.yale.edu
Nordhaus, W. and Boyer, J. (2000), Roll the DICE Again: Economic Models of Global Warming, MIT Press.Google Scholar
Oreopoulos, L. and Davies, R. (1998), “Plane Parallel Albedo Biases from Satellite Observations,” Journal of Climate 11: 919–944.2.0.CO;2>CrossRefGoogle Scholar
Otto-Bliesner, B. et al. (2006), “Simulating Arctic Climate Warmth and Icefield Retreat in the Last Interglaciation,” Science 311: 1751–1753.CrossRefGoogle ScholarPubMed
Overpeck, J. et al. (2006), “Paleoclimatic Evidence for Future Ice-Sheet Instability and Rapid Sea-Level Rise,” Science 311: 1747–1750.CrossRefGoogle ScholarPubMed
Pagani, M. et al. (2006), “Arctic Hydrology during Global Warming at the Paleocene/Eocene Thermal Maximum,” Nature 442: 671–675.CrossRefGoogle Scholar
Palmer, K. and Burtraw, D. (2007), “The Electricity Sector and Climate Policy,” in Assessing U.S. Climate Policy Options, Resources for the Future.
Paltsev, J. et al. (2007) “Assessment of U.S. Cap-and-Trade Proposals,” working paper, Massachusetts Institute of Technology.
Parry, I. et al. (2007), “Automobile Externalities and Policies,” Journal of Economic Literature 45(3): 373–399.CrossRefGoogle Scholar
Pearce, D. (1993), Economic Values and the Natural World, Earthscan.
Pearson, P. and Palmer, M. (2000), “Atmospheric Carbon Dioxide Concentrations over the Past 60 Million Years,” Nature 406: 695–699.CrossRefGoogle ScholarPubMed
Pearson, P., Foster, G., and Wade, S. (2009), “Atmospheric Carbon Dioxide through the Eocene–Oligocene Climate Transition,” Nature online.
Petit, J. R. et al. (1999), “Climate and Atmospheric History of the Past 420,000 Years from the Vostok Ice Core, Antarctica,” Nature 399: 429–436.CrossRefGoogle Scholar
Petrenko, V. et al. (2009), “14CH4 Measurements in Greenland Ice: Investigating Last Glacial Termination CH4 Sources,” Science 324: 506–508.CrossRefGoogle ScholarPubMed
Pflaumann, U. et al. (1998), “Variations in eolian and carbonate sedimentation, sea-surface temperature, and productivity over the last 3 m.y. at site 958 off northwest Africa,” Proceedings of the Ocean Drilling Program, Scientific Results, Vol. 159T.
Pierce, J. and Adams, P. (2009), “Can Cosmic Rays Affect Cloud Condensation Nuclei by Altering New Particle Formation Rates?” Geophysical Research Letters 36.CrossRefGoogle Scholar
Pigou, A. (1920), The Economics of Welfare, 4th edition – 1932, MacMillan and Co., London.Google Scholar
Pizer, W. (2007), “Practical Global Climate Policy,” in Architectures for Agreement, edited by Aldy, J. and Stavins, R., Cambridge University Press.Google Scholar
Poole, W. (1970), “Optimal Choice of Monetary Policy Instruments in a Small Stochastic Macro Model,” Quarterly Journal of Economics 84: 197–216.CrossRefGoogle Scholar
Previdi, M. and Liepert, B. (2008), “Interdecadal Variability of Rainfall on a Warming Planet,” EOS 89 21: 193–195.CrossRefGoogle Scholar
Pritchard, H., Arthern, R., Vaughan, D., and Edwards, L. (2009), “Extensive Dynamic Thinning on the Margins of the Greenland and Antarctic Ice Sheets,” Nature 461: 971–975.CrossRefGoogle ScholarPubMed
Rasch, P., Crutzen, P., and Coleman, D. (2008), “Exploring the Geoengineering of Climate Using Stratospheric Sulfate Aerosols: The Role of Particle Size,” Geophysical Research Letters 35, L02809.CrossRefGoogle Scholar
Rayner, P. et al. (1999), “The Relationship between Tropical CO2 Fluxes and the El Niño-Southern Oscillation,” Geophysical Research Letters 26(4): 493–496.CrossRefGoogle Scholar
Reddy, V. et al. (2008), “Composition of 298 Baptistina: Implications for K-T Impactor Link,” Asteroids, Comets, Meteors conference.
,RGGI (Regional Greenhouse Gas Initiative) (2007), Model Rule, http://www.rggi.org
,RGGI (2008a), “Design Elements for Regional Allowance Auctions,” http://www.rggi.org
,RGGI (2008b), “Potential Emissions Leakage,” http://www.rggi.org
Rieu, R., Allen, P., Plotze, M., and Pettke, T. (2007), “Climatic Cycles during a Neoproterozoic ‘Snowball’ Glacial Epoch,” Geology 35: 299–302.CrossRefGoogle Scholar
Roe, G. and Baker, M. (2007), “Why is Climate Sensitivity so Unpredictable,” Science 318: 629–632.CrossRefGoogle ScholarPubMed
Rogers, J. (1996), “A History of Continents in the Past Three Billion Years,” Journal of Geology 104: 91–107.CrossRefGoogle Scholar
Royer, Dana L., Robert, A.Berner, Isabel P.Montañez, Neil J. Tabor, and Beerling, David J. (2004), “CO2 as a Primary Driver of Phanerozoic Climate,” GSA Today 14(3): 4–10.2.0.CO;2>CrossRefGoogle Scholar
Ruddiman, W. (2001), Earth's Climate, W.H. Freeman and Company.Google Scholar
Ruddiman, W. (2006), “Ice-Driven CO2 Feedback on Ice Volume,” Climate of the Past Discussions 2: 43–78.CrossRefGoogle Scholar
Sabine, C. et al. (2004), “The Oceanic Sink for Anthropogenic CO2,” Science 305: 367–371.CrossRefGoogle ScholarPubMed
Saltzman, M. and Young, S. (2005), “A long-lived Glaciation in the Late Ordovician?: Isotopic and Sequence Stratigraphic Evidence from Western Laurentia,” Geology 33: 109–112.CrossRefGoogle Scholar
,SCAQMD (South Coast Air Quality Management District) (2008), “Annual RECLAIM Audit Report for the 2006 Compliance Year.”
Schmidt, G. (2006), “Calculating the Greenhouse Effect,” RealClimate post at: http://www.realclimate.org/index.php/archives/2006/01/calculating-the-greenhouse-effect
Schmidt, P. and Williams, G. (2003), “Paleomagnetism of the Lorrain Formation, Quebec, and Implications for the Latitude of Huronian Glaciation,” Geophysical Research Abstracts 5: 08262.Google Scholar
Scotese, C. (2002), “Earth History,” Paleomap project.
Shapiro, R. (2007), “Addressing the Risks of Climate Change: The Environmental Effectiveness and Economic Efficiency of Emissions Caps and Tradable Permits, Compared to Carbon Taxes,” working paper.
Shaviv, N. and Veizer, J. (2003), “Celestial Driver of Phanerozoic Climate?GSA Today 13: 4–10.2.0.CO;2>CrossRefGoogle Scholar
Shepherd, A. and Wingham, D. (2007), “Recent Sea-Level Contributions of the Antarctic and Greenland Ice Sheets,” Science 315: 1529–1532.CrossRefGoogle ScholarPubMed
Siddal, M., Chappell, J., and Potter, E. (2006), “Eustatic Sea Level during Past Interglacials,” in The Climate of Past Interglacials, ElsevierGoogle Scholar
Siegenthaler, U. and ,other EPICA authors (2005a), “Supporting Evidence from the EPICA Dronning Maud Land Ice Core for Atmospheric CO2 Changes during the Past Millennium,” Tellus 57B: 51–57.CrossRefGoogle Scholar
Siegenthaler, U. and ,other EPICA authors (2005b), “Stable Carbon Cycle – Climate Relationship during the Late Pleistocene,” Science 310: 1313–1317.CrossRefGoogle ScholarPubMed
Soden, B. et al. (2005), “The Radiative Signature of Upper Tropospheric Moistening,” Science 310: 841–844.CrossRefGoogle ScholarPubMed
Stavins, R. (1994), “Correlated Environmental Uncertainty and Policy Instrument Choice,” working paper, Harvard Belfer Center.
Stavins, R. (2005), “The Lessons Learned from the SO2 Trading Program,” Choices 20: 53–57.Google Scholar
Stehr, H. and Sethi, R. (2007), “Status of the CDM,” presentation in Bonn, available at: http://cdm.unfccc.int/EB/media/index.html
Stern, N. (2008), “Key Elements of a Global Deal on Climate Change,” working paper, London School of Economics.
Stern, N. (2006), “Stern Review: The Economics of Climate Change,” U.K. Treasury.
Stewart, R. et al. (2000), The Clean Development Mechanism: Building International Public-Private Partnerships under the Kyoto Protocol, United Nations.
Stewart, R. and Wiener, J. (2003), Reconstructing Climate Policy: Beyond Kyoto, American Enterprise Institute.Google Scholar
Storey, M., Duncan, R., and Swisher, C. (2007), “Paleocene-Eocene Thermal Maximum and the Opening of the Northeast Atlantic,” Science 316: 587–589.CrossRefGoogle ScholarPubMed
Taylor, J., ed. (1999), Monetary Policy Rules, University of Chicago Press.
Tedesco, M. and Monaghan, A. (2009), “An Updated Antarctic Melt Record through 2009 and Its Linkages to High-Latitude and Tropical Climate Variability,” Geophysical Research Letters 36: L18502.CrossRefGoogle Scholar
Tilmes, S., Muller, R., and Salawitch, R. (2008), “The Sensitivity of Polar Ozone Depletion to Proposed Geoengineering Schemes,” Science Express.
Timmermann, A., Timm, O., Stott, L., and L.Menviel, (2008), “Austral Spring Insolation Changes Help to Jump-Start Deglacial Temperature Rise in Antarctica,” Journal of Climate.Google Scholar
Tol, R. (2002), “Estimates of the Damage Costs of Climate Change,” Environmental and Resource Economics 21: 47–73.CrossRefGoogle Scholar
Torsvik, T. (2003), “The Rodinia Jigsaw Puzzle,” Science 300: 1379–1381.CrossRefGoogle ScholarPubMed
Trenberth, K. and Smith, L. (2005), “The Mass of the Atmosphere: A Constraint on Global Analyses,” Journal of Climate 18: 864–875.CrossRefGoogle Scholar
Tripati, A., Roberts, C., and Eagle, R. (2009), “Coupling of CO2 and Ice Sheet Stability over Major Climate Transitions of the Last 20 Million Years,” Science 326: 1394–1397.CrossRefGoogle ScholarPubMed
,UN (United Nations) (2006), “World Population Prospects: The 2006 Revision.”
,UNFCCC (United Nations Framework Convention on Climate Change) (1992), available at: http://unfccc.int/resource/docs/convkp/conveng.pdf
,UNFCCC (2009), “Compilation of Information Relating to Possible Quantified Emission Limitation and Reduction Objectives as Submitted by Parties,” secretariat document, August 11.
,USCAP (2009), “A Blueprint for Legislative Action: Consensus Recommendations for U.S. Climate Protection Legislation,” U.S. Climate Action Partnership.
Hilst, R. et al. (2007), “Seismostratigraphy and Thermal Structure of Earth's Core-Mantle Boundary Region,” Science 315: 1813–1817.CrossRefGoogle ScholarPubMed
Veizer, J., Godderis, Y., and François, L. M. (2000) “Evidence for Decoupling of Atmospheric CO2 and Global Climate during the Phanerozoic Eon,” Nature 408: 698–701.CrossRefGoogle ScholarPubMed
Victor, D. (2001), The Collapse of the Kyoto Protocol and the Struggle to Slow Global Warming, Princeton University Press.
Victor, D. (2007), “Fragmented Carbon Markets and Reluctant Nations,” in Architectures for Agreement, edited by Aldy, J. and Stavins, R., Cambridge University Press.Google Scholar
Walsh, C. (2005), “Central Bank Independence,” New Palgrave Dictionary of Economics.
Wara, M. (2007), “Is the Global Carbon Market Working,” Nature 445: 595–596.CrossRefGoogle ScholarPubMed
Weiss, R., Jahnke, R., and Keeling, C. (1982), “Seasonal Effects of Temperature and Salinity on the Partial Pressure of Carbon Dioxide in Seawater,” Nature 300: 511–513.CrossRefGoogle Scholar
Weitzman, M. (1974), “Prices vs. Quantities,” Review of Economic Studies 41(4): 477–491.CrossRefGoogle Scholar
Weitzman, M. (2007), “A Review of the Stern Review on the Economics of Climate Change,” Journal of Economic Literature 45: 703–724.CrossRefGoogle Scholar
Weldeab, S., Lee, D., Schneider, R., and Andersen, N. (2007), “155,000 Years of West African Monsoon and Ocean Thermal Evolution,” Science 316: 1303–1307.CrossRefGoogle ScholarPubMed
Wentz, F., Ricciardulli, L., Hilburn, K., and Mears, C. (2007), “How Much More Rain Will Global Warming Bring?Science 317: 233–235.CrossRefGoogle ScholarPubMed
Werf, G. et al. (2004), “Continental-Scale Partitioning of Fire Emissions during the 1997 to 2001 El Niño/ La Niña period,” Science 303: 73–76.CrossRefGoogle ScholarPubMed
Whitesell, W. (2009), “The Safe Markets Development Approach to Cap and Trade,” testimony before the Ways and Means Committee, U.S. House of Representatives, March 26.
Whitesell, W. and Vanamali, A. (2009), “Norway's Proposal to Auction Assigned Amount Units: Implementation Options,” Center for Clean Air Policy.
Weiner, J. (1999), “Global Environmental Regulation: Instrument Choice in Legal Context,” Yale Law Journal 108: 677–800.CrossRefGoogle Scholar
,Worldwatch Institute (2006), “American Energy: The Renewable Path to Energy Security.”
Zachos, J. et al. (2005), “Rapid Acidification of the Ocean during the Paleocene-Eocene Thermal Maximum,” Science 308: 1611–1615.CrossRefGoogle ScholarPubMed
Zachos, J., Dickens, G., and Zeebe, R. (2008), “An Early Cenozoic Perspective on Greenhouse Warming and Carbon-Cycle Dynamics,” Nature 451: 279–283.CrossRefGoogle ScholarPubMed

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  • References
  • William C. Whitesell
  • Book: Climate Policy Foundations
  • Online publication: 01 June 2011
  • Chapter DOI: https://doi.org/10.1017/CBO9780511976681.016
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  • References
  • William C. Whitesell
  • Book: Climate Policy Foundations
  • Online publication: 01 June 2011
  • Chapter DOI: https://doi.org/10.1017/CBO9780511976681.016
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  • References
  • William C. Whitesell
  • Book: Climate Policy Foundations
  • Online publication: 01 June 2011
  • Chapter DOI: https://doi.org/10.1017/CBO9780511976681.016
Available formats
×