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An annotated bibliography on the greenhouse effect and climate change

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Abstract

The literature on climate change from an enhanced greenhouse effect is large and growing rapidly. The problems considered are increasingly inter-disciplinary. For these reasons many workers will find useful pointers to the literature in the fields interacting with, but outside of, their own. We present here an annotated bibliography on issues relating to changes in the concentrations of Earth's greenhouse gases. The areas covered include theory and numerical modelling of climate change; cycles involving carbon dioxide and other radiatively important trace gases; observations of climate change and the problems associated with those observations; paleoclimatology as it relates to previous changes in the greenhouse gases; the impacts on and interactions with managed and natural ecosystems from climate change; policy issues related to climate change and to the limitation of climate change; history of the study of the greenhouse effect; and some other causes of climate change. Selection of papers has been made to facilitate rapid introduction to most of the important issues and findings in an area. Over 600 articles, reports, and books are discussed.

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References

  • Abrahamson, Dean Edwin 1989: The Challenge of Global Warming, Island Press, Washington, D.C., 356pp. [Nl, p. 211;IOPCTH]

    Google Scholar 

  • Adams, Richard M. 1989: Global climate change and agriculture: An economic perspective, Am. J. Agricul. Econ. 71 (5), 1272–1279. [†I23, p. 160]

    Google Scholar 

  • Adams, Richard M., Cynthia Rosenzweig, Robert M. Peart, Joe T. Ritchie, Bruce A. McCarl, J. David Glyer, R. Bruce Curry, James W. Jones, Kenneth J. Boote, and L. Hartwell Allen Jr. 1990: Global climate change and US agriculture, Nature 345 (6272), 219–224. [I23, p. 160]

    Google Scholar 

  • Adams, J. M., H. Faure, and N. Petit-Marie 1992: Methane and Milankovitch cycles, Nature 355 (6357), 214. [†A33, p. 152; C]

    Google Scholar 

  • Albanese, Anthony S. and Meyer Steinberg 1980: Environmental control technology for atmospheric carbon dioxide, Energy 5 (7), 641–664. [P66, p. 185]

    Google Scholar 

  • Alderson, Karen L. and Rebecca Mazur 1989: The unpredictable atmosphere: Selected references, Congressional Reference Service, Library of Congress, 89–43 L, Washington, D.C., 25pp. [M3, p. 215; N]

    Google Scholar 

  • Alley, R. B. and I. M. Whillans 1991: Changes in the west Antarctic ice sheet, Science 254 (5034), 959–962. [O17, p. 136]

    Google Scholar 

  • Allison, Linda J. and Sylvia S. Talmadge 1982: The carbon dioxide question: An introduction to the literature, in Clark 1982, 415–427. [M5, p. 215]

  • Anderer, Jeanne, Alan McDonald, Nebojsa Nakicenovic, and Wolf Häfele 1981: Energy in a Finite World. Volume 1: Paths to a Sustainable Future. See IIASA 1981 [P98, p. 192].

  • Anderson, G. Christopher 1990: A solution in iron solution?, Nature 345 (6274), 374. [P56, p. 184; C]

    Google Scholar 

  • Andreae, M. O. and D. S. Schimel (eds.) 1989: Exchange of Trace Gases Between Terrestrial Ecosystems and the Atmosphere, Wiley, Chichester, 347pp. [C71, p. 131]

    Google Scholar 

  • Angell, J. K. and J. Korshover 1983: Global temperature variations in the troposphere and stratosphere, 1958–1982, Mon. Weather Rev. 111 (5), 901–921. [†O2, p. 134]

    Google Scholar 

  • Angell, J. K. 1986: Annual and seasonal global temperature changes in the troposphere and lower stratosphere, 1960–85, Mon. Weather Rev. 114 (10), 1922–1930. [†O2, p. 134]

    Google Scholar 

  • Angell, J. K. 1988: Variations and trends in tropospheric and stratospheric global temperatures, 1958–87, J. Clim. 1 (12), 1296–1313. [O2, p. 134]

    Google Scholar 

  • Annals of Botany 1991: Global Change and the Biosphere, special issue of Ann. Botany 67 (Supplement 1), 60pp. [I52, p. 165; C] Contains [I53, p. 165; C4, p. 121; I54, p. 165; I55, p. 165].

  • d'Arge, Ralph C., William D. Schulze, and David S. Brookshire 1982: Carbon dioxide and intergenerational choice, Am. Econ. Rev. 72 (2), 251–256. [P41, p. 181]

    Google Scholar 

  • Arking, Albert 1990: Feedback processes and climate response, in Schatten and Arking 1990, 219–226. [T49,p. 115]

  • Arking, Albert 1991: The radiative effects of clouds and their impact on climate, Bull. Am. Meteorol. Soc. 72 (6), 795–813. [T42, p. 113]

    Google Scholar 

  • Arrhenius, Svante 1896: On the influence of carbonic acid in the air upon the temperature of the ground, Philos. Mag. (Ser. 5) 41 (251), 237–276. [H19, p. 199; TK]

    Google Scholar 

  • Arrhenius, Svante August 1903: Lehrbuch der kosmischen Physik, Hirzel, Leipzig, 2 vols., 1026pp. (See vol. 2.) [K; †H23, p. 199]

    Google Scholar 

  • Arrhenius, Svante 1908: Worlds in the Making, trans. by H. Borns, Harper, New York, 230pp. (See chap. 2.) [H23, p. 199; N]

    Google Scholar 

  • Ausubel, Jesse H. 1983: Historical note, in National Research Council 1983, 488–491. [H7, p. 197; N]

  • Ausubel, Jesse H., Arnulf Grübler, and Nebojsa Nakicenovic 1988: Carbon dioxide emissions in a methane economy, Clim. Change 12 (3), 245–263. [P85, p. 189]

    Google Scholar 

  • Ausubel, Jesse H. 1991a: Does climate still matter?, Nature 350 (6320), 649–652. [P102, p. 193; N]

    Google Scholar 

  • Ausubel, Jesse H. 1991b: A second look at the impacts of climate change, Am. Scientist 79 (3), 210–221. [I3, p. 156; N]

    Google Scholar 

  • Avissar, Roni and Michel M. Verstraete 1990: The representation of continental surface processes in atmospheric models, Rev. Geophys. 28 (1), 35–52. [X19, p. 206]

    Google Scholar 

  • Ayers, G. P. and R. W. Gillett 1990: Tropospheric chemical composition: Overview of experimental methods in measurement, Rev. Geophys. 28 (3), 297–314. [C69, p. 131]

    Google Scholar 

  • Bacastow, R. and E. Maier-Reimer 1990: Ocean-circulation model of the carbon cycle, Clim. Dynam. 4 (1), 95–125. [†C20, p. 124]

    Google Scholar 

  • Bach, W., J. Pankrath, and J. Williams (eds.) 1980: Interactions of Energy and Climate, Reidel, Dordrecht, 569pp. [M29, p. 220; PXC] Contains [P67, p. 186].

    Google Scholar 

  • Bach, Wilfrid 1984: Our Threatened Climate: Ways of Averting the CO 2 Problem Thourgh Rational Energy Use, trans. from German by Jill Jäger, Reidel, Dordrecht, 368pp. Originally published in 1982 as Gefahr fur unser Klima. [P13, p. 176]

    Google Scholar 

  • Baes, C. F. Jr., S. E. Beall, and D. W. Lee 1980: The collection, disposal, and storage of carbon dioxide, in Bach et al. 1980, 495–519. [P67, p. 186]

  • Bakun, Andrew 1990: Global climate change and intensification of coastal ocean upwelling. Science 247(4939), 198–201. [178, p. 170]

    Google Scholar 

  • Ball, Timothy F. 1986: Historical evidence and climatic implications of a shift in the boreal forest tundra transition in central Canada, Clim. Change 8 (2), 12–134. [I67, p. 168]

    Google Scholar 

  • Balling, Robert C. Jr. 1991: Impact of desertification on regional and global warming, Bull. Am. Meteorol. Soc. 72 (2), 232–234. [O56, p. 143; X]

    Google Scholar 

  • Barbier, Edward B. 1989: The global greenhouse effect. Economic impacts and policy considerations, Natural Resources Forum 13 (1), 20–32. [I25, p. 160]

    Google Scholar 

  • Barnett, T. P. 1984a: Long-term trends in surface temperature over the oceans, Mon. Weather Rev. 112 (2), 303–312. [O15, p. 136]

    Google Scholar 

  • Barnett, T. P. 1984b: The estimation of “global” sea level change: A problem of uniqueness, J. Geophys. Res. 89 (C5), 7980–7988. [O30, p. 138]

    Google Scholar 

  • Barnett, T. P. 1986: Detection of changes in the global troposphere temperature field induced by greenhouse gases, J. Geophys. Res. 91 (D6), 6659–6667. [†O49, p. 142]

    Google Scholar 

  • Barnett, Tim P. and Micheal E. Schlesinger 1987: Detecting changes in global climate induced by greenhouse gases, J. Geophys. Res. 92 (D12), 14772–14780. [O49, p. 142]

    Google Scholar 

  • Barnola, J. M., D. Raynaud, Y. S. Korotkevich, and C. Lorius 1987: Vostok ice core provides 160,000-year record of atmospheric CO2, Nature 329 (6138), 408–414. [A41, p. 154; †A19, p. 150; †A39, p. 153; †A44, p. 154; CK]

    Google Scholar 

  • Bates, Gary T. and Gerald A. Meehl 1986: The effect of CO2 concentration on the frequency of blocking in a general circulation model coupled to a simple mixed layer ocean model, Mon. Weather Rev. 114 (4), 687–701. [190, p. 172; T]

    Google Scholar 

  • Bazzaz, Fakhri A. and Eric D. Fajer 1991: Plant life in a CO2-rich world, Sci. Am. 266 (1), 68–74. [N2, p. 211]

    Google Scholar 

  • Beltrami, Hugo and Jean-Claude Mareschal 1991: Recent warming in eastern Canada inferred from geothermal measurements, Geophys. Res. Lett. 18 (4), 605–608. [O42, p. 141]

    Google Scholar 

  • Berger, A. 1988: Milankovitch theory and climate, Rev. Geophys. 26 (4), 624–657. [X33, p. 208; A]

    Google Scholar 

  • Berger, A., R. E. Dickinson, and J. W. Kidson (eds.) 1989: Understanding Climate Change, Geophysical Monograph 52, IUGG Volume 7, American Geophysical Union, Washington, D.C., 187pp. [TXA] Contains [T14, p. 108].

    Google Scholar 

  • Berger, W. H. and L. D. Labeyrie (eds.) 1987: Abrupt Climatic Change: Evidence and implications, NATO ASI series C, mathematical and physical sciences, vol. 216, Reidel, Dordrecht, 425pp. [M21, p. 219; AXT]

    Google Scholar 

  • Berner, Robert A., Antonio C. Lasaga, and Robert M. Garrels 1983: The carbonate-silicate geochemical cycle and its effect on atmospheric carbon dioxide over the past 100 million years, Am. J. Sci. 283 (7), 641–683. [A25, p. 151; †N9, p. 212; C]

    Google Scholar 

  • Berner, Robert A. and Antonio C. Lasaga 1989: Modeling the geochemical carbon cycle, Sci. Am. 260 (3), 74–81. [N9, p. 212; CA]

    Google Scholar 

  • Bethoux, J. P., B. Gentili, J. Raunet, and D. Tailliez 1990: Warming trend in the western Mediterranean deep water, Nature 347 (6294), 660–662. [O20, p. 137]

    Google Scholar 

  • Betts, Alan K. 1990: Greenhouse warming and the tropical water budget, Bull. Am. Meteorol. Soc. 71 (10), 1464–1465. Response by Richard S. Lindzen, op. cit., 1465–1467. [†T3, p. 106]

    Google Scholar 

  • Blackburn, John O. 1987: The Renewable Energy Altenative, Duke Univ. Press, North Carolina, 201pp. [P91, p. 190]

    Google Scholar 

  • Bleviss, Deborah Lynn 1988a: The New Oil Crisis and Fuel Economy Technologies, Quorum Books, New York, 268pp. [P86, p. 189]

    Google Scholar 

  • Bleviss, Deborah L. 1988b: Saving fuel. We have the way ... do we have the will?, Technol. Rev. 91 (8), 46–54. [N14, p. 213; P]

    Google Scholar 

  • Boden, Thomas A., Paul Kanciruk, and Michael P. Farrell 1990: Trends '90: A compendium of data on global change, Carbon Dioxide Information and Analysis Center, Oak Ridge National Laboratory, ORNL/CDIAC-36, Oak Ridge, Tennessee, 257pp. [M1, p. 215;

    Google Scholar 

  • Bohren, Craig F. 1987: How do Greenhouses work, in Craig F. Bohren, Clouds in a Glass of Beer, Wiley, New York, 83–85. [M35, p. 221; NT]

    Google Scholar 

  • Bolin, B., E. T. Degens, S. Kempe, and P. Ketner (eds.) 1979: The Global Carbon Cycle, SCOPE 13, Wiley, Chichester, 491pp. [C37, p. 126]

    Google Scholar 

  • Bolin, Bert (ed.) 1981: Carbon Cycle Modelling, SCOPE 16, Wiley, Chichester, 390pp. [C35, p. 126]

    Google Scholar 

  • Bolin, Bert and Robert B. Cook (eds.) 1983: The Major Biogeochemical Cycles and Their Interactions, SCOPE 21, Wiley, Chichester, 532pp. [C31, p. 125]

    Google Scholar 

  • Bolin, Bert, Bo R. Döös, Jill Jäger, and Richard A. Warrick (eds.) 1986a: The Greenhouse Effect, Climatic Change, and Ecosystems, SCOPE 29, Wiley, Chichester, 541pp. [M8, p. 216; TCIN] Contains [Cl, p. 121; N20, p. 213; I84, p. 171; I69, p. 168; I70, p. 169; I28, p. 161].

    Google Scholar 

  • Bolin, Bert 1986b: How much CO2 will remain in the atmosphere?, in Bolin et al. 1986a, 93–156. [C1, p. 121]

  • Bottomley, M., C. K. Folland, J. Hsiung, R. E. Newell, and D. E. Parker 1990: Global Ocean Surface Temperature Atlas “GOSTA”, joint project of the U.K. Meteorological Office and the Massachusetts Institute of Technology, Her Majesty's Stationary Office, United Kingdom, 333pp. [O21, p. 137]

    Google Scholar 

  • Bouwman, A. F. (ed.) 1989: Soils and the Greenhouse Effect, Proceedings of the International Conference on Soils and the Greenhouse Effect, Wiley, Chichester, 575pp. [159, p. 166; X]

    Google Scholar 

  • Bradley, R. S., H. F. Diaz, J. K. Eischeid, P. D. Jones, P. M. Kelly, and C. M. Goodess 1987: Precipitation fluctuations over northern hemisphere land areas since the mid-19th century, Science 237(4811), 171–175. [O41,p. 141]

    Google Scholar 

  • Bradshaw, A. D., and T. McNeilly 1991: Evolutionary response to global climatic change, Ann. Botany 67 (Supplement 1), 5–14. [I53, p. 165]

    Google Scholar 

  • Bretherton, F. P., K. Bryan, and J. D. Woods 1990: Time-dependent greenhouse-gas-induced climate change, in IPCC 1990, 173–193. [T24, p. 109]

  • Briffa, K. R., T. S. Bartholin, D. Eckstein, P. D. Jones, W. Karlén, F. H. Schweingruber, and P. Zetterberg 1990: A 1,400-year tree-ring record of summer temperatures in Fennoscandia, Nature 346 (6283), 434–439. [O44, p. 141]

    Google Scholar 

  • Broad, William J. 1988: Scientists dream up bold remedies for ailing atmosphere, New York Times (16Aug), C1. [N15, p. 213; P]

  • Broccoli, A. J. and S. Manabe 1987: The influence of continental ice, atmospheric CO2, and land albedo on the climate of the last glacial maximum, Clim. Dynam. 1 (1), 87–99. [A16, p. 149]

    Google Scholar 

  • Broecker, Wallace S. 1975: Climatic change: Are we on the brink of a pronounced global warming?, Science 189 (4201), 460–463. [X46, p. 210]

    Google Scholar 

  • Broecker, W. S., T. Takahashi, H. J. Simpson, and T.-H. Peng 1979: Fate of fossil fuel carbon dioxide and the global carbon budget, Science 206 (4417), 409–418. [C38, p. 126]

    Google Scholar 

  • Broecker, Wallace S. and Tsung-hung Peng 1982: Tracers in the Sea, Lamont-Doherty Geological Observatory, Palisades, New York, 690pp. [C79, p. 132]

    Google Scholar 

  • Broecker, Wallace S. and Taro Takahashi 1984: Is there a tie between atmospheric CO2 content and ocean circulation?, in Hansen and Takahashi 1984a, 314–326. [C28, p. 125; IT]

  • Broecker, Wallace S., Dorothy M. Peteet, and David Rind 1985a: Does the ocean-atmosphere system have more than one stable mode of operation?, Nature 315 (6014), 21–26. [A21, p. 150; X; †T29, p. 111]

    Google Scholar 

  • Broecker, Wallace S. 1985b: How to Build a Habitable Planet, Eldigio Press, New York, 291pp. [P61,p. 185]

    Google Scholar 

  • Broecker, Wallace S. 1987a: Unpleasant surprises in the greenhouse?, Nature 328 (6126), 123–126. [T30, p. 111;N]

    Google Scholar 

  • Broecker, W. S. and T.-H. Peng 1987b: The oceanic salt pump: Does it contribute to the glacial interglacial difference in atmospheric CO2 content?, Global Biogeochem. Cycles 1 (3), 251–259. [A17, p. 150; C]

    Google Scholar 

  • Broecker, Wallace S. and Tsung-Hung Peng 1989: The cause of the glacial to interglacial atmospheric CO2 change: A polar alkalinity hypothesis, Global Biogeochem. Cycles 3 (3), 215–239. [A6, p. 148; C]

    Google Scholar 

  • Brown, Craig W. and Charles D. Keeling 1965: The concentration of atmospheric carbon dioxide in Antarctica, J. Geophys. Res. 70 (24), 6077–6086. [†C2, p. 121]

    Google Scholar 

  • Brown, Lester R. (dir.) and 11 others 1989a: State of the World 1989, Norton, New York, 256pp. [M16, p. 218; PIN] Contains [P5, p. 175; 126, p. 161; P20, p. 178].

  • Brown, Lester R., Christopher Flavin, and Sandra Postel 1989b: A world at risk, in Brown et al. 1989a, 3–20. [P5, p. 175; N]

  • Brown, Lester, R. 1989c: Reexaming the world food prospect, in Brown et al. 1989a, 41–58. [126, p. 161; N]

  • Brown, Lester R., Christopher Flavin, and Sandra Postel 1989d: Outlining a global action plan, in Brown et al. 1989a, 174-194. [P20, p. 178; N]

  • Brühl, Cristoph, and Paul J. Crutzen 1990: Ozone and climate changes in the light of the Montreal Protocol: A model study, Ambio 19 (6–7), 293–301. [C58, p. 129; X]

    Google Scholar 

  • Bruntland, Gro Harlem (chair) 1987: Our Common Future, World Commission on Environment and Development, Oxford Univ. Press, Oxford, 383pp. [P40, p. 181; N]

  • Brush, Stephen G. 1973: The development of the kinetic theory of gases. VII. Heat conduction and the Stefan-Boltzmann law, Arch. Hist. Exact Sci. 11, 38–96. [KH]

    Google Scholar 

  • Bryan, Kirk and Syukuro Manabe 1985: A coupled ocean-atmosphere and the response to increasing atmospheric CO2, in Nihoul 1985, 1–6. [T31,p. 111]

  • Bryson, Reid A. and Brian M. Goodman 1980: Volcanic activity and climatic changes, Science 207 (4435), 1041–1044. [O55, p. 143; X]

    Google Scholar 

  • Buddemeier, R. W. and S. V. Smith 1988: Coral reef growth in an era of rapidly rising sea level: Predictions and suggestions for long-term research, Coral Reefs 7 (1), 51–56. [182, p. 171]

    Google Scholar 

  • Budyko, M. I., A. B. Ronov, and A. L. Yanshin 1987: History of the Earth's Atmosphere, trans. from Russian by S. R Lemeshko and V. G. Yanutal, Springer-Verlag, Berlin, 139pp. Originally published in 1985 as Istoriya Atmosferi. [A18, p. 150; CXT]

    Google Scholar 

  • Budyko, M. I., G. S. Golitsyn, and Y. A. Izrael 1988: Global Climatic Catastrophes, trans. from Russian by V. G. Yanuta, Springer-Verlag, New York, 99pp. Originally published as Global' nye klimaticheskie katastrofy. [X49, p. 210; A]

    Google Scholar 

  • Budyko, M. I. and Yu. A. Izrael (eds.) 1991: Anthropogenic Climatic Change, trans. from Russian by the authors, Univ. of Arizona Press, Tucson, 485pp. Originally published in 1987 as Antropogennye izmeneniia klimata. [M10, p. 216; ATI]

    Google Scholar 

  • Bultot, F., G. L. Dupriez, and D. Gellens 1988: Estimated annual regime of energy-balance components, evapotranspiration and soil moisture for a drainage basin in the case of a CO2 doubling, Clim. Change 12 (1), 39–56. [139, p. 163]

    Google Scholar 

  • Burnett, W. M. and S. D. Ban 1989: Changing prospects for natural gas in the United States, Science 244 (4902), 305–310. [P81, p. 188]

    Google Scholar 

  • Cadle, R. D. and G. W. Grams 1975: Stratospheric aerosol particles and their optical properties, Rev. Geophys. Space Phys. 13 (4), 475–503. [X15, p. 205]

    Google Scholar 

  • Callendar, G. S. 1938: The artificial production of carbon dioxide and its influence on climate, Q. J. R. Meteor. Soc. 64 (275), 223–240. [H28, p. 200; TK]

    Google Scholar 

  • Callendar, G. S. 1941: Infra-red absorption by carbon dioxide, with special reference to atmospheric radiation, Q. J. R. Meteor. Soc. 67 (291), 263–275. [H29, p. 200; T]

    Google Scholar 

  • Callendar, G. S. 1958: On the amount of carbon dioxide in the atmosphere, Tellus 10 (2), 243–248. [C40,p. 127; H]

    Google Scholar 

  • CDIAC [Carbon Dioxide Information Analysis Center] [no date]: Biblographic Information System. Contact Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6335, U.S.A. [M7, p. 216]

  • CDIAC 1990: Glossary: Carbon dioxide and climate, 3rd ed., ORNL/CDIAC-39, Oak Ridge National Laboratory, Oak Ridge, Tennessee, 59pp. [M2, p. 215]

    Google Scholar 

  • Cermak, Vladimir 1971: Underground temperature and inferred climatic temperature of the past millenium, Palaeogeogr. Palaeoclimatol. Palaeoecol. 10 (1), 1–19. [O53, p. 143; A]

    Google Scholar 

  • Cess, Robert D. 1989a: Gauging water-vapour feedback, Nature 342 (6251), 736–737. [†M31, p. 221]

    Google Scholar 

  • Cess, R. D. and 19 others 1989b: Interpretation of cloud-climate feedback as produced by 14 atmospheric general circulation models, Science 245 (4917), 513–516. [T55, p. 115; X]

    Google Scholar 

  • Cess, R. D. and 31 others 1990: Intercomparison and interpretation of climate feedback processes in 19 atmospheric general circulation models, J. Geophys. Res. 95 (D10), 16601–16615. [†T55, p. 115]

    Google Scholar 

  • Chamberlin, T. C. 1897: A group of hypotheses bearing on climatic changes, J. Geol. 5 (7), 653–683. [H20, p. 199; AC]

    Google Scholar 

  • Chamberlin, T. C. 1898: The influence of great epochs of limestone formation upon the constitution of the atmosphere, J. Geol. 6 (6), 609–621. [†H21, p. 199; CA]

    Google Scholar 

  • Chamberlin, T. C. 1899: An attempt to frame a working hypothesis of the cause of glacial periods on an atmospheric basis; parts I, II, III; J. Geol. 7 (6), 545–584; J. Geol. 1 (7), 667–685; J. Geol. 7 (8), 751–787. [H21, p. 199; TAK]

    Google Scholar 

  • Changnon, Stanley A. Jr. 1987: An assessment of climate change, water resources, and policy research, Water Int'l 12 (1), 69–76. [I43, p. 163; P]

    Google Scholar 

  • Chappellaz, J., J. M. Barnola, D. Raynaud, Y. S. Korotkevich, and C. Lorius 1990: Ice-core record of atmospheric methane over the past 160,000 years, Nature 345 (6271), 127–131. [A34, p. 152; C]

    Google Scholar 

  • Charles, Christopher D. and Richard G. Fairbanks 1992: Evidence from Southern Ocean sediments for the effect of North Atlantic deep-water flux on climate, Nature 355 (6359), 416–419, cover. [†A21,p. 150]

    Google Scholar 

  • Charlson, Robert J., James E. Lovelock, Meinrat O. Andreae, and Stephen G. Warren 1987: Oceanic phytoplankton, atmospheric sulphur, cloud albedo and climate, Nature 326 (6114), 655–661. [X12, p. 205;†Xll,p. 205; T]

    Google Scholar 

  • Charlson, R. J., J. Langner, and H. Rodhe 1990: Sulphate aerosol and climate, Nature 348 (6296), 22. [†X7, p. 204]

    Google Scholar 

  • Charlson, R. J., S. E. Schwartz, J. M. Hales, R. D. Cess, J. A. Coakley Jr., J. E. Hansen, and D. J. Hofmann 1992: Climate forcing by anthropogenic aerosols, Science 255 (5043), 423–430. [XI, p. 203]

    Google Scholar 

  • Chen, Robert S., Elise Boulding, and Stephen H. Schneider (eds.) 1983: Social Science Research and Climate Change, Reidel, Dordrecht, 255pp. [P52, p. 183]

    Google Scholar 

  • Chen, Robert S. and Martin L. Parry (eds.) 1988: Climate Impacts and Public Policy, United Nations Environment Programme, 54pp. Originally published in 1987 as Policy-Oriented Impact Assesment of Climatic Variations, RR-87-7, IIASA, Laxenburg, Austria. [P46, p. 182]

  • Cheng, Hsing C. 1988: Potential reductions in U.S. CO2 emissions in 1995 and 2010 by technology improvements in electricity generation and transportation sectors, Brookhaven National Lab., Process Sciences Division, Report No. BNL-41201, April 1988, 41pp. [P87, p. 190]

  • Church, John A., J. Stuart Godfrey, David R. Jackett, and Trevor J. McDougall 1991: A model of sea level rise caused by ocean thermal expansion, J. Clim. 4 (4), 438–456. [177, p. 170]

    Google Scholar 

  • Cicerone, Ralph J. and James D. Shelter 1981: Sources of atmospheric methane: Measurements in rice paddies and a discussion, J. Geophys. Res. 86 (C8), 7203–7209. [C56, p. 129]

    Google Scholar 

  • Cicerone, R. J. and R. S. Oremland 1988: Biogeochemical aspects of atmospheric methane, Global Biogeochem. Cycles 2 (4), 299–327. [C41, p. 127]

    Google Scholar 

  • Clark, William C. (ed.) 1982: Carbon Dioxide Review, Oxford Univ. Press, Oxford, 469pp. [M26, p. 220] (Contains [M5, p. 215])

    Google Scholar 

  • Clark, William C. 1985a: On the practical implications of the carbon dioxide question, Publication No. 26 of the project: Ecologically sustainable development of the biosphere, August 1985, WP-85–43, International Institute for Applied Systems Analysis, Laxenburg, Austria, 84pp. [P12, p. 176]

    Google Scholar 

  • Clark, William C. 1985b: Scales of climate impacts, Clim. Change 7 (1), 5–27. [118, p. 159]

    Google Scholar 

  • Clark, William C. and R. E. Munn (eds.) 1986: Sustainable Development of the Biosphere, Cambridge Univ. Press, Cambridge, England, 491pp. [M22, p. 219]

    Google Scholar 

  • Climate Institute 1988: Preparing for Climate Change: Proceedings of the First North American Conference on Preparing for Climate Change: A Cooperative Approach, October 27–29, 1987, Washington D.C., Government Institutes, Rockville, Maryland, 516pp. [M20, p. 218] Contains [P23, p. 178].

    Google Scholar 

  • Climate Institute 1989: Proceedings of the Second North American Conference on Preparing for Climate Change, Climate Institute, Washington, D.C., 600pp. [M] Contains [T38, p. 112].

    Google Scholar 

  • Cohen, Stewart J. 1990: Bringing the global warming issue closer to home: The challenge of regional impact studies, Bull. Am. Meteorol. Soc. 71 (4), 520–526. [I14, p. 158]

    Google Scholar 

  • COHMAP Members 1988: Climatic changes of the last 18,000 years: Observations and model simulations, Science 241 (4869), 1043–1052. [A13, p. 149]

    Google Scholar 

  • Comb, Donald G. 1990: Ice-out in Maine, Nature 347 (6293), 510. [O22, p. 137: I]

    Google Scholar 

  • Conservation Foundation 1963: Implications of Rising Carbon Dioxide Content of the Atmosphere, The Conservation Foundation, New York, 15pp. [K]

    Google Scholar 

  • Grill, P. M., K. B. Bartlett, R. C. Harriss, E. Gorham, E. S. Verry, D. I. Sebacher, L. Madzar, and W. Sanner 1988: Methane flux from Minnesota peatlands, Global Biogeochem. Cycles 2 (4), 371–384. [C49, p. 128]

    Google Scholar 

  • Croll, James 1870: On ocean-currents. Part II. Ocean-currents in relation to the physical theory of secular changes of climate, Philos. Mag. (Ser. 4) 39 (260), 180–194. [H17, p. 199; XAK]

    Google Scholar 

  • Crosson, Pierre 1989: Greenhouse warming and climate change. Why should we care?, Food Policy 14(2), 107–118. [I27, p. 161; N]

    Google Scholar 

  • Crowley, Thomas J. 1983: The geologic record of climatic change, Rev. Geophys. Space Phys. 21 (4), 828–877. [A26, p. 151]

    Google Scholar 

  • Crowley, Thomas J. and Gerald R. North 1988: Abrupt climate change and extinction events on Earth, Science 240 (4855), 996–1002. [A38, p. 153; I]

    Google Scholar 

  • Crowley, Thomas J. 1990: Are there any satisfactory geologic analogs for a future greenhouse warming?, J. Clim. 3 (11), 1282–1292. [I15, p. 158; A]

    Google Scholar 

  • Crowley, Thomas J. 1991a: Ice-age methane variations, Nature 353 (6340), 122–123. [†A33, p. 152; C]

    Google Scholar 

  • Crowley, Thomas J., and Gerald R. North 1991b: Paleoclimatology, Oxford Monographs on Geology and Geophysics No. 16, Oxford Univ. Press, New York, 339pp. [A1, p. 147]

    Google Scholar 

  • Crutzen, Paul J. and Meinrat O. Andreae 1990: Biomass burning in the tropics: Impact on atmospheric chemistry and biogeochemical cycles, Science 250 (4988), 1669–1678. [C70, p. 131]

    Google Scholar 

  • Cunnington, W. M. and J. F. B. Mitchell 1990: On the dependence of climate sensitivity on convective parametrization, Clim. Dynam. 4 (2), 85–93. [T50, p. 115]

    Google Scholar 

  • Cunnold, D. M., R. G. Prinn, R. A. Rasmussen, P. G. Simmonds, F. N. Alyea, C. A. Cardelino, A. J. Crawford, P. J. Fraser, and R. D. Rosen 1986: Atmospheric lifetime and annual release estimates for CFCl3 and CF2Cl2 from 5 years of ALE data, J. Geophys. Res. 91 (D10), 10 797–10 817. [C63, p. 130]

    Google Scholar 

  • Dansgaard, W., J. W. C. White, and S. J. Johnsen 1989: The abrupt termination of the Younger Dryas climate event, Nature 339 (6225), 532–534. [A36, p. 153]

    Google Scholar 

  • DelGenio, Anthony, Andrew A. Lacis, and Reto A. Reudy 1991: Simulations of the effect of a warmer climate on atmospheric humidity, Nature 351 (6325), 382–385. [T44, p. 114]

    Google Scholar 

  • Delmas, Robert J., Jean-Marc Ascencio, and Michel Legrand 1980: Polar ice evidence that atmospheric CO2 20,OOOyrBP was 50% of present, Nature 284 (5752), 155–157. [A46, p. 154; C]

    Google Scholar 

  • Detwiler, R. P. and Charles A. S. Hall 1988: Tropical forests and the global carbon cycle, Science 239 (4835), 42–47. Also see several letters and a reply in Science 241 (4874), 1736–1739. [C15, p. 123]

    Google Scholar 

  • Dickinson, Robert E. 1985: Climate sensitivity, Adv. Geophys. 28A, 99–129. [T70, p. 118; X]

    Google Scholar 

  • Dickinson, Robert E. and Ralph J. Cicerone 1986a: Future global warming from atmospheric trace gases, Nature 319 (6049), 109–115. [T7, p. 106]

    Google Scholar 

  • Dickinson, R. E. 1986b: How will climate change? The climate system and modelling of future climate, in Bolin et al. 1986a, 207–270. [N20, p. 213]

  • Dickinson, Robert E. (ed.) 1987a: The Geophysiology of Amazonia, Wiley, New York, for the United Nations University, 526pp. [I65, p. 168; CXA] Contains [A43, p. 154; C76, p. 132; X23, p. 206; X25, p. 207; X24, p. 206].

    Google Scholar 

  • Dickinson, Robert E. and Hassan Virji 1987b: Climate change in the humid tropics, especially Amazonia, over the last twenty thousand years; in Dickinson 1987a, 91–101. [A43, p. 154]

  • Dickinson, Robert E., Gerald A. Meehl, and Warren M. Washington 1987c: Ice-albedo feedback in a CO2-doubling simulation, Clim. Change 10 (3), 241–248. [X22, p. 206]

    Google Scholar 

  • Dickinson, Robert E. 1989: Uncertainties of estimates of climatic change: A review, Clim. Change 15(1/2), 5–13. [T4,p. 106]

    Google Scholar 

  • Dines, W. H. 1917: The heat balance of the atmosphere, Q. J. R. Meteor. Soc. 43 (182), 151–158. [H24, p. 199; T]

    Google Scholar 

  • Doake, C. S. M. and D. G. Vaughan 1990: Rapid disintegration of the Wordie ice shelf in response to atmospheric warming, Nature 350 (6316), 328–330. [O23, p. 137; I]

    Google Scholar 

  • DOE 1979: Workshop on the Global Effects of Carbon Dioxide from Fossil Fuels, CONF-770385, U.S. Dept. of Energy, Carbon Dioxide Effects Research and Assessment Program, 122pp. [IPC] Contains [P68, p. 186].

  • DOE 1985a: Projecting the Climatic Effects of Increasing Carbon Dioxide, DOE/ER-0237, U.S. Dept. of Energy, Washington, D.C., December 1985, 381pp. [T8, p. 106] Contains [T64, p. 117].

    Google Scholar 

  • DOE 1985b: Characterization of information requirements for studies of CO 2 effects: Water resources, agriculture, fisheries, forests and human health, DOE/ER-0236, U.S. Dept. of Energy, Washington, D.C., 233pp. [I9, p. 157; P].

    Google Scholar 

  • DOE 1985c: Glaciers, Ice Sheets, and Sea Level: Effect of a CO 2-Induced Climatic Change, DOE/ER/60235–1, U.S. Dept. of Energy, Washington, D.C., 348pp. [I75, p. 170]

    Google Scholar 

  • DOE 1985d: Detecting the Climatic Effects of Increasing Carbon Dioxide. See MacCracken and Luther 1985 [O52, p. 143].

  • DOE 1985e: Direct Effects of Increasing Carbon Dioxide on Vegetation. See Strain and Cure 1985 [I74, p. 169].

  • DOE 1985f: Atmospheric Carbon Dioxide and the Global Carbon Cycle. See Trabalka 1985 [C27, p. 125].

  • DOE 1990: Energy and Climate Change, Report of the DOE Multi-Laboratory Climate Change Committee, Lewis Publishers, Chelsea, Michigan, 161pp. [M14, p. 217; TCIP]

    Google Scholar 

  • Dornbusch, Rudiger and James M. Poterba (eds.) 1991: Global Warming: Economic Policy Responses, MIT Press, Cambridge Massachusetts, 389pp. [P29, p. 179]

    Google Scholar 

  • Dotto, Lydia 1988: Thinking the Unthinkable: Civilization and Rapid Climate Change, Calgary Institute for the Humanities, Wilfrid Laurier Univ. Press, Waterloo, Canada, 73pp. [P105, p. 193]

    Google Scholar 

  • Dyer, A. J. 1974: The effect of volcanic eruptions on global turbidity, and an attempt to detect long-term trends due to man, Q. J. R. Meteor. Soc. 100 (426), 563–571. [†O55, p. 143; X]

    Google Scholar 

  • Dyson, Freeman J. 1977: Can we control the carbon dioxide in the atmosphere?, Energy 2 (3), 287–291. [P69, p. 186; C]

    Google Scholar 

  • Dyson, Freeman J. and Gregg Marland 1979: Technical fixes for the climatic effects of C2, in DOE 1979, 111–117. [P68, p. 186]

  • Edmonds, Jae and John Reilly 1983: A long-term global energy-economic model of carbon dioxide release from fossil fuel use, Energy Economics 5 (2), 74–87. [P95, p. 191]

    Google Scholar 

  • Edmonds, Jae, and John M. Reilly 1985: Global Energy. Assessing the Future, Oxford Univ. Press, Oxford, 317pp. [P94, p. 191]

    Google Scholar 

  • Ehhalt, D. H. 1988: How has the atmospheric concentration of CH4 changed?, in Rowland and Isaksen 1988, 25–32. [C50, p. 128]

  • Ellsaesser, Hugh W. 1984: The climatic effect of CO2: A diffrent view, Atmos. Environ. 18 (2), 431–434. [T9,p. 107]

    Google Scholar 

  • Ellsaesser, H. W., M. C. MacCracken, J. J. Walton, and S. L. Grotch 1986: Global climatic trends as revealed by the recorded data, Rev. Geophys. 24 (4), 745–792. [O50, p. 142; A]

    Google Scholar 

  • Emanuel, K. A. 1987: The dependence of hurricane intensity on climate, Nature 326 (6112), 483–485. [I88, p. 172]

    Google Scholar 

  • Emanuel, William R., Herman H. Shugart, and Mary P. Stevenson 1985: Climatic change and the broad-scale distribution of terrestrial ecosystem complexes, Clim. Change 7 (1), 29–43. [I71, p. 169]

    Google Scholar 

  • Ember, Lois R., Patricia L. Layman, Wil Lepkowski, and Pamela S. Zurer 1986: Tending the global commons, Chem. Eng. News 64 (47), 14–64. [P11, p. 176]

    Google Scholar 

  • Emery, K. O. and David G. Aubrey 1991: Sea Levels, Land Levels, and Tide Guages, Springer-Verlag, New York, 237pp. [O18, p. 137]

    Google Scholar 

  • EPA 1983: Can We Delay a Greenhouse Warming? The Effectiveness and feasibility of options to slow a build-up of carbon dioxide in the atmosphere. See Seidel and Keyes 1983.

  • EPA 1984: Potential climatic impacts of increasing atmospheric CO2 with emphasis on water availability and hydrology in the United States. See Rind and Lebedeff 1984 [I50, p. 164].

  • EPA 1989a: Policy Options for Stabilizing Global Climate, Daniel A. Lashof and Dennis A. Tirpak (eds.), Report to Congress, U.S. Environmental Protection Agency, 3 vols. First volume is an Executive Summary, 91pp.; vol. 1 is about 370pp.; vol. 2 is about 400pp. [P15, p. 177; N(summary only)]

  • EPA 1989b: The Potential Effects of Global Climate Change on the United Slates, Joel B. Smith and Dennis Tirpak (eds.), Report to Congress, U.S. Environmental Protection Agency, EPA-230-05-89-050, December 1989, 413pp. Also published in modified form under the same title in 1990 by Hemisphere Publishing, New York, 689pp. [I4, p. 156] Contains [I86, p. 171; I94, p. 172].

  • EPA 1989c: Air quality, in EPA 1989b, 199–218. [I86, p. 171]

  • EPA 1989d: Human health, in EPA 1989b, 219–236. [I94, p. 172]

  • Escudero, José Carlos 1985: Health, nutrition, and human development, in Kates et al. 1985, 251–272. [I96, p. 173]

  • Etkins, Robert and Edward S. Epstein 1982: The rise of global mean sea level as an indication of climate change, Science 215 (4530), 287–289. [O33, p. 139]

    Google Scholar 

  • Fairbanks, Richard G. 1989: A 17,000-year glacio-eustatic sea level record: Influence of glacial melting rates on the Younger Dryas event and deep-ocean circulation, Nature 342 (6250), 637–642. [A37, p. 153; X]

    Google Scholar 

  • Fairbridge, Rhodes W. (ed.) 1961: Solar Variations, Climatic Change, and Related Geophysical Problems, Ann. New York Acad. Sci. 95, 1–740. [H36, p. 201; M] Contains [H37, p. 201].

  • Feldman, David L. and Dean Mann (eds.) 1991: Global Climate Change and Public Policy, special issue of Policy Studies J. 19 (2), 43–191. [P30, p. 180]

  • Finkelstein, Peter L., and Lawrence E. Truppi 1991: Spatial distribution of precipitation seasonality in the United States, J. Clim. 4 (4), 373–385. [I33, p. 162]

    Google Scholar 

  • Fisher, Donald A., Charles H. Hales, Wei-Chyung Wang, Malcolm K. W. Ko, and N. Dak Sze 1990: Model calculations of the relative effects of CFCs and their replacements on global warming, Nature 344 (6266), 513–516. [P115, p. 195]

    Google Scholar 

  • Flohn, Hermann 1979: On time scales and causes of abrupt paleoclimatic events, Quat. Res. 12 (1), 135–149. [A47, p. 154]

    Google Scholar 

  • Flohn, H., A. Kapala, H. R. Knoche, and H. Mächel 1990: Recent changes of the tropical water energy budget and of midlatitude circulations, Clim. Dynam. 4 (4), 237–252. [O36, p. 140]

    Google Scholar 

  • Fogg, G. E. 1991: Changing productivity of the oceans in response to a changing climate, Ann. Botany 67 (Supplement 1), 57–60. [I54, p. 165]

    Google Scholar 

  • Folland, C. K., D. E. Parker, and F. E. Kates 1984: Worldwide marine temperature fluctuations 1856–1981, Nature 310 (5979), 670–673. [O31, p. 139]

    Google Scholar 

  • Fouquart, Y., J. C. Buriez, M. Herman, and R. S. Kandel 1990: The influence of clouds on radiation: A climate-modeling perspective, Rev. Geophys. 28 (2), 145–166. [T51, p. 115; X]

    Google Scholar 

  • Fourier, Jean-Baptiste Joseph 1824: Remarques générales sur les températures du globe terrestre et des espaces planétaires, Ann. Chim. Phys. (Ser. 2) 27, 136–167. Reprinted as Memoire sur les températures etc. in 1827: Mem. Acad. R. Sci. Inst. Fr. (Ser. 2) 7 [often listed under Academie des Sciences (Paris)], 569–604. [H9, p. 198; K]

    Google Scholar 

  • Fowle, F. E. 1917: Water-vapor transparency to low-temperature radiation, Smithsonian Misc. Collect. 68 (8), 68pp. [H25, p. 199]

  • Fröhlich, C. 1987: Variability of the solar ‘constant’ on time scales of minutes to years, J. Geophys. Res. 92 (D1), 796–800. [X35, p. 208]

    Google Scholar 

  • From, Eric and Charles D. Keeling 1986: Reassessment of late 19th century atmospheric carbon dioxide variations in the air of western Europe and the British Isles based on an unpublished analysis of contemporary air masses by G. S. Callendar, Tellus 38B (2), 87–104. [C21, p. 124; H]

    Google Scholar 

  • Fung, I., J. John, J. Lerner, E. Matthews, M. Prather, L. P. Steele, and P. J. Fraser 1991: Three-dimensional model synthesis of the global methane cycle, J. Geophys. Res. 96 (D7), 13033–13065. [C42, p. 127]

    Google Scholar 

  • Gary, Bruce L. and Stephen J. Keihm 1991: Microwave sounding units and global warming, Science 251 (4991), 316–317. [†O5, p. 135]

    Google Scholar 

  • Gates, W. Lawrence 1985: The use of general circulation models in the analysis of the ecosystem impacts of climatic change, Clim. Change 7 (3), 267–284. [I19, p. 159]

    Google Scholar 

  • Genthon, G., J. M. Barnola, D. Raynaud, C. Lorius, J. Jouzel, N. I. Barkov, Y. S. Korotkevich, and V. M. Kotlyakov 1987: Vostok ice core: Climatic response to CO2 and orbital forcing changes over the last climatic cycle, Nature 329 (6138), 414–418. [A19, p. 150]

    Google Scholar 

  • Ghuman, B. S. and Rattan Lal 1987: Effects of deforestation on soil properties and microclimate of a high rain forest in southern Nigeria, in Dickinson 1987a, 225–224. [X23, p. 206]

  • Giorgi, Filippo, and Linda O. Mearns 1991: Approaches to the simulation of regional climate change: A review, Rev. Geophys. 29 (2), 191–216. [I11, p. 157; T]

    Google Scholar 

  • Glantz, Michael H. (ed.) 1988: Societal Response to Regional Climatic Change: Forecasting by Analogy, Westview Press, Boulder, 428pp. [P106, p. 193]

    Google Scholar 

  • Glantz, Michael H., Martin F. Price, and Maria E. Krenz 1990: Report of the workshop On Assessing winners and losers in the context of global warming, St. Julians, Malta, 18–21 June 1990, UNEP and Environmental and Societal Impacts Group, National Center for Atmospheric Research, Boulder, Colorado, 44pp. [P34, p. 180]

    Google Scholar 

  • Gleick, Peter H. 1986: Methods for evaluating the regional hydrologic impacts of global climatic changes, J. Hydrol. (Amsterdam) 88 (1/2), 97–116. [I47, p. 164]

    Google Scholar 

  • Gleick, Peter H. 1987: Regional hydrologie consequences of increases in atmospheric CO2 and other trace gases, Clim. Change 10 (2), 137–161. [I44, p. 163]

    Google Scholar 

  • Gleick, Peter H. 1988: The effects of future climatic changes on international water resources: The Colorado River, the United States, and Mexico, Policy Sciences 21 (1), 23–39. [I40, p. 163; P]

    Google Scholar 

  • Gleick, Peter H. 1989a: Climate change and international politics: Problems facing developing countries, Ambio 18 (6), 333–339. [P37, p. 181]

    Google Scholar 

  • Gleick, Peter H. 1989b: Climate change, hydrology, and water resources, Rev. Geophys. 27 (3), 329–344. [I38, p. 163]

    Google Scholar 

  • Gleick, Peter H. 1990: Global climatic change and international security, Colo. J. Int'l Envtl. L. & Pol'y 1 (1), 41–56. [P18,p. 177]

    Google Scholar 

  • Goldemberg, José, Thomas B. Johansson, Amulya K. N. Reddy, and Robert H. Williams 1988: Energy for a Sustainable World, Wiley, New York, 517pp. Also published in abridged form under the same title in 1987 by World Resources Institute, Washington, D.C., 119pp. [P71, p. 186]

    Google Scholar 

  • Golomb, D., H. Herzog, J. Tester, D. White, and S. Zemba 1989: Feasibility, Modeling and Economics of Sequestering Power Plant CO 2 Emissions in the Deep Ocean, MIT Energy Laboratory Report No. MIT-EL 89-003, Cambridge, Massachusetts, 76pp. [P57, p. 184]

  • Golombek, Amram and Ronald G. Prinn 1986: A global three-dimensional model of the circulation and chemistry of CFCl3 CF2Cl2, CH3CCl3, CCl4, and N2O; J. Geophys. Res. 91 (D3), 3985–4001. [C77, p. 132]

    Google Scholar 

  • Gordon, A. H. 1991: Global wanning as a manifestation of a random walk, J. Clim. 4 (6), 589–597. [O66, p. 145]

    Google Scholar 

  • Gordon, H. B., and B. G. Hunt 1987: Interannual variability of the simulated hydrology in a climatic model —Implications for drought, Clim. Dynam. 1 (2), 113–130. [X44, p. 209]

    Google Scholar 

  • Grassl, H. 1988: What are the radiative and climatic consequences of the changing concentration of atmospheric aerosol particles?, in Rowland and Isaksen 1988, 187–199. [X8, p. 204]

  • Griffiths, John F. and Kevin C. Vining 1984: Problems with environmental data: A case study in climatology, Int. J. Environ. Studies 22 (2), 103–108. [O76, p. 146]

    Google Scholar 

  • Grotch, Stanley, L. 1988: Regional Intercomparisons of General Circulation Model Predictions and Historical Climate Data, DOE/NBB-0084, TRO41, U.S. Dept. of Energy, Washington, D.C., 291pp. [†T35, p. 112]

  • Grotch, Stanley L. and Michael C. MacCracken 1991: The use of general circulation models to predict regional climatic change, J. Clim. 4 (3), 286–303. [T35, p. 112]

    Google Scholar 

  • Grübler, Arnulf, and Yasumasa Fujii 1991: Inter-generational and spatial equity issues of carbon accounts, Energy 16 (11/12), 1397–1416. [P112, p. 194]

    Google Scholar 

  • Gurney, Kevin Robert 1991: National greenhouse accounting, Nature 353 (6339), 23. [P113,p. 195]

    Google Scholar 

  • Guthrie, Paul D. 1986: Biological methanogenesis and the CO2 greenhouse effect, J. Geophys. Res. 91 (D10), 10847–10851. [C55, p. 129]

    Google Scholar 

  • Häfele, Wolf, and members of the IIAS A Energy Systems Program 1981: Energy in a Finite World. Volume 2: A Global Systems Analysis. See IIASA 1981 [P98, p. 192].

  • Haigh, J. D. and J. A. Pyle 1982: Ozone perturbation experiments in a two-dimensional circulation model, Q. J. R. Meteor. Soc. 108 (457), 551–574. [I91, p. 172; C]

    Google Scholar 

  • Hall, D. O., and J. M. O. Scurlock 1991: Climate change and the productivity of natural grasslands, Ann. Botany 67 (Supplement 1), 49–55. [C4, p. 121]

    Google Scholar 

  • Hammond, Allen L., Eric Rodenburg, and William Moomaw 1990: Accountability in the greenhouse, Nature 347 (6295), 705–706. Comments by I. G. Enting and H. Rodhe, Nature 349 (6309), 468; Mark David Handel, op. cit., 468; and reply by Allen L. Hammond, Eric Rodenburg, and William Moomaw, op. cit., 468–469. [P116, p. 195; †P113, p. 195]

    Google Scholar 

  • Hammond, Allen L., Eric Rodenburg, and William R. Moomaw 1991: Calculating national accountability for climate change, Environment 33 (1), 10–15, 33–35. Individual comments by Susan Subak, Ralph J. Cicerone, David G. Victor, and Kirk R. Smith, followed by a reply by Allen L. Hammond, Eric Rodenburg, and William R. Moomaw, Environment 33 (2), 2–5, 42–44. [†P116, p. 195]

    Google Scholar 

  • Handel, Mark David 1991: Greenhouse budgets, Nature 349 (6309), 468. [†P116, p. 195]

    Google Scholar 

  • Hansen, J., D. Johnson, A. Lacis, S. Lebedeff, P. Lee, D. Rind, and G. Russell 1981: Climate impact of increasing atmospheric carbon dioxide, Science 213 (4511), 957–966. [T77, p. 119]

    Google Scholar 

  • Hansen, J., G. Russell, D. Rind, P. Stone, A. Lacis, S. Lebedeff, R. Ruedy, and L. Travis 1983: Efficient three-dimensional global models for climate studies: Models I and II, Mon. Weather Rev. 111 (4), 609–662. [T13, p. 107]

    Google Scholar 

  • Hansen, James E. and Taro, Takahashi (eds.) 1984a: Climate Processes and Climate Sensitivity, Geophys. Monogr., Am. Geophys. Union 29, Maurice Ewing Volume 5, American Geophysical Union, Washington, D.C., 368pp. [M23, p. 219; TCAX] Contains [T20, p. 109; T33, p. 111; C28, p. 125].

    Google Scholar 

  • Hansen, J., A. Lacis, D. Rind, G. Russell, P. Stone, I. Fung, R. Ruedy, and J. Lerner 1984b: Climate sensitivity: Analysis of feedback mechanisms, in Hansen and Takahashi 1984a, 130–163. [T20, p. 109; A]

  • Hansen, J., G. Russell, A. Lacis, I. Fung, D. Rind, and P. Stone 1985: Climate response times: Dependence on climate sensitivity and ocean mixing, Science 229 (4716), 857–859. [T32, p. 111; X]

    Google Scholar 

  • Hansen, James and Sergej Lebedeff 1987: Global trends of measured surface air temperature, J. Geophys. Res. 92 (D11), 13345–13372. [O12,p. 136; †O10, p. 135; †O61,p. 144]

    Google Scholar 

  • Hansen, J., I. Fung, A. Lacis, D. Rind, S. Lebedeff, R. Ruedy, G. Russell, and P. Stone 1988a: Global climate changes as forecast by Goddard Institute for Space Studies three dimensional model, J. Geophys. Res. 93 (D8), 9341–9364. [T28, p. 110]

    Google Scholar 

  • Hansen, J., I. Fung, A. Lacis, S. Lebedeff, D. Rind, R. Ruedy, G. Russell, and Peter Stone 1988b: Prediction of near-term climate evolution: What can we tell decision-makers now?, in Climate Institute 1988. [P23, p. 178]

  • Hansen, James and Sergej Lebedeff 1988c: Global surface air temperatures: Update through 1987, Geophys. Res. Lett. 15 (4), 323–326. [O10, p. 135; †O12, p. 136]

    Google Scholar 

  • Hansen, James E. 1989a: Modeling greenhouse climate effects, testimony presented on May 8 at a hearing on Climate Surprises to United States Congress, Senate Committee on Commerce, Science and Transportation, Subcommittee on Science, Technology and Space, one hundred first Congress, first session, Senate hearing 101–128. [P21, p. 178]

  • Hansen, J., D. Rind, A. Delgenio, A. Lacis, S. Lebedeff, M. Prather, R. Ruedy, and T. Karl 1989b: Regional greenhouse climate effects, in Climate Institute 1989. [T38, p. 112; †O38, p. 140; †O61, p. 144; †M34,p. 221]

  • Hansen, James, Andrew Lacis, and Michael Prather 1989c: Greenhouse effect of chlorofluorocarbons and other trace gases, J. Geophys. Res. 94 (D13); 16417–16421. [T74, p. 119; C]

    Google Scholar 

  • Hansen, James, William Rossow, and Inez Fung 1990a: The missing data on global climate change, Issues Sci. Technol. 7 (1), 62–69. [P44, p. 182]

    Google Scholar 

  • Hansen, James E. and Andrew A. Lacis 1990b: Sun and dust versus greenhouse gases: An assessment of their relative roles in global climate change, Nature 346 (6286), 713–719. [X48, p. 210; T]

    Google Scholar 

  • Hanson, Kirby, George A. Maul, and Thomas R. Karl 1989: Are ‘greenhouse’ effects apparent in the climatic record of the contiguous U.S. (1895–1987)?, Geophys. Res. Lett. 16 (1), 49–52. [O38, p. 140]

    Google Scholar 

  • Harriss, R. C. (rapporteur of a working group— 11 members) 1988: How has the atmosphere already changed?, in Rowland and Isaksen 1988, 201–216. [P47, p. 183; C]

  • Hartmann, D. L., V. Ramanathan, A. Berroir, and G. E. Hunt 1986: Earth radiation budget data and climate research, Rev. Geophys. 24 (2), 439–468. [M36, p. 221; O]

    Google Scholar 

  • Harvey, L. D. Danny 1989a: Transient climatic response to an increase of greenhouse gases, Clim. Change 15 (1/2), 15–30. [T25, p. 110]

    Google Scholar 

  • Harvey, L. D. Danny 1989b: Managing atmospheric CO2, Clim. Change 15 (3), 343–381. [P16, p. 177]

    Google Scholar 

  • Hauglustaine, D. and J.-C. Gérard 1990: Possible composition and climatic changes due to past intense energetic particle precipitation, Ann. Geophys. (Gauthier-Villars) 8 (2), 87–96. [X31, p. 207; A]

    Google Scholar 

  • Henderson-Sellers, A. and V. Gornitz 1984: Possible climatic impacts of land cover transformations, with particular emphasis on tropical deforestation, Clim. Change 6 (3), 231–257. [X26, p. 207]

    Google Scholar 

  • Henderson-Sellers, Ann 1987: Effects of change in land use on climate in the humid tropics, in Dickinson 1987a, 463–496. [X24, p. 206]

  • Henderson-Sellers, A. 1989: North American total cloud amount variations this century, Global and Planetary Change 1 (3), 175–194. [O39, p. 140]

    Google Scholar 

  • Henderson-Sellers, A. 1990: Australian public perception of the greenhouse issue, Clim. Change 17 (1), 69–96. [P104, p. 193]

    Google Scholar 

  • Hense, A., P. Krahe, and H. Flohn 1988: Recent fluctuations of tropospheric temperature and water vapour content in the tropics, Meteorol. Atmos. Phys. 38 (4), 215–227. [O40, p. 140]

    Google Scholar 

  • Heymsfield, Andrew J. and Larry M. Miloshevich 1991: Limit to greenhouse warming?, Nature 351 (6321), 14–15. [†O43, p. 141]

    Google Scholar 

  • Hobbs, Peter V. and M. Patrick McCormick 1988: Aerosols and Climate, Deepak, Hampton, Virginia, 486pp. [X9, p. 204]

    Google Scholar 

  • Hogan, William W. 1990: Comments on Manne and Richels: “CO2 emission limits: An economic analysis for the USA”, Energy J. 11 (2), 75–85. [†P79, p. 188]

    Google Scholar 

  • Holland, Heinrich D. 1978: The Chemistry of the Atmosphere and Oceans, Wiley, New York, 351pp. [C81, p. 133]

    Google Scholar 

  • Homer-Dixon, Thomas F. 1991: On the threshold: Environmental changes as causes of acute conflict, Int. Security 16 (2), 76–116. [P31, p. 180]

    Google Scholar 

  • Horn, Frederick L. and Meyer Steinberg 1982: Control of carbon dioxide emissions from a power plant (and use in enhanced oil recovery), Fuel 61 (5), 415–422. [P65, p. 185]

    Google Scholar 

  • Houghton, R. A., J. E. Hobbie, J. M. Melillo, B. Moore, B. J. Peterson, G. R. Shaver, and G. M. Woodwell 1983: Changes in the carbon content of terrestrial biota and soils between 1860 and 1980: A net release of CO2 to the atmosphere, Ecolog. Monogr. 53 (3), 235–262. [C32, p. 125]

    Google Scholar 

  • Houghton, R. A., R. D. Boone, J. R. Fruci, J. E. Hobbie, J. M. Melillo, C. A. Palm, B. J. Peterson, G. R. Shaver, G. M. Woodwell, B. Moore, D. L. Skole, and N. Myers 1987: The flux of carbon from terrestrial ecosystems to the atmosphere in 1980 due to changes in land use: Geographic distribution of the global flux, Tellus 39B (1/2), 122–139. [C19, p. 123]

    Google Scholar 

  • Houghton, Richard A. and George M. Woodwell 1989: Global climatic changes, Sci. Am. 260 (4), 36–44. [N10, p. 212; C]

    Google Scholar 

  • Hubbard, H. M. 1989: Photovoltaics today and tomorrow, Science 244 (4902), 297–304. [P82, p. 189]

    Google Scholar 

  • Humphreys, W. J. 1929: Physics of the Air, 2nd ed., McGraw-Hill, New York. (See p. 91). [H27, p. 200]

    Google Scholar 

  • Hunt, Garry E., Robert Kandel, and Ann T. Mecherikunnel 1986: A history of presatellite investigations of the Earth's radiation budget, Rev. Geophys. 24 (2), 351–356. [H5, p. 197; O]

    Google Scholar 

  • Hunt, T. Sterry 1863: On the Earth's climate in palaeozoic times, Philos. Mag. (Ser. 4) 26 (175), 323–324. [H16, p. 198; A]

    Google Scholar 

  • Huybrechts, Phillipe, and Johannes Oerlemans 1990: Response of the Antarctic ice sheet to future greenhouse warming, Clim. Dynam. 5 (2), 93–102. [I79, p. 170]

    Google Scholar 

  • Idso, S. B. 1980: The climatological significance of a doubling of Earth's atmospheric carbon dioxide concentration, Science 207 (4438), 1462–1463. Comment by Stephen H. Schneider, William W.

    Google Scholar 

  • Kellogg, and V. Ramanathan, comment by Conway B. Leovy, and reply by Sherwood B. Idso 1980: Carbon dioxide and climate, Science 210 (4465), 6–8. [†T67, p. 118]

    Google Scholar 

  • Idso, Sherwood B. 1982: Carbon Dioxide: Friend or Foe?, IBR Press, Tempe, Arizona, 92pp. [M27, p. 220; H]

    Google Scholar 

  • Idso, Sherwood B. 1987: A clarification of my position on the CO2 climate connection, Clim. Change 10 (1), 81–86. [T63, p. 117]

    Google Scholar 

  • IIASA 1981: Energy in a Finite World. Volume 1: Paths to a Sustainable Future; Jeanne Anderer, Alan McDonald, Nebojsa Nakicenovic, and Wolf Häfele, 225pp. Volume 2: A Global Systems Analysis; Wolf Häfele, and members of the IIASA Energy Systems Program, 837pp., Ballinger Publishing, Cambridge, Massachusetts. [P98, p. 192]

  • Imbrie, John and Katherine Porter Imbrie 1979: Ice Ages, Enslow, Short Hills, New Jersey, 224pp. [H8, p. 197; AX]

    Google Scholar 

  • IPCC 1990: Climate Change. The IPCC Scientific Assessment, Cambridge Univ. Press, Cambridge, England, 365pp. [M15, p. 218; †P118, p. 195; TCO] Contains [T24, p. 109; P42, p. 182].

    Google Scholar 

  • IPCC 1991a: Climate Change. The IPCC Response Strategies, WMO/UNEP, Intergovernmental Panel on Climate Change, Island Press, Covelo, California, 273pp. [P2, p. 174]

    Google Scholar 

  • IPCC 1991b: Intergovernmental Panel on Climate Change. Potential Impacts of Climate Change. Report from Working Group II to IPCC, U.S. Dept. of Commerce, Washington, D.C., 330pp. (Preliminary printing prior to publication.) [I1, p. 155]

    Google Scholar 

  • Jackson, Tim 1991: Least cost greenhouse planning: Supply curves for global warming abatement, Energy Policy 19 (1), 35–46. [†P88, p. 190]

    Google Scholar 

  • Jacobson, Harold K. and Martin F. Price 1991: A Framework for Research on the Human Dimensions of Global Environmental Change, ISSC/UNESCO Series 3, International Social Science Council, Paris, 61pp. [P43, p. 182]

    Google Scholar 

  • Jäger, Jill 1983: Climate and Energy Systems, Wiley, Chichester, 231pp. [X51, p. 210; P]

    Google Scholar 

  • Jaeger, Jill 1988: Developing policies for responding to climatic change, World Meteorological Organization, WCIP-1, WMO/TD-No. 225, April 1988, 53pp. [P1, p. 174; †M9, p. 216]

  • Jahnke, Richard A. 1990a: Ocean flux studies: A status report, Rev. Geophys. 28 (4), 381–398. [C7, p. 122]

    Google Scholar 

  • Jahnke, Richard A., Clare E. Reimers, and Deborah B. Craven 1990b: Intensification of recycling of organic matter at the sea floor near ocean margins, Nature 348 (6296), 50–54. [C8, p. 122]

    Google Scholar 

  • James, I. N. and P. M. James 1989: Ultra-low-frequency variability in a simple atmospheric circulation model, Nature 342 (6245), 53–55. [X42, p. 209]

    Google Scholar 

  • Jenkinson, D. S., D. E. Adams, and A. Wild 1991: Model estimates of CO2 emissions from soil in response to global warming, Nature 351 (6324), 304–306. [C5, p. 122; I]

    Google Scholar 

  • Joos, Fortunat, Ulrich Siegenthaler, and Jorge L. Sarmiento 1991: Possible effects of iron fertilization in the southern ocean on atmospheric CO2 concentration, Global Biogeochem. Cycles 5 (2), 135–150. [†P55, p. 184]

    Google Scholar 

  • Jones, M. D. H. and A. Henderson-Sellers 1990: History of the greenhouse effect, Prog. Phys. Geogr. 14 (1), 1–18. [H1, p. 197; N]

    Google Scholar 

  • Jones, P. D., T. M. L. Wigley, and P. M. Kelly 1982: Variations in surface air temperatures: Part 1. Northern Hemisphere, 1881–1980, Mon. Weather Rev. 110 (2), 59–70. [O16, p. 136]

    Google Scholar 

  • Jones, P. D., T. M. L. Wigley, and P. B. Wright 1986a: Global temperature variations between 1861 and 1984, Nature 322 (6078), 430–434. [O1, p. 134; †O60, p. 144; †O61, p. 144]

    Google Scholar 

  • Jones, P. D., S. C. B. Raper, and T. M. L. Wigley 1986b: Southern Hemisphere surface air temperature variations: 1851–1984, J. dim. Appl. Meteor. 25 (9), 1213–1230. [†O1, p. 134; †O60, p. 144]

    Google Scholar 

  • Jones, P. D., S. C. B. Raper, R. S. Bradley, H. F. Diaz, P. M. Kelly, and T. M. L. Wigley 1986c: Northern Hemisphere surface air temperature variations: 1851–1984, J. Clim. Appl. Meteor. 25 (2), 161–179. [†O1, p. 134; †O60, p. 144]

    Google Scholar 

  • Jones, P. D., T. M. L. Wigley, C. K. Folland, and D. E. Parker 1987: Spatial patterns in recent worldwide temperature trends, Climate Monitor 16 (5), 175–185. [O13, p. 136]

    Google Scholar 

  • Jones, P. D., T. M. L. Wigley, C. K. Folland, D. E. Parker, J. K. Angell, S. Lebedeff, and J. E. Hansen 1988: Evidence for global warming in the past decade, Nature 332 (6167), 790. [O11, p. 136]

    Google Scholar 

  • Jones, P. D. 1989a: The influence of ENSO on global temperatures, Climate Monitor 17 (3, covering June–August 1988), 80–89. [X43, p. 209]

    Google Scholar 

  • Jones, P. D., P. M. Kelly, C. M. Goodess, and T. Karl 1989b: The effect of urban warming on the northern hemisphere temperature average, J. Clim. 2 (3), 285–290. [O60, p. 144; X]

    Google Scholar 

  • Jones, P. D. 1990a: Antarctic temperatures over the present century—A study of the early expedition record, J. Clim. 3 (11), 1193–1203. [O4, p. 135]

    Google Scholar 

  • Jones, P. D., P. Ya. Groisman, M. Coughlan, N. Plummer, W.-C. Wang, and T. R. Karl 1990b: Assessment of urbanization effects in times series of surface air temperature over land, Nature 347 (6289), 169–172. [O54, p. 143]

    Google Scholar 

  • Jones, P. D. and T. M. L. Wigley 1990c: Satellite data under scrutiny, Nature 344 (6268), 711. [O68, p. 145; †O5, p. 135]

    Google Scholar 

  • Jones, Philip D. and Tom M. L. Wigley 1990d: Global warming trends, Sci. Am. 263 (2) 1990, 84–91. [N5, p. 211;O]

    Google Scholar 

  • Jones, R. L. and J. F. B. Mitchell 1991: Is water vapour understood?, Nature 353 (6341), 210. [†O34, p. 139]

    Google Scholar 

  • Jouzel, J., C. Lorius, J. R. Petit, C. Genthon, N. I. Barkov, V. M. Kotlyakov, and V. M. Petrov 1987: Vostok ice core: Continuous isotope temperature record over the last climatic cycle (160,000 years), Nature 329 (6138), 403–408. [A44, p. 154; †A19, p. 150; †A39, p. 153; †A41, p. 154; O]

    Google Scholar 

  • Kalkstein, Laurence S., Paul C. Dunne, and Russell S. Vose 1990: Detection of climatic change in the western North American Arctic using a synoptic climatological approach, J. Clim. 3 (10), 1153–1167. [O45, p. 141]

    Google Scholar 

  • Kaplan, Lewis D. 1960: The influence of carbon dioxide variations on the atmospheric heat balance, Tellus 12 (2), 204–208. Also see letter by Gilbert N. Plass, Tellus 13 (2), 296–300, and reply by

    Google Scholar 

  • Lewis D. Kaplan, The influence of carbon dioxide variations on the atmospheric heat balance, Tellus 12 (2), 301–302. [H35, p. 201; T]

  • Karl, Thomas R. 1988a: Multi-year fluctuations of temperature and precipitation: The gray area of climate change, Clim. Change 12 (2), 179–197. [O71, p. 146]

    Google Scholar 

  • Karl, Thomas R., Henry F. Diaz, and George Kukla 1988b: Urbanization: Its detection and effect in the United States climate record, J. Clim. 1 (11), 1099–1123. [O62, p. 144]

    Google Scholar 

  • Karl, Thomas R., J. Dan Tarpley, Robert G. Quayle, Henry F. Diaz, David A. Robinson, and Raymond S. Bradley 1989a: The recent climate record: What it can and cannot tell us, Rev. Geophys. 27 (3), 405–430. [O65, p. 145]

    Google Scholar 

  • Karl, Thomas R. and Philip D. Jones 1989b: Urban bias in area-averaged surface air temperature trends, Bull. Am. Meteorol. Soc. 70 (3), 265–270. [O61, p. 144]

    Google Scholar 

  • Karl, Thomas R., George Kukla, Vyacheslav N. Razuvayev, Michael, J. Changery, Robert G. Quayle, Richard R. Heim Jr., David R. Easterling, and Cong Bin Fu 1991: Global warming: Evidence for asymmetric diurnal temperature change, Geophys. Res. Lett. 18 (2), 2253. Correction in 1992: Geophys. Res. Lett. 19 (2), 219. [O3, p. 134]

    Google Scholar 

  • Karoly, David J. 1987: Southern Hemisphere temperature trends: A possible greenhouse gas effect?, Geophys. Res. Lett. 14 (11), 1139–1141. [O14, p. 136]

    Google Scholar 

  • Karoly, David J. 1989: Northern Hemisphere temperature trends: A possible greenhouse gas effect?, Geophys. Res. Lett. 16 (5), 465–468. [O8, p. 135]

    Google Scholar 

  • Karoly, David J. 1990: Greenhouse climate change fingerprint detection, in Latham and Taylor 1990, 49–60. [O69, p. 145]

  • Kasting, James F., James B. Pollack, and David Crisp 1984: Effects of high CO2 levels on surface temperature and atmospheric oxidation states on the early Earth, J. Atmos. Chem. 1 (4), 403–428. [A24, p. 151;†A31, p. 152; CT]

    Google Scholar 

  • Kasting, James F. and Thomas P. Ackerman 1986: Climatic consequences of very high carbon dioxide levels in the Earth's early atmosphere, Science 234 (4782), 1383–1385. [A20, p. 150; T]

    Google Scholar 

  • Kasting, James F., Owen B. Toon, and James B. Pollack 1988a: How climate evolved on the terrestrial planets, Sci. Am. 258 (2), 90–97. [N16, p. 213; ACT]

    Google Scholar 

  • Kasting, James F. 1988b: Runaway and moist greenhouse atmospheres and the evolution of Earth and Venus, Icarus 74 (3), 472–494. [A14, p. 149; TC]

    Google Scholar 

  • Kasting, James F. 1989: Long-term stability of the Earth's climate, Palaeogeogr. Palaeoclimatol. Palaeoecol. (Global and Planetery Change Section) 75 [or Global and Planetary Change 1] (1/2), 83–95. [A7, p. 148; †T61, p. 117; C]

    Google Scholar 

  • Kates, Robert W., Jesse H. Ausubel, and Mimi Berberian (eds.) 1985: Climate Impact Assessment: Studies of the Interaction of Climate and Society, SCOPE 27, Wiley, Chichester, 625pp. [I2, p. 156] Contains [I96, p. 173; P107, p. 193; P108, p. 194].

    Google Scholar 

  • Kaufman, Yoram J., Robert S. Fraser, and Robert L. Mahoney 1991: Fossil fuel and biomass burning effect on climate—heating or cooling?, J. Clim. 4 (6), 578–588. [X2, p. 203]

    Google Scholar 

  • Keeling, Charles D., Robert B. Bacastow, Arnold E. Bainbridge, Carl A. Ekdahl, Jr., Peter R. Guenther, Lee S. Waterman, and John F. S. Chin 1976a: Atmospheric carbon dioxide variations at Mauna Loa Observatory, Hawaii, Tellus 28 (6), 538–551. [C2, p. 121]

    Google Scholar 

  • Keeling, Charles D., J. Alexander Adams, Jr., Carl A. Ekdahl, Jr., and Peter R. Guenther 1976b: Atmospheric carbon dioxide variation at the South Pole, Tellus 28 (6), 552–564. [†C2, p. 121]

    Google Scholar 

  • Keeling, Charles D., Robert B. Bacastow, and Timothy P. Whorf 1982: Measurements of the concentration of carbon dioxide at Mauna Loa Observatory, Hawaii, in Clark 1982, 377–385. [†C2, p. 121]

  • Keepin, Bill 1986: Review of global energy and carbon dioxide projections, Annu. Rev. Energy 11, 357–392. [P93, p. 191; C]

    Google Scholar 

  • Keepin, Bill and Gregory Kats 1988: Greenhouse warming: Comparative analysis of nuclear and efficiency abatement strategies, Energy Policy 16 (6), 538–561. [P88, p. 190]

    Google Scholar 

  • Kellogg, William W. and Robert Schware 1981: Climatic Change and Society: Consequences of Increasing Atmospheric Carbon Dioxide, Westview Press, Boulder, Colorado, 178pp. [M28, p. 220; PI]

    Google Scholar 

  • Kellogg, William W. 1987: Mankind's impact on climate: The evolution of an awareness, Clim. Change 10 (2), 113–136. [H3, p. 197; P]

    Google Scholar 

  • Kellogg, William W. and Zong-Ci Zhao 1988: Sensitivity of soil moisture to doubling of carbon dioxide in climate model experiments. Part I: North America, J. Clim. 1 (4), 348–366. [I41, p. 163]

    Google Scholar 

  • Kellogg, William W. 1991: Response to skeptics of global warming, Bull. Am. Meteorol. Soc. 74 (4), 499–511. Separate comments by Richard L. Pitter and William G. Finnegan; James W. Telford; G. L. Austin; Derek Winstanley; and two replies by William W. Kellogg; Bull. Am. Meteorol. Soc. 72 (9), 1392–1396. [M32, p. 221; PTO]

    Google Scholar 

  • Kelly, K. K., A. F. Tuck, and T. Davies 1991: Wintertime asymmetry of upper tropospheric water between the Northern and Southern Hemispheres, Nature 353 (6341), 244–247. [O34, p. 139]

    Google Scholar 

  • Kelly, P. M. and T. M. L. Wigley 1990: The influence of solar forcing trends on global mean temperature since 1861, Nature 347 (6292), 460–462. [X32, p. 208]

    Google Scholar 

  • Kempton, Willett 1991: Lay perspectives on global climate change, Global Environ. Change 1, 183–208. [P103, p. 193]

    Google Scholar 

  • Kerr, Richard A. 1989: Hansen vs. the world on the greenhouse threat, Science 244 (4908), 1041–1043. [P45, p. 182]

    Google Scholar 

  • Kerr, Richard A. 1991: Global temperature hits record again, Science 251 (4991), 274. [K]

    Google Scholar 

  • Kerr, Richard A. 1992a: Unmasking a shifty climate system, Science 255 (5051), 1508–1509. [†O6, p. 135]

    Google Scholar 

  • Kerr, Richard A. 1992b: Pollutant haze cools the greenhouse, with sidebar: Hot nights in the greenhouse, Science 255 (5045), 682–683. [†X1, p. 203; †O3, p. 134]

    Google Scholar 

  • Khalil, M. A. K., R. A. Rasmussen, J. R. J. French, and J. A. Holt 1990: The influence of termites on atmospheric trace gases: CH4, CO2, CHCl3, CO, H2, and light hydrocarbons, J. Geophys. Res. 95 (D4), 3619–3634. [C44, p. 127]

    Google Scholar 

  • Kiehl, J. T. and D. L. Williamson 1991: Dependence of cloud amount on horizontal resolution in the National Center for Atmospheric Research Community Climate Model, J. Geophys. Res. 96 (D6), 10955–10980. [T45, p. 114]

    Google Scholar 

  • Kiehl, Jeffrey T. 1992: Cold comfort in the greenhouse, Nature 355 (6363), 773. [†T72, p. 118]

    Google Scholar 

  • Kim, J. -W., J. -T. Chang, N. L. Baker, D. S. Wilks, and W. L. Gates 1984: The statistical problem of climate inversion: Determination of the relationship between local and large-scale climate, Mon. Weather Rev. 112 (10), 2069–2077. [†116, p. 158]

    Google Scholar 

  • Klein, William H. 1982: Detecting carbon dioxide effects on climate, in Clark 1982, 215–242. [†T77, p. 119]

  • Klemes, V. 1985: Sensitivity of water resource systems to climate variations, WCP-98, World Meteorological Organization, Geneva, 142pp. [I48, p. 164]

    Google Scholar 

  • Kondratiev, K. Y. and H. I. Niilisk 1960: On the question of carbon dioxide heat radiation in the atmosphere, Geofis. Pura Applicata 46, 216–230. [H34, p. 201; T]

    Google Scholar 

  • Krause, Florentin, Wilfrid Bach, and Jon Koomey 1989: Energy Policy in the Greenhouse. Volume One: From Warming Fate to Warming Limit: Benchmarks for a Global Climate Convention, International Project for Sustainable Energy Paths (IPSEP), El Cerrito, California, and the European Environmental Bureau, 153pp. [P72, p. 186]

    Google Scholar 

  • Kukla, George J. and Helena J. Kukla 1974: Increased surface albedo in the Northern Hemisphere, Science 183 (4126), 709–714. [X29, p. 207]

    Google Scholar 

  • Kvenvolden, Keith A. 1988: Methane hydrates and global climate, Global Biogeochem. Cycles 2 (3), 221–229. [C52, p. 128; †C45, p. 127]

    Google Scholar 

  • Lachenbruch, Arthur H. and B. Vaughn Marshall 1986: Changing climate: Geothermal evidence from permafrost in the Alaskan Arctic, Science 234 (4777), 689–696. [O51, p. 142]

    Google Scholar 

  • Lacis, A., J. Hansen, P. Lee, T. Mitchell, and S. Lebedeff 1981: Greenhouse effect of trace gases, 1970–1980, Geophys. Res. Lett. 8 (10), 1035–1038. [T78, p. 120; K]

    Google Scholar 

  • Lacis, Andrew A., Donald J. Wuebbles, and Jennifer A. Logan 1990: Radiative forcing of climate by changes in the vertical distribution of ozone, J. Geophys. Res. 95 (D7), 9971–9981. [X5, p. 204; C]

    Google Scholar 

  • Lal, M. and V. Ramanathan 1984: The effects of moist convection and water vapor radiative processes on climate sensitivity, J. Atmos. Sci. 41 (14), 2238–2249. [T59, p. 116]

    Google Scholar 

  • Lamb, Peter J. 1987: On the development of regional climatic scenarios for policy-oriented climatic-impact assessment, Bull. Am. Meteorol. Soc. 68 (9), 1116–1123. [I17, p. 158; P]

    Google Scholar 

  • Landsberg, Helmut E. 1979: Atmospheric changes in a growing community (the Columbia, Maryland experience), Urban Ecol. 4 (1), 53–81. [O63, p. 144; X]

    Google Scholar 

  • Langley, S. P. 1889: The Temperature of the Moon, Mem. Natl. Acad. Sci. 4 (9), 105–212 +26 plates. [H18,p. 199]

    Google Scholar 

  • Lashof, Daniel A. 1989a: The dynamic greenhouse: Feedback processes that may influence future concentrations of atmospheric trace gases and climatic change, Clim. Change 14 (3), 213–242. [T75, p. 119;C]

    Google Scholar 

  • Lashof, Daniel A. and Dennis A. Tirpak (eds.) 1989b: Policy Options for Stabilizing Global Climate. See EPA 1989a [P15, p. 177].

  • Lashof, Daniel A. and Dilip R. Ahuja 1990: Relative contributions of greenhouse gas emissions to global warming, Nature 344 (6266), 529–531. [P118, p. 195; P113, p. 195]

    Google Scholar 

  • Latham, Geoffrey Arthur and John Ashley Taylor (eds.) 1990: IGBP Workshop 13 on Mathematical and Statistical Modelling of Global Change Processes, Proceedings of the Centre for Mathematical Analysis, vol. 25, Australian National University, Canberra, 279pp. Contains [O69, p. 145].

    Google Scholar 

  • Leaf, Alexander 1989: Potential health effects of global climatic and environmental changes, N. Engl. J. Med. 321 (23), 1577–1583. [I95, p. 173]

    Google Scholar 

  • Lean, J. and P. Foukal 1988: A model of solar luminosity modulation by magnetic activity between 1954 and 1984, Science 240 (4854), 906–908. [X34, p. 208]

    Google Scholar 

  • Lean, Judith 1991: Variations in the Sun's radiative output, Rev. Geophys. 29 (4), 505–535. [X30, p. 207]

    Google Scholar 

  • Leggett, Jeremy (ed.) 1990: Global Warming: The Greenpeace Report, Oxford Univ. Press, Oxford, 554pp. [N6, p. 212]

    Google Scholar 

  • Legrand, M. R., R. J. Delmas, and R. J. Charlson 1988: Climate forcing implications from Vostok ice-core sulphate data, Nature 334 (6181), 418–420. [X10, p. 205]

    Google Scholar 

  • Lerner, Jean and Elaine Matthews 1988: Methane emission from animals: A global high-resolution data base, Global Biogeochem. Cycles 2 (2), 139–156. [C51, p. 128]

    Google Scholar 

  • Levitus, Sydney 1989: Interpentadal variability of temperature and salinity at intermediate depths of the North Atlantic Ocean, 1970–1974 versus 1955–1959; J. Geophys. Res. 94 (C5), 6091–6131. Correction: 94 (C10), 14599. [O25, p. 138; †O32, p. 139]

    Google Scholar 

  • Libby, Leona Marshall 1983: Past Climates: Tree Thermometers, Commodities, and People, Univ. Texas Press, Austin, 143pp. [P109, p. 194; AOI]

    Google Scholar 

  • Liebetrau, Albert M. and M. J. Scott 1991: Strategies for modeling the uncertain impacts of climate change, J. Policy Modeling 13 (2), 185–204. [P17, p. 177]

    Google Scholar 

  • Lindstrom, D. R. and D. R. MacAyeal 1989: Scandinavian, Siberian, and Arctic Ocean glaciation: Effect of Holocene atmospheric CO2 variations, Science 245 (4918), 628–631. [A8, p. 148; T]

    Google Scholar 

  • Lindzen, R. S., A. Y. Hou, and B. F. Farrell 1982: The role of convective model choice in calculating the climate impact of doubling CO2, J. Atmos. Sci. 39 (6), 1189–1205. [T61, p. 117]

    Google Scholar 

  • Lindzen, R. S. 1988: CO2 feedbacks and the 100k year cycle in climate, Meteorol. Atmos. Phys. 38 (1/2), 42–49. [A15, p. 149; CT]

    Google Scholar 

  • Lindzen, Richard S. 1990: Some coolness concerning global warming, Bull. Am. Meteorol. Soc. 71 (3), 288–299. [T3, p. 106]

    Google Scholar 

  • Lorenz, E. N. 1968: Climatic determinism, Meteorol. Monogr. 8 (30), 1–3. [X47, p. 210]

    Google Scholar 

  • Lorenz, Edward N. 1991: Chaos, spontaneous climatic variations and detection of the greenhouse effect, in M. Schlesinger 1991, 445–453. [X40, p. 209]

  • Lorius, C., N. I. Barkov, J. Jouzel, Y. S. Korotkevich, V. M. Kotlyakov, and D. Raynaud 1988: Antarctic ice core: CO2 and climatic change over the last climatic cycle, Eos, Trans. Am. Geophys. Union 69 (26), 681, 683–684. [A39, p. 153; C]

    Google Scholar 

  • Lorius, C., J. Jouzel, D. Raynaud, J. Hansen, and H. LeTreut 1990: The ice-core record: Climate sensitivity and future greenhouse warming, Nature 347 (6289), 139–146. [T73, p. 119; A]

    Google Scholar 

  • Lovelock, J. E. and A. J. Watson 1982: The regulation of carbon dioxide and climate: Gaia or geochemistry, Planet. Space Sci. 30 (8), 795–802. [C34, p. 126; AXT]

    Google Scholar 

  • Lovins, Amory B., L. Hunter Lovins, Florentin Krause, and Wilfred Bach 1981: Least-cost Energy: Solving the C0 2 Problem, Brick House, Andover, Massachusetts, 184pp. [P99, p. 192]

    Google Scholar 

  • Lunde, Leiv 1991: North/South and global warming — Conflict or cooperation?, Bull. Peace Proposals 22 (2), 199–210. [P32, p. 180]

    Google Scholar 

  • Luther, Frederick M., and Robert D. Cess 1985: Review of the recent carbon dioxide-climate controversy, Appendix B in DOE 1985a, 321–335. [T64, p. 117]

  • MacCracken, Michael C. and Frederick M. Luther (seds.) 1985: Detecting the Climatic Effects of Increasing Carbon Dioxide, DOE/ER-0235, U.S. Dept. of Energy, Washington, D.C., 221pp. [O52, p. 143]

    Google Scholar 

  • MacDonald, Gordon J. 1990: Role of methane clathrates in past and future climates, Clim. Change 16 (3), 247–281. [C45, p. 127; †C52, p. 128]

    Google Scholar 

  • Maduro, Rogelio, Carol White, Mark Burdman, Mark Sonnenblick, Kathy Klenetsky, and Vin Berg 1989: The ‘Greenhouse Effect’ Hoax: A World Federalist Plot, Executive Intelligence Review, Washington, D.C., 168pp. [M17, p. 218]

  • Magnus, [Gustav] 1863: On the diathermancy of dry and moist air (trans. from German), Philos. Mag, (Sen 4) 26 (172), 21–30. [H13, p. 198; †H15, p. 198]

    Google Scholar 

  • Maier-Reimer, E., and K. Hasselmann 1987: Transport and storage of CO2 in the ocean—An inorganic ocean-circulation carbon cycle model, Clim. Dynam. 2 (2), 63–90. [C20, p. 124]

    Google Scholar 

  • Manabe, Syukuro and Richard T. Wetherald 1967: Thermal equilibrium of the atmosphere with a given distribution of relative humidity, J. Atmos. Sci. 24 (3), 241–259. [H40, p. 201; TK]

    Google Scholar 

  • Manabe, Syukuro and Richard T. Wetherald 1975: The effect of doubling the CO2-concentration of the climate of a general circulation model, J. Atmos. Sci. 32 (1), 3–15. [KT]

    Google Scholar 

  • Manabe, S., R. T. Wetherald, and R. J. Stouffer 1981: Summer dryness due to increases of atmospheric CO2 concentration, Clim. Change 3 (4), 347–386. [I51, p. 164; T]

    Google Scholar 

  • Manabe, Syukuro 1983: Carbon dioxide and climatic change, Adv. Geophys. 25, 39–80. [T10, p. 107]

    Google Scholar 

  • Manabe, Syukuro and Kirk Bryan Jr. 1985a: CO2-induced change in a coupled ocean-atmosphere model and its paleoclimatic implications, J. Geophys. Res. 90 (C6), 11 689–11 707. [A22, p. 151; T]

    Google Scholar 

  • Manabe, Syukuro and Richard T. Wetherald 1985b: CO2 and hydrology, Adv. Geophys. 28A, 131–157. [I49, p. 164]

    Google Scholar 

  • Manabe, S. and R. T. Wetherald 1987: Large-scale changes of soil wetness induced by an increase in atmospheric carbon dioxide, J. Atmos. Sci. 44 (8), 1211–1235. [I45, p. 164]

    Google Scholar 

  • Manabe, S. and R. J. Stouffer 1988: Two stable equilibria of a coupled ocean-atmosphere model, J. Clim. 1 (9), 841–866. [T29, p. 111]

    Google Scholar 

  • Manabe, Syukuro, Kirk Bryan, and Michael J, Spelman 1990: Transient response of a global oceanatmosphere model to a doubling of atmospheric carbon dioxide, J. Phys. Oceanogr. 20 (5), 722–749. [†T26,p. 110]

    Google Scholar 

  • Manabe, S., R. J. Stouffer, M. J. Spelman, and K. Bryan 1991: Transient responses of a coupled ocean-atmosphere model to gradual changes of atmospheric CO2. Part 1: Annual mean response, J. Clim. 4 (8), 785–818. [T23, p. 109]

    Google Scholar 

  • Manabe, S., M. J. Spelman, and R. J. Stouffer 1992: Transient responses of a coupled oceanatmosphere model to gradual changes of atmospheric CO2. Part II: Seasonal response, J. Clim. 5 (2), 105–126. [†T23, p. 109]

    Google Scholar 

  • Manne, Alan S. and Richard G. Richels 1990a: CO2 emission limits: An economic cost analysis for the USA, Energy J. 11 (2), 51–74. [P79, p. 188]

    Google Scholar 

  • Manne, Alan S. and Richard G. Richels 1990b: The costs of reducing CO2 emissions — further sensitivity analysis, Energy J. 11 (4), 69–78. [†P80, p. 188; †P79, p. 188]

    Google Scholar 

  • Manne, Alan S. and Richard G. Richels 1991: Buying greenhouse insurance, Energy Policy 19 (6), 543–552. [P73, p. 187]

    Google Scholar 

  • Marchetti, Cesare 1977: On geoengineering and the CO2 problem, Clim. Change 1 (1), 59–68. [P70, p. 186]

    Google Scholar 

  • Marland, Gregg and Ralph M. Rotty 1979: Carbon dioxide and climate, Rev. Geophys. Space Phys. 17 (7), 1813–1824. [M38, p. 222; CT]

    Google Scholar 

  • Marland, G., T. A. Boden, R. C. Griffin, S. F. Huang, P. Kanciruk, and T. R. Nelson 1989: Estimates of CO 2 Emissions From Fossil Fuel Burning and Cement Manufacturing Based on the United Nations Energy Statistics and the U.S. Bureau of Mines Cement Manufacturing Data, ORNL/CDIAC-25, NDP-030, Oak Ridge National Laboratory, Oak Ridge, Tennessee, 722pp. [M4, p. 215]

    Google Scholar 

  • Marshall, Eliot 1989: EPA's plan for cooling the global greenhouse, Science 243 (4898), 1544–1545. [†P15,p. 177]

    Google Scholar 

  • Marshall Institute 1989: Scientific perspectives on the greenhouse problem, George C. Marshall Institute, Washington, D.C., 37pp. [P22, p. 178; †X48, p. 210]

    Google Scholar 

  • Mass, Clifford F. and David A. Portman 1989: Major volcanic eruptions and climate: A critical examination, J. Clim. 2 (6), 566–593. Comment by Ellsworth G. Dutton 1990, J. Clim. 3 (5), 587–588, and reply by Clifford F. Mass and David A. Portman, op. cit., 589–590. [X6, p. 204]

    Google Scholar 

  • Mathews, Jessica T. 1987: Global climate change: Toward a greenhouse policy, Issues Sci. Technol. 3 (3), 57–68. [P10, p. 176]

    Google Scholar 

  • Matthews, Elaine and Inez Fung 1987: Methane emission from natural wetlands: Global distribution, area, and environmental characteristics of sources, Global Biogeochem. Cycles 1 (1), 61–86. [C54, p. 128]

    Google Scholar 

  • McBean, G. and J. McCarthy 1990: Narrowing the uncertainties: A scientific action plan for improved prediction of global climate change, in IPCC 1990, 311–328. [P42, p. 182]

  • McLaren, R. G. Barry and R. H. Bourke 1990: Could Arctic ice be thinning?, Nature 345 (6278), 762. [†O24, p. 138]

    Google Scholar 

  • McNab, Alan L. 1989: Climate and drought, Eos, Trans. Am. Geophys. Union 70 (40), 873, 882–883. [N11, p. 212; I]

    Google Scholar 

  • Mearns, Linda O., Richard W. Katz, and Stephen H. Schneider 1984: Extreme high-temperature events: Changes in their probabilities with changes in mean temperature, J. Clim. Appl. Meteor. 23 (12), 1601–1613. [I10, p. 157]

    Google Scholar 

  • Mearns, L. O., S. H. Schneider, S. L. Thompson, and L. R. McDaniel 1990: Analysis of climate variability in general circulation models: Comparison with observations and changes in variability in 2×CO2 experiments, J. Geophys. Res. 95 (D12), 20469–20490. [T36, p. 112]

    Google Scholar 

  • Meehl, Gerald A. 1984: Modeling the Earth's climate, Clim. Change 6 (3), 259–286. [N21, p. 213; T]

    Google Scholar 

  • Mikolajewicz, Uwe, Benjamin D. Santer, and Ernst Maier-Reimer 1990: Ocean response to green-house warming, Nature 345 (6276), 589–593. [I80, p. 170]

    Google Scholar 

  • Miller, Alan, Irving Mintzer, and Peter G. Brown 1990: Rethinking the economics of global warming, Issues Sci. Technol. 1 (1), 70–73. [P35, p. 181]

    Google Scholar 

  • Miller, Gifford H., and Anne de Vernal 1992: Will greenhouse warming lead to Northern Hemisphere ice-sheet growth?, Nature 355 (6357), 244–246. [A32, p. 152; I]

    Google Scholar 

  • Milliman, John D., James M. Broadus, and Frank Gable 1989: Environmental and economic implications of rising sea level and subsiding deltas: The Nile and Bengal examples, Ambio 18 (6), 340–345. [I81, p. 170]

    Google Scholar 

  • Mills, Evan, Deborah Wilson, and Thomas B. Johansson 1991: Getting started: No regret strategies for reducing greenhouse gas emissions, Energy Policy 19 (6), 526–542. [P74, p. 187]

    Google Scholar 

  • Mintzer, Irving M. 1987: A matter of degrees: The potential for controlling the greenhouse effect, Research Report 5, World Resources Institute, Washington, D.C., April 1987, 60pp. [P24, p. 178]

    Google Scholar 

  • Mintzer, Irving 1988: Living in a warmer world: Challenges for policy analysis and management, J. Policy Analysis Management 7 (3), 445–459. [P9, p. 176]

    Google Scholar 

  • Mitchell, J. F. B., C. A. Wilson, and W. M. Cunnington 1987: On CO2 climate sensitivity and model dependence of results, Q. J. R. Meteor. Soc. 113 (475), 293–322. [T41, p. 113]

    Google Scholar 

  • Mitchell, J. F. B. 1988: Simulation of climate change due to increased atmospheric CO2, in M. Schlesinger 1988, 1009–1051. [†T60, p. 116]

  • Mitchell, J. F. B., C. A. Senior, and W. J. Ingram 1989a: CO2 and climate: A missing feedback?, Nature 341 (6238), 132–134. [T56, p. 116; X]

    Google Scholar 

  • Mitchell, John F. B. 1989b: The ‘greenhouse’ effect and climate change, Rev. Geophys. 27 (1), 115–139. [Tl,p. 105; †T2, p. 105]

    Google Scholar 

  • Mitchell, John F. B. 1990: Greenhouse warming: Is the mid-holocene a good analogue?, J. Clim. 3 (11), 1177–1192. [†I15,p. 158; A]

    Google Scholar 

  • Mitchell, J. F. B., and W. J. Ingram 1992a: Carbon dioxide and climate: Mechanisms of changes in cloud, J. Clim. 5 (1), 5–21. [T43, p. 113]

    Google Scholar 

  • Mitchell, John F. B. 1992b: No limit to global warming, Nature 353 (6341), 219–220. [†O43, p. 141]

    Google Scholar 

  • Mitchell, J. Murray Jr. 1961: Recent secular changes of global temperature, in Fairbridge 1961, 235–250. [H37, p. 201; O]

  • Mix, Alan C. 1989: Influence of productivity variations on long-term atmospheric CO2, Nature 337 (6207), 541–544. [A9, p. 148; C]

    Google Scholar 

  • Möller, F. 1963: On the influence of changes in the CO2 concentration in air on the radiation balance of the Earth's surface and on the climate, J. Geophys. Res. 68 (13), 3877–3886. [H38, p. 201; T]

    Google Scholar 

  • Mooney, Harold A., Peter M. Vitousek, and Pamela A. Maison 1987: Exchange of materials between terrestrial ecosystems and the atmosphere, Science 238 (4829), 926–932. [N18, p. 213; C]

    Google Scholar 

  • Morrisette, P. M. 1989: Book Review, Clim. Change 15 (3), 493–494. [†P105, p. 193]

    Google Scholar 

  • Morrison, Denton E. and Dora G. Lodwick 1981: The social impacts of soft and hard energy systems: The Lovins' claims as a social science challenge, Annu. Rev. Energy 6, 357–378. [P100, p. 192]

    Google Scholar 

  • Nakićcenovićc, Nebojša and Aviott John 1991: CO2 reduction and removal: Measures for the next century, Energy 16 (11/12), 1347–1377. [†P76, p. 187]

    Google Scholar 

  • Namias, Jerome, 1989: Cold waters and hot summers, Nature 338 (6210), 15–16. [†M34, p. 221; IO]

    Google Scholar 

  • National Research Council 1975: Understanding Climatic Change: A Program for Action, National Academy Press, Washington, D.C., 237pp. [M30, p. 220; HTAP]

    Google Scholar 

  • National Research Council 1979: Carbon Dioxide and Climate: A Scientific Assessment [Charney Report], National Academy Press, Washington, D.C., 22pp. [T11, p. 107; HC]

    Google Scholar 

  • National Research Council 1982: Carbon Dioxide and Climate: A Second Assessment, National Academy Press, Washington, D.C., 72pp. [†M25, p. 219; CTIP]

    Google Scholar 

  • National Research Council 1983, Changing Climate, National Academy Press, Washington, D.C., 496pp. [M25, p. 219; PCTI] Contains [H7, p. 197; P97, p. 191; P28, p. 179].

    Google Scholar 

  • National Research Council 1988: Toward an Understanding of Global Change: Initial Priorities for U.S. Contributions to the International Geosphere-Biosphere Program, National Academy Press, Washington, D.C. [P48, p. 183]

    Google Scholar 

  • National Research Council 1989a: Global Change and Our Common Future. Papers from a forum, National Academy Press, Washington, D.C., 227pp. [M18, p. 218; PIN]

    Google Scholar 

  • National Research Council 1989b: Ozone Depletion, Greenhouse Gases, and Climate Change, National Academy Press, Washington, D.C., 122pp. [C72, p. 131]

    Google Scholar 

  • National Research Council 1991a: Policy Implications of Greenhouse Warming—Report of the Synthesis Panel, National Academy Press, Washington, D.C., 105pp. [P3, p. 175; N]

    Google Scholar 

  • National Research Council 1991b: Policy Implications of Greenhouse Warming: Report of the Mitigation Panel, prepub. ms., National Academy Press, Washington, D.C., 500pp. [P54, p. 184]

    Google Scholar 

  • Neftel, A., E. Moor, H. Oeschger, and B. Stauffer 1985: Evidence from polar ice cores for the increase in atmospheric CO2 in the past two centuries, Nature 315 (6014), 45–47. [C22, p. 124]

    Google Scholar 

  • vonNeumann, J. 1955: Can we survive technology?, Fortune 51 (6), 106–108, 151–152. [P14, p. 176; HKN].

    Google Scholar 

  • Newell, Reginald E. and Thomas G. Dopplick 1979: Questions concerning the possible influence of anthropogenic CO2 on atmospheric temperature, J. Appl. Meteorol. 18 (6), 822–825. [T68, p. 118; †T67, p. 118]

    Google Scholar 

  • Nihoul, Jacques C. J. (ed.) 1985: Coupled Ocean-Atmosphere Models, Elsevier, Amsterdam, 767pp. Contains [T31,p. 111].

    Google Scholar 

  • Nisbet, E. G. 1989: Some northern sources of atmospheric methane: Production, history, and future implications, Can. J. Earth Sci. 26 (8), 1603–1611. [C47, p. 128]

    Google Scholar 

  • Nisbet, E. G. 1990: The end of the ice age, Can. J. Earth Sci. 27 (1), 148–157. [A4, p. 147]

    Google Scholar 

  • Nordhaus, William D. and Gary W. Yohe 1983: Future paths of energy and carbon dioxide emissions, in National Research Council 1983, 87–153. [P97, p. 191]

  • North, Gerald R., Robert F. Cahalan, and James A. Coakley Jr. 1981: Energy balance climate models, Rev. Geophys. Space Phys. 19 (1), 91–121. [T66, p. 117]

    Google Scholar 

  • NTIS [no date]: Many technical reports can be obtained, for a fee, as a printed copy or on microfiche from the U.S. Dept. of Commerce, National Technical Information Service, Springfield, Virginia, 22161, U.S.A. telephone 703-487-4650.

  • OECD/IEA 1991: Greenhouse Gas Emissions: The Energy Dimension, Organisation for Economic Co-operation and Development, Paris, 186pp. [P75, p. 187]

    Google Scholar 

  • Oerlemans, J. and C. J. van der Veen 1984: Ice Sheets and Climate, Reidel, Dordrecht, 217pp. [M24, p. 219; AIX]

    Google Scholar 

  • Oerlemans, J. 1986: Glaciers as indicators of a carbon dioxide warming, Nature 320 (6063), 607–609. [O29, p. 138; I]

    Google Scholar 

  • Oeschger, H., U. Siegenmaler, U. Schotterer, and A. Gugelmann 1975: A box diffusion model to study the carbon dioxide exchange in nature, Tellus 27 (2), 168–192. [C39, p. 126]

    Google Scholar 

  • Oeschger, H. and U. Siegenthaler 1988: How has the atmospheric concentration of CO2 changed?, in Rowland and Isaksen 1988. [C16, p. 123]

  • Oglesby, Robert J., and Barry Saltzman 1992: Equilibrium climate statistics of a general circulation model as a function of atmospheric carbon dioxide. Part I: Geographic distribution of primary variables, J. Clim. 5 (1), 66–92. [A2, p. 147]

    Google Scholar 

  • O'Keefe, John D. and Thomas J. Aherns 1989: Impact production of CO2 by the Cretaceous/Tertiary extinction bolide and the resultant heating of the Earth, Nature 338 (6212), 247–249. [A10, p. 148;

    Google Scholar 

  • Oke, T. R. 1973: City size and the urban heat island effect, Atmos. Environ. 7 (8), 769–779. [O64, p. 144; X]

    Google Scholar 

  • Okken, P. A., R. J. Swart, and S. Zwerver (eds.) 1989: Climate and Energy: The feasibility of controlling CO 2 emissions, Kluwer, Dordrecht, 267pp. [P83, p. 189]

    Google Scholar 

  • Oppenheimer, Michael (ed.) 1989a: Greenhouse Gas Emissions: Environmental Consequences and Policy Responses, special issue of Clim. Change 15 (1/2), 335pp. [M9, p. 216, †P1, p. 174; TCOIP] Contains [T25, p. 110; I5, p. 156; T4, p. 106; P39, p. 181].

  • Oppenheimer, Michael 1989b: Climate change and environmental pollution: Physical and biological interactions, Clim. Change 15 (1/2), 255–270. [I5, p. 156]

    Google Scholar 

  • Oram, P. A. 1985: Sensitivity of agricultural production to climatic change, Clim. Change 1 (1), 129–152. [I29, p. 161]

    Google Scholar 

  • OTA 1991: Changing By Degrees. Steps to Reduce Greenhouse Gases, U.S. Congress, Office of Technology Assessment, OTA-0–482, Washington, D.C., U.S. Govt. Printing Office, 354pp. [P4, p. 175]

    Google Scholar 

  • Overpeck, Jonathan T., David Rind, and Richard Goldberg 1990: Climate-induced changes in forest disturbance and vegetation, Nature 343 (6253), 51–53. [I56, p. 166]

    Google Scholar 

  • Owen, Tobias, Robert D. Cess, V. Ramanathan 1979: Enhanced CO2 greenhouse to compensate for reduced solar luminosity on early Earth, Nature 277 (5698), 640–642. [†A24, p. 151; T]

    Google Scholar 

  • Pales, Jack C. and Charles D. Keeling 1965: The concentration of carbon dioxide in Hawaii, J. Geophys. Res. 70 (24), 6053–6076. [†C2, p. 121]

    Google Scholar 

  • Palmer, T. N. and C. Brankovic 1989: The 1988 U.S. drought linked to anomalous sea surface temperature, Nature 338 (6210), 54–57. [†M34, p. 221; I]

    Google Scholar 

  • Parry, Martin L. (ed.) 1985a: The sensitivity of natural ecosystems and agriculture to climatic change, Clim. Change 7 (1, Special Issue), 152pp. [I72, p. 169] Contains [I18, p. 159; I71, p. 169; I30, p. 161; I29, p. 161].

  • Parry, M. L. and T. R. Carter 1985b: The effect of climatic variations on agricultural risk, Clim. Change 7 (1), 95–110. [I30, p. 161; P]

    Google Scholar 

  • Parry, M. L., T. R. Carter, N. T. Konijn (eds.) 1988: The Impact of Climatic Variations on Agriculture. Volume 1: Assessments in Cool Temperate and Cold Regions, 876pp.; Volume 2: Assessments in Semi-arid Regions, 764pp.; Kluwer, Dordrecht. [I22, p. 159]

  • Parry, Martin 1990: Climate Change and World Agriculture, Earthscan Publications Limited, London (in association with IIASA and UNEP), 157pp. [I24, p. 160]

    Google Scholar 

  • Parsons, Peter A. 1989: Conservation and global warming: A problem in biological adaptation to stress, Ambio 18 (6), 322–325. [I60, p. 167]

    Google Scholar 

  • Pastor, John, and W. M. Post 1988: Response of northern forests to CO2-induced climate change, Nature 334 (6177), 55–58. [I62, p. 167]

    Google Scholar 

  • Pearman, G. I. (ed.) 1988: Greenhouse: Planning for Climate Change, Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia, 752pp. [I6, p. 156; P]

    Google Scholar 

  • Peltier, W. R. and A. M. Tushingham 1989: Global sea level rise and the greenhouse effect: Might they be connected?, Science 244 (4906), 806–810. [O26, p. 138]

    Google Scholar 

  • Peng, T-H. and W. S. Broecker 1991: Dynamical limitations on the Antarctic iron fertilization strategy, Nature 349 (6306), 227–229. [P55, p. 184; †P56, p. 184; C]

    Google Scholar 

  • Penner, S. S. and Toufiq A. Siddiqi (eds.) 1991: Invited Papers on CO 2 Emissions and Climate Change and Energy Policies and Global Climate Change, special issue of Energy 16 (11/12), 242pp. [P76, p. 187] Contains [P112, p. 194].

  • Peters, Robert L. and Joan D. S. Darling 1985: The greenhouse effect and nature reserves, BioScience 35 (11), 707–717. [I73, p. 169; P]

    Google Scholar 

  • Petit-Marie, N., M. Fontugne, and C. Rouland 1991: Atmospheric methane ratio and environmental change in the Sahara and Sahel during the last 130 kyrs, Palaeogeogr. Palaeodimatol. Palaeoecol. 86 (1/2), 197–206. [A33, p. 152; †A4, p. 147; C]

    Google Scholar 

  • Pitman, A. J., A. Henderson-Sellers, and Z. -L. Yang 1990: Sensitivity of regional climates to localized precipitation in global models, Nature 346 (6286), 734–737. [I35, p. 162; T]

    Google Scholar 

  • Pittock, A. B. and M. J. Salinger 1981: Towards regional scenarios for a CO2-warmed Earth, Clim. Change 4 (1), 23–40. [I20, p. 159; T]

    Google Scholar 

  • Pittock, A. B. and H. A. Nix 1986: The effect of changing climate on Australian biomass production— A preliminary study, Clim. Change 8 (3), 243–255. [I68, p. 168]

    Google Scholar 

  • Pittock, A. Barrie 1987: Forests beyond 2000—effects of atmospheric change, Aust. For. 50 (4), 205–215. [I66, p. 168]

    Google Scholar 

  • Pivovarova, Z. I. 1977: Use of data from ground radiation observations to study atmospheric transparency, Soviet Meteorol. Hydrol. (trans. from Russian Meteorol. Gidrol.) 1977 (9), 19–25. [†O55, p. 143; X]

    Google Scholar 

  • Plantico, Marc S., Thomas R. Karl, George Kukla, and Joyce Gavin 1990: Is recent climate change across the United States related to rising levels of anthropogenic greenhouse gases?, J. Geophys. Res. 95 (D10), 16617–16637. [O47, p. 142]

    Google Scholar 

  • Plass, Gilbert 1956a: The carbon dioxide theory of climatic change, Tellus 8 (2), 140–154. [H31, p. 200; TA]

    Google Scholar 

  • Plass, G. N. 1956b: The influence of the 15μ carbon-dioxide band on the atmospheric infra-red cooling rate, Q. J. R. Meteor. Soc. 82 (353), 310–324. [H30, p. 200; T]

    Google Scholar 

  • Plass, Gilbert N. 1959: Carbon dioxide and climate, Sci. Am. 201 (1), 41–47. [H33, p. 201; NTAC]

    Google Scholar 

  • Pollack, James B., Owen B. Toon, Carl Sagan, Audrey Summers, Betty Baldwin, and Warren Van Camp 1976: Volcanic explosions and climatic change: A theoretical assessment, J. Geophys. Res. 81 (6), 1071–1083. [X14, p. 205]

    Google Scholar 

  • Potter, G. L., J. T. Kiehl, and R. D. Cess 1987: A clarification of certain issues related to the CO2-climate problem, Clim. Change 10 (1), 87–95. [T63, p. 117]

    Google Scholar 

  • Memoire sur la chaleur solaire, sur les pouvoirs rayonnants et absorbants de l'air atmospherique, et sur la temperature de l'espace, Compte Rendu des séances de l'Acad. des Sci. 7 (2), 24–65. Trans. as Memoir on the solar heat, on the radiating and absorbing powers of the atmospheric air, and on the temperature of space, in Richard Taylor (ed.) 1846, Scientific Memoirs 4, 44–91. [H10, p. 198; T]

  • Prather, Michael, Michael McElroy, Steven Wofsy, Gary Russell, and David Rind 1987: Chemistry of the global troposphere: Fluorocarbons as tracers of air motion, J. Geophys. Res. 92 (D6), 6579–6613. [C62, p. 130]

    Google Scholar 

  • Prather, Michael 1988: European sources of halocarbons and nitrous oxide, J. Atmos. Chem. 6 (4), 375–406. [C61,p. 130]

    Google Scholar 

  • Prentice, Katharine C. and Inez Y. Fung 1990: The sensitivity of terrestrial carbon storage to climate change, Nature 346 (6279) 48–51. [C10, p. 122; I]

    Google Scholar 

  • Prinn, R. G., P. G. Simmonds, R. A Rasmussen, R. D. Rosen, F. N. Alyea, C. A. Cardelino, A. J. Crawford, D. M. Cunnold, P. J. Fraser, and J. E. Lovelock 1983: The Atmospheric Lifetime Experiment. 1. Introduction, instrumentation, and overview, J. Geophys. Res. 88 (C 13), 8353–8367. [C65, p. 130]

    Google Scholar 

  • Prinn, Ronald G. and Bruce Fegley Jr. 1987: Bolide impacts, acid rain, and biospheric traumas at the Cretaceous-Tertiary boundary, Earth Planet. Sci. Lett. 83 (1/4), 1–15. [X36, p. 208]

    Google Scholar 

  • Prinn, R. G. 1988: How have the atmospheric concentrations of the halocarbons changed?, in Rowland and Isaksen 1988, 33–48. [C57, p. 129]

  • Prinn, R., D. Cunnold, R. Rasmussen, P. Simmonds, F. Alyea, A. Crawford, P. Fraser, and R. Rosen 1990: Atmospheric emissions and trends of nitrous oxide deduced from 10 years of ALE-GAGE data, J. Geophys. Res. 95 (D11), 18369–18385. [C59, p. 129]

    Google Scholar 

  • PSAC 1965: Restoring the Quality of Our Environment, Report of the Environmental Pollution Panel, (United States) President's Science Advisory Committee, White House, Washington, D.C., 317pp. See Appendix Y4, Atmospheric carbon dioxide, 111–133. [H39, p. 201; P]

    Google Scholar 

  • Quayle, Robert G., David R. Easterling, Thomas R. Karl, and Pamela Y. Hughes 1991: Effects of recent thermometer changes in the cooperative station network, Bull. Am. Meteorol. Soc. 72 (11), 1718–1723. [O67, p. 145]

    Google Scholar 

  • Raloff, J. 1989: Global smog: Newest greenhouse projection, Sci. News 135, 262–263. [I87, p. 171]

    Google Scholar 

  • Ramanathan, V. 1975: Greenhouse effect due to chlorofluorocarbons: Climatic implications, Science 190 (4209), 50–52. [H41, p. 202; K]

    Google Scholar 

  • Ramanathan, V. and J. A. Coakley Jr. 1978: Climate modeling through radiative-convective models, Rev. Geophys. Space Phys. 16 (4), 465–489. [T69, p. 118]

    Google Scholar 

  • Ramanathan, V. 1981: The role of ocean-atmosphere interactions in the CO2 climate problem, J. Atmos. Sci. 38 (5), 918–930. [T67, p. 118; †T68, p. 118; I]

    Google Scholar 

  • Ramanathan, V., R. J. Cicerone, H. B. Singh, and J. T. Kiehl 1985: Trace gas trends and their potential role in climate change, J. Geophys. Res. 90 (D3), 5547–5566. [T71, p. 118; C]

    Google Scholar 

  • Ramanathan, V., L. Callis, R. Cess, J. Hansen, I. Isaksen, W. Kuhn, A. Lacis, F. Luther, J. Mahlman, R. Reck, and M. Schlesinger 1987: Climate-chemical interactions and effects of changing atmospheric trace gases, Rev. Geophys. 25 (7), 1441–1482. [T2, p. 105; IC]

    Google Scholar 

  • Ramanathan, V. 1988a: The greenhouse theory of climate change: A test by an inadvertent global experiment, Science 240 (4850), 293–299. [T5, p. 106; C]

    Google Scholar 

  • Ramanathan, V. 1988b: The radiative and climatic consequences of the changing atmospheric composition of trace gases, in Rowland and Isaksen 1988, 159–186. [T6, p. 106; †T2, p. 105; I]

  • Ramanathan, V., Bruce R. Barkstrom, and Edwin F. Harrison 1989a: Climate and the Earth's radiation budget, Phys. Today 42 (5), 22–32. [T57, p. 116]

    Google Scholar 

  • Ramanathan, V., R. D. Cess, E. F. Harrison, P. Minnis, B. R. Barkstrom, E. Ahmad, and D. Hartmann 1989b: Cloud-radiative forcing and climate: Results from the Earth Radiation Budget Experiment, Science 243 (4887), 57–63, cover. [M33, p. 221; †T58, p. 116; O]

    Google Scholar 

  • Ramanathan, V. and W. Collins 1991: Thermodynamic regulation of ocean warming by cirrus clouds deduced from observations of the 1987 El Niño, Nature 351 (6321), 27–32, cover. [O43, p. 141]

    Google Scholar 

  • Ramaswamy, V., M. D. Schwarzkopf, and K. P. Shine 1992: Radiative forcing of climate from halocarbon-induced global stratospheric ozone loss, Nature 355 (6363), 810–812. [T72, p. 118]

    Google Scholar 

  • Rasch, Philip J. and David, L. Williamson 1990: Computational aspects of moisture transport in global models of the atmosphere, Q. J. R. Meteor. Soc. 116, 1071–1090. [T53, p. 115]

    Google Scholar 

  • Rasch, Philip J. and David L. Williamson 1991: The sensitivity of a general circulation model climate to the moisture transport formulation, J. Geophys. Res. 96 (D7), 13123–13137. [T47, p. 114]

    Google Scholar 

  • Raval, A. and V. Ramanathan 1989: Observational determination of the greenhouse effect, Nature 342 (6251), 758–761. [M31, p. 221; O]

    Google Scholar 

  • Reilly, J. M., J. A. Edmonds, R. H. Gardner, and A. L. Brenkert 1987: Uncertainty analysis of the IEA/ORAU CO2 emissions model, Energy J. 8 (3), 1–29. [P92, p. 190]

    Google Scholar 

  • Repetto, Robert C. (ed.) 1985: The Global Possible: Resources, Development and the New Century, Yale Univ. Press, New Haven, 538pp. Contains [P25, p. 179].

    Google Scholar 

  • Revelle, R. and H. E. Suess 1957: Carbon dioxide exchange between atmosphere and ocean and the question of an increase of atmospheric CO2during past and present decades, Tellus 9 (1), 18–27. [H32, p. 200; CK]

    Google Scholar 

  • Revelle, Roger 1985: Introduction: The scientific history of carbon dioxide, in Sundquist and Broecker 1985a, 1–4. [H6, p. 197]

  • Reynolds, Richard W., Chris K. Folland, and David E. Parker 1989: Biases in satellite-derived sea-surface-temperature data, Nature 341 (6244), 728–731. [O70, p. 146; †O27, p. 138]

    Google Scholar 

  • Rind, David and Sergej Lebedeff (principal contributors) 1984: Potential climatic impacts of increasing atmospheric CO2 with emphasis on water availability and hydrology in the United States, Prepared by NASA GISS for the U.S. EPA, EPA April 1984, 96pp. [I50, p. 164]

  • Rind, D. 1986: The dynamics of warm and cold climates, J. Atmos. Sci. 43 (1), 3–24. [T18, p. 108]

    Google Scholar 

  • Rind, D. 1988a: The doubled CO2 climate and the sensitivity of the modeled hydrological cycle, J. Geophys. Res. 93 (D5), 5385–5412. [T15, p. 108; I]

    Google Scholar 

  • Rind, David, Arthur Rosenzweig, and Cynthia Rosenzweig 1988b: Modelling the future: A joint venture, Nature 334 (6182), 483–486. [P89, p. 190]

    Google Scholar 

  • Rind, D., R. Goldberg, and R. Ruedy 1989: Change in climate variability in the 21st century, Clim. Change 14 (1), 5–37. [T39, p. 113; I]

    Google Scholar 

  • Rind, D., R. Goldberg, J. Hansen, C. Rosenzweig, and R. Ruedy 1990a: Potential evapotransporation and the likelihood of future drought, J. Geophys. Res. 95 (D7), 9983–10004. [I36, p. 162]

    Google Scholar 

  • Rind, D., E.-W. Chiou, W. Chu, J. Larsen, S. Oltmans, J. Lerner, M. P. McCormick, and L. McMaster 1990b: Positive water vapour feedback in climate models confirmed by satellite data, Nature 349 (6309), 500–503. [O37, p. 140; T]

    Google Scholar 

  • Roberts, Leslie 1988: Is there life after climate change?, Science 242 (4881), 1010–1012. [I63, p. 167]

    Google Scholar 

  • Roberts, Leslie 1989a: Global warming: Blaming the sun, Science 246 (4933), 992–993. [†P22, p. 178; X]

    Google Scholar 

  • Roberts, Leslie 1989b: How fast can trees migrate?, Science 243 (4892), 735–737. [I61, p. 167]

    Google Scholar 

  • Robin, G. deQ. 1986: Changing the sea level: Projecting the rise in sea level caused by warming of the atmosphere, in Bolin et al. 1986a, 323–359. [I84, p. 171]

  • Robinson, P. J., and P. L. Finkelstein 1991: The development of impact-oriented climate scenarios, Bull. Am. Meteoml. Soc. 72 (4), 481–490. [I13, p. 158]

    Google Scholar 

  • Roemmich, Dean and Carl Wunsch 1984: Apparent changes in the climatic state of the deep North Atlantic Ocean, Nature 307 (5950), 447–450. [O32, p. 139]

    Google Scholar 

  • Root, Terry 1988: Environmental factors associated with avian distributional boundaries, J. Biogeogr. 15 (3), 489–505. [I64, p. 167]

    Google Scholar 

  • Rooth, Claes 1982: Hydrology and the ocean circulation, Prog. Oceanogr. 11, 131–149. [†T29, p. 111]

    Google Scholar 

  • Rosenberg, Norman J., William E. EasterlingIII, Pierre R. Crosson, and Joel Darmstadter (eds.) 1989: Greenhouse Warming: Abatement and Adaption, Resources for the Future, Washington, D.C., 182pp. [P6, p. 175; N] Contains [P59, p. 185].

    Google Scholar 

  • Rosenfeld, Arthur H. and David Hafenmeister 1988: Energy-efficient buildings, Sci. Am. 258 (4), 78–85. [P90, p. 190]

    Google Scholar 

  • Rosenzweig, Cynthia 1985: Potential CO2induced climate effects on North American wheatproducing regions, Clim. Change 1 (4), 367–389. [I31, p. 161]

    Google Scholar 

  • Rossow, William B. and Robert A. Schiffer 1991: ISCCP cloud data and products, Bull. Am. Meteorol. Soc. 72 (1), 2–20. [O35,p. 139]

    Google Scholar 

  • Rosswall, Thomas, Robert G. Woodmansee, and Paul G. Risser (eds.) 1988: Scales and Global Change: Spatial and Temporal Variability in Biosphere and Geospheric Processes, SCOPE 35, Wiley, New York, 355pp. [I7, p. 157]

    Google Scholar 

  • Rotberg, Robert I. and Theodore K. Rabb (eds.) 1981: Climate and History, Princeton Univ. Press, Princeton, New Jersey, 280pp. [P110, p. 194]

    Google Scholar 

  • Rotmans, Jan, Hans De Boois, and Robert J. Swart 1990: An integrated model for the assessment of the greenhouse effect: The Dutch approach, Clim. Change 16 (3), 331–356. [P19, p. 178]

    Google Scholar 

  • Rowland, F. S. and I. S. A. Isaksen (eds.) 1988: The Changing Atmosphere, Wiley, Chichester, 281pp. [C66, p. 131; XPT] Contains [C50, p. 128; X8, p. 204; P47, p. 183; C16, p. 123; C57, p. 129; T6, p. 106].

    Google Scholar 

  • Sagan, Carl and George Mullen 1972: Earth and Mars: Evolution of atmospheres and surface temperatures, Science 111 (4043), 52–56. [A31, p. 152; †A24, p. 151; TC]

    Google Scholar 

  • Saltzman, Barry and Kirk A. Maasch 1988: Carbon dioxide instability as a cause of the late Pleistocene ice age oscillations: Modeling the asymmetric response, Global Biogeochem. Cycles 2 (2), 177–185. [A12, p. 149; CT]

    Google Scholar 

  • Saltzmann, Barry 1990: Three basic problems of paleoclimatic modeling: A personal perspective and review, Clim. Dynam. 5 (2), 67–78. [A5, p. 148; T]

    Google Scholar 

  • Sanderson, George 1991: Climate change and human health, Our Planet 3 (3), 16–18. [I93, p. 172]

    Google Scholar 

  • Sansom, John 1989: Antarctic surface temperature time series, J. Clim. 2 (10), 1164–1172. [O9, p. 135]

    Google Scholar 

  • Santer, B. D., and T. M. L. Wigley 1990: Regional validation of means, variances, and spatial patterns in General Circulation Model control runs, J. Geophys. Res. 95 (D1), 829–850. [T37, p. 112]

    Google Scholar 

  • Sarmiento, J. L. and J. R. Toggweiler 1984: A new model of the role of the oceans in determining atmospheric P CO2, Nature 308 (5960), 621–624. [C29, p. 125]

    Google Scholar 

  • Sarmiento, J. L. 1991: Slowing the buildup of fossil CO2 in the atmosphere by iron fertilization: A comment, Global Biogeochem. Cycles 15 (1), 1–2. [†P55, p. 184]

    Google Scholar 

  • Sathaye, Jayant (ed.) 1991: Climate ChangeCountry Case Studies, special issue of Energy Policy 19 (10), 906–1010. [P77,p. 188]

  • Sathyendranath, Shubha, Albert D. Gouveia, Satish R. Shetye, P. Ravindran, and Trevor Platt 1991: Biological control of surface temperature in the Arabian Sea, Nature 349 (6304), 54–56. [X17, p. 206]

    Google Scholar 

  • Pivovarova, Z. I. 1977: Use of data from ground radiation observations to study atmospheric transparency, Soviet Meteorol. Hydrol. (trans. from Russian Meteorol. Gidrol.) 1977 (9), 19–25. [†O55, p. 143; X]

    Google Scholar 

  • Plantico, Marc S., Thomas R. Karl, George Kukla, and Joyce Gavin 1990: Is recent climate change across the United States related to rising levels of anthropogenic greenhouse gases?, J. Geophys. Res. 95 (D10), 16 617–16 637. [O47, p. 142]

    Google Scholar 

  • Plass, Gilbert 1956a: The carbon dioxide theory of climatic change, Tellus 8 (2), 140–154. [H31, p. 200; TA]

    Google Scholar 

  • Plass, G. N. 1956b: The influence of the 15μ carbon-dioxide band on the atmospheric infra-red cooling rate, Q. J. R. Meteor. Soc. 82 (353), 310–324. [H30, p. 200; T]

    Google Scholar 

  • Plass, Gilbert N. 1959: Carbon dioxide and climate, Sci. Am. 201 (1), 41–47. [H33, p. 201; NTAC]

    Google Scholar 

  • Pollack, James B., Owen B. Toon, Carl Sagan, Audrey Summers, Betty Baldwin, and Warren Van Camp 1976: Volcanic explosions and climatic change: A theoretical assessment, J. Geophys. Res. 81 (6), 1071–1083. [X14, p. 205]

    Google Scholar 

  • Potter, G. L., J. T. Kiehl, and R. D. Cess 1987: A clarification of certain issues related to the CO2-climate problem, Clim. Change 10 (1), 87–95. [T63, p. 117]

    Google Scholar 

  • Memoire sur la chaleur solaire, sur les pouvoirs rayonnants et absorbants de l'air atmospherique, et sur la temperature de l'espace, Compte Rendu des séances de l'Acad. des Sci. 7 (2), 24–65. Trans. as Memoir on the solar heat, on the radiating and absorbing powers of the atmospheric air, and on the temperature of space, in Richard Taylor (ed.) 1846, Scientific Memoirs 4, 44–91. [H10, p. 198; T]

  • Prather, Michael, Michael McElroy, Steven Wofsy, Gary Russell, and David Rind 1987: Chemistry of the global troposphere: Fluorocarbons as tracers of air motion, J. Geophys. Res. 92 (D6), 6579–6613. [C62, p. 130]

    Google Scholar 

  • Prather, Michael 1988: European sources of halocarbons and nitrous oxide, J. Atmos. Chem. 6 (4), 375–406. [C61,p. 130]

    Google Scholar 

  • Prentice, Katharine C. and Inez Y. Fung 1990: The sensitivity of terrestrial carbon storage to climate change, Nature 346 (6279) 48–51. [C10, p. 122; I]

    Google Scholar 

  • Prinn, R. G., P. G. Simmonds, R. A Rasmussen, R. D. Rosen, F. N. Alyea, C. A. Cardelino, A. J. Crawford, D. M. Cunnold, P. J. Fraser, and J. E. Lovelock 1983: The Atmospheric Lifetime Experiment. 1. Introduction, instrumentation, and overview, J. Geophys. Res. 88 (C 13), 8353–8367. [C65, p. 130]

    Google Scholar 

  • Prinn, Ronald G. and Bruce Fegley Jr. 1987: Bolide impacts, acid rain, and biospheric traumas at the Cretaceous-Tertiary boundary, Earth Planet. Sci. Lett. 83 (1/4), 1–15. [X36, p. 208]

    Google Scholar 

  • Prinn, R. G. 1988: How have the atmospheric concentrations of the halocarbons changed?, in Rowland and Isaksen 1988, 33–48. [C57, p. 129]

  • Prinn, R., D. Cunnold, R. Rasmussen, P. Simmonds, F. Alyea, A. Crawford, P. Fraser, and R. Rosen 1990: Atmospheric emissions and trends of nitrous oxide deduced from 10 years of ALE-GAGE data, J. Geophys. Res. 95 (D1 1), 18 369–18 385. [C59, p. 129]

    Google Scholar 

  • PSAC 1965: Restoring the Quality of Our Environment, Report of the Environmental Pollution Panel, (United States) President's Science Advisory Committee, White House, Washington, D.C., 317pp. See Appendix Y4, Atmospheric carbon dioxide, 111–133. [H39, p. 201; P]

    Google Scholar 

  • Quayle, Robert G., David R. Easterling, Thomas R. Karl, and Pamela Y. Hughes 1991: Effects of recent thermometer changes in the cooperative station network, Bull. Am. Meteorol. Soc. 72 (11), 1718–1723. [O67, p. 145]

    Google Scholar 

  • Raloff, J. 1989: Global smog: Newest greenhouse projection, Sci. News 135, 262–263. [I87, p. 171]

    Google Scholar 

  • Ramanathan, V. 1975: Greenhouse effect due to chlorofluorocarbons: Climatic implications, Science 190 (4209), 50–52. [H41, p. 202; K]

    Google Scholar 

  • Ramanathan, V. and J. A. Coakley Jr. 1978: Climate modeling through radiative-convective models, Rev. Geophys. Space Phys. 16 (4), 465–489. [T69, p. 118]

    Google Scholar 

  • Ramanathan, V. 1981: The role of ocean-atmosphere interactions in the CO2 climate problem, J. Atmos. Sci. 38 (5), 918–930. [T67, p. 118; †T68, p. 118; I]

    Google Scholar 

  • Ramanathan, V., R. J. Cicerone, H. B. Singh, and J. T. Kiehl 1985: Trace gas trends and their potential role in climate change, J. Geophys. Res. 90 (D3), 5547–5566. [T71, p. 118; C]

    Google Scholar 

  • Ramanathan, V., L. Callis, R. Cess, J. Hansen, I. Isaksen, W. Kuhn, A. Lacis, F. Luther, J. Mahlman, R. Reck, and M. Schlesinger 1987: Climate-chemical interactions and effects of changing atmospheric trace gases, Rev. Geophys. 25 (7), 1441–1482. [T2, p. 105; IC]

    Google Scholar 

  • Ramanathan, V. 1988a: The greenhouse theory of climate change: A test by an inadvertent global experiment, Science 240 (4850), 293–299. [T5, p. 106; C]

    Google Scholar 

  • Ramanathan, V. 1988b: The radiative and climatic consequences of the changing atmospheric composition of trace gases, in Rowland and Isaksen 1988, 159–186. [T6, p. 106; †T2, p. 105; I]

  • Ramanathan, V., Brace R. Barkstrom, and Edwin F. Harrison 1989a: Climate and the Earth's radiation budget, Phys. Today 42 (5), 22–32. [T57, p. 116]

    Google Scholar 

  • Ramanathan, V., R. D. Cess, E. F. Harrison, P. Minnis, B. R. Barkstrom, E. Ahmad, and D. Hartmann 1989b: Cloud-radiative forcing and climate: Results from the Earth Radiation Budget Experiment, Science 243 (4887), 57–63, cover. [M33, p. 221; †T58, p. 116; O]

    Google Scholar 

  • Ramanathan, V. and W. Collins 1991: Thermodynamic regulation of ocean warming by cirrus clouds deduced from observations of the 1987 El Niño, Nature 351 (6321), 27–32, cover. [O43, p. 141]

    Google Scholar 

  • Ramaswamy, V., M. D. Schwarzkopf, and K. P. Shine 1992: Radiative forcing of climate from halocarbon-induced global stratospheric ozone loss, Nature 355 (6363), 810–812. [T72, p. 118]

    Google Scholar 

  • Rasch, Philip J. and David, L. Williamson 1990: Computational aspects of moisture transport in global models of the atmosphere, Q. J. R. Meteor. Soc. 116, 1071–1090. [T53, p. 115]

    Google Scholar 

  • Rasch, Philip J. and David L. Williamson 1991: The sensitivity of a general circulation model climate to the moisture transport formulation, J. Geophys. Res. 96 (D7), 13 123–13 137. [T47, p. 114]

    Google Scholar 

  • Raval, A. and V. Ramanathan 1989: Observational determination of the greenhouse effect, Nature 342 (6251), 758–761. [M31, p. 221; O]

    Google Scholar 

  • Reilly, J. M., J. A. Edmonds, R. H. Gardner, and A. L. Brenkert 1987: Uncertainty analysis of the IEA/ORAU CO2 emissions model, Energy J. 8 (3), 1–29. [P92, p. 190]

    Google Scholar 

  • Repetto, Robert C. (ed.) 1985: The Global Possible: Resources, Development and the New Century, Yale Univ. Press, New Haven, 538pp. Contains [P25, p. 179].

    Google Scholar 

  • Revelle, R. and H. E. Suess 1957: Carbon dioxide exchange between atmosphere and ocean and the question of an increase of atmospheric CO2during past and present decades, Tellus 9 (1), 18–27. [H32, p. 200; CK]

    Google Scholar 

  • Revelle, Roger 1985: Introduction: The scientific history of carbon dioxide, in Sundquist and Broecker 1985a, 1–4. [H6, p. 197]

  • Reynolds, Richard W., Chris K. Folland, and David E. Parker 1989: Biases in satellite-derived sea-surface-temperature data, Nature 341 (6244), 728–731. [O70, p. 146; †O27, p. 138]

    Google Scholar 

  • Rind, David and Sergej Lebedeff (principal contributors) 1984: Potential climatic impacts of increasing atmospheric CO2 with emphasis on water availability and hydrology in the United States, Prepared by NASA GISS for the U.S. EPA, EPA April 1984, 96pp. [I50, p. 164]

  • Rind, D. 1986: The dynamics of warm and cold climates, J. Atmos. Sci. 43 (1), 3–24. [T18, p. 108]

    Google Scholar 

  • Rind, D. 1988a: The doubled CO2 climate and the sensitivity of the modeled hydrological cycle, J. Geophys. Res. 93 (D5), 5385–5412. [T15, p. 108; I]

    Google Scholar 

  • Rind, David, Arthur Rosenzweig, and Cynthia Rosenzweig 1988b: Modelling the future: A joint venture, Nature 334 (6182), 483–486. [P89, p. 190]

    Google Scholar 

  • Rind, D., R. Goldberg, and R. Ruedy 1989: Change in climate variability in the 21st century, Clim. Change 14 (1), 5–37. [T39, p. 113; I]

    Google Scholar 

  • Rind, D., R. Goldberg, J. Hansen, C. Rosenzweig, and R. Ruedy 1990a: Potential evapotransporation and the likelihood of future drought, J. Geophys. Res. 95 (D7), 9983–10004. [I36, p. 162]

    Google Scholar 

  • Rind, D., E.-W. Chiou, W. Chu, J. Larsen, S. Oltmans, J. Lerner, M. P. McCormick, and L. McMaster 1990b: Positive water vapour feedback in climate models confirmed by satellite data, Nature 349 (6309), 500–503. [O37, p. 140; T]

    Google Scholar 

  • Roberts, Leslie 1988: Is there life after climate change?, Science 242 (4881), 1010–1012. [I63, p. 167]

    Google Scholar 

  • Roberts, Leslie 1989a: Global warming: Blaming the sun, Science 246 (4933), 992–993. [†P22, p. 178; X]

    Google Scholar 

  • Roberts, Leslie 1989b: How fast can trees migrate?, Science 243 (4892), 735–737. [I61, p. 167]

    Google Scholar 

  • Robin, G. deQ. 1986: Changing the sea level: Projecting the rise in sea level caused by warming of the atmosphere, in Bolin et al. 1986a, 323–359. [I84, p. 171]

  • Robinson, P. J., and P. L. Finkelstein 1991: The development of impact-oriented climate scenarios, Bull. Am. Meteoml. Soc. 72 (4), 481–490. [I13, p. 158]

    Google Scholar 

  • Roemmich, Dean and Carl Wunsch 1984: Apparent changes in the climatic state of the deep North Atlantic Ocean, Nature 307 (5950), 447–450. [O32, p. 139]

    Google Scholar 

  • Root, Terry 1988: Environmental factors associated with avian distributional boundaries, J. Biogeogr. 15 (3), 489–505. [I64, p. 167]

    Google Scholar 

  • Rooth, Claes 1982: Hydrology and the ocean circulation, Prog. Oceanogr. 11, 131–149. [†T29, p. 111]

    Google Scholar 

  • Rosenberg, Norman J., William E. Easterling III, Pierre R. Crosson, and Joel Darmstadter (eds.) 1989: Greenhouse Warming: Abatement and Adaption, Resources for the Future, Washington, D.C., 182pp. [P6, p. 175; N] Contains [P59, p. 185].

    Google Scholar 

  • Rosenfeld, Arthur H. and David Hafenmeister 1988: Energy-efficient buildings, Sci. Am. 258 (4), 78–85. [P90, p. 190]

    Google Scholar 

  • Rosenzweig, Cynthia 1985: Potential CO2induced climate effects on North American wheatproducing regions, Clim. Change 7 (4), 367–389. [I31, p. 161]

    Google Scholar 

  • Rossow, William B. and Robert A. Schiffer 1991: ISCCP cloud data and products, Bull. Am. Meteorol. Soc. 72 (1), 2–20. [O35,p. 139]

    Google Scholar 

  • Rosswall, Thomas, Robert G. Woodmansee, and Paul G. Risser (eds.) 1988: Scales and Global Change: Spatial and Temporal Variability in Biosphere and Geospheric Processes, SCOPE 35, Wiley, New York, 355pp. [I7, p. 157]

    Google Scholar 

  • Rotberg, Robert I. and Theodore K. Rabb (eds.) 1981: Climate and History, Princeton Univ. Press, Princeton, New Jersey, 280pp. [P110, p. 194]

    Google Scholar 

  • Rotmans, Jan, Hans De Boois, and Robert J. Swart 1990: An integrated model for the assessment of the greenhouse effect: The Dutch approach, Clim. Change 16 (3), 331–356. [P19, p. 178]

    Google Scholar 

  • Rowland, F. S. and I. S. A. Isaksen (eds.) 1988: The Changing Atmosphere, Wiley, Chichester, 281pp. [C66, p. 131; XPT] Contains [C50, p. 128; X8, p. 204; P47, p. 183; C16, p. 123; C57, p. 129; T6, p. 106].

    Google Scholar 

  • Sagan, Carl and George Mullen 1972: Earth and Mars: Evolution of atmospheres and surface temperatures, Science 177 (4043), 52–56. [A31, p. 152; †A24, p. 151; TC]

    Google Scholar 

  • Saltzman, Barry and Kirk A. Maasch 1988: Carbon dioxide instability as a cause of the late Pleistocene ice age oscillations: Modeling the asymmetric response, Global Biogeochem. Cycles 2 (2), 177–185. [A12, p. 149; CT]

    Google Scholar 

  • Saltzmann, Barry 1990: Three basic problems of paleoclimatic modeling: A personal perspective and review, Clim. Dynam. 5 (2), 67–78. [A5, p. 148; T]

    Google Scholar 

  • Sanderson, George 1991: Climate change and human health, Our Planet 3 (3), 16–18. [I93, p. 172]

    Google Scholar 

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Handel, M.D., Risbey, J.S. An annotated bibliography on the greenhouse effect and climate change. Climatic Change 21, 97–255 (1992). https://doi.org/10.1007/BF00140914

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