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Environmental Consequences of Nuclear Warfare*

Published online by Cambridge University Press:  24 August 2009

Arthur H. Westing
Affiliation:
Professor of Ecology, School of Natural Science, Hampshire College, Amherst, Massachusetts 01002, USA; Senior Research Fellow of SIPRI.
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Abstract

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Type
Guest Editorial
Copyright
Copyright © Foundation for Environmental Conservation 1982

References

REFERENCES

ACDA (1978). Assessment of Frequently Neglected Effects in Nuclear Attacks. US Arms Control & Disarmament Agency, Civil Defense Study Report No. 5, Washington, DC, USA: 21 + 7 pp.Google Scholar
Caldwell, M.M. (1981). Plant response to solar ultraviolet radiation. Pp. 170–97 in Encyclopedia of Plant Physiology, New Series, Springer-Verlag, New York, NY, USA: Vol. 12A.Google Scholar
Calkins, J. & Thordardottir, T. (1980). Ecological significance of solar UV radiation on aquatic organisms. Nature (London), 283, pp. 563–6.CrossRefGoogle Scholar
Crutzen, P.J. & Birks, J.W. (1982). Atmosphere after a nuclear war: Twilight at noon. Ambio, 11, pp. 114–25.Google Scholar
Faber, M. [& 7 others] (1979). Ultraviolet radiation. World Health Organization Environmental Health Criteria No. 14, Geneva, Switzerland: 110 pp.Google Scholar
Gerstl, S.A.W., Zardecki, A. & Wiser, H.L. (1981). Biologically damaging radiation amplified by ozone depletions. Nature (London), 294, pp. 352–4.CrossRefGoogle Scholar
Jokiel, P.L. (1980). Solar ultraviolet radiation and coral-reef epifauna. Science, 207, pp. 1069–71.CrossRefGoogle ScholarPubMed
Kruger, C.H. Jr & Setlow, R.B. (1982). Causes and Effects of Stratopheric Ozone Reduction: An Update. National Academy Press, Washington, DC, USA: xi + 339 pp.Google Scholar
Nier, A.O.C. [& 7 others] (1975). Long-term Worldwide Effects of Multiple Nuclear-weapons Detonations. National Academy of Sciences, Washington, DC, USA: 213 pp.Google Scholar
Thunborg, A.I. [& 11 others] (1981). Comprehensive Study on Nuclear Weapons. United Nations Centre for Disarmament Study Series No. 1, New York, NY, USA: vii + 172 pp.Google Scholar
Tukey, J. W. & Peters, M. S. (1979). Protection Against Depletion of Stratospheric Ozone by Chlorofluorocarbons. National Academy of Sciences, Washington, DC, USA: xvii + 392 pp.Google Scholar
Westing, A.H. (1977). Weapons of Mass Destruction and the Environment. Taylor & Francis, London, England, UK: xi + 95 pp.Google Scholar
Westing, A.H. (1978). Neutron bombs and the environment. Ambio, 7, pp. 93–7.Google Scholar
Westing, A.H. (1981). Environmental impact of nuclear warfare. Environmental Conservation, 8(4), pp. 269–73.CrossRefGoogle Scholar
Westing, A.H. (1982). Summary of unquantified effects of nuclear war on The Biosphere. Environmental Conservation, 9(2), p. 114.CrossRefGoogle Scholar
Worrest, R.C., Thomson, B.E. & Dyke, H. Van (1981 a). Impact of UV-B radiation upon estuarine microcosms. Photochemistry & Photobiology (London), 33, pp. 861–7.CrossRefGoogle Scholar
Worrest, R.C. [& 5 others] (1981 b). Sensitivity of marine phytoplankton to UV-B radiation: Impact upon a model ecosystem. Photochemistry & Photobiology (London), 33, pp. 223–7.CrossRefGoogle Scholar