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Original Articles

210Po, an atmospheric tracer of long-range transport of volcanic plumes

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Pages 429-438 | Received 19 Feb 1996, Accepted 03 Mar 1997, Published online: 18 Jan 2017

References

  • Balkanski, Y. J., Jacob, D. J. and Gardner, G. M. 1993. Transport and residence times of continental aerosols inferred from a global three-dimensional simulation of 2.10Pb. J. Geophys. Res. 98, 20573–20586.
  • Bennet, J. J., Krishnaswami, S., Turekian, K. K., Melson, M. G. and Hopson, C. A. 1982. The Uranium and Thorium decay series nuclides in Mount St. Helens effusives. Earth Planet. Sci. Lett. 60, 60–69
  • Burton, R. D. and Stewart, N. G. 1960. Use of long-lived natural radioactivity as an atmospheric tracer. Nature 186, 584–589.
  • Carvalho, F. P. 1995. Origins and concentrations of 222Rn, 210Bi and 210Po in the surface air at Lisbon, Portugal, at the Atlantic edge of the European Continental Landmass. Atmospheric Environment 29, 1809–1819.
  • Flores, J. F. and Balagot, V. F. 1969. Climate of Philip-pines. Climates of Northern and Eastern Asia, in World Survey of Climatology, vol. 8, (ed. Arakawa, H.). Elsev-ier, Amsterdam, 159–213.
  • Hao, W. M., Liu, M. H. and Crutzen, P. J. 1990. Estimates of annual and regional releases of CO2 and other trace gases to the atmosphere from fires in the tropics, based on the FAO statistics for the period 1975-1980. Fire in the tropical biota: ecosystem processes and global challenges, (ed. Goldammer, J. C.). Ecological studies 84, Springer-Verlag, Berlin-Heidelberg, 440–462.
  • Hastenrath, S. 1994. Climate dynamics of the tropics. Kluwer Academic Publishers, Dordrecht, 182–197.
  • Heimann, M. and Keeling, C. D. 1989. A three-dimensional model of atmospheric CO2 transport based on observed winds (2). model description and simulated tracer experiments. Geophys. Mono. 55, 237–275.
  • Kahl, J. D., 1993. A cautionary note on the use of air trajectories in interpreting atmospheric chemistry measurements. Atmospheric Environment 27, 3037–3038.
  • Lambert, G., Polian, G., Sanak, J., Ardouin, B., Jegou, A. and Le Roulley, J. C. 1982. Cycle du radon et de ses descendants: application a l'étude des échanges troposphere-stratosphere. Ann. Geophys. 38, 497–531.
  • Le Cloarec, M. F., Ardouin, B., Cachier, H., Liousse, C., Neveu, S. and Nho, E. Y. 1995. 21°P0 in savanna burning plumes. J. Atmos. Chem. 22, 111–122.
  • Le Cloarec, M. F., Pennisi, M., Corazza, E. and Lambert, G. 1994. Origin of fumarolic fluids emitted from a non-erupting volcano: radionuclide constraints at Vul-cano (Aeolian Islands, Italy). Geochim. Cosmochim. Acta 58, 4401–4410.
  • Le Guern, F., Le Roulley, J. C. and Lambert, G. 1982. Condensation du Polonium dans les gaz volcaniques. Compte Rendu Acad. Sci. Paris 294, 887–890.
  • Marenco, A. and Fontan, J. 1972. Sources of polonium 210 within the troposphere. Tellus 24, 38–46.
  • Moore, H. E., Poet, S. E. and Martell, E. A. 1980. Size distribution and origin of lead-210, bismuth-210 and polonium-210 on airborne particles in the troposphere. The natural radiation environment (Ill), (ed. Gesell T. F. and Lowder W. M.). Technical Information Center, U. S. Department of Energy, Springfield, Vir-ginia. 281–293.
  • Nho, E. Y., Le Cloarec, M. F., Ardouin, B. and Ramonet, M. 1996a. Origins of 210Po in the atmosphere at Lamto, Ivory Coast: Biomass burning and Saharan dusts. Atmospheric Environment 30, 3705–3714.
  • Nho, E. Y., Le Cloarec, M. F., Ardouin, B. and Tjetjep, W. S. 1996b. Source strength assessment of volcanic trace elements emitted from the Indonesian arc. J. Vol-cano!. Geotherm. Res. 74, 121–129.
  • Polian, G. and Lambert, G. 1979. Radon daughters and sulfur output from Erebus volcano, Antarctica. J. Vol-cano!. Geotherm. Res. 6, 125–137.
  • Ramonet, M. 1994. Variabilite du CO2 atmospherique en regions Australes: comparaison modelelmesures. These de Doctorat, Université de Paris 7, France.
  • Ramonet, M., Le Roulley, J. C., Bousquet, P. and Mon-fray, P. 1996. Radon-222 measurements during the TROPOZ II campaign and comparison with a global atmospheric transport model. J. Atmos. Chem. 23, 107–136.
  • Simkin, T., Siebert, L., McClelland, L., Bridge, D., Newhall, C. and Latter, J. H. 1981. Volcanoes of the world. Hutchinson Ross Publishing Co., Strouds-burg, 50–65.
  • Smithsonian Institution. 1992a. Bull, of the Global Vol-canism Network 17, 10.
  • Smithsonian Institution. 1992b. Bull, of the Global Vol-canism Network 17, 4.
  • Turekian, K. K. and Cochran, J. K. 1981.21°Pb in surface air at Enewetak and the Asian dust flux to the Pacific. Nature 292, 522–524.
  • Turekian, K. K., Graustein, W. C. and Cochran, J. K. 1989. Lead-210 in the SEREX Program: an Aerosol Tracer Across the Pacific. In: Chemical oceanography, vol. 10, (ed. Riley, J. P. and Chester, R.). Academic Press, London, 51–81.
  • Turekian, K. K., Nozaki, Y. and Benninger, L. K. 1977. Geochemistry of atmospheric radon and radon prod-ucts. Annu. Rev. Earth Planet. Sci. 5, 227–255.
  • Twomey, S. 1977. Atmospheric aerosols. Elsevier, Amster-dam, 149–153.
  • Volcanological Society of Japan, 1994. Bull, of volcanic eruptions 31, 48–49.
  • Wilkening, M. H., Clements, W. E. and Stanley, D. 1972. Radon 222 flux measurements in widely separated regions. In: The natural radiation environment (II). U. S. Energy and Research Development Administration, Oak Ridge, 713–730.
  • Winkler, R., Holtz, H. and Chatterjee, B. 1981. Analysis of 210Pb and 210Pb concentrations in surface air by an alpha spectrometric method. Health Phys. 41,495–503.