Box models for the evolution of atmospheric oxygen: an update

Palaeogeography, Palaeoclimatology, Palaeoecology - Tập 97 - Trang 125-131 - 1991
James F. Kasting1
1Department of Geosciences, The Pennsylvania State University, University Park, PA 16802, USA

Tài liệu tham khảo

Berkner, 1965, On the origin and rise of oxygen concentration in the Earth's atmosphere, J. Atmos. Sci., 22, 225, 10.1175/1520-0469(1965)022<0225:OTOARO>2.0.CO;2 Berresheim, 1983, The contribution of volcanoes to the global atmospheric sulfur budget, J. Geophys. Res., 88, 3732, 10.1029/JC088iC06p03732 Beukes, N.J. and Klein, C., in press. Models for iron-formation deposition. In: J.W. Schopf and C. Klein (Editors), The Proterozoic Biosphere. A Multidisciplinary Study, Cambridge University Press, New York. Braterman, 1983, Photooxidation of hydrated Fe+2—significance for banded iron formations, Nature, 303, 163, 10.1038/303163a0 Cloud, 1972, A working model of the primitive Earth, Am. J. Sci., 272, 537, 10.2475/ajs.272.6.537 Grandstaff, 1986, Chemistry and mineralogy of Precambrian paleosols at the base of the Dominion and Pongola Groups (Transvaal, South Africa), Precamb. Res., 32, 97, 10.1016/0301-9268(86)90003-3 Holland, 1973, The oceans: A possible source of iron in iron-formations, Econ. Geol., 68, 1169, 10.2113/gsecongeo.68.7.1169 Holland, 1978, The Chemistry of the Atmosphere and Oceans, 351 Holland, 1984, The Chemical Evolution of the Atmosphere and Oceans, 582 Holland, 1990, A paleoweathering profile from Griqualand West, South Africa: Evidence for a dramatic rise in atmospheric oxygen between 2.2 and 1.9 B.Y.B.P., Am. J. Sci., 290-A, 1 Holland, 1989, The Flin Flon paleosol and the composition of the atmosphere 1.8 BYBP, Am. J. Sci., 289, 362, 10.2475/ajs.289.4.362 Jones, 1991, Fossil charcoal, its recognition and paleoatmospheric significance, Global Planet Change, 10.1016/0921-8181(91)90125-G Kasting, 1979 Kasting, 1987, Theoretical constraints on oxygen and carbon dioxide concentrations in the Precambrian atmosphere, Precamb. Res., 34, 205, 10.1016/0301-9268(87)90001-5 Kasting, 1981, Limits on oxygen concentration in the prebiological atmosphere and the rate of abiotic fixation of nitrogen, J. Geophys. Res., 86, 1147, 10.1029/JC086iC02p01147 Kasting, 1983, Photochemistry of methane in the Earth's early atmosphere, Precamb. Res., 20, 121, 10.1016/0301-9268(83)90069-4 Kasting, 1984, Effects of high CO2 levels on surface temperature and atmospheric oxidation state of the early earth, J. Atmos. Chem., 1, 403, 10.1007/BF00053803 Kasting, 1985, Oxidant abundances in rainwater and the evolution of atmospheric oxygen, J. Geophys. Res., 90, 10,497, 10.1029/JD090iD06p10497 Kasting, 1989, Sulfur, ultraviolet radiation and the early evolution of life, Origins Life, 19, 95, 10.1007/BF01808144 Kasting, J. F., Holland, H. D. and Kump, L. R., in press. Atmospheric evolution: The rise of oxygen. In: J.W. Schopf and C. Klein (Editors), The Proterozoic Biosphere: A Multidisciplinary Study, Cambridge University Press, New York. Knoll, 1986, Secular variation in carbon isotope ratios from Upper Proterozoic successions of Svalbard and East Greenland, Nature, 321, 832, 10.1038/321832a0 Lovelock, 1988, The Ages of Gaia, 252 Lowe, D., in press. Other geological indicators. In: J. W. Schopf and C. Klein (Editors), The Proterozoic Biosphere: A Multidisciplinary Study, Cambridge University Press, New York. Margulis, 1976, Reassessment of roles of oxygen and ultraviolet light in Precambrian evolution, Nature, 264, 620, 10.1038/264620a0 Muller, 1979, Productivity, sedimentation rate and sedimentary organic matter in the oceans—I. Organic carbon preservation, Deep-Sea Res., 26A, 1347, 10.1016/0198-0149(79)90003-7 Nursall, 1959, Oxygen as a prerequisite to the origin of the metazoa, Nature, 183, 1170, 10.1038/1831170b0 Rambler, 1980, Bacterial resistance to ultraviolet irradiation under anaerobiosis: Implications for pre-Phanerozoic evolution, Science, 210, 638, 10.1126/science.7001626 Runnegar, 1982, Oxygen requirements, biology and phylogenetic significance of the late Precambrian worm Dickinsonia and the evolution of the burrowing habit, Alcheringa, 6, 223, 10.1080/03115518208565415 Runnegar, 1991, Precambrian oxygen levels estimated from the biochemistry and physiology of early eukaryotes, Global Planet. Change, 10.1016/0921-8181(91)90131-F Schidlowski, 1988, A 3,800-million-year isotopic record of life from carbon in sedimentary rocks, Nature, 333, 313, 10.1038/333313a0 Schopf, 1983, Evolution of Earth's earliest ecosystem: recent progress and unsolved problems, 361 Towe, 1981, Environmental conditions surrounding the origin and early Archean evolution of life: a hypothesis, Precamb. Res., 16, 1, 10.1016/0301-9268(81)90002-4 Towe, 1983, Precambrian atmospheric oxygen and banded iron formations: a delayed ocean model, Precamb. Res., 20, 161, 10.1016/0301-9268(83)90071-2 Towe, 1990, Aerobic respiration in the Archaean?, Nature, 348, 54, 10.1038/348054a0 Veizer, 1985, Basement and sedimentary recycling-2: Time dimension to global tectonics, J. Geol., 93, 625, 10.1086/628992 Walker, 1977 Walker, 1985, Iron and sulfur in the pre-biologic ocean, Precamb. Res., 28, 205, 10.1016/0301-9268(85)90031-2 Walker, 1983, Environmental evolution of the Archean-Early Proterozoic Earth, 260