Hydrogen sulphide release to surface waters at the Precambrian/Cambrian boundary (original) (raw)
References
Brasier, M. Background to the Cambrian Explosion. J. Geol. Soc. Lond.149, 585–587 (1992) Article Google Scholar
Grotzinger, J., Bowring, S., Saylor, B. & Kaufman, A. Biostratigraphic and geochronologic constraints on early animal evolution. Science270, 598–604 (1995) ArticleADSCAS Google Scholar
Amthor, J. et al. Extinction of Cloudina and Namacalathus at the Precambrian-Cambrian boundary in Oman. Geology31, 431–434 (2003) ArticleADS Google Scholar
Siebert, C., Nägler, T., von Blanckenburg, F. & Kramers, J. Molybdenum isotope records as a potential new proxy for paleoceanography. Earth Planet. Sci. Lett.211, 159–171 (2003) ArticleADSCAS Google Scholar
Siebert, C., Kramers, J., Meisel, P. & Nägler, T. PGE, Re-Os and Mo isotope systematics in Archean and early Proterozoic sedimentary systems as proxies for redox conditions of the early Earth. Geochim. Cosmochim. Acta69, 1787–1801 (2005) ArticleADSCAS Google Scholar
Arnold, G., Anbar, A., Barling, J. & Lyons, T. Molybdenum isotope evidence for widespread anoxia in mid-Proterozoic oceans. Science304, 87–90 (2004) ArticleADSCAS Google Scholar
Schröder, S. & Grotzinger, J. Evidence for anoxia at the Ediacaran-Cambrian boundary: The record of redox sensitive trace elements and rare earth elements in Oman. J. Geol. Soc. Lond.164, 175–187 (2007) Article Google Scholar
Amthor, J., Ramseyer, K., Faulkner, T. & Lucas, P. Stratigraphy and sedimentology of a chert reservoir at the Precambrian-Cambrian Boundary: the Al Shomou silicilyte, South Oman Salt Basin. GeoArabia10, 89–122 (2005) Google Scholar
Lehmann, B. et al. Highly metalliferous carbonaceous shale and Early Cambrian seawater. Geology35, 403–406 (2007) ArticleADSCAS Google Scholar
Mao, J. et al. Re-Os dating of polymetallic Ni-Mo-PGE-Au mineralization in Lower Cambrian black shales of South China and its geological significance. Econ. Geol.97, 1051–1061 (2002) ArticleCAS Google Scholar
Cao, S., Ma, D. & Pan, J. Stable isotopic geochemistry of organic carbon and pyrite sulfur from the Early Cambrian black shales in Northwestern Hunan China. Prog. Nat. Sci.14, 181–187 (2004) ArticleCAS Google Scholar
Steiner, M., Wallis, E., Erdtmann, B.-D., Zhao, Y. & Yang, R. Submarine-hydrothermal exhalative ore layer in black shales from South China and associated fossils – insights into Lower Cambrian facies and bio-evolution. Palaeogeogr. Palaeoclimatol. Palaeoeocol169, 165–191 (2001) ArticleADS Google Scholar
Algeo, J. & Lyons, T. Mo-total organic carbon covariation in modern anoxic marine environments: Implications for analysis of paleoredox and paleohydrographic conditions. Paleoceanography21, 1–23 (2006) Article Google Scholar
Erickson, B. & Helz, G. Molybdenum(VI) speciation in sulfidic waters: Stability and lability of thiomolybdates. Geochim. Cosmochim. Acta64, 1149–1158 (2000) ArticleADSCAS Google Scholar
Banerjee, D., Schidlowski, M., Siebert, F. & Brasier, M. Geochemical changes across the Proterozoic-Cambrian transition in the Durmala phosphorite mine section, Mussoorie Hills, Garhwal Himalaya, India. Palaeogeogr. Palaeoclimatol. Palaeoecol.132, 183–194 (1997) Article Google Scholar
Pan, J., Ma, D. & Cao, S. Trace element geochemistry of the Lower Cambrian black rock series from northwestern Hunan, South China. Prog. Nat. Sci.14, 64–70 (2004) ArticleCAS Google Scholar
Siebert, C., McManus, J., Bice, A., Poulson, R. & Berelson, W. Molybdenum isotope signatures in continental margin marine sediments. Earth Planet. Sci. Lett.241, 723–733 (2006) ArticleADSCAS Google Scholar
Nägler, T., Siebert, C., Lüschen, H. & Böttcher, M. Sedimentary Mo isotope record across the Holocene fresh-brackish water transition of the Black Sea. Chem. Geol.219, 283–295 (2005) ArticleADS Google Scholar
Maloof, A., Schrag, D., Crowley, J. & Bowring, S. An expanded record of Early Cambrian carbon cycling from the Anti-Atlas Margin, Morocco. Can. J. Earth Sci.42, 2195–2216 (2005) ArticleADSCAS Google Scholar
Cowie, J., Brasier, M. (eds) The Precambrian-Cambrian Boundary (Clarendon, Oxford, UK, 1989) Google Scholar
Shen, Y., Schidlowski, M. & Chu, X. Biogeochemical approach to understanding phosphogenic events of the terminal Proterozoic to Cambrian. Palaeogeogr. Palaeoclimatol. Palaeoecol.158, 99–108 (2000) Article Google Scholar
Kump, L., Pavlov, A. & Arthur, M. Massive release of hydrogen sulfide to the surface ocean and atmosphere during intervals of ocean anoxia. Geology33, 397–400 (2005) ArticleADSCAS Google Scholar
Fike, D. A., Grotzinger, J. P., Pratt, L. M. & Summons, R. E. Oxidation of the Ediacaran Ocean. Nature444, 744–747 (2006) ArticleADSCAS Google Scholar
Mort, H. et al. Phosphorus and the role of productivity and nutrient recycling during oceanic anoxic event 2. Geology35, 483–486 (2007) ArticleADSCAS Google Scholar
Knoll, A. & Carroll, S. Early animal evolution: Emerging views from comparative biology and geology. Science284, 2129–2137 (1999) ArticleCAS Google Scholar
Twitchett, R. The paleoclimatology, paleoecology and paleoenvironmental analysis of mass extinction events. Palaeogeogr. Palaeoclimatol. Palaeoecol.131, 190–213 (2006) Article Google Scholar
Kirschvink, J. & Raub, T. A methane fuse for the Cambrian explosion: carbon cycles and true polar wander. C.R. Geosci.335, 65–78 (2003) ArticleADS Google Scholar
Knoll, A., Bambach, R., Payne, J., Pruss, S. & Fischer, W. Paleophysiology and end-Permian mass extinction. Earth Planet. Sci. Lett.256, 295–313 (2007) ArticleADSCAS Google Scholar