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稳定同位素记录与环境、生命演化中的重大事件 被引量:4

Stable Isotopic Records vs.Important Events in Life Evolution and the Concurrent Environment
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摘要 自从地球诞生以来经历了许多重大事件:早期生命的出现、大气氧化事件(Atmospheric oxygenation)、雪球地球及多次生物绝灭与复苏事件。稳定同位素记录在古环境和生命演化研究中具有重要意义,在记录环境变化和生命演化的重大事件中发挥着重大作用:碳同位素的分馏记录了最早生命的开始,硫同位素的非质量相关分馏(Indepenclent mass fractionation of sulphur isotopes)记录了大气中氧含量的重大变化,而在显生宙的几次重大生物灭绝事件中,均有碳同位素的负向漂移。 The Earth had experienced many events since it was formed, which include the occurrence of the earliest life, atmospheric oxygenation, the snowball Earth and several times of mass extinction and rejuvenation. Stable isotopic analysis of certain elements in the Earth can track the life evolution and concurrent environmental change. It provides an ideal tool for geological event investigation. Carbon isotopic fractionation records the beginning of earlier life, while independent mass fractionation of sulphur isotopes records the dramatic changes of the oxygen content in the air. Whenever the mass extinctions occur in the Phanerozoic, carbon isotopic values always show a negative shift.
出处 《地质论评》 CAS CSCD 北大核心 2008年第2期225-231,共7页 Geological Review
基金 “长江学者和创新团队发展计划”项目(批准号IRT0546,重大地质突变期生物与环境协同演化)的成果
关键词 碳同位素 硫同位素 最早生命 大气氧化事件 生物绝灭 carbon isotopes sulphur isotopes earlier life atmospheric oxygenation mass extinctions
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  • 1黄思静.上扬子地台区晚古生代海相碳酸盐岩的碳、锶同位素研究[J].地质学报,1997,71(1):45-53. 被引量:138
  • 2黄思静.上扬子二叠系─三叠系初海相碳酸盐岩的碳同位素组成与生物绝灭事件[J].地球化学,1994,23(1):60-68. 被引量:70
  • 3Alvarez L W, Alvarez W, Asaro F and Michel H V. 1980.Extraterrestrial cause for the Cretaceous Tertiary extinction. Science, 208: 1095-1108. 被引量:1
  • 4Arthur M A, Dean W E, Schlanger S O. 1985. Variations in the global carbon cycle during the Cretaceous related to climate, volcanism, and changes in atmospheric CO2. Am. Geophys. Union Monogr.,32: 504-529. 被引量:1
  • 5Banerjee N R, Fumes H, Muehlenbachs K, Staudige H, de Wit M.2006. Preservation of -3.4-3. 5 Ga microbial biomarkers in pillow lavas and hyaloclastites from the Barberton Greenstone Belt, South Africa. Earth and Planetary Science, 241:707-722. 被引量:1
  • 6Barker A J. Fallick A E. 1989. Evidence from Lewisian limestones for isotopically heavy carbon in 2000 million year-old-sea water.Nature, 337:352-354. 被引量:1
  • 7Bekker A, Holland H D, Wang P L, Rumble D, Stein H J, Hannah J L, Coetzee L L, Beukes N J. 2004. Dating the rise of atmospheric oxygen. Nature, 427: 117-120. 被引量:1
  • 8Beukes N J, Klein C. 1990. Geochemistry and sedimentology of a facies transition-from microbanded to granular iron-formation-in the early Proterozoic Transvaal Supergroup, South Africa. Precambr. Res.,47:99-139. 被引量:1
  • 9Beukes N J, Klein C. 1992. Terminal Proterozoic reorganization of biogeochemical cycles. In: Schopf JW, Klein C. eds. The Proterozoic Biosphere. Cambridge, UK: Cambridge Univ. Press, 147-151. 被引量:1
  • 10Blair N, Munoz E, Olson J, Des Marais D J. 1985. Carbon isotopic fractionation in heterotrophic microbial metabolism. Appl. Microbial. , 50: 996-1001. 被引量:1

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