4.6 Article

Massive volcanism at the Permian-Triassic boundary and its impact on the isotopic composition of the ocean and atmosphere

期刊

JOURNAL OF ASIAN EARTH SCIENCES
卷 37, 期 4, 页码 293-311

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jseaes.2009.08.012

关键词

Carbon isotopes; Oxygen isotopes; Permian-Triassic boundary; Guryul Ravine; Abadeh; Pufels/Bula/Bulla; Volcanism

资金

  1. Deutsche Akademie der Naturforscher Leopoldina (BMBF-LPD) [9901/838, 9901/8-116]
  2. CSIR (India)
  3. Freie Universitat Berlin
  4. Deutsche Forschungsgemeinschaft
  5. Geological Survey of Iran in Teheran and Tabris

向作者/读者索取更多资源

Bulk carbonate and conodonts from three Permian-Triassic (P-T) boundary sections at Guryul Ravine (Kashmir), Abadeh (central Iran) and Pufels/Bola/Bulla (Italy) were investigated for delta C-13 and delta O-18. Carbon isotope data highlight environmental changes across the P-T boundary and show the following features: (1) a gradual decrease of similar to 4 parts per thousand to more than 7 parts per thousand starting in the Late Permian (Changhsingian) C. bachmanni Zone, with two superimposed transient positive excursions in the C. meishanensis-H. praeparvus and the M. ultima-S. ? mostleri Zones; (2) two delta C-13 minima, the first at the P-T boundary and a higher, occasionally double-minimum in the lower I. isarcica Zone. It is unlikely that the short-lived phenomena, such as a breakdown in biological productivity due to catastrophic mass extinction, a sudden release of oceanic methane hydrates or meteorite impact(s), could have been the main control on the latest Permian carbon isotope curve because of its prolonged (0.5 Ma) duration, gradual decrease and the existence of a >1 parts per thousand positive shift at the main extinction horizon. The P-T boundary delta C-13 trend matches in time and magnitude the eruption of the Siberian Traps and other contemporaneous volcanism, suggesting that volcanogenic effects, such as outgassed CO2 from volcanism and, even more, thermal metamorphism of organic-rich sediments, as the likely cause of the negative trend. (C) 2009 Elsevier Ltd. All rights reserved.

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