4.7 Article

δ13C evidence that high primary productivity delayed recovery from end-Permian mass extinction

Journal

EARTH AND PLANETARY SCIENCE LETTERS
Volume 302, Issue 3-4, Pages 378-384

Publisher

ELSEVIER
DOI: 10.1016/j.epsl.2010.12.033

Keywords

Permian-Triassic boundary; extinction; biotic recovery; stable carbon isotopes; anoxia; euxinia

Funding

  1. Agouron Institute
  2. NSF [EAR-0807377-007]
  3. ACS PRF [45329-G8]
  4. National Geographic Society [8102-06]

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Euxinia was widespread during and after the end-Permian mass extinction and is commonly cited as an explanation for delayed biotic recovery during Early Triassic time. This anoxic, sulfidic episode has been ascribed to both low- and high-productivity states in the marine water column, leaving the causes of euxinia and the mechanisms underlying delayed recovery poorly understood. Here we use isotopic analysis to examine the changing chemical structure of the water column through the recovery interval and thereby better constrain paleoproductivity. The delta C-13 of limestones from 5 stratigraphic sections in south China displays a negative gradient of approximately 4 parts per thousand from shallow-to-deep water facies within the Lower Triassic. This intense gradient declines within Spathian and lowermost Middle Triassic strata, coincident with accelerated biotic recovery and carbon cycle stabilization. Model simulations show that high nutrient levels and a vigorous biological pump are required to sustain such a large gradient in delta C-13, indicating that Early Triassic ocean anoxia and delayed recovery of benthic animal ecosystems resulted from too much productivity rather than too little. (c) 2010 Elsevier B.V. All rights reserved.

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