Literature DB >> 21921914

Linking mantle plumes, large igneous provinces and environmental catastrophes.

Stephan V Sobolev1, Alexander V Sobolev, Dmitry V Kuzmin, Nadezhda A Krivolutskaya, Alexey G Petrunin, Nicholas T Arndt, Viktor A Radko, Yuri R Vasiliev.   

Abstract

Large igneous provinces (LIPs) are known for their rapid production of enormous volumes of magma (up to several million cubic kilometres in less than a million years), for marked thinning of the lithosphere, often ending with a continental break-up, and for their links to global environmental catastrophes. Despite the importance of LIPs, controversy surrounds even the basic idea that they form through melting in the heads of thermal mantle plumes. The Permo-Triassic Siberian Traps--the type example and the largest continental LIP--is located on thick cratonic lithosphere and was synchronous with the largest known mass-extinction event. However, there is no evidence of pre-magmatic uplift or of a large lithospheric stretching, as predicted above a plume head. Moreover, estimates of magmatic CO(2) degassing from the Siberian Traps are considered insufficient to trigger climatic crises, leading to the hypothesis that the release of thermogenic gases from the sediment pile caused the mass extinction. Here we present petrological evidence for a large amount (15 wt%) of dense recycled oceanic crust in the head of the plume and develop a thermomechanical model that predicts no pre-magmatic uplift and requires no lithospheric extension. The model implies extensive plume melting and heterogeneous erosion of the thick cratonic lithosphere over the course of a few hundred thousand years. The model suggests that massive degassing of CO(2) and HCl, mostly from the recycled crust in the plume head, could alone trigger a mass extinction and predicts it happening before the main volcanic phase, in agreement with stratigraphic and geochronological data for the Siberian Traps and other LIPs.

Entities:  

Year:  2011        PMID: 21921914     DOI: 10.1038/nature10385

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  9 in total

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Authors:  Alexander V Sobolev; Albrecht W Hofmann; Dmitry V Kuzmin; Gregory M Yaxley; Nicholas T Arndt; Sun-Lin Chung; Leonid V Danyushevsky; Tim Elliott; Frederick A Frey; Michael O Garcia; Andrey A Gurenko; Vadim S Kamenetsky; Andrew C Kerr; Nadezhda A Krivolutskaya; Vladimir V Matvienkov; Igor K Nikogosian; Alexander Rocholl; Ingvar A Sigurdsson; Nadezhda M Sushchevskaya; Mengist Teklay
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  9 in total
  22 in total

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Authors:  Darcy E Ogden; Norman H Sleep
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5.  Volume and rate of volcanic CO2 emissions governed the severity of past environmental crises.

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6.  Linking deep CO2 outgassing to cratonic destruction.

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8.  Low-buoyancy thermochemical plumes resolve controversy of classical mantle plume concept.

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9.  High water content in primitive continental flood basalts.

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Review 10.  Eutrophication, microbial-sulfate reduction and mass extinctions.

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