Carbon released by sill intrusion into young sediments measured through scientific drilling - Archive ouverte HAL
Journal Articles Geology Year : 2023

Carbon released by sill intrusion into young sediments measured through scientific drilling

Ivano W. Aiello
  • Function : Author
Jeanine L. Ash
  • Function : Author
Diana P. Bojanova
  • Function : Author
Christophe Y. Galerne
  • Function : Author
Verena B. Heuer
  • Function : Author
Shijun Jiang
  • Function : Author
Myriam A.C. Kars
  • Function : Author
S. Khogenkumar Singh
  • Function : Author
Ji-Hoon Kim
  • Function : Author
Louise M.T. Koornneef
  • Function : Author
Kathlenn M. Marsaglia
  • Function : Author
Nicolette R. Meyer
  • Function : Author
Raquel Negrete-Aranda
  • Function : Author
Florian Neumann
  • Function : Author
Lucie C. Pastor
  • Function : Author
Manet E. Pena-Salinas
  • Function : Author
Ligia L. Perez Cruz
  • Function : Author
John A. Sarao
  • Function : Author
Florian Schubert
  • Function : Author
Joann M. Stock
  • Function : Author
Laurent M.A.A. Toffin
  • Function : Author
Wei Xie
  • Function : Author
Toshiro Yamanaka
  • Function : Author
Guangchao Zhuang
  • Function : Author
Rodrigo Perez Ortega
  • Function : Author

Abstract

The intrusion of igneous sills into organic-rich sediments accompanies the emplacement of igneous provinces, continental rifting, and sedimented seafloor spreading. Heat from intruding sills in these settings alters sedimentary organic carbon, releasing methane and other gasses. Recent studies hypothesize that carbon released by this mechanism impacts global climate, particularly during large igneous province emplacements. However, the direct impacts of sill intrusion, including carbon release, remain insufficiently quantified. Here, we present results from International Ocean Discovery Program (IODP) Expedition 385 comparing drill-core and wireline measurements from correlative sedimentary strata at adjacent sites cored in Guaymas Basin, Gulf of California, one altered by a recently intruded sill and one unaffected. We estimate 3.30 Mt of carbon were released due to this sill intrusion, representing an order of magnitude less carbon than inferences from outcrops and modeling would predict. This attenuated carbon release can be attributed to shallow intrusion and the high heat capacity of young, high-porosity sediments. Shallow intrusion also impacts sub-seafloor carbon cycling by disrupting advective fluxes, and it compacts underlying sediments, increasing potential carbon release in response to subsequent intrusions.
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hal-04000270 , version 1 (22-02-2023)

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Daniel Lizarralde, Andreas Teske, Tobias W Höfig, Antonio González-Fernández, Ivano W. Aiello, et al.. Carbon released by sill intrusion into young sediments measured through scientific drilling. Geology, 2023, 20 (20), ⟨10.1130/G50665.1⟩. ⟨hal-04000270⟩
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