Boosted microbial productivity during the Toarcian Oceanic Anoxic Event in the Paris Basin, France: new evidence from organic geochemistry and petrographic analysis

Author:

Fonseca Carolina1ORCID,Mendonça Filho João Graciano2ORCID,Lézin Carine1,Baudin François3ORCID,de Oliveira António Donizeti2,Souza Jaqueline Torres2,Duarte Luís V.4ORCID

Affiliation:

1. Géosciences Environnement Toulouse, Université de Toulouse, CNES, CNRS, IRD, UPS, 14 avenue Édouard Belin, F-31400 Toulouse, France

2. Laboratório de Palinofácies e Fácies Orgânica (LAFO), Departamento de Geologia, Instituto de Geociências, Universidade Federal do Rio de Janeiro, Av. Athos da Silveira, 274, prédio do CCMN, sala J1020, Campus Ilha do Fundão, Cidade Universitária, CEP 21.949-900, Rio de Janeiro, RJ, Brazil

3. Sorbonne Université, CNRS, ISTeP UMR 7193, 4 Place Jussieu, 75005 Paris, France

4. University of Coimbra, MARE - Marine and Environmental Sciences Centre, Faculty of Sciences and Technology, Department of Earth Sciences, Rua Sílvio Lima, 3030-790 Coimbra, Portugal

Abstract

AbstractThe Toarcian Oceanic Anoxic Event (T-OAE) is marked by major palaeoenvironmental and palaeoceanographical changes on a global scale, associated with a severe disturbance of the global carbon cycle and organic-rich facies deposition. Here, a multiproxy approach (petrographic and geochemical techniques) was applied to the study of the organic content of the T-OAE of the Paris Basin, whose phytoplanktonic origin has been previously inferred by its geochemical signature.The top of the tenuicostatum Zone is characterized by palynomorphs and marine phytoplankton-derived amorphous organic matter (AOM), representing a proximal marine environment with emplacement of euxinic conditions at the top (total organic carbon/sulfur content and increase in AOM). At the base of the serpentinum Zone the proliferation of bacterial biomass begins, with phytoplankton playing a secondary role. This indicates the development of stagnant and restrictive conditions in a proximal environment, with water column stratification (neohop-13(18)-ene). The majority of the serpentinum Zone is dominated by bacterial biomass, suggesting a marine environment with bottom-water stagnation, possibly related to basin palaeogeomorphology and circulation patterns, with episodic euxinia.This therefore suggests that the T-OAE organic fraction is dominated by bacterial biomass, not phytoplankton, showing the importance of an integrated approach to the determination of the organic facies.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

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