Biogeochemical investigations on sediment core MD04-2876

Modern seawater profiles of oxygen, nitrate deficit, and nitrogen isotopes reveal the spatial decoupling of summer monsoon-related productivity and denitrification maxima in the Arabian Sea (AS) and raise the possibility that winter monsoon and/or ventilation play a crucial role in modulating denitrification in the northeastern AS, both today and through the past. A new high-resolution 50-ka record of d15N from the Pakistan margin is compared to five other denitrification records distributed across the AS. This regional comparison unveils the persistence of east-west heterogeneities in denitrification intensity across millennial-scale climate shifts and throughout the Holocene. The oxygen minimum zone (OMZ) experienced east-west swings across Termination I and throughout the Holocene. Probable causes are (1) changes in ventilation due to millennial-scale variations in Antarctic Intermediate Water formation and (2) postglacial reorganization of intermediate circulation in the northeastern AS following sea level rise. Whereas denitrification in the world's OMZs, including the western AS, gradually declined following the deglacial maximum (10-9 ka BP), the northeastern AS record clearly witnesses increasing denitrification from about 8 ka BP. This would have impacted the global Holocene climate through sustained N2O production and marine nitrogen loss.

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Cite this as

Pichevin, Laetitia, Bard, Edouard, Martinez, Philippe, Billy, Isabelle (2007). Dataset: Biogeochemical investigations on sediment core MD04-2876. https://doi.org/10.1594/PANGAEA.727157

DOI retrieved: 2007

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.727157
Author Pichevin, Laetitia
Given Name Laetitia
Family Name Pichevin
More Authors
Bard, Edouard
Martinez, Philippe
Billy, Isabelle
Source Creation 2007
Publication Year 2007
Resource Type application/zip - filename: Pichevin_2007
Subject Areas
Name: Atmosphere

Name: Ecology

Name: Lithosphere

Related Identifiers
Title: Evidence of ventilation changes in the Arabian Sea during the late Quaternary: Implication for denitrification and nitrous oxide emission
Identifier: https://doi.org/10.1029/2006GB002852
Type: DOI
Relation: IsSupplementTo
Year: 2007
Source: Global Biogeochemical Cycles
Authors: Pichevin Laetitia , Bard Edouard , Martinez Philippe , Billy Isabelle .