Mid/late pleistocene paleoceanography of the coral sea region reconstructed from paired δ<sup>18</sup>O - Mg/Ca measurements - Archive ouverte HAL Accéder directement au contenu
Communication Dans Un Congrès Année : 2009

Mid/late pleistocene paleoceanography of the coral sea region reconstructed from paired δ18O - Mg/Ca measurements

Résumé

The onset of widespread barrier reef development in the Coral Sea region is thought to have occurred during the period 400-1000ka. Whether the timing of reef inception was limited by either global or regional climatic changes remains unresolved. Here we present a new set of paired down-core foraminiferal δ18Oplanktic - Mg/Ca measurements from the southeastern boundary of the modern West Pacific Warm Pool (core MD06-3018, 2470m water depth, 23°S, 166°E in the New Caledonia Trough) that span the past 1000ka at ~5kyr resolution. If it is assumed that glacial-interglacial variations in sea surface salinity only exert a negligible effect on Mg/Ca ratios then past δ18Oseawater values may be calculated from the paired δ18Oplanktic - Mg/Ca measurements. The component of δ18Oseawater variability not attributable to global ice volume changes must originate from changes in the regional hydrological cycle. The MD06-3018 records suggest that prior to MIS 15 (~600ka) interglacial conditions were in general both cooler and fresher (light δ18Oseawater values) than those before it. Such a transition from relatively cool and fresh to relatively warm and salty interglacial stage surface waters may have been caused by a southward expansion of the influence of West Pacific Warm Pool waters and is consistent with a climatic control on reef inception.
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Dates et versions

hal-00910412 , version 1 (28-11-2013)

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T. Russon, Mary Elliot, Thierry Corrège, P. de Deckker, Guy Cabioch, et al.. Mid/late pleistocene paleoceanography of the coral sea region reconstructed from paired δ18O - Mg/Ca measurements. American Geophysical Union, Fall Meeting 2009, Dec 2009, San Francisco, United States. pp.1320. ⟨hal-00910412⟩
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