HR: 11:50h
AN: T12A-07 INVITED [Abstracts]
TI: Paleoenvironments of the Jurassic and Cretaceous Oceans: Selected Highlights
AU: * Ogg, J G
EM: jogg@purdue.edu
AF: Purdue University, Dept of Earth and Atmospheric Sciences, West Lafayette, IN 47907,
AB:
There are many themes contributing to the sedimentation history of the Mesozoic oceans. This overview briefly
examines the roles of the carbonate compensation depth (CCD) and the associated levels of atmospheric
carbon dioxide, of the evolution of marine calcareous microplankton, of major transgressive and regressive
trends, and of super-plume eruptions.
Initiation of Atlantic seafloor spreading in the Middle Jurassic coincided with an elevated carbonate
compensation depth (CCD) in the Pacific-Tethys mega-ocean. Organic-rich sediments that would become the oil
wealth of regions from Saudi Arabia to the North Sea were deposited during a continued rise in CCD during the
Oxfordian-early Kimmeridgian, which suggests a possible increase in carbon dioxide release by oceanic volcanic
activity. Deep-sea deposits in near-equatorial settings are dominated by siliceous shales or cherts, which reflect
the productivity of siliceous microfossils in the tropical surface waters.
The end-Jurassic explosion in productivity by calcareous microplankton contributed to the lowering of the CCD
and onset of the chalk ("creta") deposits that characterize the Tithonian and lower Cretaceous in all ocean basins.
During the mid-Cretaceous, the eruption of enormous Pacific igneous provinces (Ontong Java Plateau and
coeval edifices) increased carbon dioxide levels. The resulting rise in CCD terminated chalk deposition in the
deep sea. The excess carbon was progressively removed in widespread black-shale deposits in the Atlantic
basins and other regions – another major episode of oil source rock. A major long-term transgression during
middle and late Cretaceous was accompanied by extensive chalk deposition on continental shelves and
seaways while the oceanic CCD remained elevated. Pacific guyots document major oscillations (sequences) of
global sea level superimposed on this broad highstand. The Cretaceous closed with a progressive sea-level
regression and lowering of the CCD that again enabled widespread carbonate deposition in the deep sea.
DE: 1051 Sedimentary geochemistry
DE: 3036 Ocean drilling
DE: 4900 PALEOCEANOGRAPHY (0473, 3344)
DE: 9355 Pacific Ocean
DE: 9609 Mesozoic
SC: Tectonophysics [T]
MN: 2007 Fall Meeting