HR: 1340h
AN: PP13B-1264 [Abstracts]
TI: A Dynamic Explanation For The Origin Of The Western Mediterranean Organic Rich Layers
AU: * Rogerson, M
EM: m.rogerson@hull.ac.uk
AF: University of Hull, Cottingham Road, Hull, HU6 7RX, United Kingdom
AU: Cacho, I
EM: icacho@ub.edu
AF: University of Barcelona, C/ Martí Franques s/n, Barcelona, 08028, Spain
AU: Jimenez-Espejo, F
EM: fjjspejo@ugr.es
AF: University of Granada, Campus Fuentenueva, Granada, 18002, Spain
AU: Reguera, I
EM: sierro@usal.es
AF: University of Salamanca, Plaza La Merced, Salamanca, 37008, Spain
AU: Sierro, F
EM: sierro@usal.es
AF: University of Salamanca, Plaza La Merced, Salamanca, 37008, Spain
AU: Martinez-Ruiz, F
EM: fmruiz@ugr.es
AF: University of Granada, Campus Fuentenueva, Granada, 18002, Spain
AU: Frigola, J
EM: jfrigola@ub.edu
AF: University of Barcelona, C/ Martí Franques s/n, Barcelona, 08028, Spain
AB:
The eastern Mediterranean sapropels are amongst the most intensively investigated phenomena in the
palaeoceanographic record , but relatively little has been written regarding the origin of the equivalent of the
sapropels in the western Mediterranean, the Organic Rich Layers (ORL's). ORL's are recognised as sediment
layers containing enhanced Total Organic Carbon that extend throughout the deep basins of the Western
Mediterranean, and are associated with enhanced total barium concentration and a reduced diversity (dysoxic but
not anoxic) benthic foraminiferal assemblage. Consequently, it has been suggested that ORL's represent
periods of enhanced productivity coupled with reduced deep ventilation, presumably related to increased
continental runoff, in close analogy to the sapropels.
We demonstrate that despite their superficial similarity, the timing of the deposition of the most recent ORL in the
Alboran Sea is different to that of the approximately coincident sapropel, indicating that there are important
differences between their modes of formation. We go on to demonstrate, through physical arguments, that a likely
explanation for the origin of the Alboran ORLs lies in the response of the Western Mediterranean basin to a
strong reduction in surface water density and a shoaling of the interface between intermediate and deep water
during the deglacial period. This moves the emphasis for forcing deep convection collapse in the western basins
away from atmospheric forcing and towards changes in the residence time of water in the Mediterranean Sea (i.e.
oceanic forcing). Furthermore, we provide evidence that deep convection had already slowed by the time of
Heinrich Event 1, and explore this event as a potential agent for preconditioning deep convection collapse.
Important differences between Heinrich-like and deglacial-like influences are highlighted, giving insight into the
response of the western Mediterranean system to external forcing.
DE: 1605 Abrupt/rapid climate change (4901, 8408)
DE: 4243 Marginal and semi-enclosed seas
DE: 4900 PALEOCEANOGRAPHY (0473, 3344)
DE: 9335 Europe
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2007 Fall Meeting