HR: 10:55h
AN: GC11A-03 [PDF]
TI: Reconciling Holocene Sea-Level History on the US Gulf Coast: Is the Mississippi Delta the Rosetta
Stone?
AU: * Tornqvist, T E
EM: tor@uic.edu
AF: Department of Earth and Environmental Sciences, University of Illinois at Chicago, 845 West Taylor
Street, Chicago, IL 60607-7059 United States
AU: Gonzalez, J L
EM: jgonza30@uic.edu
AF: Department of Earth and Environmental Sciences, University of Illinois at Chicago, 845 West Taylor
Street, Chicago, IL 60607-7059 United States
AU: Newsom, L A
EM: lan12@psu.edu
AF: Department of Anthropology, Pennsylvania State University, 316 Carpenter Building, University Park, PA
16802-3404 United States
AU: van der Borg, K
EM: k.vanderborg@phys.uu.nl
AF: Robert J. Van de Graaff Laboratory, Utrecht University, PO Box 80000, Utrecht, NL-3508 TA
Netherlands
AU: de Jong, A F
EM: a.f.m.dejong@phys.uu.nl
AF: Robert J. Van de Graaff Laboratory, Utrecht University, PO Box 80000, Utrecht, NL-3508 TA
Netherlands
AU: Kurnik, C W
EM: ckurnik@unavco.ucar.edu
AF: University NAVSTAR Consortium (UNAVCO), PO Box 3000, Boulder, CO 80307-3000 United States
AB:
The threat of future sea-level rise is a major concern for the US Gulf Coast in general and the Misissippi Delta in
particular. Published Holocene relative sea-level (RSL) curves for the US Gulf Coast are in mutual conflict, with some
characterized by a smooth RSL rise akin to widely accepted eustatic sea-level curves vs. others, including several recent
ones, that are characterized by a conspicuous "stair-step" pattern with prolonged (millennium-scale) RSL stillstands
alternating with rapid rises. In addition, recent work in Texas and Alabama has revitalized the notion of a Middle Holocene
RSL highstand, estimated at about 2 m above present mean sea level.
An extensive sampling program in the Mississippi Delta (Louisiana) focuses on the collection of basal peats that accumulated
during the initial transgression of the pre-existing, consolidated Pleistocene basement. We preferentially select plant
macrofossils indicative of brackish to saline conditions from these basal peats and subject them to AMS 14C dating. The first
data set of approximately 30 sea-level index points from a 20 sq km study area on the eastern margin of the delta provides
conclusive evidence that RSL rise followed a smooth, negative exponential trend for the time interval 8000-3000 cal yr BP,
thus invalidating the occurrence of RSL stillstands.
Although a true Middle Holocene highstand never occurred in this subsiding setting, the high level of detail of our time
series enables a rigorous test of this hypothesis. Correction of our data set for a hypothetical subsidence rate of 1.1 m/ka
(we assume a linear subsidence rate compared to the tectonically relatively stable adjacent Texas Coast) leads to sea levels
of 1-2 m above present during the time interval 6000-4000 cal yr BP. However, this model also implies a RSL position near -2
m around 8000 cal yr BP, which is inconsistent both with data of this age from Texas, as well as with eustatic sea-level
data. We therefore conclude that a Middle Holocene highstand for the US Gulf Coast is highly unlikely, and that the entire
area is still responding glacio-isostatically, by means of forebulge collapse, to the melting of the Laurentide Ice Sheet.
Thus, RSL rise in the Mississippi Delta is a result of the combined effect of glacio-isostasy and tectonic subsidence.
DE: 1035 Geochronology
DE: 1600 GLOBAL CHANGE (New category)
DE: 4556 Sea level variations
DE: 8160 Rheology--general
SC: Global Climate Change [GC]
MN: 2003 Fall Meeting