Late Albian paleoceanography of the western subtropical North Atlantic
Late Albian paleoceanography of the western subtropical North Atlantic
A late Albian–early Cenomanian record (~103.3 to 99.0 Ma), including organic-rich deposits and a ?13C increase associated with oceanic anoxic event 1d (OAE 1d), is described from Ocean Drilling Program sites 1050 and 1052 in the subtropical Atlantic. Foraminifera are well preserved at these sites. Paleotemperatures estimated from benthic ?18O values average ~14°C for middle bathyal Site 1050 and ~17°C for upper bathyal Site 1052, whereas surface temperatures are estimated to have ranged from 26°C to 31°C at both sites. Among planktonic foraminifera, there is a steady balance of speciation and extinction with no discrete time of major faunal turnover. OAE 1d is recognized on the basis of a 1.2‰ ?13C increase (~100.0–99.6 Ma), which is similar in age and magnitude to ?13C excursions documented in the North Atlantic and western Tethys. Organic-rich “black shales” are present throughout the studied interval at both sites. However, deposition of individual black shale beds was not synchronous between sites, and most of the black shale was deposited before the OAE 1d ?13C increase. A similar pattern is observed at the other sites where OAE 1d has been recognized indicating that the site(s) of excess organic carbon burial that could have caused the ?13C increase has (have) yet to be found. Our findings add weight to the view that OAEs should be chemostratigraphically (?13C) rather than lithostratigraphically defined.
micropaleontology, stable isotope, paleoceanography, Atlantic Ocean, Cretace
PA1213
Petrizzo, M.R.
2bc503a0-d973-4689-b07c-b208d6c02360
Huber, B.T.
10e7e834-c249-436d-80cc-be9a41a59f8c
Wilson, P.A.
f940a9f0-fa5a-4a64-9061-f0794bfbf7c6
MacLeod, K.G.
5acce3a2-f9ed-43b8-832c-ee3c72549e2c
March 2008
Petrizzo, M.R.
2bc503a0-d973-4689-b07c-b208d6c02360
Huber, B.T.
10e7e834-c249-436d-80cc-be9a41a59f8c
Wilson, P.A.
f940a9f0-fa5a-4a64-9061-f0794bfbf7c6
MacLeod, K.G.
5acce3a2-f9ed-43b8-832c-ee3c72549e2c
Petrizzo, M.R., Huber, B.T., Wilson, P.A. and MacLeod, K.G.
(2008)
Late Albian paleoceanography of the western subtropical North Atlantic.
Paleoceanography, 23 (1), .
(doi:10.1029/2007PA001517).
Abstract
A late Albian–early Cenomanian record (~103.3 to 99.0 Ma), including organic-rich deposits and a ?13C increase associated with oceanic anoxic event 1d (OAE 1d), is described from Ocean Drilling Program sites 1050 and 1052 in the subtropical Atlantic. Foraminifera are well preserved at these sites. Paleotemperatures estimated from benthic ?18O values average ~14°C for middle bathyal Site 1050 and ~17°C for upper bathyal Site 1052, whereas surface temperatures are estimated to have ranged from 26°C to 31°C at both sites. Among planktonic foraminifera, there is a steady balance of speciation and extinction with no discrete time of major faunal turnover. OAE 1d is recognized on the basis of a 1.2‰ ?13C increase (~100.0–99.6 Ma), which is similar in age and magnitude to ?13C excursions documented in the North Atlantic and western Tethys. Organic-rich “black shales” are present throughout the studied interval at both sites. However, deposition of individual black shale beds was not synchronous between sites, and most of the black shale was deposited before the OAE 1d ?13C increase. A similar pattern is observed at the other sites where OAE 1d has been recognized indicating that the site(s) of excess organic carbon burial that could have caused the ?13C increase has (have) yet to be found. Our findings add weight to the view that OAEs should be chemostratigraphically (?13C) rather than lithostratigraphically defined.
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Published date: March 2008
Additional Information:
Actually deposited by Jane Conquer
Keywords:
micropaleontology, stable isotope, paleoceanography, Atlantic Ocean, Cretace
Identifiers
Local EPrints ID: 51293
URI: http://eprints.soton.ac.uk/id/eprint/51293
ISSN: 0883-8305
PURE UUID: eb8acf18-77d8-4895-981c-f7c3721abf30
Catalogue record
Date deposited: 22 May 2008
Last modified: 16 Mar 2024 03:13
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Contributors
Author:
M.R. Petrizzo
Author:
B.T. Huber
Author:
K.G. MacLeod
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