6533b7d9fe1ef96bd126ce52

RESEARCH PRODUCT

Carbon isotope stratigraphy, magnetostratigraphy, and 40Ar/39Ar age of the Cretaceous South Atlantic coast, Namibe Basin, Angola

Octávio MateusMichael J. PolcynLouis L. JacobsAnne S. SchulpAnne S. SchulpC StrganacC StrganacJohanna SalminenAntonio Olimpio GonçalvesTatiana Da Silva TavaresTatiana Da Silva TavaresMaria Luísa MoraisKurt M. Ferguson

subject

1171 Geosciences010506 paleontologyPaleomagnetismeducationBiostratigraphy010502 geochemistry & geophysics01 natural sciencesWESTERNCretaceous/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterPaleontologyStable carbon isotopesOCEANChemostratigraphySDG 14 - Life Below WaterChemostratigraphyMagnetostratigraphy0105 earth and related environmental sciencesEarth-Surface ProcessesBasaltCURVEBIOSTRATIGRAPHYMagnetic polarity stratigraphyGEOCHRONOLOGYMOSASAURSGeologyCretaceousBOUNDARY13. Climate actionASTRONOMICAL CALIBRATIONBURIALGeochronologyAfricaAtlanticCenomanianGeology

description

This publication results from Projecto PaleoAngola, an international cooperative research effort among the contributing authors and their institutions, funded by the National Geographic Society, the Petroleum Research Fund of the American Chemical Society, Sonangol E.P., Esso Angola, Fundacao Vida of Angola, LS Films, Maersk, Damco, Safmarine, ISEM at SMU, The Royal Dutch Embassy in Luanda, TAP Airlines, Royal Dutch Airlines, The Saurus Institute, and the Perot Museum of Nature and Science. JS was additionally funded by Yale University and the Alfred Kordelin Foundation. We dedicate this contribution to the late Kalunga Lima, our friend and colleague in Projecto PaleoAngola. We thank Margarida Ventura and Andre Buta Neto for providing our team help in the field. Tako and Henriette Koning provided valuable support and friendship in Angola. We thank Tyrone Rooney of Michigan State University for XRF examination on the Ombe basalt. We present the δ13C and paleomagnetic stratigraphy for marine strata at the coast of southern Angola, anchored by an intercalated basalt with a whole rock 40Ar/39Ar radiometric age of 84.6 ± 1.5 Ma, being consistent with both invertebrate and vertebrate biostratigraphy. This is the first African stable carbon isotope record correlated to significant events in the global carbon record spanning the Late Cenomanian to Early Maastrichtian. A positive ~3% excursion seen in bivalve shells below the basalt indicates the Cenomanian-Turonian Boundary Event at 93.9 Ma, during Oceanic Anoxic Event 2. Additional excursions above the basalt are correlated to patterns globally, including a negative ~3% excursion near the top of the section interpreted as part of the Campanian-Maastrichtian Boundary Events. The age of the basalt ties the studied Bentiaba section to a pulse of Late Cretaceous magmatic activity around the South Atlantic and significant tectonic activity, including rotation, of the African continent. publishersversion published

10.1016/j.jafrearsci.2014.03.003http://dx.doi.org/10.1016/j.jafrearsci.2014.03.003