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Main Authors: Batenburg, Sietske J, Friedrich, Oliver, Moriya, Kazuyoshi, Voigt, Silke, Cournède, Cécile, Moebius, Iris, Blum, Peter, Bornemann, André, Fiebig, Jens, Hasegawa, Takashi, Hull, Pincelli M, Norris, Richard D, Röhl, Ursula, Sexton, Philip F, Westerhold, Thomas, Wilson, Paul A, IODP Expedition 342 Scientists
Format: Dataset Open Access
Language:en
Published: PANGAEA 2017
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Online Access:https://doi.org/10.1594/PANGAEA.875743
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author Batenburg, Sietske J
Friedrich, Oliver
Moriya, Kazuyoshi
Voigt, Silke
Cournède, Cécile
Moebius, Iris
Blum, Peter
Bornemann, André
Fiebig, Jens
Hasegawa, Takashi
Hull, Pincelli M
Norris, Richard D
Röhl, Ursula
Sexton, Philip F
Westerhold, Thomas
Wilson, Paul A
IODP Expedition 342 Scientists
author_facet Batenburg, Sietske J
Friedrich, Oliver
Moriya, Kazuyoshi
Voigt, Silke
Cournède, Cécile
Moebius, Iris
Blum, Peter
Bornemann, André
Fiebig, Jens
Hasegawa, Takashi
Hull, Pincelli M
Norris, Richard D
Röhl, Ursula
Sexton, Philip F
Westerhold, Thomas
Wilson, Paul A
IODP Expedition 342 Scientists
collection Datos científicos de ciencias marinas y ambientales
contents Earth's climate during the Maastrichtian (latest Cretaceous) was punctuated by brief warming and cooling episodes, accompanied by perturbations of the global carbon cycle. Superimposed on a long-term cooling trend, the middle Maastrichtian is characterized by deep-sea warming and relatively high values of stable carbon-isotope ratios, followed by strong climatic variability towards the end of the Cretaceous. A lack of knowledge on the timing of climatic change inhibits our understanding of underlying causal mechanisms. We present an integrated stratigraphy from Integrated Ocean Drilling Program (IODP) Site U1403, providing an expanded deep ocean record from the North Atlantic (Expedition 342, Newfoundland Margin). Distinct sedimentary cyclicity suggests that orbital forcing played a major role in depositional processes, which is confirmed by statistical analyses of high resolution elemental data obtained by X-ray fluorescence (XRF) core scanning. Astronomical calibration reveals that the investigated interval encompasses seven 405-kyr cycles (Ma_405_1 to Ma_405_7) and spans the 2.8 Myr directly preceding the Cretaceous/Paleocene (K/Pg) boundary. A high-resolution carbon-isotope record from bulk carbonates allows us to identify global trends in the late Maastrichtian carbon cycle. Low-amplitude variations (up to 0.4 per mil) in carbon isotopes at Site U1403 match similar scale variability in records from Tethyan and Pacific open-ocean sites. Comparison between Site U1403 and the hemipelagic restricted basin of the Zumaia section (northern Spain), with its own well-established independent cyclostratigraphic framework, is more complex. Whereas the pre-K/Pg oscillations and the negative values of the Mid-Maastrichtian Event (MME) can be readily discerned in both the Zumaia and U1403 records, patterns diverge during a ~1 Myr period in the late Maastrichtian (67.8-66.8 Ma), with Site U1403 more reliably reflecting global carbon cycling. Our new carbon isotope record and cyclostratigraphy offer promise for Site U1403 to serve as a future reference section for high-resolution studies of late Maastrichtian paleoclimatic change.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_875743
institution PANGAEA
language en
publishDate 2017
publisher PANGAEA
record_format pangaea
spellingShingle Elemental data (Si, Ca, Fe, Ba) and stable oxygen and carbon isotope data of the Maastrichtian interval of IODP Site 342-U1403, Newfoundland Margin
Batenburg, Sietske J
Friedrich, Oliver
Moriya, Kazuyoshi
Voigt, Silke
Cournède, Cécile
Moebius, Iris
Blum, Peter
Bornemann, André
Fiebig, Jens
Hasegawa, Takashi
Hull, Pincelli M
Norris, Richard D
Röhl, Ursula
Sexton, Philip F
Westerhold, Thomas
Wilson, Paul A
IODP Expedition 342 Scientists
Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP
Earth's climate during the Maastrichtian (latest Cretaceous) was punctuated by brief warming and cooling episodes, accompanied by perturbations of the global carbon cycle. Superimposed on a long-term cooling trend, the middle Maastrichtian is characterized by deep-sea warming and relatively high values of stable carbon-isotope ratios, followed by strong climatic variability towards the end of the Cretaceous. A lack of knowledge on the timing of climatic change inhibits our understanding of underlying causal mechanisms. We present an integrated stratigraphy from Integrated Ocean Drilling Program (IODP) Site U1403, providing an expanded deep ocean record from the North Atlantic (Expedition 342, Newfoundland Margin). Distinct sedimentary cyclicity suggests that orbital forcing played a major role in depositional processes, which is confirmed by statistical analyses of high resolution elemental data obtained by X-ray fluorescence (XRF) core scanning. Astronomical calibration reveals that the investigated interval encompasses seven 405-kyr cycles (Ma_405_1 to Ma_405_7) and spans the 2.8 Myr directly preceding the Cretaceous/Paleocene (K/Pg) boundary. A high-resolution carbon-isotope record from bulk carbonates allows us to identify global trends in the late Maastrichtian carbon cycle. Low-amplitude variations (up to 0.4 per mil) in carbon isotopes at Site U1403 match similar scale variability in records from Tethyan and Pacific open-ocean sites. Comparison between Site U1403 and the hemipelagic restricted basin of the Zumaia section (northern Spain), with its own well-established independent cyclostratigraphic framework, is more complex. Whereas the pre-K/Pg oscillations and the negative values of the Mid-Maastrichtian Event (MME) can be readily discerned in both the Zumaia and U1403 records, patterns diverge during a ~1 Myr period in the late Maastrichtian (67.8-66.8 Ma), with Site U1403 more reliably reflecting global carbon cycling. Our new carbon isotope record and cyclostratigraphy offer promise for Site U1403 to serve as a future reference section for high-resolution studies of late Maastrichtian paleoclimatic change.
title Elemental data (Si, Ca, Fe, Ba) and stable oxygen and carbon isotope data of the Maastrichtian interval of IODP Site 342-U1403, Newfoundland Margin
topic Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP
url https://doi.org/10.1594/PANGAEA.875743