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Cappelli, Carlotta; Bown, Paul R; Westerhold, Thomas; Bohaty, Steven M; de Riu, Martina; Lobba, Veronica; Yamamoto, Yuhji; Agnini, Claudia (2019): Revised composite depth scale, calcareous nannofossil and stable isotope data of the early-middle Eocene interval at Southeast Newfoundland Ridge (Sites U1408, U1410) [dataset publication series]. PANGAEA, https://doi.org/10.1594/PANGAEA.905432, Supplement to: Cappelli, C et al. (2019): The early to middle Eocene transition: an integrated calcareous nannofossil and stable isotope record from the Northwest Atlantic Ocean (IODP Site U1410). Paleoceanography and Paleoclimatology, 34(12), 1913-1930, https://doi.org/10.1029/2019PA003686

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Abstract:
The interval spanning from the Early Eocene Climatic Optimum (EECO) to the onset of long-term cooling in the middle Eocene is marked by prominent changes in calcareous nannofossil assemblages and coincides with modification of the North Atlantic deep-ocean circulation. Here we present an integrated calcareous nannoplakton and bulk stable isotope records (δ18O and δ13C) across the early-middle Eocene (~52- 43 Ma) from IODP Site U1410 (northwest Atlantic), where middle Eocene deposits occur as clay-rich drift sediments reflecting the formation of persistent deep currents. Abundance patterns of selected biostratigraphically relevant taxa encompassing Ypresian-Lutetian calcareous nannofossil Zones CNE4-CNE12 served to test the biostratigraphic reliability of the species. In addition, long- and short-term trends documented in geochemical data have been used to determine the temporal relationships between palaeoenvironmental trends and changes in calcareous nannofossil assemblages. After the EECO to the Ypresian-Lutetian boundary, calcareous nannofossils switched from an assemblage mainly composed of warm-water and oligotrophic taxa (Zygrhablithus, Discoaster, Sphenolithus, Coccolithus) to one dominated by the more temperate and eutrophic reticulofenestrids. This prominent change occurred during a phase of relatively high δ18O values likely related to the post-EECO cooling. Although the dominance of reticulofenestrids persisted unvaried throughout the study middle Eocene interval, early Lutetian stable isotope records indicate a reversal in the paleoenvironmetal trends suggesting a temporary restoration of warmer conditions associated with an increase in abundance of D. sublodoensis. These results confirm previous records of environmental instability but the comparison of our results with different dataset highlights a global enigmatic scenario in term of bio-chemo-magnetostratigraphy.
Coverage:
Median Latitude: 41.357497 * Median Longitude: -49.333994 * South-bound Latitude: 41.328140 * West-bound Longitude: -49.785805 * North-bound Latitude: 41.438315 * East-bound Longitude: -49.169745
Size:
15 datasets

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Datasets listed in this publication series

  1. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S1 - Offsets applied to cores from IODP Holes 342-U1410A, 342-U1410B, 342-U1410C. https://doi.org/10.1594/PANGAEA.905355
  2. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S2 - Splice interval table for the corrected revised composite depth scale (crmcd) for IODP Site 342-U1410. https://doi.org/10.1594/PANGAEA.905359
  3. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S3 - Mapping pairs for IODP Site 342-U1410 to correlate intervals outside the splice to the splice. https://doi.org/10.1594/PANGAEA.905416
  4. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S4 - Offsets applied to cores from IODP Holes 342-U1408A, 342-U1408B, 342-U1408C. https://doi.org/10.1594/PANGAEA.905417
  5. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S5 - Splice interval table for the corrected revised composite depth scale (crmcd) for Site 342-U1408. https://doi.org/10.1594/PANGAEA.905419
  6. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S6 - Mapping pairs for IODP 342-U1408 to correlate intervals outside the splice to the splice. https://doi.org/10.1594/PANGAEA.905421
  7. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S7 - Tie points for correlation of IODP Site 342-U1408 to IODP Site 342-U1410. https://doi.org/10.1594/PANGAEA.905422
  8. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S8 - Magnetostratigraphy of IODP Site 342-1410. https://doi.org/10.1594/PANGAEA.905423
  9. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S9 - Calcareous nannofossil assemblage data (%). https://doi.org/10.1594/PANGAEA.905490
  10. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S10 - Calcareous nannofossil assemblage data (Nmm-2). https://doi.org/10.1594/PANGAEA.905504
  11. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S11 - Abundance of selected calcareous nannofossil index species. https://doi.org/10.1594/PANGAEA.905505
  12. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S12 - PC1 and PC2 loadings of the PCA (IODP Site 342-U1410). https://doi.org/10.1594/PANGAEA.905485
  13. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S13 - PCA results of IODP Site 342-1410. https://doi.org/10.1594/PANGAEA.905425
  14. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S14 - Paleoenvironmental index of IODP Site 342-1410. https://doi.org/10.1594/PANGAEA.905429
  15. Cappelli, C; Bown, PR; Westerhold, T et al. (2019): Data Set S15 - Bulk stable isotope and carbonate content data of IODP Site 342-U1410. https://doi.org/10.1594/PANGAEA.905431