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Spero, Howard J; Mielke, Koreen M; Kalve, Erica M; Lea, David W; Pak, Dorothy K (2003): Stable isotope record of planktonic foraminifera of sediment core TR163-19 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.841839, Supplement to: Spero, HJ et al. (2003): Multispecies approach to reconstructing eastern equatorial Pacific thermocline hydrography during the past 360 kyr. Paleoceanography, 18(1), 1022, https://doi.org/10.1029/2002PA000814

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Abstract:
Stable isotope data from eastern equatorial Pacific (EEP) core TR163-19 (2°15'N, 90°57'W, 2348 m) are presented for the surface-dwelling foraminifers Globigerinoides ruber and G. sacculifer and thermocline-dwelling Globorotalia menardii and Neogloboquadrina dutertrei. Using species-specific normalization factors derived from experimental and plankton tow data, we reconstruct a 360 kyr record of water column hydrography across the past three glacial cycles. We demonstrate that G. ruber maintains a mixed layer habitat throughout the entire record, while G. sacculifer records a mixture of thermocline and mixed layer conditions and G. menardii and N. dutertrei record thermocline properties. We conclude that G. sacculifer is not appropriate for paleoceanographic applications in regions with steep vertical hydrographic gradients. Results suggest that this region of the EEP had a thicker mixed layer and deeper d13CDIC boundary between the surface and equatorial undercurrent during the last two glacial periods. A shift in N. dutertrei and G. sacculifer geochemistry prior to ~185 kyr suggests water column structure and chemocline gradients changed, possibly due to a shift in the position of the undercurrent relative to this site. The timing and magnitude of glacial-interglacial d13C variations between species indicates that near-surface carbon chemistry is controlled by changes in productivity, atmospheric circulation, and advected intermediate water sources north of the Antarctic polar front. These results demonstrate that when properly calibrated for species differences, multispecies geochemical data sets can be invaluable for reconstructing water column structure and properties in the past.
Other version:
Spero, Howard J; Mielke, Koreen M; Kalve, Erica M; Lea, David W; Pak, Dorothy K (2003): NOAA/WDS Paleoclimatology - Equatorial Pacific Multispecies Foraminifera Stable Isotope Data. NOAA National Centers for Environmental Information, https://doi.org/10.25921/YZYC-KR22
Coverage:
Latitude: 2.258000 * Longitude: -90.952000
Minimum DEPTH, sediment/rock: 0.01 m * Maximum DEPTH, sediment/rock: 10.29 m
Event(s):
TR163-19 * Latitude: 2.258000 * Longitude: -90.952000 * Elevation: -2348.0 m * Method/Device: Piston corer (PC)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1DEPTH, sediment/rockDepth sedmGeocode
2AGEAgeka BPGeocode
3Globorotalia menardii, δ13CG. menardii δ13C‰ PDBSpero, Howard JIsotope ratio mass spectrometrywith respect to VPDB
4Globigerinoides ruber, δ13CG. ruber δ13C‰ PDBSpero, Howard JIsotope ratio mass spectrometrysize fraction 250-350 µm, with respect to VPDB
5Globigerinoides sacculifer, δ13CG. sacculifer δ13C‰ PDBSpero, Howard JIsotope ratio mass spectrometrysize fraction 250-350 µm, with respect to VPDB
6Neogloboquadrina dutertrei, δ13CN. dutertrei δ13C‰ PDBSpero, Howard JIsotope ratio mass spectrometrywith respect to VPDB
7Globorotalia menardii, δ18OG. menardii δ18O‰ PDBSpero, Howard JIsotope ratio mass spectrometrywith respect to VPDB
8Globigerinoides ruber, δ18OG. ruber δ18O‰ PDBSpero, Howard JIsotope ratio mass spectrometrysize fraction 250-350 µm, with respect to VPDB
9Globigerinoides sacculifer, δ18OG. sacculifer δ18O‰ PDBSpero, Howard JIsotope ratio mass spectrometrysize fraction 250-350 µm, with respect to VPDB
10Neogloboquadrina dutertrei, δ18ON. dutertrei δ18O‰ PDBSpero, Howard JIsotope ratio mass spectrometrywith respect to VPDB
11Globigerinoides sacculifer, δ13CG. sacculifer δ13C‰ PDBSpero, Howard JIsotope ratio mass spectrometrysize fraction >500 µm, with respect to VPDB
12Globigerinoides sacculifer, δ18OG. sacculifer δ18O‰ PDBSpero, Howard JIsotope ratio mass spectrometrysize fraction >500 µm, with respect to VPDB
Size:
1154 data points

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