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Kirby, Nicola; Bailey, Ian; Lang, David C; Brombacher, Anieke; Chalk, Thomas B; Parker, Rebecca L; Crocker, Anya J; Taylor, Victoria E; Milton, J Andy; Foster, Gavin L; Raymo, Maureen E; Kroon, Dick; Bell, David B; Wilson, Paul A (2020): Neodymium isotopes, Boron-calcium ratio and stable isotope data from ODP Site 208-1267 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.925521, In: Kirby, N et al. (2020): Neodymium isotopes, B/Ca and δ¹³C, and fresh sand volcanic glass count data from ODP Site 208-1267 and IODP Site 306-U1313 for MIS M2, MIS 100 and the Last Glacial-Holocene [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.925562

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Abstract:
Fish debris Nd isotope data and benthic foraminiferal B/Ca ratio and stable isotope data for the MIS M2, MIS 100 and the Last Glacial-Holocene from ODP Site 1267.
Keyword(s):
AMOC; Atlantic circulation; B/Ca; Last Glacial; MIS 100; MIS M2; Nd isotopes
Related to:
Bell, David B; Jung, Simon J A; Kroon, Dick; Lourens, Lucas Joost; Hodell, David A (2014): Local and regional trends in Plio-Pleistocene d18O records from benthic foraminifera. Geochemistry, Geophysics, Geosystems, 15(8), 3304-3321, https://doi.org/10.1002/2014GC005297
Kirby, Nicola; Bailey, Ian; Lang, David C; Brombacher, Anieke; Chalk, Thomas B; Parker, Rebecca L; Crocker, Anya J; Taylor, Victoria E; Milton, J Andy; Foster, Gavin L; Raymo, Maureen E; Kroon, Dick; Bell, David B; Wilson, Paul A (2020): On climate and abyssal circulation in the Atlantic Ocean during late Pliocene marine isotope stage M2, ∼3.3 million years ago. Quaternary Science Reviews, 250, 106644, https://doi.org/10.1016/j.quascirev.2020.106644
Further details:
Lauvset, Siv K; Key, Robert M; Olsen, Are; van Heuven, Steven; Velo, Anton; Lin, Xiaohua; Schirnick, Carsten; Kozyr, Alexander; Tanhua, Toste; Hoppema, Mario; Jutterstrøm, Sara; Steinfeldt, Reiner; Jeansson, Emil; Ishii, Masao; Pérez, Fiz F; Suzuki, Toru; Watelet, Sylvain (2016): A new global interior ocean mapped climatology: the 1° ×  1° GLODAP version 2. Earth System Science Data, 8(2), 325-340, https://doi.org/10.5194/essd-8-325-2016
Yu, Jimin; Elderfield, Henry (2007): Benthic foraminiferal B/Ca ratios reflect deep water carbonate saturation state. Earth and Planetary Science Letters, 258(1-2), 73-86, https://doi.org/10.1016/j.epsl.2007.03.025
Coverage:
Median Latitude: -28.098085 * Median Longitude: 1.710970 * South-bound Latitude: -28.098160 * West-bound Longitude: 1.710960 * North-bound Latitude: -28.098010 * East-bound Longitude: 1.710980
Date/Time Start: 2003-04-21T09:40:00 * Date/Time End: 2003-04-26T16:45:00
Minimum Elevation: -4355.1 m * Maximum Elevation: -4354.3 m
Event(s):
208-1267A  * Latitude: -28.098010 * Longitude: 1.710980 * Date/Time Start: 2003-04-21T09:40:00 * Date/Time End: 2003-04-23T21:35:00 * Elevation: -4354.3 m * Penetration: 312.1 m * Recovery: 308.28 m * Location: South Atlantic Ocean * Campaign: Leg208 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 33 cores; 312.1 m cored; 0 m drilled; 98.8 % recovery
208-1267B  * Latitude: -28.098160 * Longitude: 1.710960 * Date/Time Start: 2003-04-23T21:35:00 * Date/Time End: 2003-04-26T16:45:00 * Elevation: -4355.1 m * Penetration: 329 m * Recovery: 328.35 m * Location: South Atlantic Ocean * Campaign: Leg208 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 36 cores; 329 m cored; 0 m drilled; 99.8 % recovery
Comment:
Corrected δ18O data includes correction for seawater (equilibrated + 0.64 ‰).
The B/Ca ratio (in μmol/mol) of C. wuellerstorfi was converted to [CO₃²⁻] using the species specific core top calibration of Yu and Elderfield (2007). Calcite saturation state was calculated for ODP Site 208-1267 and was quality checked against data generated from core top and Holocene aged sediments not used in the original calibration of Yu and Elderfield (2007). The hydrographic data for ODP Site 208-1267 that was used for carbonate system calculations were gathered from the GLODAP version 2 dataset (Lavuset et al., 2016).
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventKirby, Nicola
Marine isotope stageMISKirby, Nicola
Sample commentSample commentKirby, NicolaStudy interval
Sample code/labelSample labelKirby, Nicola
Depth, compositeDepth compmcdKirby, Nicola
AGEAgeka BPKirby, NicolaGeocode
ε-Neodymiumε-NdKirby, NicolaSamarium corrected
ε-Neodymium, errorε-Nd e±Kirby, Nicola
Cibicidoides wuellerstorfi, Boron/Calcium ratioC. wuellerstorfi B/Caµmol/molKirby, Nicola
10 Carbonate ion[CO3]2-µmol/lKirby, NicolaCalculatedBased on B/Ca
11 Foraminifera, benthic δ13CForam benth δ13C‰ PDBKirby, NicolaNormalized
12 Foraminifera, benthic δ18OForam benth δ18O‰ PDBKirby, NicolaNormalized
13 Foraminifera, benthic δ18OForam benth δ18O‰ PDBKirby, NicolaCorrectedCorrected for seawater (+0.64)
14 Reference/sourceReferenceKirby, Nicola
Size:
903 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Event

MIS

Sample comment
(Study interval)

Sample label

Depth comp [mcd]

Age [ka BP]

ε-Nd
(Samarium corrected)

ε-Nd e [±]

C. wuellerstorfi B/Ca [µmol/mol]
10 
[CO3]2- [µmol/l]
(Based on B/Ca, Calculated)
11 
Foram benth δ13C [‰ PDB]
(Normalized)
12 
Foram benth δ18O [‰ PDB]
(Normalized)
13 
Foram benth δ18O [‰ PDB]
(Corrected for seawater (+0.64...)
14 
Reference
208-1267B Last Glacial-Holocene208-1267B-1H-1,00.00000.00-10.750.58157.387.060.623.143.78Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,30.03003.98-10.920.18168.296.550.553.083.72Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,50.05006.63-10.900.180.303.474.11Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,7.50.07509.94-10.690.18168.096.420.702.663.30Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,90.090011.93-10.440.18162.491.470.672.793.43Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,11.50.115014.96-10.450.29165.694.29-0.124.054.69Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,140.140017.74-10.060.18157.687.330.274.094.73Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,16.50.160019.97-9.430.18148.479.230.154.254.89Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,190.190023.30-9.290.89144.475.71-0.084.344.98Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,19.50.195023.86-9.250.18147.078.000.024.405.04Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,22.50.225027.19-8.960.18148.179.000.024.375.01Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,24.50.245029.42-9.260.18142.874.340.104.184.82Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,270.270032.20-9.440.18148.979.680.143.974.61Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,290.290034.42-9.590.18153.083.240.063.994.63Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,31.50.315037.20-9.680.18153.383.560.093.844.48Kirby et al.
208-1267BLast Glacial-Holocene208-1267B-1H-1,340.340039.98-9.850.18155.685.510.454.034.67Kirby et al.
208-1267B100208-1267B-4H-2,5929.40002503.30-10.230.18173.5101.240.063.653.01Bell et al 2014
208-1267B100208-1267B-4H-2,61.529.42502505.00-10.080.18169.998.070.223.793.15Bell et al 2014
208-1267B100208-1267B-4H-2,6429.45002506.80-10.080.18162.391.380.533.663.02Bell et al 2014
208-1267B100208-1267B-4H-2,66.529.47502508.50-9.790.18192.2117.62-0.153.502.86Bell et al 2014
208-1267B100208-1267B-4H-2,6929.50002510.30-9.500.18151.882.230.503.873.23Bell et al 2014
208-1267B100208-1267B-4H-2,71.529.52502512.00-9.580.18159.589.00-0.024.013.37Bell et al 2014
208-1267B100208-1267B-4H-2,7429.55002513.80-9.120.18142.874.330.234.363.72Bell et al 2014
208-1267B100208-1267B-4H-2,76.529.57502515.50-8.910.18154.884.810.004.523.88Bell et al 2014
208-1267B100208-1267B-4H-2,7929.60002517.30-8.660.18156.686.39-0.024.473.83Bell et al 2014
208-1267B100208-1267B-4H-2,81.529.62502519.00-8.500.18147.077.99-0.074.093.45Bell et al 2014
208-1267B100208-1267B-4H-2,8429.65002520.80-8.480.18153.483.600.014.483.84Bell et al 2014
208-1267B100208-1267B-4H-2,86.529.67502522.50-8.480.18-0.024.263.62Bell et al 2014
208-1267B100208-1267B-4H-2,91.529.72502525.50-8.850.18154.184.190.144.363.72Bell et al 2014
208-1267B100208-1267B-4H-2,96.529.77502528.60-9.610.18169.497.660.074.003.36Bell et al 2014
208-1267B100208-1267B-4H-2,101.529.82502531.60-10.020.18168.696.92-0.093.983.34Bell et al 2014
208-1267B100208-1267B-4H-2,106.529.87502534.60-10.400.18157.387.030.763.322.68Bell et al 2014
208-1267B100208-1267B-4H-2,11429.95002539.20-10.970.180.853.402.76Bell et al 2014
208-1267B100208-1267B-4H-2,11729.98002540.70-11.010.18189.1114.920.383.943.30Bell et al 2014
208-1267B100208-1267B-4H-2,12230.03002543.80-11.310.18171.299.210.823.622.98Bell et al 2014
208-1267B100208-1267B-4H-2,124.530.05502545.30-11.190.18183.7110.180.523.322.68Bell et al 2014
208-1267B100208-1267B-4H-2,126.530.07502546.80-11.340.18174.9102.500.873.442.80Bell et al 2014
208-1267B100208-1267B-4H-2,13230.13002549.80-11.180.18190.7116.310.383.502.86Bell et al 2014
208-1267B100208-1267B-4H-2,134.530.15502551.30-11.070.18178.1105.280.053.312.67Bell et al 2014
208-1267A M2208-1267A-4H-5,84.540.27003241.30-11.330.180.862.663.30Kirby et al.
208-1267AM2208-1267A-4H-5,8840.30503244.20-11.350.181.022.683.32Kirby et al.
208-1267AM2208-1267A-4H-5,89.540.32003245.40-11.310.180.932.693.33Kirby et al.
208-1267AM2208-1267A-4H-5,9340.35503248.20-11.280.180.932.823.46Kirby et al.
208-1267AM2208-1267A-4H-5,94.540.37003249.40-11.140.180.962.553.19Kirby et al.
208-1267AM2208-1267A-4H-5,9840.40503252.30-11.150.18175.3102.850.902.663.30Kirby et al.
208-1267AM2208-1267A-4H-5,10340.45503256.30-11.120.180.942.813.45Kirby et al.
208-1267AM2208-1267A-4H-5,104.540.47003257.50-11.090.180.982.823.46Kirby et al.
208-1267AM2208-1267A-4H-5,109.540.52003261.60-11.050.18168.596.860.922.653.29Kirby et al.
208-1267AM2208-1267A-4H-5,11040.52503262.00-10.820.410.922.853.49Kirby et al.
208-1267AM2208-1267A-4H-5,11540.57503266.00-11.200.180.772.913.55Kirby et al.
208-1267AM2208-1267A-4H-5,119.540.62003269.70-11.160.18177.9105.100.843.003.64Kirby et al.
208-1267AM2208-1267A-4H-5,12040.62503270.10-11.070.180.762.973.61Kirby et al.
208-1267AM2208-1267A-4H-5,124.540.67003273.70-10.990.180.692.933.57Kirby et al.
208-1267AM2208-1267A-4H-5,125.540.67753274.60-10.870.18174.5102.130.743.143.78Kirby et al.
208-1267AM2208-1267A-4H-5,12840.70253276.60-10.890.180.823.043.68Kirby et al.
208-1267AM2208-1267A-4H-5,130.540.72503278.60-10.800.180.892.803.44Kirby et al.
208-1267AM2208-1267A-4H-5,13340.75003280.60-10.990.18179.9106.86-0.132.803.44Kirby et al.
208-1267AM2208-1267A-4H-5,134.540.77003281.90-10.950.180.323.183.82Kirby et al.
208-1267AM2208-1267A-4H-5,135.540.78003282.70-10.840.180.872.803.44Kirby et al.
208-1267BM2208-1267B-5H-3,10540.80503284.70-10.530.18177.6104.860.632.953.59Kirby et al.
208-1267BM2208-1267B-5H-3,107.540.83003286.60-10.390.180.283.424.06Kirby et al.
208-1267BM2208-1267B-5H-3,109.540.85003288.10-10.340.180.513.313.95Kirby et al.
208-1267BM2208-1267B-5H-3,110.540.86003288.90-10.370.18163.292.180.453.043.68Kirby et al.
208-1267BM2208-1267B-5H-3,11340.88503290.80-10.100.180.383.434.07Kirby et al.
208-1267BM2208-1267B-5H-3,114.540.90003291.90-10.070.180.503.313.95Kirby et al.
208-1267BM2208-1267B-5H-3,115.540.91003292.70-9.890.18161.190.350.483.494.13Kirby et al.
208-1267BM2208-1267B-5H-3,11840.93503294.50-9.880.180.453.494.13Kirby et al.
208-1267BM2208-1267B-5H-3,119.540.95003295.70-9.750.180.343.584.22Kirby et al.
208-1267BM2208-1267B-5H-3,12040.95503296.00-9.610.18168.496.750.293.394.03Kirby et al.
208-1267BM2208-1267B-5H-3,122.540.98003297.90-9.730.180.213.414.05Kirby et al.
208-1267BM2208-1267B-5H-3,124.541.00003299.40-9.730.180.153.534.17Kirby et al.
208-1267BM2208-1267B-5H-3,12541.00503299.80-9.770.18171.399.320.323.374.01Kirby et al.
208-1267BM2208-1267B-5H-3,12841.03503302.10-9.820.180.333.293.93Kirby et al.
208-1267BM2208-1267B-5H-3,129.541.05003303.20-9.880.180.663.213.85Kirby et al.
208-1267BM2208-1267B-5H-3,130.541.06003304.00-9.890.18159.689.050.462.633.27Kirby et al.
208-1267BM2208-1267B-5H-3,132.541.08003305.50-9.740.180.403.233.87Kirby et al.
208-1267BM2208-1267B-5H-3,134.541.10003307.00-9.860.180.463.263.90Kirby et al.
208-1267BM2208-1267B-5H-3,13541.10503307.40-9.890.18155.285.220.273.223.86Kirby et al.
208-1267BM2208-1267B-5H-3,137.541.13003309.20-10.000.180.363.183.82Kirby et al.
208-1267BM2208-1267B-5H-3,139.541.15003310.80-10.180.180.483.263.90Kirby et al.
208-1267BM2208-1267B-5H-3,14241.17503312.60-10.500.18144.876.050.952.673.31Kirby et al.
208-1267BM2208-1267B-5H-3,147.541.23003316.80-10.900.180.842.963.60Kirby et al.
208-1267BM2208-1267B-5H-3,14941.24503317.90-11.070.180.962.713.35Kirby et al.
208-1267BM2208-1267B-5H-4,241.27503320.20-11.200.18182.6109.190.852.703.34Kirby et al.
208-1267BM2208-1267B-5H-4,4.541.30003322.10-11.240.180.892.773.41Kirby et al.
208-1267BM2208-1267B-5H-4,741.32503324.00-11.060.180.862.913.55Kirby et al.
208-1267BM2208-1267B-5H-4,9.541.35003325.80-11.090.18163.992.790.812.903.54Kirby et al.
208-1267BM2208-1267B-5H-4,1241.37503327.70-11.110.180.812.653.29Kirby et al.
208-1267BM2208-1267B-5H-4,1741.42503331.50-11.120.180.712.783.42Kirby et al.