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Data Publisher for Earth & Environmental Science

Harper, Dustin T; Zeebe, Richard E; Hönisch, Bärbel; Schrader, Cindy D; Lourens, Lucas Joost; Zachos, James C (2018): Carbon isotopic composition and carbonate content of bulk sediment from ODP Hole 198-1209A [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.892239, In supplement to: Harper, DT et al. (2018): Subtropical sea-surface warming and increased salinity during Eocene Thermal Maximum 2. Geology, 46(2), 187-190, https://doi.org/10.1130/G39658.1

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Related to:
Gibbs, Samantha J; Bown, Paul R; Murphy, B H; Sluijs, Appy; Edgar, Kirsty M; Pälike, Heiko; Bolton, Clara T; Zachos, James C (2012): Scaled biotic disruption during early Eocene global warming events. Biogeosciences, 9(11), 4679-4688, https://doi.org/10.5194/bg-9-4679-2012
Coverage:
Latitude: 32.651660 * Longitude: 158.505930
Date/Time Start: 2001-09-18T08:00:00 * Date/Time End: 2001-09-19T13:35:00
Minimum Elevation: -2387.2 m * Maximum Elevation: -2387.2 m
Event(s):
198-1209A * Latitude: 32.651660 * Longitude: 158.505930 * Date/Time Start: 2001-09-18T08:00:00 * Date/Time End: 2001-09-19T13:35:00 * Elevation: -2387.2 m * Penetration: 259.6 m * Recovery: 262.27 m * Location: North Pacific Ocean * Campaign: Leg198 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 28 cores; 259.6 m cored; 0 m drilled; 101 % recovery
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Sample code/labelSample labelHarper, Dustin T
AGEAgeka BPHarper, Dustin TGeocode
δ13Cδ13C‰ PDBHarper, Dustin Tvs. VPDB
Reference/sourceReferenceHarper, Dustin Td13C
Calcium carbonateCaCO3%Harper, Dustin Twt%
Reference/sourceReferenceHarper, Dustin TCaCO3
Size:
248 data points

Data

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


Sample label

Age [ka BP]

δ13C [‰ PDB]
(vs. VPDB)

Reference
(d13C)

CaCO3 [%]
(wt%)

Reference
(CaCO3)
198-1209A-21H-3,25.5-26540211.41Gibbs et al., 201289.955this study
198-1209A-21H-3,26-27540231.42Gibbs et al., 201293.772this study
198-1209A-21H-3,27-28540271.40Gibbs et al., 201291.228this study
198-1209A-21H-3,28-29540321.37Gibbs et al., 2012
198-1209A-21H-3,29-30540361.32Gibbs et al., 2012
198-1209A-21H-3,30-31540411.27Gibbs et al., 201291.531this study
198-1209A-21H-3,31-32540451.35Gibbs et al., 2012
198-1209A-21H-3,32-33540501.32Gibbs et al., 2012
198-1209A-21H-3,33-34540541.36Gibbs et al., 2012
198-1209A-21H-3,34-35540591.36Gibbs et al., 2012
198-1209A-21H-3,35-36540631.39Gibbs et al., 201291.582this study
198-1209A-21H-3,36-37540681.35Gibbs et al., 2012
198-1209A-21H-3,37-38540721.41Gibbs et al., 2012
198-1209A-21H-3,38-39540771.42Gibbs et al., 2012
198-1209A-21H-3,39-40540811.28Gibbs et al., 2012
198-1209A-21H-3,40-41540851.26Gibbs et al., 201292.559this study
198-1209A-21H-3,41-42540891.24Gibbs et al., 2012
198-1209A-21H-3,42-43540931.20Gibbs et al., 2012
198-1209A-21H-3,43-44540971.17Gibbs et al., 2012
198-1209A-21H-3,44-45541011.18Gibbs et al., 2012
198-1209A-21H-3,45-46541041.24Gibbs et al., 201293.539this study
198-1209A-21H-3,46-47541081.17Gibbs et al., 2012
198-1209A-21H-3,47-48541111.16Gibbs et al., 2012
198-1209A-21H-3,48-49541141.05Gibbs et al., 2012
198-1209A-21H-3,49-50541171.07Gibbs et al., 2012
198-1209A-21H-3,50-51541201.10Gibbs et al., 201285.821this study
198-1209A-21H-3,51-52541231.03Gibbs et al., 2012
198-1209A-21H-3,52-53541260.87Gibbs et al., 2012
198-1209A-21H-3,54-55541320.99Gibbs et al., 2012
198-1209A-21H-3,55-56541350.96Gibbs et al., 201289.753this study
198-1209A-21H-3,56-57541390.84Gibbs et al., 2012
198-1209A-21H-3,57-58541420.86Gibbs et al., 2012
198-1209A-21H-3,58-59541430.78Gibbs et al., 2012
198-1209A-21H-3,59-60541440.83Gibbs et al., 2012
198-1209A-21H-3,60-61541460.95Gibbs et al., 201288.953this study
198-1209A-21H-3,61-62541471.17Gibbs et al., 2012
198-1209A-21H-3,62-63541481.39Gibbs et al., 2012
198-1209A-21H-3,63-64541491.29Gibbs et al., 2012
198-1209A-21H-3,64-65541501.35Gibbs et al., 2012
198-1209A-21H-3,65-66541511.44Gibbs et al., 201291.204this study
198-1209A-21H-3,66-67541521.33Gibbs et al., 2012
198-1209A-21H-3,67-68541531.47Gibbs et al., 2012
198-1209A-21H-3,68-69541541.46Gibbs et al., 2012
198-1209A-21H-3,69-70541561.58Gibbs et al., 2012
198-1209A-21H-3,70-71541571.50Gibbs et al., 201293.037this study
198-1209A-21H-3,71-72541581.50Gibbs et al., 2012
198-1209A-21H-3,72-73541591.48Gibbs et al., 2012
198-1209A-21H-3,73-74541601.61Gibbs et al., 2012
198-1209A-21H-3,74-75541611.58Gibbs et al., 201291.692this study
198-1209A-21H-3,80-81541681.59Gibbs et al., 201296.483this study
198-1209A-21H-3,85-86541731.47Gibbs et al., 201294.539this study
198-1209A-21H-3,90-91541791.49Gibbs et al., 201291.817this study
198-1209A-21H-3,95-96541851.54Gibbs et al., 201291.228this study
198-1209A-21H-3,98-99541881.39Gibbs et al., 201291.152this study
198-1209A-21H-3,104-105541951.72Gibbs et al., 201292.970this study
198-1209A-21H-3,109-110542001.58Gibbs et al., 201294.968this study
198-1209A-21H-3,114-115542061.52Gibbs et al., 201291.350this study
198-1209A-21H-3,119-120542111.56Gibbs et al., 201293.178this study
198-1209A-21H-3,124-125542171.54Gibbs et al., 201293.883this study
198-1209A-21H-3,129-130542221.55Gibbs et al., 201292.936this study
198-1209A-21H-3,134-135542281.46Gibbs et al., 201292.160this study
198-1209A-21H-3,139-140542331.56Gibbs et al., 201292.577this study
198-1209A-21H-3,144-145542391.49Gibbs et al., 201292.036this study
198-1209A-21H-3,149-150542451.48Gibbs et al., 201289.584this study