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  • PANGAEA  (9)
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  • 1
    Publication Date: 2023-07-20
    Description: Biomarker metadata and data for cores MD99-2331, MD95-2040, and MD95-2042: depth, age, summed OH-GDGT, iGDGT, and di-unsaturated and tri-unsaturated C37 alkenone concentrations, OH-GDGT-based, iGDGT-based, and alkenone-based paleothermometric indices, GDGT-2/GDGT-3 ratio, and biomarker-based sea surface temperature (SST) and 0‐ to 200‐m sea temperature (subT; gamma function probability distribution for target temperatures with a = 4.5 and b = 15) estimates. The 1σ analytical uncertainties are 0.008 (0.5 °C) for RI-OH, 0.007 (0.2 °C) for RI-OH′, 0.003 (0.1 °C) for TEX86, 0.263 for GDGT-2/GDGT-3, and 0.010 (0.26 °C) for UK′37. RI-OH′-SST estimates are from the following global calibration: SST = (RI-OH′ + 0.029)/0.0422 (Fietz et al., 2020). RI-OH-SST estimates are from the following global calibration: SST = (RI-OH − 1.11)/0.018 (Lü et al., 2015). TEX86H-SST estimates are from the following regional paleocalibration: SST = 68.4 × TEX86H + 33.0 (Darfeuil et al., 2016). UK′37-SST estimates are from the following global calibration: SST = 29.876 × UK′37 − 1.334 (Conte et al., 2006). Bayesian calibrations were also used for TEX86-SST and TEX86-subT estimates (BAYSPAR; Tierney & Tingley, 2014, 2015) and for UK′37-SST estimates (BAYSPLINE; Tierney & Tingley, 2018). Core MD95-2040 UK′37 and summed di-unsaturated and tri-unsaturated C37 alkenone concentration data are from Pailler and Bard (2002). Core MD95-2042 UK′37 and summed di-unsaturated and tri-unsaturated C37 alkenone concentration data covering the 70–45 ka BP period are from Darfeuil et al. (2016). GDGT data for core MD95-2042 samples with TEX86 values below 0.4 are deemed anomalous and are thus excluded from any description and analysis. MIS, Marine Isotope Stage; DO, Dansgaard–Oeschger event; GS, Greenland stadial; H, Heinrich event; GDGT, glycerol dialkyl glycerol tetraether; and N/A, not available.
    Keywords: Alkenones; GDGTs; Iberian margin; IMAGES; International Marine Global Change Study; RI-OH; Sea surface temperature; TEX86; UK'37
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Expected Availability
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  • 2
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    PANGAEA
    In:  Supplement to: Davtian, Nina; Ménot, Guillemette; Fagault, Yoann; Bard, Edouard (2019): Western Mediterranean Sea Paleothermometry Over the Last Glacial Cycle Based on the Novel RI‐OH Index. Paleoceanography and Paleoclimatology, 34(4), 616-634, https://doi.org/10.1029/2018PA003452
    Publication Date: 2023-07-20
    Description: Metadata (core/borehole, section, and sample name) and original data (depth, age, and tetraether-based data) generated by Davtian et al. (2019). The age model is based on Sierro et al. (2009) and Frigola et al. (2012). The 1σ analytical uncertainties are 0.009 for RI-OH (Ring Index of hydroxylated tetraethers), 0.003 for TEX86 (TetraEther indeX of tetraethers consisting of 86 carbon atoms), BIT (Branched and Isoprenoid Tetraether index), and MI (Methane Index), and 0.019 for RI (Ring Index). These correspond to ranges of 0.5 and 0.2 °C in RI-OH-temperatures and TEX86-temperatures, respectively. The calibration used for RI-OH-based sea surface temperature (SST) reconstructions is SST = (RI-OH - 1.11)/0.018 (Lü et al., 2015).
    Keywords: 103; AGE; Aude east; Bavenit; Branched and isoprenoid tetraether index; CALYPSO; Calypso Corer; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Event label; glycerol dialkyl glycerol tetraethers; Gulf of Lions; IMAGES; IMAGES V; International Marine Global Change Study; Marine isotope stage; Marion Dufresne (1995); MD114; MD99-2348; Methane index; PRGL1-4; Profiles across Mediterranean Sedimentary Systems; PROMESS; PROMESS1; Ring index; Ring index of hydroxylated glycerol dialkyl glycerol tetraethers; Ring index of tetraether index of 86 carbon atoms; Sample code/label; Sea surface temperature; Sea surface temperature, annual mean; Section; SST, from Ri OH-GDGTs, Lü et al. (2015); SST, from TEXH86, BAYSPAR (BAYesian SPAtially-varying Regression) (Tierney and Tingley, 2014, 2015); Tetraether index of 86 carbon atoms
    Type: Dataset
    Format: text/tab-separated-values, 6375 data points
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  • 3
    Publication Date: 2024-01-19
    Keywords: AGE; Alkenone, C37:2+C37:3; Alkenone, unsaturation index UK'37; Alkenones; Calculated according to Lü et al. (2015); Calculated according to Schouten et al. (2002); Calculated from C37 alkenones (Prahl & Wakeham, 1987); CALYPSO; Calypso Corer; Comment; Defined by synchronization to the Chinese speleothem record by Cheng et al. (2016); DEPTH, sediment/rock; Dicyclic glycerol dialkyl glycerol tetraether/Tricyclic glycerol dialkyl glycerol tetraether ratio; GDGTs; Hydroxylated acyclic glycerol dialkyl glycerol tetraether; Hydroxylated glycerol dialkyl glycerol tetraethers; Hydroxylated monocyclic glycerol dialkyl glycerol tetraether + hydroxylated dicyclic glycerol dialkyl glycerol tetraether; Iberian margin; IMAGES; IMAGES V; International Marine Global Change Study; Isoprenoid glycerol dialkyl glycerol tetraethers; Marine isotope stage; Marion Dufresne (1995); MD114; MD99-2331; Ring index of hydroxylated glycerol dialkyl glycerol tetraethers; RI-OH; Sea surface temperature; Sea surface temperature, annual mean; SST, from Ri OH-GDGTs, Fietz et al. (2020); SST, from Ri OH-GDGTs, Lü et al. (2015); SST, from TEXH86, BAYSPAR (BAYesian SPAtially-varying Regression) (Tierney and Tingley, 2014, 2015); SST, from TEXH86, Darfeuil et al. (2016); SST, from UK'37, BAYSPLINE (Tierney and Tingley, 2018); SST, from UK'37 (Conte et al., 2006); Taylor et al. (2013); Temperature, water, annual mean; Tetraether index of 86 carbon atoms; Tetraether index of 86 carbon atoms of isoprenoid glycerol dialkyl glycerol tetraether; TEX86; UK'37; Vigo
    Type: Dataset
    Format: text/tab-separated-values, 5000 data points
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  • 4
    Publication Date: 2024-03-18
    Description: This dataset consists in a composite Greenland atmospheric temperature record, which was built with the following records: the GISP2 atmospheric temperature record by Kobashi et al. (2017) for the 10–0 ka BP period, the NGRIP atmospheric temperature record by Kindler et al. (2014) for the 120–10 ka BP period, and the NEEM atmospheric temperature record by NEEM community members (2013) for the 129–120 ka BP period. The NEEM temperature anomalies obtained by NEEM community members (2013) were shifted by –31 °C to obtain absolute air temperatures. The employed age model is the one of Davtian and Bard (2023) for Greenland and Antarctic ice-core records.
    Keywords: AGE; air temperature; Alkenones; Antarctica; d18O; DRILL; Drilling/drill rig; Event label; GDGTs; GISP; GISP2; Greenland; Iberian margin; ICEDRILL; Ice drill; NEEM; NGRIP; NorthGRIP; Reference/source; RI-OH; Sampling/drilling ice; Sea surface temperature; Temperature, air; TEX86; UK'37
    Type: Dataset
    Format: text/tab-separated-values, 31252 data points
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  • 5
    Publication Date: 2024-06-26
    Keywords: AGE; Alkenone, C37:2+C37:3; Alkenone, unsaturation index UK'37; Alkenones; Calculated according to Lü et al. (2015); Calculated according to Schouten et al. (2002); Calculated from C37 alkenones (Prahl & Wakeham, 1987); CALYPSO; Calypso Corer; Comment; Defined by synchronization to the Chinese speleothem record by Cheng et al. (2016); DEPTH, sediment/rock; Dicyclic glycerol dialkyl glycerol tetraether/Tricyclic glycerol dialkyl glycerol tetraether ratio; GDGTs; Hydroxylated acyclic glycerol dialkyl glycerol tetraether; Hydroxylated glycerol dialkyl glycerol tetraethers; Hydroxylated monocyclic glycerol dialkyl glycerol tetraether + hydroxylated dicyclic glycerol dialkyl glycerol tetraether; Iberian margin; IMAGES; IMAGES I; International Marine Global Change Study; Isoprenoid glycerol dialkyl glycerol tetraethers; Marine isotope stage; Marion Dufresne (1995); MD101; MD952040; MD95-2040; Porto Seamount; Ring index of hydroxylated glycerol dialkyl glycerol tetraethers; RI-OH; Sea surface temperature; Sea surface temperature, annual mean; SST, from Ri OH-GDGTs, Fietz et al. (2020); SST, from Ri OH-GDGTs, Lü et al. (2015); SST, from TEXH86, BAYSPAR (BAYesian SPAtially-varying Regression) (Tierney and Tingley, 2014, 2015); SST, from TEXH86, Darfeuil et al. (2016); SST, from UK'37, BAYSPLINE (Tierney and Tingley, 2018); SST, from UK'37 (Conte et al., 2006); Taylor et al. (2013); Temperature, water, annual mean; Tetraether index of 86 carbon atoms; Tetraether index of 86 carbon atoms of isoprenoid glycerol dialkyl glycerol tetraether; TEX86; UK'37
    Type: Dataset
    Format: text/tab-separated-values, 2996 data points
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  • 6
    Publication Date: 2024-06-26
    Keywords: AGE; Alkenone, C37:2+C37:3; Alkenone, unsaturation index UK'37; Alkenones; Calculated according to Lü et al. (2015); Calculated according to Schouten et al. (2002); Calculated from C37 alkenones (Prahl & Wakeham, 1987); CALYPSO; Calypso Corer; Comment; Defined by synchronization to the Chinese speleothem record by Cheng et al. (2016); DEPTH, sediment/rock; Dicyclic glycerol dialkyl glycerol tetraether/Tricyclic glycerol dialkyl glycerol tetraether ratio; GDGTs; Hydroxylated acyclic glycerol dialkyl glycerol tetraether; Hydroxylated glycerol dialkyl glycerol tetraethers; Hydroxylated monocyclic glycerol dialkyl glycerol tetraether + hydroxylated dicyclic glycerol dialkyl glycerol tetraether; Iberian margin; IMAGES; IMAGES I; International Marine Global Change Study; Isoprenoid glycerol dialkyl glycerol tetraethers; Marge Ibérique; Marine isotope stage; Marion Dufresne (1995); MD101; MD952042; MD95-2042; Ring index of hydroxylated glycerol dialkyl glycerol tetraethers; RI-OH; Sea surface temperature; Sea surface temperature, annual mean; SST, from Ri OH-GDGTs, Fietz et al. (2020); SST, from Ri OH-GDGTs, Lü et al. (2015); SST, from TEXH86, BAYSPAR (BAYesian SPAtially-varying Regression) (Tierney and Tingley, 2014, 2015); SST, from TEXH86, Darfeuil et al. (2016); SST, from UK'37, BAYSPLINE (Tierney and Tingley, 2018); SST, from UK'37 (Conte et al., 2006); Taylor et al. (2013); Temperature, water, annual mean; Tetraether index of 86 carbon atoms; Tetraether index of 86 carbon atoms of isoprenoid glycerol dialkyl glycerol tetraether; TEX86; UK'37
    Type: Dataset
    Format: text/tab-separated-values, 11294 data points
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  • 7
    Publication Date: 2024-06-29
    Description: Core MD95-2042 alkenone and GDGT data: This dataset provides the following information for core MD95-2042: depth, age, summed OH-GDGT, iGDGT, and di-unsaturated and tri-unsaturated C37 alkenone concentrations, OH-GDGT-based, iGDGT-based, and alkenone-based paleothermometric indices, GDGT-2/GDGT-3 ratio, and biomarker-based sea surface temperature (SST) and 0‐ to 200‐m sea temperature (subT; gamma function probability distribution for target temperatures with a = 4.5 and b = 15) estimates. Sediment samples were taken every 5 cm from core MD95-2042 and homogenized before lipid extraction. The lipid extracts were splitted into two fractions: one for alkenone analysis by gas chromatography coupled to a flame ionization detector, and the other for GDGT analysis by high-performance liquid chromatography coupled to mass spectrometry. All GDGT analyses were done in duplicate. The 1σ analytical uncertainties from 37 replicate analyses of the core catcher sample from core MD95-2042 are 0.007 (0.4 °C) for RI-OH, 0.008 (0.2 °C) for RI-OH′, 0.003 (0.2 °C) for TEX86, 0.238 for GDGT-2/GDGT-3, and 0.010 (0.26 °C) for UK′37. RI-OH′-SST estimates are from the following global calibration: SST = (RI-OH′ + 0.029)/0.0422 (Fietz et al., 2020). RI-OH-SST estimates are from the following global calibration: SST = (RI-OH − 1.11)/0.018 (Lü et al., 2015). TEX86H-SST estimates are from the following regional paleocalibration: SST = 68.4 × TEX86H + 33.0 (Darfeuil et al., 2016). UK′37-SST estimates are from the following global calibration: SST = 29.876 × UK′37 − 1.334 (Conte et al., 2006). Bayesian calibrations were also used for TEX86-SST and TEX86-subT estimates (BAYSPAR; Tierney & Tingley, 2014, 2015) and for UK′37-SST estimates (BAYSPLINE; Tierney & Tingley, 2018). Alkenone data covering the 160–70 and 70–0 ka BP periods are from Davtian et al. (2021) and Darfeuil et al. (2016), respectively. GDGT data covering the 160–45 ka BP period are from Davtian et al. (2021). The age model of core MD95-2042 for the 160–43 and 43–0 ka BP periods was obtained by tuning to Chinese speleothems (Cheng et al., 2016) and by recalibrating existing 14C ages with the Marine20 calibration curve (Heaton et al., 2020), respectively. MIS, Marine Isotope Stage; GDGT, glycerol dialkyl glycerol tetraether; and N/A, not available. Greenland atmospheric temperature record: This dataset consists in a composite Greenland atmospheric temperature record, which was built with the following records: the GISP2 atmospheric temperature record by Kobashi et al. (2017) for the 10–0 ka BP period, the NGRIP atmospheric temperature record by Kindler et al. (2014) for the 120–10 ka BP period, and the NEEM atmospheric temperature record by NEEM community members (2013) for the 129–120 ka BP period. The NEEM temperature anomalies obtained by NEEM community members (2013) were shifted by –31 °C to obtain absolute air temperatures. The employed age model is the one of Davtian and Bard (2023) for Greenland and Antarctic ice-core records. Antarctic δ18Oice and atmospheric temperature stacks: This dataset consists in two stacks of three Antarctic records (EDC, EDML, and WD), one for δ18Oice and the other for atmospheric temperature: both stacks are provided with their stacking uncertainties. To build the Antarctic δ18Oice stack, the Antarctic δ18Oice records were resampled every 10 years before centering to zero means and normalization to unit standard deviations over the 140–0 ka BP period (68–0 ka BP for WD). To optimize the continuity between the portions with and without the WD ice core, the Antarctic δ18Oice records were centered to zero means over the 68–67 ka BP period. The resulting Antarctic δ18Oice records were then averaged and stacking uncertainties were calculated as the pooled standard deviation of the stacked Antarctic δ18Oice records divided by the square root of the number of stacked Antarctic δ18Oice records. The final Antarctic δ18Oice stack, expressed in ‰, has the same standard deviation as the δ18Oice record from EDML over the 140–0 ka BP period, and has a zero mean over the 1–0 ka BP. The Antarctic atmospheric temperature stack was built like the Antarctic δ18Oice stack, except that the Antarctic δ18Oice records were corrected for seawater δ18Oice variations before conversion into atmospheric temperature. The employed age model is the one of Davtian and Bard (2023) for Greenland and Antarctic ice-core records.
    Keywords: air temperature; Alkenones; Antarctica; d18O; GDGTs; Greenland; Iberian margin; IMAGES; International Marine Global Change Study; RI-OH; Sea surface temperature; TEX86; UK'37
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 8
    Publication Date: 2024-06-29
    Description: This dataset consists in two stacks of three Antarctic records (EDC, EDML, and WD), one for δ18Oice and the other for atmospheric temperature: both stacks are provided with their stacking uncertainties. To build the Antarctic δ18Oice stack, the Antarctic δ18Oice records were resampled every 10 years before centering to zero means and normalization to unit standard deviations over the 140–0 ka BP period (68–0 ka BP for WD). To optimize the continuity between the portions with and without the WD ice core, the Antarctic δ18Oice records were centered to zero means over the 68–67 ka BP period. The resulting Antarctic δ18Oice records were then averaged and stacking uncertainties were calculated as the pooled standard deviation of the stacked Antarctic δ18Oice records divided by the square root of the number of stacked Antarctic δ18Oice records. The final Antarctic δ18Oice stack, expressed in ‰, has the same standard deviation as the δ18Oice record from EDML over the 140–0 ka BP period, and has a zero mean over the 1–0 ka BP. The Antarctic atmospheric temperature stack was built like the Antarctic δ18Oice stack, except that the Antarctic δ18Oice records were corrected for seawater δ18Oice variations before conversion into atmospheric temperature. The employed age model is the one of Davtian and Bard (2023) for Greenland and Antarctic ice-core records.
    Keywords: AGE; air temperature; Alkenones; Antarctica; Antarctica, west; Calculated according to Parrenin et al. 2013; Calculated according to Parrenin et al. 2013; Bintanja et al. 2008; Core; d18O; Dome C; Dome C, Antarctica; EDC; EDML; EDRILL; EPICA-Campaigns; EPICA Dome C; EPICA drill; EPICA Dronning Maud Land, DML28C01_00; GDGTs; Greenland; Iberian margin; ICEDRILL; Ice drill; IMAGES; International Marine Global Change Study; Kohnen Station; RI-OH; Sea surface temperature; Temperature, air; Temperature, air, standard deviation; TEX86; UK'37; WAIS Divide; WDC-06A; δ18O, water; δ18O, water, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 69900 data points
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  • 9
    Publication Date: 2024-06-26
    Description: This dataset provides the following information for core MD95-2042: depth, age, summed OH-GDGT, iGDGT, and di-unsaturated and tri-unsaturated C37 alkenone concentrations, OH-GDGT-based, iGDGT-based, and alkenone-based paleothermometric indices, GDGT-2/GDGT-3 ratio, and biomarker-based sea surface temperature (SST) and 0‐ to 200‐m sea temperature (subT; gamma function probability distribution for target temperatures with a = 4.5 and b = 15) estimates. Sediment samples were taken every 5 cm from core MD95-2042 and homogenized before lipid extraction. The lipid extracts were splitted into two fractions: one for alkenone analysis by gas chromatography coupled to a flame ionization detector, and the other for GDGT analysis by high-performance liquid chromatography coupled to mass spectrometry. All GDGT analyses were done in duplicate. The 1σ analytical uncertainties from 37 replicate analyses of the core catcher sample from core MD95-2042 are 0.007 (0.4 °C) for RI-OH, 0.008 (0.2 °C) for RI-OH′, 0.003 (0.2 °C) for TEX86, 0.238 for GDGT-2/GDGT-3, and 0.010 (0.26 °C) for UK′37. RI-OH′-SST estimates are from the following global calibration: SST = (RI-OH′ + 0.029)/0.0422 (Fietz et al., 2020). RI-OH-SST estimates are from the following global calibration: SST = (RI-OH − 1.11)/0.018 (Lü et al., 2015). TEX86H-SST estimates are from the following regional paleocalibration: SST = 68.4 × TEX86H + 33.0 (Darfeuil et al., 2016). UK′37-SST estimates are from the following global calibration: SST = 29.876 × UK′37 − 1.334 (Conte et al., 2006). Bayesian calibrations were also used for TEX86-SST and TEX86-subT estimates (BAYSPAR; Tierney & Tingley, 2014, 2015) and for UK′37-SST estimates (BAYSPLINE; Tierney & Tingley, 2018). Alkenone data covering the 160–70 and 70–0 ka BP periods are from Davtian et al. (2021) and Darfeuil et al. (2016), respectively. GDGT data covering the 160–45 ka BP period are from Davtian et al. (2021). The age model of core MD95-2042 for the 160–43 and 43–0 ka BP periods was obtained by tuning to Chinese speleothems (Cheng et al., 2016) and by recalibrating existing 14C ages with the Marine20 calibration curve (Heaton et al., 2020), respectively. MIS, Marine Isotope Stage; GDGT, glycerol dialkyl glycerol tetraether; and N/A, not available.
    Keywords: AGE; air temperature; Alkenone, C37:3+C37:2; Alkenone, unsaturation index UK'37; Alkenones; Antarctica; Calculated according to Lü et al. (2015); Calculated according to Schouten et al. (2002); Calculated after Conte et al. (2006); Calculated from TEX86 (Tierney and Tingley, 2014, 2015); Calculated from UK37 (Prahl and Wakeham, 1987); CALYPSO; Calypso Corer; Comment; d18O; DEPTH, sediment/rock; Dicyclic glycerol dialkyl glycerol tetraether/Tricyclic glycerol dialkyl glycerol tetraether ratio; GDGTs; Greenland; Hydroxylated acyclic glycerol dialkyl glycerol tetraether; Hydroxylated glycerol dialkyl glycerol tetraethers; Hydroxylated monocyclic glycerol dibiphytanyl glycerol tetraether; Iberian margin; IMAGES; IMAGES I; International Marine Global Change Study; Isoprenoid glycerol dialkyl glycerol tetraethers; Marge Ibérique; Marine isotope stage; Marion Dufresne (1995); MD101; MD952042; MD95-2042; Ring index of hydroxylated glycerol dialkyl glycerol tetraethers; RI-OH; Sample code/label; Sea surface temperature; Sea surface temperature, annual mean; SST, from Ri OH-GDGTs, Fietz et al. (2020); SST, from RI-OH Lü et al. (2015); SST, from TEXH86, Darfeuil et al. (2016); SST, from UK'37, BAYSPLINE (Tierney and Tingley, 2018); Sub-surface temperature; Taylor et al. (2013); Tetraether index of 86 carbon atoms; Tetraether index of 86 carbon atoms of isoprenoid glycerol dialkyl glycerol tetraether; TEX86; UK'37
    Type: Dataset
    Format: text/tab-separated-values, 21514 data points
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