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Andreasen, Gretchen Hampt; Delaney, Margaret Lois (2000): (Table A1) CaCO3 contents and Sr/Ca ratios in ODP Leg 130, 138 and 154 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.745110, Supplement to: Andreasen, GH; Delaney, ML (2000): Bulk calcite size fraction distribution and Sr/Ca composition for deep-sea sediments at selected age horizons. Marine Geology, 169(1-2), 185-205, https://doi.org/10.1016/S0025-3227(00)00051-7

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Abstract:
Strontium/calcium (Sr/Ca) ratios in bulk and foraminiferal calcite have been used to constrain the history of Sr/Ca in the oceans and to evaluate calcite diagenetic alteration. However bulk Sr/Ca records also may be influenced by differences in Sr uptake and/or in the diagenetic susceptibility of different calcium carbonate sedimentary components. We present data on the sediment size fraction and calcium carbonate distribution in bulk samples, Sr/Ca in a range of sedimentary size components, and Sr/Ca in bulk sediments. Ocean Drilling Program samples from sites on Ontong Java Plateau and Ceara Rise (in the western equatorial Pacific and Atlantic, respectively) and from sites in the eastern equatorial Pacific were selected to represent progressive stages in the diagenetic pathway from the sea floor through a range of burial depths equivalent to sediment ages of ~5.6, ~9.4, and ~37.1 Ma. Samples were subdivided by size to produce a unique data set of size-specific Sr/Ca ratios. Fine fraction (<45 ?m) Sr/Ca ratios are higher than those of all corresponding coarse fractions, indicating that fine nannofossil-dominated calcite has a Sr partition coefficient 1.3–1.5 times greater than that of coarse foraminifera-dominated calcite. Thus, absolute values of bulk Sr/Ca in contemporaneous samples reflect, in part, the ratio of fine to coarse calcite sedimentary components. Sr/Ca values in fine and coarse components also behave differently in their response to pre-burial dissolution and to recrystallization at depth. Coarse size components are sensitive to bottom water carbonate ion undersaturation, and they lose original Sr/Ca differences among contemporary samples over not, vert, similar10 my. In contrast, fine components recrystallize faster in more deeply buried samples. Interpretation of the historical Sr/Ca record is complicated by post-depositional diagenetic artifacts, and thus our data do not provide clear evidence of specific temporal changes in oceanic Sr/Ca ratios over the past 10 million years. This paper represents the first systematic attempt to examine trends in calcite Sr/Ca as a function of sediment size fraction and age.
Project(s):
Coverage:
Median Latitude: 2.655370 * Median Longitude: -129.766677 * South-bound Latitude: -3.094930 * West-bound Longitude: 156.625000 * North-bound Latitude: 7.921317 * East-bound Longitude: -43.488900
Date/Time Start: 1990-01-29T15:30:00 * Date/Time End: 1994-03-21T08:45:00
Minimum DEPTH, sediment/rock: 0.00 m * Maximum DEPTH, sediment/rock: 987.18 m
Event(s):
130-803C * Latitude: 2.430000 * Longitude: 160.540000 * Date/Time Start: 1990-01-29T15:30:00 * Date/Time End: 1990-01-31T00:45:00 * Elevation: -3410.4 m * Penetration: 237.5 m * Recovery: 226.31 m * Location: North Pacific Ocean * Campaign: Leg130 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 23 cores; 218.5 m cored; 0 m drilled; 103.6 % recovery
130-803D * Latitude: 2.433000 * Longitude: 160.541000 * Date/Time Start: 1990-01-31T00:45:00 * Date/Time End: 1990-02-07T03:30:00 * Elevation: -3412.2 m * Penetration: 656 m * Recovery: 494.96 m * Location: North Pacific Ocean * Campaign: Leg130 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 71 core; 656 m cored; 0 m drilled; 75.5 % recovery
130-804A * Latitude: 0.937000 * Longitude: 161.650000 * Date/Time Start: 1990-02-07T15:45:00 * Date/Time End: 1990-02-08T07:00:00 * Elevation: -3861.7 m * Penetration: 48.7 m * Recovery: 50.52 m * Location: North Pacific Ocean * Campaign: Leg130 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 6 cores; 48.7 m cored; 0 m drilled; 103.7 % recovery
Comment:
Depth, sediment = mbsf
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEvent
2Sample code/labelSample labelAndreasen, Gretchen HamptDSDP/ODP/IODP sample designation
3DEPTH, sediment/rockDepth sedmGeocode
4AGEAgeka BPGeocode
5Calcium carbonateCaCO3%Andreasen, Gretchen HamptCoulometrybulk
6Strontium/Calcium ratioSr/CaAndreasen, Gretchen Hamptbulk
7Size fraction > 0.425 mm>425 µmgAndreasen, Gretchen Hampt
8Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element>425 µm
9Size fraction 0.425-355 mm425-355 µmgAndreasen, Gretchen Hampt
10Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element355-425 µm
11Size fraction 0.355-0.250 mm355-250 µmgAndreasen, Gretchen Hampt
12Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element250-355 µm
13Size fraction 0.250-0.125 mm250-125 µmgAndreasen, Gretchen Hampt
14Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element125-150 µm
15Size fraction 0.125-0.063 mm125-63 µmgAndreasen, Gretchen Hampt
16Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element63-125 µm
17Size fraction 0.063-0.045 mm63-45 µmgAndreasen, Gretchen Hampt
18Calcium carbonateCaCO3%Andreasen, Gretchen HamptCoulometry45-63 µm
19Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element45-63 µm
20Size fraction < 0.045 mm<45 µmgAndreasen, Gretchen Hampt
21Calcium carbonateCaCO3%Andreasen, Gretchen HamptCoulometry<45 µm
22Strontium/Calcium ratioSr/CaAndreasen, Gretchen Hampt<45 µm
23MassMassgAndreasen, Gretchen HamptCalculatedlost weight
24Size fraction > 0.063 mm, sand>63 µmgAndreasen, Gretchen HamptCalculatedcorrected weigth
25Size fraction < 0.045 mm<45 µmgAndreasen, Gretchen HamptCalculatedcorrected weigth
26Strontium/Calcium ratioSr/CaAndreasen, Gretchen HamptICP-MS, Thermo Finnigan Mat, Element>45 µm
Size:
891 data points

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