(Table DR1) Argon isotope data and dating for individual >63 µm amphibole grains from Labrador Sea sediments, ODP Hole 105-647A

Reynolds, Ben C;Sherlock, Sarah C;Kelley, Simon P;Burton, Kevin W

Description

Variations of global and regional silicate weathering rates and paleo-ocean circulation patterns are estimated by using radiogenic isotope records, but the effects of changes in provenance are generally ignored. Here sediment provenance has been constrained through the use of Ar-Ar ages for individual detrital minerals from the Labrador Sea, which can be compared directly to the radiogenic isotope compositions from the same core material. Dramatic changes in the radiogenic isotope composition of North Atlantic Deep Water through the Quaternary Period are shown to reflect discrete changes in both sources and weathering processes accompanying Northern Hemisphere glaciation. Changes in the different radiogenic isotope systems reflect the influence of source, physical weathering, and chemical weathering, and not simply changes in the underlying weathering rate or ocean circulation patterns that are typically inferred.

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Mentions (0)

Metrics

Dataset Index

0.7

FAIR Score

92%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

PANGAEA

License

Creative Commons Attribution 3.0 Unported

Assigned Domain

Subfield

Geochemistry and Petrology

Field

Earth and Planetary Sciences

Domain

Physical Sciences

Confidence Score

50%

Source

Scholar Data Model

Keywords

AGESample code/labelNumberMethod commentArgon-40Argon-40, standard deviationArgon-39Standard deviationArgon-36/Argon-39Argon-36/Argon-39 ratio, standard deviationArgon-37/Argon-39Argon-37/Argon-39 ratio, standard deviationArgon-38/Argon-39Argon-38/Argon-39 ratio, standard deviationArgon-40/Argon-39Argon-40/Argon-39 ratio, standard deviationAge, datedAge, dated, standard deviationDrilling/drill rigDSDP/ODP/IODP sample designationInfrared laser ablation microprobe (IRLAMP)CalculatedLeg105Joides ResolutionOcean Drilling Program (ODP)

Normalization Factors

FT

94.23

CTw

1.00

MTw

1.00