Coupled 182W-142Nd constraint for early Earth differentiation

Recent high precision 142Nd isotope measurements showed that global silicate differentiation may have occurred as early as 30–75 Myr after the Solar System formation [Bennett V, et al. (2007) Science 318:1907–1910]. This time scale is almost contemporaneous with Earth’s core formation at ∼30 Myr [Yi...

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Bibliographic Details
Published in:Proceedings of the National Academy of Sciences
Main Authors: Moynier, Frederic, Yin, Qing-Zhu, Irisawa, Keita, Boyet, Maud, Jacobsen, Benjamin, Rosing, Minik T.
Format: Text
Language:English
Published: National Academy of Sciences 2010
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Online Access:http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2890712
http://www.ncbi.nlm.nih.gov/pubmed/20534492
https://doi.org/10.1073/pnas.0913605107
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Summary:Recent high precision 142Nd isotope measurements showed that global silicate differentiation may have occurred as early as 30–75 Myr after the Solar System formation [Bennett V, et al. (2007) Science 318:1907–1910]. This time scale is almost contemporaneous with Earth’s core formation at ∼30 Myr [Yin Q, et al. (2002) Nature 418:949–952]. The 182Hf-182W system provides a powerful complement to the 142Nd results for early silicate differentiation, because both core formation and silicate differentiation fractionate Hf from W. Here we show that eleven terrestrial samples from diverse tectonic settings, including five early Archean samples from Isua, Greenland, of which three have been previously shown with 142Nd anomalies, all have a homogeneous W isotopic composition, which is ∼2ε-unit more radiogenic than the chondritic value. By using a 3-stage model calculation that describes the isotopic evolution in chondritic reservoir and core segregation, as well as silicate differentiation, we show that the W isotopic composition of terrestrial samples provides the most stringent time constraint for early core formation (27.5–38 Myr) followed by early terrestrial silicate differentiation (38–75 Myr) that is consistent with the terrestrial 142Nd anomalies.