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Isotope Evolution of the Depleted Mantle

哈代人 地幔(地质学) 地质学 行星分化 结壳 大陆地壳 太古宙 地球化学 地球内部热量收支 地壳再循环 早期地球 陨石 原始地幔 大洋地壳 地球科学 天体生物学 地幔对流 古生物学 俯冲 部分熔融 构造学 物理
作者
Jeffrey D. Vervoort,Anthony I.S. Kemp
出处
期刊:Annual Review of Earth and Planetary Sciences [Annual Reviews]
标识
DOI:10.1146/annurev-earth-031621-112052
摘要

The depleted mantle reservoir is that part of Earth's mantle from which crust has been extracted, leaving the remaining mantle depleted in incompatible elements. Knowing how and when it formed is essential for understanding the chemical evolution of Earth, including formation of continental crust. The best-constrained Hf isotope data presented here indicate that the mantle does not become significantly depleted until as late as 700 million years after Earth's accretion. This onset of mantle depletion coincides with the first appearance of substantial volumes of continental crust in the geological record. These data compel a revision to the reference depleted mantle parameters used in Hf isotope studies of planetary evolution. This new reference line follows chondritic evolution until 3.8 Ga and then describes a linear trajectory to a present-day depleted mid-ocean ridge basalt source mantle composition (ε Hf = +18). We infer that stabilization of continental crust only occurred in earnest on Earth after 3.8 Ga. ▪ Hf isotopes show that Earth's mantle does not become significantly depleted until 700 million years after planetary accretion. ▪ Most of Earth's oldest rocks formed from mantle sources that had radiogenic isotope compositions similar to those of chondritic meteorites. ▪ Isotope evidence shows that Hadean (>4.0-billion-year-old) crust was not essential for formation of younger crust in Archean terranes. ▪ Growth of Earth's continents only began in earnest after 3.8 Ga.
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