Nature of the Earth's earliest crust from hafnium isotopes in single detrital zircons

被引:738
|
作者
Amelin, Y [1 ]
Lee, DC
Halliday, AN
Pidgeon, RT
机构
[1] Royal Ontario Museum, Dept Earth Sci, Toronto, ON M5S 2C6, Canada
[2] Univ Michigan, Dept Geol Sci, Ann Arbor, MI 48109 USA
[3] ETH Zurich, Dept Earth Sci, CH-8092 Zurich, Switzerland
[4] Curtin Univ Technol, Sch Appl Geol, Bentley, WA 6102, Australia
关键词
D O I
10.1038/20426
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Continental crust forms from, and thus chemically depletes, the Earth's mantle. Evidence that the Earth's mantle was already chemically depleted by melting before the formation of today's oldest surviving crust has been presented in the form of Sm-Nd isotope studies of 3.8-4.0 billion years old rocks from Greenland(1-5) and Canada(5-7). But this interpretation has been questioned because of the possibility that subsequent perturbations may have re-equilibrated the neodymium-isotope compositions of these rocks(8). Independent and more robust evidence for the origin of the earliest crust and depletion of the Archaean mantle can potentially be provided by hafnium-isotope compositions of zircon, a mineral whose age can be precisely determined by U-Pb dating, and which can survive metamorphisms(4). But the amounts of hafnium in single zircon grains are too small for the isotopic composition to be precisely analysed by conventional methods. Here we report hafnium-isotope data, obtained using the new technique of multiple-collector plasma-source mass spectrometry(9), for 37 individual grains of the oldest known terrestrial zircons (from the Narryer Gneiss Complex, Australia, with U-Pb ages of up to 4.14 Gyr (refs 10-13)). We find that none of the grains has a depleted mantle signature, but that many were derived from a source with a hafnium-isotope composition similar to that of chondritic meteorites. Furthermore, more than half of the analysed grains seem to have formed by remelting of significantly older crust, indicating that crustal preservation and subsequent reworking might have been important processes from earliest times.
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页码:252 / 255
页数:4
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