Literature DB >> 17759123

Time differences in the formation of meteorites as determined from the ratio of lead-207 to lead-206.

M Tatsumoto, R J Knight, C J Allegre.   

Abstract

Measurements of the lead isotopic composition and the uranium, thorium, and lead concentrations in meteorites were made in order to obtain more precise radiometric ages of these members of the solar system. The newly determined value of the lead isotopic composition of Canyon Diablo troilite is as follows: (206)Pb/(204)Pb = 9.307, (207)Pb/(2O4)Pb = 10.294, and (208)Pb/(204)Pb = 29.476. The leads of Angra dos Reis, Sioux County, and Nuevo Laredo achondrites are very radiogenic, the (206)Pb/(204)Pb values are about 200, and the uranium-thorium-lead systems are nearly concordant. The ages of the meteorites as calculated from a single-stage (207)Pb/(206)Pb isochron based on the newly determined primordial lead value and the newly reported (235)U and (838)U decay constants, are 4.528 x 10(9) years for Sioux County and Nuevo Laredo and 4.555 x 10(9) years for Angra dos Reis. When calculated with the uranium decay constants used by Patterson, these ages are 4.593 x 10(9) years and 4.620 x 10(9) years, respectively, and are therefore 40 to 70 x 10(6) years older than the 4.55 x 10(9) years age Patterson reported. The age difference of 27 x 10(6) years between Angra dos Reis and the other two meteorites is compatible with the difference between the initial (87)Sr/(86)Sr ratio of Angra dos Reis and that of seven basaltic achondrites observed by Papanastassiou and Wasserburg. The time difference is also comparable to that determined by (129)1-(129)Xe chronology. The ages of ordinary chondrites (H5 and L6) range from 4.52 to 4.57 x 10(9) years, and, here too, time differences in the formation of the parent bodies or later metamorphic events are indicated. Carbonaceous chondrites(C2 and C3) appear to contain younger lead components.

Entities:  

Year:  1973        PMID: 17759123     DOI: 10.1126/science.180.4092.1279

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  9 in total

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2.  Volatile accretion history of the terrestrial planets and dynamic implications.

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Journal:  Nature       Date:  2009-10-29       Impact factor: 49.962

3.  Long-term preservation of Hadean protocrust in Earth's mantle.

Authors:  Jonas Tusch; J Elis Hoffmann; Eric Hasenstab; Mario Fischer-Gödde; Chris S Marien; Allan H Wilson; Carsten Münker
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Authors:  Peter Jenniskens; Mohutsiwa Gabadirwe; Qing-Zhu Yin; Alexander Proyer; Oliver Moses; Tomas Kohout; Fulvio Franchi; Roger L Gibson; Richard Kowalski; Eric J Christensen; Alex R Gibbs; Aren Heinze; Larry Denneau; Davide Farnocchia; Paul W Chodas; William Gray; Marco Micheli; Nick Moskovitz; Christopher A Onken; Christian Wolf; Hadrien A R Devillepoix; Quanzhi Ye; Darrel K Robertson; Peter Brown; Esko Lyytinen; Jarmo Moilanen; Jim Albers; Tim Cooper; Jelle Assink; Läslo Evers; Panu Lahtinen; Lesedi Seitshiro; Matthias Laubenstein; Nggie Wantlo; Phemo Moleje; Joseph Maritinkole; Heikki Suhonen; Michael E Zolensky; Lewis Ashwal; Takahiro Hiroi; Derek W Sears; Alexander Sehlke; Alessandro Maturilli; Matthew E Sanborn; Magdalena H Huyskens; Supratim Dey; Karen Ziegler; Henner Busemann; My E I Riebe; Matthias M M Meier; Kees C Welten; Marc W Caffee; Qin Zhou; Qiu-Li Li; Xian-Hua Li; Yu Liu; Guo-Qiang Tang; Hannah L McLain; Jason P Dworkin; Daniel P Glavin; Philippe Schmitt-Kopplin; Hassan Sabbah; Christine Joblin; Mikael Granvik; Babutsi Mosarwa; Koketso Botepe
Journal:  Meteorit Planet Sci       Date:  2021-04-23       Impact factor: 2.487

5.  Early formation of planetary building blocks inferred from Pb isotopic ages of chondrules.

Authors:  Jean Bollard; James N Connelly; Martin J Whitehouse; Emily A Pringle; Lydie Bonal; Jes K Jørgensen; Åke Nordlund; Frédéric Moynier; Martin Bizzarro
Journal:  Sci Adv       Date:  2017-08-09       Impact factor: 14.136

6.  Pb-Pb Dating of Terrestrial and Extraterrestrial Samples Using Resonance Ionization Mass Spectrometry.

Authors:  F Scott Anderson; Carolyn Crow; Jonathan Levine; Tom J Whitaker
Journal:  Earth Space Sci       Date:  2020-10-23       Impact factor: 2.900

7.  Unique evidence of fluid alteration in the Kakowa (L6) ordinary chondrite.

Authors:  I P Baziotis; C Ma; Y Guan; L Ferrière; S Xydous; J Hu; M A Kipp; F L H Tissot; P D Asimow
Journal:  Sci Rep       Date:  2022-04-12       Impact factor: 4.996

8.  Early accretion of protoplanets inferred from a reduced inner solar system 26Al inventory.

Authors:  Martin Schiller; James N Connelly; Aslaug C Glad; Takashi Mikouchi; Martin Bizzarro
Journal:  Earth Planet Sci Lett       Date:  2015-06-15       Impact factor: 5.255

9.  Pb-Pb dating of individual chondrules from the CBa chondrite Gujba: Assessment of the impact plume formation model.

Authors:  Jean Bollard; James N Connelly; Martin Bizzarro
Journal:  Meteorit Planet Sci       Date:  2015-07-16       Impact factor: 2.487

  9 in total

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