Ion microprobe U-Pb dating of a dinosaur tooth

被引:24
|
作者
Sano, Y [1 ]
Terada, K
Ly, CV
Park, EJ
机构
[1] Univ Tokyo, Ocean Res Inst, Ctr Adv Marine Res, Nakano Ku, Tokyo 1648639, Japan
[2] Hiroshima Univ, Dept Earth & Planetary Sci, Higashihiroshima 7398526, Japan
[3] Kyungpook Natl Univ, Dept Earth Sci, Taegu, South Korea
关键词
fossil tooth; dinosaur; U-Pb dating; rare earth elements; diagenetic process;
D O I
10.2343/geochemj.40.171
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Ion microprobe U-Pb dating of apatite is applied to a fossil tooth of a Allosaurid derived from the Hasandong Formation in the Gyeongsang basin, southeastern Korea. Twelve spots on a single fragment of the fossil dentine yield a Tera-Wasserburg concordia intercept age of 115 +/- 10 Ma (2 sigma, MSWD = 0.59) on a (238)u/Pb-206-Pb-207/(PbPb)-Pb-206-Pb-204/Pb-206 diagram. The age provides a constraint on the depositional age of the fossil in its host Hasandong Formation as Early Aptian. The success of the ion microprobe dating depends on the heterogeneities of diagenetically incorporated U and Pb at the few hundred pm scale, the consequent variations in Pb isotopic compositions due to radioactive decay and the closed-system behavior of U and Pb. There are at least three end-members to explain the variations of minor chemical components such as FeO, SiO,, and Al2O3, and trace elements such as Th, U and rare earth elements (REE) in the sample by a simple mixing model. They are (1) very low minor and REE, very high common Pb with variable U abundances, (2) low common Pb, high minor, REE, and U abundances, and (3) low minor, common Pb, and U with intermediate REE abundances, even though groups (2) and (3) may consist of a larger group. Various contributions of the three (and/or two) end-members during diagenetic prosesses may cause the elemental fractionation of U and Pb in a fossil tooth.
引用
收藏
页码:171 / 179
页数:9
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