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A high precision U–Pb age of metamorphic rutile in coesite-bearing eclogite from the Dabie Mountains in central China: a new constraint on the cooling history
Authors:Qiuli Li  Shuguang Li  Yong-Fei Zheng  Huimin Li  Hans Joachim Massonne  Qingchen Wang
Institution:

a School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China

b Tianjin Institute of Geology and Mineral Resources, Tianjin 300170, China

c Institut für Mineralogie and Kristallchemie, Universität Stuttgart, Azenbergstr. 18, 70174, Stuttgart, Germany

d Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China

Abstract:This paper first reports a high precision U–Pb age of 218±1.2 Ma for rutile in coesite-bearing eclogite from Jinheqiao in the Dabie Mounteins, east–central China. This work shows that the U–Pb mineral (rutile+omphacite) isochron age of 218±2.5 Ma and conventional rutile U–Pb concordia age of 218±1.2 Ma obtained by common Pb correction based on the Pb isotopic composition of omphacite in the same eclogite sample are consistent, proving that the omphacite with low U/Pb ratio (μ=2.8) can be used for common Pb correction in U–Pb dating of rutile. Oxygen isotope analysis of rutile aliquots gave the consistent δ18O values of ?6.1±0.1%, demonstrating oxygen isotope homogenization in the rutile of different grains as inclusion in garnet and grain in matrix. Oxygen isotope thermometry yields temperatures of 695±35 and 460±15 °C for quartz–garnet and quartz–rutile pairs, respectively. These oxygen isotopic observations suggest that the diffusion of oxygen in rutile as inclusion in garnet is not controlled by garnet. According to field-based thermochronological studies of rutile, an estimate of the Tc of about 460 °C for U–Pb system in rutile under rapid cooling conditions (not, vert, similar20 °C/Ma) was advised. Based on this U–Pb age as well as the reported chronological data with their corresponding metamorphic and/or closure temperature, an improved Tt path has been constructed. The Tt path confirms that the UHPM rocks in South Dabie experienced a rapid cooling following the peak metamorphism before 220 Ma and a long isothermal stage from 213 to 180 Ma around 425 °C.
Keywords:Rutile  Coesite-bearing eclogite  U–Pb dating  Cooling history  Closure temperature
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