4.6 Article

Post-peak metamorphic evolution of the Sumdo eclogite from the Lhasa terrane of southeast Tibet

期刊

JOURNAL OF ASIAN EARTH SCIENCES
卷 143, 期 -, 页码 156-170

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jseaes.2017.04.020

关键词

Tibet; Lu-Hf geochronology; Garnet; Sumdo eclogite

资金

  1. National Key Research and Development Program of China [2016YFC0601000]
  2. National Natural Science Foundation of China [41573046]

向作者/读者索取更多资源

A reconstruction of the pressure-temperature-time (P-T-t) path of high-pressure eclogite-facies rocks in subduction zones may reveal important information about the tectono-metamorphic processes that occur at great depths along the plate interface. The majority of studies have focused on prograde to peak metamorphism of these rocks, whereas after-peak metamorphism has received less attention. Herein, we present a detailed petrological, pseudosection modeling and radiometric dating study of a retrograded eclogite sample from the Sumdo ultrahigh pressure belt of the Lhasa terrane, Tibet. Mineral chemical variations, textural discontinuities and thermodynamic modeling suggest that the eclogite underwent an exhumation-heating period. Petrographic observations and phase equilibria modeling suggest that the garnet cores formed at the pressure peak (similar to 2.5 GPa and similar to 520 degrees C) within the lawsonite eclogite-facies and garnet rims (similar to 1.5 GPa and < 650 degrees C) grew during post peak amphibole eclogite-facies metamorphism. The metamorphic evolution of the Sumdo eclogite is characterized by a clockwise P-T path with a heating stage during early exhumation, a finding that conflicts with previously reported heating-compression P-T paths for the Sumdo eclogite. A garnet-whole rock Lu-Hf age of 266.6 +/- 0.7 Ma, which is consistent with the loosely constrained zircon U-Pb age of 261 +/- 15 Ma within uncertainty, was obtained for the sample. The peak metamorphic temperature of the sample is lower than the Lu-Hf closure temperature of garnet, which combined with the general core-to-rim decrease in the Mn and Lu concentrations and the occurrence of a second maximum Lu peak in the inner rim, is consistent with the Lu-Hf system skewing to the age of the garnet inner rim. Thus the Lu-Hf age likely reflects late eclogite-facies metamorphism. The new U-Pb and Lu-Hf ages, together with previously published radiometric dating results, suggest that the overall growth of garnet spans an interval of similar to 7 million years, which is a minimum estimate of the duration of the eclogite-facies metamorphism of the Sumdo eclogite.

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