4.7 Article

Ultrahigh temperature (UHT) mafic granulites in the East Hebei, North China Craton: Constraints from a comparison between temperatures derived from REE-based thermometers and major element-based thermometers

期刊

GONDWANA RESEARCH
卷 46, 期 -, 页码 156-169

出版社

ELSEVIER
DOI: 10.1016/j.gr.2017.02.017

关键词

REE-based thermometer; Ultrahigh-temperature metamorphism; Mafic granulite; North China Craton

资金

  1. National Natural Science Foundation of China [41430207]

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The extrapolation of the newly developed REE-based thermometers of Liang et al. (2013) and Sun and Liang (2015) to the Neoarchean mafic granulites in the East Hebei of North China Craton shows that the REE-based thermometers yield temperatures that are 150-350 degrees C for clinopyroxene-orthopyroxene pair and 100-150 degrees C for garnet-clinopyroxene pair higher than those from the major element-based Fe-Mg thermometers, implying that the REE-based thermometers are more reliable to recover the peak metamorphic temperature of granulites. Detailed petrographic investigations suggest that three types of mafic granulites from east to west in the East Hebei can be recognized, as two-pyroxene granulites in the Taipingzhai zone, garnet two-pyroxene granulites in the Saheqiao zone and garnet clinopyroxene granulites in the Malanyu zone. P-T estimation using major element-and REE-based thermobarometers yield UHT conditions of 1025-1060 degrees C/0.9 GPa and 950-1070 degrees C/1.0 GPa for the clinopyroxene-orthopyroxene pair in granulites from the Taipingzhai and Saheqiao zones, and high-pressure granulite conditions of 800-875 degrees C/1.0-1.4 GPa for the garnet-clinopyroxene pair in granulites from the Malanyu zone. All the granulites show the P-T paths characterized by cooling from their peak conditions to late amphibolite-facies of 720-780 degrees C. The peak P-T conditions of the two-pyroxene and garnet-bearing granulites indicate a paired type of metamorphism with contrasting geothermal gradients of similar to 40 degrees C/km and similar to 20 degrees C/km, being particular in the Neoarchean high-grade terranes. (C) 2017 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.

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