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P-T-t evolution of Neoarchaean to Paleoproterozoic pelitic granulites from the Jidong terrane, eastern North China Craton

机译:新东地区新古木古古古古代肉质粒子的P-T-T演化

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Four metamorphic mineral assemblages, formed at different metamorphic stages, are identified in pelitic granulites exposed in the Jidong terrane, east Hebei Province, North China Craton (NCC). Prograde mineral assemblages (M-1) are represented by biotite, plagioclase, quartz, and ilmenite, preserved as mineral inclusions within garnet porphyroblasts. Peak mineral assemblages (M-2), which are represented by the garnet cores, rutile, pseudomorphs of sillimanite after kyanite, and some matrix minerals, formed at P-T conditions of similar to 12-13 kbar/820-850 degrees C. Post-peak mineral assemblages (M-3), which consist of the inner rims of garnets and some matrix minerals, formed at P-T conditions of similar to 11 kbar/850 degrees C. The final retrograde mineral assemblages (M-4) are mainly represented by matrix biotite without rutile exsolution, and minor matrix plagioclase with relatively high anorthite content. High-resolution secondary ion mass spectrometry (SIMS) U-Pb dating of metamorphic zircons demonstrates that the pelitic granulites possibly reached the peak metamorphic stage at similar to 2.5 Ga. Younger metamorphic ages (2.41-2.45 Ga) possibly represent the cooling ages of the granulites. Accordingly, the pelitic granulites exposed in the Jidong terrane record clockwise P-T-t paths with sequential isothermal decompression (ITD) and isobaric cooling (IBC) segments, likely caused by a subduction-collision event during the late Neoarchean to early Palaeoproterozoic in the eastern NCC. (C) 2016 Elsevier B.V. All rights reserved.
机译:在河北省东河北省东河北省的冀东地区(NCC)揭露不同变质阶段,在不同变质阶段形成的四个变质矿物组合。促进矿物组合(M-1)由Biotite,Plagioclase,石英和Ilmenite表示,作为石榴石细胞内的矿物质夹杂物。峰值矿物组合(M-2),由石榴石核,金红石,kyanite后Sillimanite的假素,以及在类似于12-13 kbar / 820-850c的Pt条件下形成的一些基质矿物质。峰值矿物组件(M-3),其由装甲内缘和一些基质矿物质组成,在PT条件下类似于11kbar / 850℃的Pt条件。最终逆行矿物组合(M-4)主要代表基质Biotite没有金红石的exolution,和具有相对高稳健含量的次要基质镀锌酶。变质氧化锆的高分辨率二次离子质谱(SIMS)U-PB约会表明,骨质粒度可能达到类似于2.5Ga的峰变质阶段。年轻的变质年龄(2.41-2.45 GA)可能代表了冷却年龄肉芽籽。因此,在Jidong Terrane中暴露的骨质粒度在jidong terrane中揭示了顺时针的p-t-t路径,其具有顺序等温度减压(ITD)和异级冷却(IBC)段,可能由在NCC东部古古典古代古代古代古代古代古代古代古代古代郊区的俯冲碰撞事件引起的。 (c)2016年Elsevier B.v.保留所有权利。

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