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Poly-phase metamorphism of garnet-bearing mafic granulite from the Larsemann Hills, East Antarctica: P-T path, U-Pb ages and tectonic implications

机译:来自Larsemann Hills的石榴石MAFIC颗粒的多相变质,东南极洲:P-T路径,U-PB AGES和构造影响

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A rare garnet-bearing mafic granulite boulder has recently been identified from the Larsemann Hills, East Antarctica, with the development of two-stage decompression textures. Detailed petrographic study and P-T estimates suggest three distinct metamorphic stages: (1) peak ultrahigh-temperature (UHT) stage (M1) represented by coarse-grained garnet-orthopyroxene-bearing porphyroblastic assemblage, with P-T conditions of similar to 9.3 kbar and 900-950 degrees C; (2) post-peak decompression stage I (M2) represented by relatively coarse-grained orthopyroxene-plagioclase-ilmenite-bearing corona assemblage, with P-T conditions of 7.2-7.6 kbar and 810-830 degrees C; and (3) post-peak decompression stage II (M3) represented by fine-grained orthopyroxene-plagioclase-ilmenite-bearing symplectite assemblage on garnets and along garnet cracks, with P-T conditions of 6.2-6.9 kbar and 730-770 degrees C. Combined with P-T pseudosection calculation in the NCKFMASHTO system, these P-T data define a clockwise P-T path with post-peak two-stage decompression accompanied by important cooling. LA-ICP-MS zircon U-Pb age dating results show two weighted mean ages of 927 +/- 13 Ma and 547 +/- 30 Ma, suggesting that M1 UHT stage occurred in the early Neoproterozoic Rayner orogeny (990-900 Ma), whereas M2-M3 stages occurred during the early Palaeozoic Pan-African tectonic event (550-500 Ma). The peak P-T conditions, post-peak two-stage decompression P-T path and age data resemble those of the early Neoproterozoic garnet-bearing mafic granulite on Sostrene Island. It is inferred that the mafic granulite boulder may have been derived from the bedrock under inland ice sheet of the Larsemann Hills. Thus, the early Neoproterozoic metamorphism (M1) may reflect crustal thickening followed by post-orogenic extension likely associated with the assembly of Rodinia continent, while the overprinting of early Palaeozoic metamorphism (M2-M3) may reflect an extensive intra-continental reworking.
机译:最近从南部南极洲的Larsemann Hills识别出罕见的石榴石Mafic颗粒石巨石,随着两级减压纹理的发展。详细的岩度研究和PT估计表明,三个不同的变质阶段:(1)由粗粒石榴石型卟啉卟酚组合的峰值超高温度(UHT)阶段(M1),具有与9.3 kbar和900-相似的PT条件。 950℃; (2)由相对粗粒粒层的后峰值减压阶段I(M2)由相​​对粗糙的晶状体 - 普通蛋白酶 - 髂骨型电晕组件表示,P-T条件为7.2-7.6 kbar和810-830℃; (3)峰值减压阶段II(M3)由石榴石含有细粒度的胚层蛋白质 - 甲基纤维素组件,沿着石榴石裂缝,PT条件为6.2-6.9 kbar和730-770℃。组合在NCKFMASHTO系统中具有PT伪测量计算,这些PT数据定义了一个顺时针PT路径,伴随着峰值两级解压缩,伴随着重要的冷却。 La-ICP-MS Zircon U-PB年龄约会结果显示两次加权平均年龄927 +/- 13 mA和547 +/- 30 mA,表明M1 UHT阶段发生在早期的NeoProteroZoic rayner Orogeny(990-900 mA)中发生,而M2-M3阶段发生在古生学期泛非洲构造事件(550-500 mA)期间发生。峰值P-T条件,后峰值两阶段减压P-T路径和年龄数据类似于苏塞兰岛上的早期Neoproterozoic石榴石的乳头粒细胞。推断推断麦克风颗粒石巨石可能是雷克斯曼山的内陆冰盖下的基岩。因此,早期的新核古代变质(M1)可以反射地壳增厚,然后反射可能与罗尼尼亚大陆组合相关的眶后延伸,而早期的古生代变质(M2-M3)的互相印度可能会反映出一种广泛的欧式内部垫料。

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