首页> 外文期刊>Journal of Mineralogical and Petrological Sciences >Petrology and phase equilibrium modeling of spinel-sapphirine-bearing mafic granulite from Akarui Point, Luetzow-Holm Complex, East Antarctica: Implications for the P-T path
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Petrology and phase equilibrium modeling of spinel-sapphirine-bearing mafic granulite from Akarui Point, Luetzow-Holm Complex, East Antarctica: Implications for the P-T path

机译:南极东部Luetzow-Holm复杂地区Akarui点的含尖晶石-蓝宝石的镁铁质花岗质花岗岩的岩石学和相平衡模型:对P-T路径的影响

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摘要

We report new petrological and P-T data for spinel-sapphirine-bearing mafic granulite from Akarui Point in the upper amphibolite- to granulite-facies transitional zone of the Luetzow-Holm Complex (LHC), East Antarctica, and provide unequivocal evidence for extreme crustal metamorphism possibly associated with the collisional orogeny during the Neoproterozoic. The reaction microstructures in the rock suggest the stability of the pro-grade pargasite + garnet + orthopyroxene + plagioclase + hematite assemblage followed by the formation of plagioclase + orthopyroxene + spinel + sapphirine symplectite after garnet. The application of mineral equilibrium modeling on the mafic granulite in the system NCFMASHTO yields a prograde condition of 11-12 kbar and ~ 900 ℃, followed by decompression to the peak stage (Pgs + Pl + Opx + Spl ± H_2O) of 5-6 kbar and 900-920 ℃, and subsequent cooling to less than 890 ℃, possibly along a clockwise P-T path. The high-temperature and possibly ultrahigh-temperature condition observed at Akarui Point might reflect an effect of a local thermal event or the presence of an exotic crustal block within the LHC, which are essentially associated with the complex collisional evolution of this region during the assembly of Gondwana.
机译:我们报告了南极东部Luetzow-Holm复杂体(LHC)的上部闪石-花岗石相过渡带中从Akarui点的尖晶石-蓝宝石-镁铁质花岗质花岗岩的新岩石学和PT数据,并提供了明确的证据表明地壳极端变质可能与新元古代的碰撞造山运动有关。岩石中的反应微观结构表明前级辉石+石榴石+原辉石+斜长石+赤铁矿集合体的稳定性,然后在石榴石之后形成斜长石+原辉石+尖晶石+蓝宝石复合球。矿物平衡模型在NCFMASHTO系统中对镁铁质花岗石的应用产生了11-12 kbar的升温条件和〜900℃,然后减压至5-6的峰期(Pgs + Pl + Opx + Spl±H_2O) kbar和900-920℃,然后冷却至890℃以下,可能沿顺时针PT路径进行。在Akarui Point观察到的高温和可能的超高温条件可能反映了LHC内部局部热事件或奇异的地壳块的存在,这与该区域在组装过程中的复杂碰撞演化有关。冈瓦纳。

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