首页> 外文期刊>Journal of mineralogical and petrological sciences >Possible polymetamorphism and brine infiltration recorded in the garnet–sillimanite gneiss, Skallevikshalsen, Lützow–Holm Complex, East Antarctica
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Possible polymetamorphism and brine infiltration recorded in the garnet–sillimanite gneiss, Skallevikshalsen, Lützow–Holm Complex, East Antarctica

机译:在南极东部的石榴石-硅线石片麻岩,Skallevikshalsen,Lützow-HolmComplex中记录到可能的多态性和盐水渗透

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Chlorine–rich (>0.3 wt%Cl) biotite inclusions in the core of garnet porphyroblasts in the garnet–sillimanite (Grt–Sil) gneiss from Skallevikshalsen, Lützow–Holm Complex (LHC), East Antarctica is estimated to be stable under >1.2 GPa, 820–850 °C, coexisted with granitic melt as suggested by the nanogranite/felsite inclusions. Rare occurrence of matrix biotite, in spite of the common occurrence of biotite as inclusions in garnet, suggests almost complete consumption of pre–existed matrix biotite during the prograde to peak metamorphism. Brine infiltration during prograde to peak metamorphism in Skallevikshalsen is supported by Cl–rich scapolite described in previous studies. Brine infiltration and progress of continuous biotite–consuming melting reactions were probably responsible for elevating the Cl content of biotite in the studied sample.?In situ electron microprobe U–Th–Pb dating of monazite and the in situ laser ablation inductively coupled plasma mass spectrometry (LA–ICPMS) U–Pb dating of zircon in the Grt–Sil gneiss revealed that both monazite and zircon has the ‘older age population’ with ~ 650–580 Ma and the ‘younger age population’ with ~ 560–500 Ma. The REE and trace element pattern of one of the P–rich patches in the garnet core is different from the P–rich garnet rim. The isotope mapping of the same patch by LA–ICPMS revealed that the patch is also observed as a domain depleted in ~(51)V, ~(89)Y, ~(165)Ho, ~(166)Er, ~(169)Tm, ~(172)Yb, and ~(175)Lu. Clear difference in ~(51)V concentration between the patch and the garnet rim suggests that this patch is not a continuous part from the garnet rim, but is likely a relic of preexisted garnet. Kyanite included in the patch suggests that the precursor rock was presumably a medium– to high–pressure type metamorphic rock. Presence of the older age population (~ 650–580 Ma) monazites in Skallevikshalsen and Skallen also suggest that rocks in these areas experienced polymetamorphism, and resetting by the ~ 560–500 Ma metamorphic event was incomplete in these areas. Taking into account the presence of Cl–rich biotite inclusions in garnet, infiltration of brine accompanied by partial melting is one probable event that took place at ~ 560–500 Ma in the Skallevikshalsen area, and part of the monazite possibly recrystallized by this brine infiltration.?Detailed microstructural observation using trace element mapping combined with detailed petrography especially focusing on the Cl–bearing minerals as a tracer of brines would become a powerful tool for better interpreting the results of monazite and zircon dating and for investigating the fluid–related crustal processes.
机译:在南极东部的拉斯库夫-霍尔姆综合体(LHC)的Skallevikshalsen的石榴石-硅线石(Grt-Sil)片麻岩中,石榴石成岩细胞的核心中富含氯(> 0.3 wt%Cl)的黑云母包裹体估计在> 1.2以下稳定GPa,820–850°C,与花岗岩熔体共存,这是纳米花岗岩/铁矾土包裹体所建议的。尽管黑云母常见于石榴石中,但很少发生基质黑云母,这表明在升级到峰变质过程中,几乎完全消耗了预先存在的基质黑云母。在Skallevikshalsen升至峰变质过程中,盐水的浸入得到了先前研究中所述的富含Cl的方沸石的支持。盐水的渗透和连续消耗黑云母的熔融反应的进展可能是导致所研究样品中黑云母的Cl含量升高的原因。独居石的原位电子微探针U–Th–Pb测年和原位激光烧蚀电感耦合等离子体质谱(LA–ICPMS)在Grt–Sil片麻岩中​​锆石的U–Pb测年表明,独居石和锆石均具有650〜580 Ma左右的“老年人口”和560〜500 Ma的“年轻人口”。石榴石核心中富含P的斑块之一的REE和痕量元素模式与富含P的石榴石边缘不同。通过LA–ICPMS对同一斑块的同位素作图表明,该斑块还被观察为〜(51)V,〜(89)Y,〜(165)Ho,〜(166)Er,〜(169)中耗尽的结构域Tm,〜(172)Yb和〜(175)Lu。补片和石榴石边缘之间的〜(51)V浓度存在明显差异,表明该补片不是石榴石边缘的连续部分,而可能是预先存在的石榴石遗迹。斑块中包含的蓝晶石表明该前体岩可能是中高压型变质岩。 Skallevikshalsen和Skallen中年龄较大的人群(约650–580 Ma)独居石的存在也表明这些地区的岩石经历了多变质作用,而在560-500 Ma的变质事件作用下的复位在这些地区是不完整的。考虑到石榴石中富含Cl的黑云母包裹体,在Skallevikshalsen地区大约560-500 Ma发生了盐水渗透并伴有部分熔化的现象,部分独居石可能因盐水渗透而重结晶。 。?使用微量元素测绘结合详细的岩相学进行的详细的微观结构观察,尤其是将含氯矿物作为盐水的示踪剂,将成为更好地解释独居石和锆石定年结果以及研究与流体有关的地壳过程的有力工具。 。

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