首页> 外文期刊>Journal of geodynamics >A Petrologic And Laser Raman Spectroscopic Study Ofsapphirine-spinel-quartz-mg-staurolite Inclusions In Garnet From Kumiloothu, Southern India: Implications For Extreme Metamorphism In A Collisional Orogen
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A Petrologic And Laser Raman Spectroscopic Study Ofsapphirine-spinel-quartz-mg-staurolite Inclusions In Garnet From Kumiloothu, Southern India: Implications For Extreme Metamorphism In A Collisional Orogen

机译:岩石和激光拉曼光谱研究印度南部Kumiloothu石榴石中的蓝宝石-尖晶石-石英-mg-星形石包裹体:碰撞造山带中极端变质的意义

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We report the occurrence of sapphirine, spinel, quartz and Mg-staurolite as inclusions in garnet from quartzo-feldspathic gneiss and garnet-biotite gneisses in the northernmost sector of the Madurai Granulite Block along the Palghat-Cauvery Shear Zone System in southern India, suggesting metamorphism under ultrahigh-temperature conditions. Poikiloblastic garnet grains contain numerous inclusions of quartz, rutile, apatite, biotite and zircon with rare associations of sapphirine + spinel and sapphirine + staurolite. We characterize the inclusion population based on detailed petrologic, mineral chemical and laser Raman spectroscopic studies. A direct contact of sapphirine and/or spinel with the quartz inclusions within garnet is not seen, which we attribute to the low modal abundances of sapphirine and spinel, and/or the progress of reactions during retrograde metamorphism. Staurolite occurs as inclusions in garnet and is partially mantled by sapphirine. suggesting the progress of the reaction: St → Grt + Spr + Sil or Ky + H_2O. Such relict occurrences of staurolite with Mg/(Fe + Mg) of 0.42-0.44 are regarded as evidence of prograde high-pressure metamorphism in the northern Madurai Block. Lack of sillimanite or kyanite within garnet implies that all aluminosilicates have been completely consumed by reactions: Grt + Sil → Spr + Qtz and/or Grt + Sil → Spl+Qtz to form possible sapphirine + quartz and/or spinel + quartz assemblages. Our results confirm that the northern Madurai Block along the Palghat-Cauvery Shear Zone System underwent high-pressure and ultrahigh-temperature metamorphism along a decompressional clockwise P-T-time path associated with the collisional amalgamation of southern India with the Gondwana supercontinent assembly.
机译:我们报告了印度南部玛杜赖花岗岩块最北段的石英长石状片麻岩和石榴石-黑云母片麻岩中的石榴石中的蓝宝石,尖晶石,尖晶石,石英和镁-辉石的夹杂物的存在,这表明在高温下的变质。珍珠母石榴石晶粒包含大量的石英,金红石,磷灰石,黑云母和锆石,以及稀有的蓝宝石+尖晶石和蓝宝石+人造石。我们基于详细的岩石学,矿物化学和激光拉曼光谱研究来表征包裹体的数量。蓝宝石和/或尖晶石与石榴石中的石英夹杂物没有直接接触,这归因于蓝宝石和尖晶石的低模态丰度,和/或逆行变质过程中反应的进行。恒星石以石榴石的内含物形式存在,部分被蓝宝石覆盖。提示反应进程:St→Grt + Spr + Sil或Ky + H_2O。 Mg /(Fe + Mg)为0.42-0.44的星形辉石的这种残存事件被认为是北部马杜赖区块高压高压变质的证据。石榴石中缺少硅线石或蓝晶石意味着所有铝硅酸盐已被反应完全消耗:Grt + Sil→Spr + Qtz和/或Grt + Sil→Spl + Qtz形成可能的蓝宝石+石英和/或尖晶石+石英组合。我们的研究结果证实,沿着Palghat-Cauvery剪切带系统的Madurai块体北部经历了沿减压P-T时间路径的高压和超高温变质作用,该路径与印度南部与冈瓦纳超大陆组件的碰撞合并有关。

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