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Contrasting oxygen fugacity of I- and S-type granites from the Aracuai orogen, SE Brazil: an approach based on opaque mineral assemblages

机译:从Aracuai Orogen,Se Brazil的I-和S型花岗岩的氧气抗氧气度假度:一种基于不透明矿物组合的方法

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摘要

This study presents mineralogical characterization of opaque assemblages from I- and S-type granites from the Aracuai orogen, southeastern Brazil that belong respectively, to the pre- and syn-collisional stages of the orogeny. Although these granites are geochemically well-characterized, with a robust geochemical, isotopic and geochronological database, their opaque minerals have not yet been investigated, and they provide important information about the oxygen fugacity and temperature conditions of their magmas. I-type granites (G1 Supersuite) consist of biotite hornblende granites and their opaque assemblage is ilmenite + pyrite + pyrrhotite +/- magnetite +/- Fe-Ti oxides +/- chalcopyrite. S-type rocks (G2 Supersuite) are biotite muscovite sillimanite granites with ilmenite + graphite + pyrrhotite + pyrite as opaques. Our results combined with literature data show that ranges for oxygen fugacity (fO(2)) are: I-type granitoids containing magnetite and free of pyrite and phyrrhotite likely crystallized under fO(2) between 10(-15) bars and 10(-8.5) bars, whereas magnetite free rocks containing pyrite and pyrrhotite should have crystallized with fO(2) higher than 10(-18) bars and lower than 10(-15) bars. Regarding S-type granites, they must have crystallized under fO(2) lower than 10(-18) bars.
机译:本研究介绍了从分别属于的Aracuai orogen的I-和S型花岗岩的不透明组合物的矿物质特征,分别属于organy的预先和同步攻击阶段。虽然这些花岗岩是地球化学的特征,但具有稳健的地球化学,同位素和地形数据库,尚未调查其不透明的矿物质,并且它们提供了有关磁性氧气逃逸性和温度条件的重要信息。 I型花岗岩(G1超级元素)由Biotite Hortblende花岗岩组成,它们的不透明组合是Ilmenite +吡啶蛋白+ PyrrHotite +/-磁铁矿+/- Fe-Ti氧化物+/-氯偶沸石。 S型岩石(G2超级岩)是Biotite Muscovite Sillimanite花岗岩,含有ilmenite +石墨+ Pyrrhotite +黄铁矿作为不渗透。我们的结果与文献数据相结合,氧气不足的范围(FO(2))是:含有磁铁矿的I型粉状,并且不含黄铁矿和Phyrlotite可能在10(-15)条之间的(2)之间和10( - 8.5)棒,而含有黄铁矿和Pyrrhotite的磁铁矿岩石应具有高于10(-18)杆的FO(2)和低于10(-15)条。关于S型花岗岩,它们必须在低于10(2)杆的FO(2)下结晶。

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