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首页> 外文期刊>The American mineralogist >Magnetite-rutile symplectite derived from ilmenite-hematite solid solution in the Xinjie Fe-Ti oxide-bearing, mafic-ultramafic layered intrusion (SW China)
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Magnetite-rutile symplectite derived from ilmenite-hematite solid solution in the Xinjie Fe-Ti oxide-bearing, mafic-ultramafic layered intrusion (SW China)

机译:钛铁矿-赤铁矿固溶体中的磁铁矿-金红石共晶体,在新界含铁钛氧化物的铁质-超镁铁质层状侵入体中(中国大陆)

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摘要

A unique symplectitic intergrowth of magnetite + rutile is hosted by ilmenite in the gabbro of the Xinjie Fe-Ti oxide-bearing, mafic-ultramafic layered intrusion. The crystallization of rutile in the symplectite is probably formed by oxidation of ilmenite-hematite solid solution (Ilm-Hem(ss)). Segregation of Fe3+ in the Ilm-Hem(ss) at the rutile-host interfaces triggered the crystallization of magnetite along the margin of the growing rutile, and shaped the vermicular morphology of the rutile. The crystallization of magnetite can also locally release Ti4+ to enhance the progressive growth and subsequent nucleation of rutile in the symplectite. The growth of the symplectite ceased when the temperature decreased to that of the miscibility gap of Ilm-Hem(ss) and Fe3+ began to exsolve to form hematite lamellae in the ilmenite.
机译:钛铁矿在含新界铁钛氧化物的铁镁铁超音速层状侵入体的辉长岩中以磁铁矿+金红石的独特共生性为主体。金红石在复合物中的结晶可能是由钛铁矿-赤铁矿固溶体(Ilm-Hem(ss))的氧化形成的。在金红石-主体界面处的Ilm-Hem(ss)中Fe3 +的偏析触发了金红石沿生长的金红石边缘的结晶,并塑造了金红石的蠕虫形态。磁铁矿的结晶还可以局部释放Ti4 +,以增强逐步生长和随后在金红石中形成金红石形核。当温度降低到Ilm-Hem(ss)的可混溶间隙的温度时,亚硫酸铜的生长停止,Fe3 +开始在钛铁矿中溶解形成赤铁矿片晶。

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