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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Titaniferous accessory minerals in very low-grade metamorphic rocks, Keweenaw Peninsula Michigan, USA
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Titaniferous accessory minerals in very low-grade metamorphic rocks, Keweenaw Peninsula Michigan, USA

机译:美国密歇根州Keweenaw半岛极低品位变质岩中的含钛辅助矿物

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摘要

Titanite, TiO2, and pseudorutile are associated with primary igneous Fe-oxide grains in basalt and rhyolite clasts from the Keweenaw Peninsula, Michigan, USA which were metamorphosed to the prehnite-pumpellyite fades. Pseudorutile occurs with titanite +TiO2 in broad lamellae within titaniferous magnetites. It also occurs as intergrowths with titanite and Fe-oxide in embayments within primary oxide grains and in composite Fe-oxide-titanite grains that appear to represent nearly complete replacement of original Ti-bearing Fe-oxides. Thin {111} lamellae in titaniferous magnetite grains contain titanite, titanite + TiO2 and titanite +TiO2 + Fe-oxide. TiO2 also occurs by itself in networks of closely spaced small elongated lenses in Fe-Ti oxides. Concentrations of CaAlSi04F + CaAlSi04(OH) in titanite range from 0 to 30%. The large variation in titanite compositions suggests that equilibrium was not achieved except on a very local scale: a conclusion also supported by local variations in the assemblages of Ti-bearing secondary minerals. Textures and mineral assemblages indicate that ulvospinel lamellae were altered to titanite and/or TiO2 polymorphs while ilmenite was altered to pseudorutile and titanite ±TiO2. The relative proportions of TiO2 and titanite appear to reflect local variations in the composition of the metamorphic fluid phase that may be linked to the degree of interaction with a hydrothermal fluid. Titanite-rich regions may indicate a greater degree of fluid flushing than TiO2-rich regions. Textures and mineral assemblages cannot distinguish between models in which pseudorutile and a TiO2 polymorph formed during weathering or diagenesis followed by conversion of TiO2 to titanite during metamorphism and models in which pseudorutile formed, together with titanite and TiO2, during metamorphism. In either case, pseudorutile was able to persist through prehnite-pumpellyite metamorphism suggesting that it can be a significant Ti-rich accessory mineral in very low-grade metamorphic rocks.
机译:钛铁矿,TiO2和假金红石与来自美国密歇根州Keweenaw半岛的玄武岩和流纹岩碎屑中的原生火成岩Fe氧化物颗粒相关,这些变质作用变成了锂铁矿-球墨铸铁的衰变。假金红石与钛铁矿磁铁矿中的宽片状钛矿+ TiO2一起发生。它也以钛氧化物和Fe-氧化物的共生形式出现在初级氧化物晶粒内的复合体中,并出现在复合Fe-氧化物-钛铁矿晶粒中,这些晶粒似乎几乎完全替代了原始含Ti的Fe-氧化物。钛磁铁矿晶粒中的薄{111}薄片包含钛铁矿,钛铁矿+ TiO2和钛铁矿+ TiO2 +铁氧化物。 TiO2本身也存在于Fe-Ti氧化物中间隔很小的细长透镜的网络中。钛矿中CaAlSiO 4 F + CaAlSiO 4(OH)的浓度为0至30%。钛铁矿成分的巨大变化表明,只有在非常局部的规模上才能达到平衡:这一结论也得到含钛次生矿物组合的局部变化的支持。纹理和矿物组合表明,ulspinespinel片状体转变为钛矿和/或TiO2多晶型物,而钛铁矿则转变为假金红石和钛矿±TiO2。 TiO 2和钛矿的相对比例似乎反映了变质流体相组成中的局部变化,该变化可能与与热液流体的相互作用程度有关。富含钛矿的区域可能比富含TiO2的区域显示出更大程度的流体冲洗。在风化或成岩过程中形成假金红石和TiO2多晶型物,然后在变质过程中将TiO2转化成钛铁矿的模型与变质过程中假金红石以及钛铁矿和TiO2一起形成的模型之间,纹理和矿物组合无法区分。在这两种情况下,假金红石都能通过葡萄石-铅锌矿变质持续存在,这表明它可能是非常低品位的变质岩中重要的富钛辅助矿物。

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