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REE geochemistry of altered tectonites in the Huize base-metal district, Yunnan, China

机译:云南会泽贱金属矿区蚀变构造岩的稀土元素地球化学

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摘要

Hydrothermally altered tectonites (e.g. mylonites, cataclasites) occur in ore-controlling fault zones in the Huize base-metal district. Non-altered wallrocks and altered but non-mineralized tectonites have similar REE characteristics indicating seawater origin of the host carbonate rocks but with significant terrigenous input. Calcite gangues in mineralized (argillaceous/barite-bearing) tectonites and tectonite ores contain the highest REE values and exhibit convex-upward and roughly roof-shaped REE patterns with positive Eu anomalies, which are typical of hydrothermal crustal fluids. Negative Ce and negative La anomalies in calcite gangues imply hydrothermal fluids that previously interacted with marine and terrigenous rocks underlying the carbonate host rocks. Similarities in the REE characteristics of mineralized tectonites with those of the non-altered wallrocks and non-mineralized tectonites support earlier propositions that hydrothermal fluids were derived from the Kunyang Group basement rocks. REE characteristics of mineralized (argillaceous/barite-bearing) tectonites indicate fluid-wallrock interactions during migration of hydrothermal fluids along faults. Convex-upward REE patterns of tectonite ores were likely due to remobilization of early-formed base-metal sulphides whereas convex-upward REE patterns of strongly mineralized tectonites (i.e. with disseminated-massive base-metal sulphides) were likely due to recrystallization of early formed calcite gangues. REE characteristics of altered tectonites due to fluid-rock interactions during fluid migration and metal/mineral remobilization/recrystallization are depicted in Y/Ho-La/ Ho, Tb/Ca-Tb/La, and Yb/Ca-Yb/La plots of the data. Migration of hydrothermal fluids along ore-controlling faults was likely induced by seismic pumping associated with tectonic deformation, whereas the remobilization/recrystallization process likely occurred in 'pressure shadows' along ore-controlling faults.
机译:在会泽贱金属矿区的控矿断层带中发生热液蚀变的构造体(如my石,白云母)。未改变的围岩和蚀变但未矿化的构造体具有相似的稀土元素特征,表明宿主碳酸盐岩的海水成因,但陆源输入量很大。矿化(含泥质/重晶石)构造体和膨润土矿石中的方解石脉石含有最高的稀土元素值,并呈现出向上凸起和大致呈屋顶形的稀土元素图案,并具有正Eu异常,这是热液地壳流体的典型特征。方解石脉石中Ce的负异常和La的负异常意味着热液与碳酸盐岩宿主岩下面的海相和陆源岩相互作用。矿化构造岩与未变质围岩和非矿化构造岩的REE特征相似,这支持了早先提出的热液来自昆阳群基底岩的观点。矿化(含泥质/重晶石)构造岩的稀土元素特征表明热液沿断层运移过程中流体与围岩的相互作用。构造矿矿石的凸向上REE模式很可能是由于早期形成的贱金属硫化物的迁移引起的,而强矿化构造岩(即具有弥散性大量贱金属硫化物)的凸向上REE模式很可能是由于早期形成的重结晶而引起的。方解石脉石。 Y / Ho-La / Ho,Tb / Ca-Tb / La和Yb / Ca-Yb / La图描述了在流体迁移和金属/矿物固定/再结晶过程中由于流体-岩石相互作用而导致的蚀变构造岩的REE特征。数据。热液沿着控矿断层的迁移很可能是由于与构造变形有关的地震抽运引起的,而迁移/再结晶过程可能发生在控矿断层的“压力阴影”中。

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