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Trace element geochemistry of carbonates in the Jurassic Lusitanian Basin records mineral-fluid interactions

机译:侏罗纪卢茨盆地碳酸盐的痕量元素地球化学记录矿物流体相互作用

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Carbonate rocks in sedimentary basins are reactive and can record complex histories of events associated with fluid flow in these basins. These include processes of dolomitization and dedolomitization. In this work we provide some preliminary data where distinct calcite and dolomite generations in the Jurassic Lusitanian Basin were analysed by LA-ICP-MS for trace elements in order to characterize chemical signatures of fluid-mineral interaction. It was observed that different carbonate generations can preserve the range of certain trace metal concentrations, but later calcites have distinctly higher contents in REE, Th and U, and Ba. Dolomites also show distinct chemical signatures but lack of analytical and spatial resolution does not allow quantification of the precursor calcite relicts. However, these processes point to the action of basinal fluids triggered by distinct tectonic episodes and associated volcanic activity.
机译:沉积盆地中的碳酸盐岩是反应性的,可以记录与这些盆中的流体流动相关的复杂事件历史。这些包括二孔化和去聚摩托的方法。在这项工作中,我们提供了一些初步数据,其中通过La-ICP-MS进行了侏罗纪植物盆地中的不同方料和白云岩世代的痕量元素,以表征流体矿物相互作用的化学签名。观察到,不同的碳酸酯几代人可以保持某些痕量金属浓度的范围,但后来的钙化铅矿在REE,TH和U中具有明显更高的内容物和BA。白云岩还显示出不同的化学签名,但缺乏分析和空间分辨率不允许定量前体辅导依赖性。然而,这些过程指向由不同构造发作和相关的火山活性引发的底座流体的作用。

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