首页> 外文期刊>Mineralogical Magazine >Feldspar crystallization under magma-mixing conditions shown by cathodoluminescence and geochemical modelling - a case study from the Karkonosze pluton (SW Poland)
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Feldspar crystallization under magma-mixing conditions shown by cathodoluminescence and geochemical modelling - a case study from the Karkonosze pluton (SW Poland)

机译:阴极发光和地球化学模拟显示的岩浆混合条件下的长石结晶-来自Karkonosze岩体的案例研究(波兰西南部)

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摘要

Feldspars from the Karkonosze pluton (SW Poland) display many features compatible with magma mixing. The mixing hypothesis has been tested using a geochemical mass balance law resulting in two possible paths of magma hybridization. Based on the results of the geochemical calculation, feldspar samples have been chosen along both mixing lines for cathodoluminescence (CL) investigation which was used as the main tool for the reconstruction of their crystallization path. Changes in the conditions of nucleation and crystallization of the feldspars as well as their movement within the magma chamber have been recognized due to different luminescence characteristics. These changes in the conditions of crystallization obtained by CL allow a precise determination of the genetic affinity of the samples to more mafic or more felsic environments. The results of the present study proved CL to be a valuable tool for the study of crystal-growth morphologies in a dynamic, turbulent environment and also as a geochemical tool for the reconstruction of various petrogenetic mechanisms (e.g. magma hybridization). Accordingly, the combination of CL with geochemical modelling provides corresponding information about magma evolution in an open system.
机译:来自Karkonosze岩体(波兰西南部)的长石显示出许多与岩浆混合兼容的特征。混合假设已使用地球化学质量平衡定律进行了测试,导致了两种可能的岩浆杂交路径。根据地球化学计算的结果,沿着两条混合线选择了长石样品进行阴极发光(CL)研究,长石样品被用作重建其结晶路径的主要工具。由于不同的发光特性,已经认识到长石的成核和结晶条件的变化以及它们在岩浆室内的移动。通过CL获得的结晶条件的这些变化允许精确测定样品对更铁镁质或更铁质环境的遗传亲和力。本研究的结果证明CL是研究动态,湍流环境中晶体生长形态的有价值的工具,同时也是重构各种成岩机制(例如岩浆杂交)的地球化学工具。因此,CL与地球化学模型的组合提供了有关开放系统中岩浆演化的相应信息。

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