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Major and trace element geochemistry of emerald from several deposits: Implications for genetic models and classification schemes

机译:几次存款的主要和痕量元素地球化学从几次存款:遗传模型和分类方案的影响

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摘要

In the present work, we report the chemical composition of representative emerald crystals from some of the most important worldwide deposits. Major and trace elements were investigated using Electron Microprobe Analysis (EMPA) and Secondary Ion Mass Spectrometry (SIMS) techniques. Binary, ternary and spider diagrams along with statistical analysis, i.e., Principal Component Analysis (PCA), were used to discriminate each deposit with high reliability. PCA of SiO2, Al2O3, V, Sc, B, Li content identified distinct groups. The use of binary and ternary diagrams contributed to discriminate among emerald crystals from various deposits, which are included in the same clusters of the PCA analysis. In addition, the geochemical features of each group were linked to the geological environment and genetic processes which leaded to emerald formation. In particular, the emeralds related to granitic-pegmatitic intrusions (Type-1) or those occurring in environments controlled by tectonic events (Type-2) were distinguished using the concentrations of major and trace elements. The results of this study can contribute to improve the existing genetic models and classification schemes as well as to identify useful geochemical fingerprints for provenance purposes.
机译:在本作工作中,我们报告了来自一些最重要的全球矿床的代表性祖母绿晶体的化学成分。使用电子微升压分析(EMPA)和二次离子质谱(SIMS)技术来研究主要和微量元素。二进制,三元和蜘蛛图以及统计分析,即主成分分析(PCA),用于区分每个沉积物,具有高可靠性。 SiO2,Al2O3,V,Sc,B,Li含量的PCA鉴定了不同的群体。二进制和三元图的使用有助于区分来自各种沉积物的祖母绿晶体,其包括在PCA分析的同一簇中。此外,每组的地球化学特征与地质环境和遗传过程相关联,这与祖母绿形成有关。特别地,使用主要和微量元素的浓度来区分与花岗岩爪入侵(型-1)或在由构造事件(T型)控制的环境中发生的祖母绿。该研究的结果可以有助于改善现有的遗传模型和分类方案,以及识别出物质目的的有用地球化学指纹。

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