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Characterization and Origin of Zonal Sapphire from Shandong Province, China

机译:中国山东省带状蓝宝石的特征与成因

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摘要

Shandong Province is the main producer of sapphire in China. Among the sapphire deposits discovered in China, Shandong sapphire hosted in Cenzoic basalt shows a great variety of features, especially for in zoning. These sapphire crystals are generally large in size, with depth in color and well-developed zoning. In this article, the characteristics of zonal sapphire have been studied by using petrography, trace element data from laser ablation inductively coupled with plasma-mass spectrometry, and Raman spectrometry. The trace elements variation is proposed to correspond with their parent magma composition, and the changes in growth environment of sapphire have resulted in the formation of zoning features. Sapphires from different geological settings have different characteristics. Trace elements in sapphire not only affect the color but also reflect the changes of physical and chemical conditions of sapphire growth. The concentration of impurity elements in the zoning core of Shandong sapphire is the highest, indicating that the parent magma of Shandong sapphire-host basaltic rock is rich in trace elements. Fe content is more than 2.00% in the zoning core, which causes the deepest color in the samples. It also suggests that the total content of Fe is positively correlated to the band color. The Raman spectrum shows that the spectrum peaks at 246 cm(-1) caused by Fe3+ vary regularly with the band color, which shows that Fe is dominated by Fe3+ in Shandong sapphire. With the changes of forming condition, the parent magma composition has changed accordingly, which causes the zoning formation.
机译:山东省是中国蓝宝石的主要生产国。在中国发现的蓝宝石矿床中,新生代玄武岩中的山东蓝宝石表现出多种多样的特征,特别是在分区方面。这些蓝宝石晶体通常尺寸较大,具有深浅的颜色和发达的分区。在本文中,通过使用岩相学,感应剥蚀激光耦合等离子体质谱法和拉曼光谱法研究了痕量蓝宝石的特征,研究了地带蓝宝石的特征。提出微量元素的变化以适应其母岩浆成分,而蓝宝石生长环境的变化导致了地带特征的形成。来自不同地质背景的蓝宝石具有不同的特征。蓝宝石中的微量元素不仅影响颜色,还反映了蓝宝石生长的物理和化学条件的变化。山东蓝宝石地带岩心中的杂质元素浓度最高,表明山东蓝宝石-宿主玄武岩的母岩浆富含微量元素。在分区核心中,Fe含量超过2.00%,这导致样品中颜色最深。这也表明Fe的总含量与条带颜色呈正相关。拉曼光谱表明,由Fe3 +引起的246 cm(-1)处的光谱峰随谱带颜色而有规律地变化,这表明在山东蓝宝石中Fe以Fe3 +为主。随着形成条件的变化,母岩浆成分也发生了相应的变化,从而引起了地带的形成。

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