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首页> 外文期刊>The American mineralogist >A common origin for Thai/Cambodian rubies and blue and violet sapphires from Yogo Gulch, Montana, USA?
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A common origin for Thai/Cambodian rubies and blue and violet sapphires from Yogo Gulch, Montana, USA?

机译:泰国/柬埔寨红宝石和蓝色和紫罗兰蓝宝石的共同起源来自瑜伽古兰,蒙大拿州,美国?

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A wide number of genetic models have been proposed for volcanically transported ruby and sapphire deposits around the world. In this contribution we compare the trace element chemistry, mineral and melt inclusions, and oxygen isotope ratios in blue to reddish-violet sapphires from Yogo Gulch, Montana, U.S.A., with rubies from the Chantaburi-Trat region of Thailand and the Pailin region of Cambodia. The similarities between Thai/Cambodian rubies and Yogo sapphires suggest a common origin for gem corundum from both deposits. Specifically, we advance a model whereby sapphires and rubies formed through a peritectic melting reaction when the lamprophyre or basalts that transported the gem corundum to the surface partially melted Al-rich lower crustal rocks. Furthermore, we suggest the protolith of the rubies and sapphires was an anorthosite or, in the case of Thai/Cambodian rubies, an anorthosite subjected to higher pressures and converted into a garnet-clinopyroxenite. In this model the rubies and sapphires are rightfully considered to be xenocrysts in their host basalts or lamprophyre; however, in this scenario they are not "accidental" xenocrysts but their formation is intimately and directly linked to the magmas that transported them to the surface. The similarities in these gem corundum deposits suggests that the partial melting, non-accidental xenocryst model may be more wide-reaching and globally important than previously realized. Importantly, in both cases the gem corundum has an ostensibly "metamorphic" trace element signature, whereas the presence of silicate melt (or magma) inclusions shows they ought to be considered to be "magmatic" rubies and sapphires. This discrepancy suggests that existing trace element discriminant diagrams intended to separate "metamorphic" from "magmatic" gem corundum ought to be used with caution.
机译:已经提出了广泛的遗传模型,为世界各地的火山运输的红宝石和蓝宝石沉积物。在这一贡献中,我们将痕量的元素化学,矿物质和融化夹杂物和氧气同位素比与来自瑜伽古兰·蒙大拿州蒙大拿州蒙大拿州的红紫色蓝宝石进行了蓝色,从泰国Chantaburi-trat地区和柬埔寨的帕林地区。泰国/柬埔寨红宝石和瑜伽蓝宝石之间的相似之处表明,来自两种矿床的宝石刚玉的常见起源。具体而言,我们推进了一种模型,即当将宝石或沼泽的薄片或沼气通过晶片或沼气转移到表面熔化的铝的下层地壳岩石时,通过涂层熔化反应形成的模型。此外,我们建议红宝石和蓝宝石的原料是一个恶益的,或者在泰国/柬埔寨红宝石的情况下,经受较高压力并转化成石榴石冠岩的恶化物。在这种模型中,Rubies和Sapphires合法地被认为是其主体玄武岩或Lamprophyre中的XenoCrysts;然而,在这种情况下,它们不是“意外”的XenoCrysts,但它们的形成密切并与将它们运到表面的岩浆密切相关。这些宝石钙沉积物中的相似性表明,部分熔化,非意外XenoCryst模型可能比以前实现的更广泛,全球重要性。重要的是,在两种情况下,宝石刚玉具有表面上的“变质”痕量元素签名,而存在硅酸盐熔体(或岩浆)夹杂物的存在表明它们应该被认为是“岩浆”红宝石和蓝宝石。这种差异表明,现有的痕量元素判别图旨在与“Magmatic”Gem Corundum的“变质”分离,应该谨慎使用。

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