首页> 外文期刊>Contributions to Mineralogy and Petrology >Petrogenesis of alkaline basalt-hosted sapphire megacrysts. Petrological and geochemical investigations of in situ sapphire occurrences from the Siebengebirge Volcanic Field, Germany
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Petrogenesis of alkaline basalt-hosted sapphire megacrysts. Petrological and geochemical investigations of in situ sapphire occurrences from the Siebengebirge Volcanic Field, Germany

机译:碱性玄武岩宿主蓝宝石甲锭的纤维化。 德国Siebengebirge火山场地出现的岩石和地球化学研究原位蓝宝石出现

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摘要

Megacrystic sapphires are frequently associated with alkaline basalts, most notably in Asia and Australia, although basalt is not generally normative in corundum. Most of these sapphire occurrences are located in alluvial or eluvial deposits, making it difficult to study the enigmatic relationship between the sapphires and their host rocks. Here, we present detailed petrological and geochemical investigations of in situ megacrystic sapphires within alkaline basalts from the Cenozoic Siebengebirge Volcanic Field (SVF) in Germany. Markedly, the sapphires show several micrometer thick spinel coronas at the contact with the host basalt, indicating chemical disequilibrium between the sapphire and the basaltic melt, supporting a xenogenetic relationship. However, in situ U-Pb dating of a Columbite Group inclusion within one Siebengebirge sapphire using laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) indicates a close genetic relationship between sapphire crystallization and alkaline mafic volcanism in the SVF. The syngenetic mineral inclusion suite including carbonates, members of the Pyrochlore, Betafite and Columbite Groupe minerals, as well as a high abundance of HFSE and of gaseous low-density CO2 inclusions support a parentage of a highly evolved, MgO and FeO deficient carbonatitic melt. We identified CO2 to be the link between alkaline basaltic volcanism and the xenocrystic sapphires. Only alkaline volcanic suites can build up enough CO2 in this magma chamber upon fractionation so that at high degrees of fractionation a carbonatitic melt exsolves which in turn can crystallize sapphires.
机译:芒果术蓝宝石经常与碱性玄武岩有关,最值得注意的是在亚洲和澳大利亚,尽管玄武岩通常在刚玉中通常是规范的。大多数这些蓝宝石出现都位于冲积或脱离矿床中,使得难以研究蓝宝石和主岩石之间的神秘关系。在这里,我们展示了德国新生代Siebrengbirge火山(SVF)的碱性沼泽中原位甲丙烯样品的详细思科和地球化学研究。显着,蓝宝石在与宿主玄武岩接触的情况下展示了几微米厚的尖晶石核,表明蓝宝石和玄武岩熔体之间的化学不良,支持Xenogency关系。然而,原位U-PB使用激光烧蚀电感耦合等离子体 - 质谱法(La-ICP-MS)在一个Siebengebirge Sapphire内包含植物聚会组的约会表明SAPHHIRE结晶和SVF中的碱性MAFIC火山之间的紧密遗传关系。包括碳酸盐,氰化物,白桦和肠果Gresee矿物的成员,以及高丰度HFSE和气态低密度CO 2夹杂物的子系统矿物包容套件支持高度发展,MgO和Feo缺乏金属熔融的父母。我们鉴定了CO2,成为碱性玄武岩火山中和XenoCrystic蓝宝石之间的联系。只有碱性火山套件可以在分馏时在该岩浆室中积聚足够的二氧化碳,因此在高分分级的高度分馏时,又可以结晶蓝宝石。

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