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首页> 外文期刊>Contributions to Mineralogy and Petrology >Origin and significance of poikilitic and mosaic peridotite xenoliths in the western Pannonian Basin: geochemical and petrological evidences
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Origin and significance of poikilitic and mosaic peridotite xenoliths in the western Pannonian Basin: geochemical and petrological evidences

机译:Pannonian盆地西部的钾质橄榄岩和马赛克橄榄岩异岩的起源和意义:地球化学和岩石学证据

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摘要

Peridotite xenoliths erupted by alkali basaltic volcanoes in the western Pannonian Basin can be divided into two fundamentally contrasting groups. Geochemical characteristics of the abundant protogranular, porphyro-clastic and equigranular nodules suggest that these samples originate from an old consolidated and moderately depleted lithospheric mantle domain. In contrast, the geochemical features of the worldwide rare, but in the Pannonian Basin relatively abundant, poikilitic xenoliths attest to a more complex evolution. It has been argued that the origin of the peculiar texture and chemistry may be intimately linked to melt/rock reactions at successively decreasing liquid volumes in a porous melt flow system. The most likely site where such reactions can take place is the asthenosphere-lithosphere boundary. In this context, poikilitic xenolithsmay provide petrological and geochemical evidence for reactions between magmatic liquids issued from the uprising asthenosphere and the solid mantle rocks of the litho-sphere. These reactions are important agents of the thermal erosion of the lithosphere; thus, they could have considerably contributed to the thinning of the lithosphere in the Pannonian region. We suggest that in the Pannonian Basin, there could be a strong relation between the unusual abundance of poikilitic mantle xenoliths and the strongly eroded lithosphere.
机译:在Pannonian盆地西部,碱性玄武岩火山喷发的橄榄岩异岩可以分为两个基本相反的组。丰富的原粒,斑状碎屑和等粒结节的地球化学特征表明,这些样品起源于旧的固结且中等耗竭的岩石圈地幔区域。相比之下,全球范围内的地球化学特征很少见,但在Pannonian盆地中相对丰富,胶质异种岩证明了更为复杂的演化。有人认为,在多孔熔体流动系统中,随着液体体积的不断减少,特殊质地和化学的起源可能与熔体/岩石反应密切相关。发生这种反应的最可能部位是软流圈-岩石圈边界。在这种情况下,胶质异岩可能为岩石的运动和软化提供了岩石学和地球化学证据,这些岩石是起义软流圈和岩石圈实心幔岩石之间的反应。这些反应是岩石圈热蚀的重要因素。因此,它们可能为Pannonian地区岩石圈的变薄做出了巨大贡献。我们建议,在Pannonian盆地,可能有异常多产的胶质地幔异种岩与强烈侵蚀的岩石圈之间。

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