首页> 外文期刊>Minerals >Melt Inclusions in Plagioclase Macrocrysts at Mount Jourdanne, Southwest Indian Ridge (~64° E): Implications for an Enriched Mantle Source and Shallow Magmatic Processes
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Melt Inclusions in Plagioclase Macrocrysts at Mount Jourdanne, Southwest Indian Ridge (~64° E): Implications for an Enriched Mantle Source and Shallow Magmatic Processes

机译:西南印第安岭(约64°E)乔丹山斜长石巨晶的熔体包裹体:对富集地幔源和浅岩浆作用的影响

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Plagioclase ultraphyric basalts (PUBs) with up to 40% millimeter-sized plagioclase crystals, were sampled from the Mount Jourdanne volcanic massif (~64° E) in the Southwest Indian Ridge. The geochemistry of the host glass, the glassy melt inclusions and their host plagioclase macrocrysts (An 60-69 ) are used to reveal the mantle heterogeneity and to discuss the origin of Mount Jourdanne PUBs. The melt inclusions trapped in plagioclase display low MgO and high SiO 2 contents and show rare earth element (REE) patterns resembling enriched mid-ocean ridge basalts (E-MORB). Together with their positive Sr and Eu anomalies, these features indicate that they were derived from an enriched mantle source, likely a refertilized peridotite or a pyroxenite. In contrast to some 61–67° E basalts, there is a lack of negative Eu anomalies in the PUB host glasses, precluding large amounts of plagioclase crystallization from their parental magma. Petrographic observations and the general chemical similarity between melt inclusions and melts equilibrated with the clinopyroxene cores in regional gabbros and/or troctolites suggest that these plagioclase macrocrysts originate from gabbroic mush within the lower crust. The density contrasts allow the effective segregation of plagioclase prior to their incorporation into the host magma. We propose that these plagioclase macrocrysts were entrained when a new batch of magma passed through the crustal mush zone, and resulted in the formation of the PUB. Eruption of Mount Jourdanne PUBs requires a minimum ascending velocity of 5 m d ?1 for the host magma, which is not as high as the eruption rate for typical MORB samples. It is likely that the PUB host magma erupts during a period with reduced magma supply, whereas eruption of aphyric lavas correspond to the fast volcanic formation of the Mount Jourdanne massif.
机译:从西南印第安海岭的Jourdanne火山地块(〜64°E)采样了斜长石超生玄武岩(PUB),其具有高达40%的毫米长斜长石晶体。基质玻璃,玻璃状熔体包裹体及其基质斜长石大晶(An 60-69)的地球化学被用来揭示地幔的非均质性,并讨论了Jourdanne山PUB的起源。斜长石中夹杂的熔体夹杂物显示出低的MgO和高的SiO 2含量,并显示出类似于富集的中洋脊玄武岩(E-MORB)的稀土元素(REE)模式。这些特征加上它们的正Sr和Eu异常,表明它们源自富集的地幔源,可能是下渗橄榄岩或辉石。与一些61–67°E的玄武岩相比,PUB宿主玻璃中缺乏负Eu异常,从而排除了来自其母岩浆的大量斜长石结晶。岩相学观察和熔融夹杂物与区域辉长岩和/或闪长辉岩中斜向辉石岩心平衡的熔岩之间的一般化学相似性表明,这些斜长石大晶状结晶起源于下地壳中的辉长岩糊状物。密度对比使得斜长石酶在掺入宿主岩浆中之前可以有效地分离。我们建议当新一批岩浆穿过地壳糊状区时,这些斜长石巨晶就被夹带了,并形成了PUB。 Jourdanne山PUB的爆发要求宿主岩浆的最小上升速度为5 m d?1,这不像典型MORB样品的爆发速度那样高。 PUB主岩浆可能在岩浆供应减少的时期爆发,而火山熔岩的喷发对应于Jourdanne山地块的快速火山形成。

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