首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Noble gas isotopic systematics of Fe-Ti-V oxide ore-related mafic-ultramafic layered intrusions in the Panxi area, China: The role of recycled oceanic crust in their petrogenesis
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Noble gas isotopic systematics of Fe-Ti-V oxide ore-related mafic-ultramafic layered intrusions in the Panxi area, China: The role of recycled oceanic crust in their petrogenesis

机译:攀西地区铁钛钒氧化物矿相关的铁镁铁-超镁铁质层状侵入体的稀有气体同位素系统:再生大洋地壳在其成因中的作用

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Olivine and clinopyroxene grains have been separated from four large Fe-Ti-V oxide ore-bearing intrusions (Panzhihua, Hongge, Baima and Taihe) in the Panxi area, Emeishan large igneous province, Southwest China, for He and Ar isotope studies. The samples examined revealed extremely low ~3He/~4He ratios (0.078-4.34Ra with the mean value 0.78Ra) for gases extracted by stepwise heating. This feature, combined with low ~(40)Ar/~(36)Ar ratios can be interpreted as due to addition of subduction-related fluids and melts that had been stored in the lithospheric mantle for long periods. Considering the regional geologic history, such addition can be attributed to the paleo subduction that occurred along the western margin of the Yangtze Block during the Neoproterozoic. The subducted oceanic crust beneath the Panxi area underwent eclogite-facies metamorphism and subsequent exhumation. The infiltration of subduction-related melts and fluids into the lithospheric mantle led to enriched isotopic signatures from that of the slightly depleted asthenopheric mantle which has been suggested by the Sr, Nd and Pb isotopic data of the Emeishan basalts and picrites. In addition, considerable amounts of eclogitic melts produced by partial melting of eclogite-facies oceanic crust extensively contaminated the lithospheric mantle. During the late Permian, partial melting of an upwelling mantle plume that contained an eclogite or pyroxenite component generated the parental Fe-rich magma that supplied the ore-bearing intrusions. The combination of these factors may have been the crucial reason that many world-class Fe-Ti-V oxides deposits are clustered in the Panxi area.
机译:在西南峨眉山火成岩大省攀西地区,从四个大型的Fe-Ti-V氧化物含铁矿床(攀枝花,洪阁,白马和太和)中分离出橄榄石和斜辉石晶粒,以进行He和Ar同位素研究。检查的样品显示,逐步加热提取的气体的〜3He /〜4He比极低(0.078-4.34Ra,平均值为0.78Ra)。结合较低的〜(40)Ar /〜(36)Ar比可以解释为该特征是由于添加了与俯冲有关的流体和熔岩,这些流体和熔岩已被长期储存在岩石圈地幔中。考虑到该地区的地质历史,这种增加可归因于新元古代发生在扬子地块西缘的古俯冲作用。攀西地区俯冲的洋壳经历了榴辉岩相变质作用和随后的发掘。与俯冲有关的熔体和流体渗透到岩石圈地幔中,使得峨眉山玄武岩和苦味岩的Sr,Nd和Pb同位素数据表明,从略微乏味的软流变地幔中富集了同位素特征。此外,由榴辉岩相海洋壳的部分熔融产生的大量露滴熔体广泛地污染了岩石圈地幔。在二叠纪晚期,上升流的地幔柱部分熔融,其中含有榴辉岩或辉绿岩成分,产生了富铁母岩,提供了含矿侵入体。这些因素的结合可能是许多世界一流的Fe-Ti-V氧化物矿床聚集在攀西地区的关键原因。

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