首页> 外文期刊>Acta Geologica Sinica - English Edition >Geochemical Characteristics and Metallogenesis of the Qingkuangshan Ni-Cu-PGE Mineralized Mafic-Ultramafic Intrusion in Huili County, Sichuan Province, SW China
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Geochemical Characteristics and Metallogenesis of the Qingkuangshan Ni-Cu-PGE Mineralized Mafic-Ultramafic Intrusion in Huili County, Sichuan Province, SW China

机译:中国四川省惠里县青矿山Ni-Cu-PGE矿化镁铁质-超镁铁质侵入体的地球化学特征和成矿作用

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The Qingkuangshan Ni-Cu-PGE deposit, located in the Xiaoguanhe region of Huili County, Sichuan Province, is one of several Ni-Cu-PGE deposits in the Emeishan Large Igneous Province (ELIP). The ore-bearing intrusion is a mafic-ultramafic body. This paper reports major elements, trace elements and platinum-group elements in different types of rocks and sulfide-mineralized samples in the intrusion. These data are used to evaluate the source mantle characteristics, the degree of mantle partial melting, the composition of parental magma and the ore-forming processes. The results show that Qingkuangshan intrusion is part of the ELIP. The rocks have trace element ratios similar to the coeval Emeishan basalts. The primitive mantle-normalized patterns of Ni-Cu-PGE have positive slopes, and the ratios of Pd/Ir are lower than 22. The PGE compositions of sulfide ores and associated rocks are characterized by Ru depletion. The PGE contents in bulk sulfides are slightly depleted relative to Ni and Cu, which is similar to the Yangliuping Ni-Cu-PGE deposit. The composition of the parental magma for the intrusion is estimated to contain about 14.65 wt% MgO, 48.66 wt% SiO2 and 15.48 wt% FeOt, and the degree of mantle partial melting is estimated to be about 20%. In comparison with other typical Ni-Cu-PGE deposits in the ELIP, the Qingkuangshan Ni-Cu-PGE deposit has lower PGE contents than the Jinbaoshan PGE deposit, but has higher PGE contents than the Limahe and Baimazhai Ni-Cu deposit, and has similar PGE contents to the Yangliuping Ni-Cu-PGE deposit. The moderate PGE depletions in the bulk sulfide of the Qingkuanghan deposit suggest that the parental magma of the host intrusion may have undergone minor sulfide segregation at depth. The mixing calculations suggests that an average of 10% crustal contamination in the magma, which may have been the main cause of sulfide saturation in the magma. We propose that sulfide segregation from a moderately PGE depleted magma took place prior to magma emplacement at Qingkuangshan, that small amounts of immiscible sulfide droplets and olivine and chromite crystals were suspended in the ascending magma, and that the suspended materials settled down when the magma passed trough the Qingkuangshan conduit. The Qingkuangshan sulfide-bearing intrusion is interpreted to a feeder of Emeishan flood basalts in the region.
机译:位于四川省会理县小关河地区的青矿山镍-铜-PGE矿床是峨眉山大火成岩省(ELIP)的几种镍-铜-PGE矿床之一。含矿侵入体是铁镁质超镁铁质体。本文介绍了侵入岩中不同类型岩石和硫化矿化样品中的主要元素,微量元素和铂族元素。这些数据用于评估源地幔特征,地幔部分熔融的程度,母岩浆的成分和成矿过程。结果表明,青矿山入侵是ELIP的一部分。这些岩石的微量元素比率与峨眉山玄武岩相似。 Ni-Cu-PGE的原始地幔归一化模式具有正斜率,且Pd / Ir的比值小于22。硫化矿和相关岩石的PGE组成具有Ru耗竭的特征。相对于镍和铜,块状硫化物中的PGE含量略有减少,这与杨柳坪Ni-Cu-PGE矿床相似。用于侵入的母岩浆的成分估计包含约14.65 wt%的MgO,48.66 wt%的SiO 2 和15.48 wt%的FeOt,地幔部分熔融的程度估计为约20 %。与ELIP中其他典型的Ni-Cu-PGE矿床相比,青矿山Ni-Cu-PGE矿床的PGE含量低于金宝山PGE矿床,但比Limahe和Baimazhai Ni-Cu矿床的PGE含量高。 PGE含量与杨柳坪镍铜PGE矿床相似。 Qingkuanghan矿床的块状硫化物中中等的PGE耗尽表明,侵入岩的母岩浆可能在深度上经历了较小的硫化物偏析。混合计算表明,岩浆中地壳平均污染为10%,这可能是岩浆中硫化物饱和的主要原因。我们认为,在青矿山岩浆侵位之前,硫化物从中等PGE贫化的岩浆中分离出来,少量不混溶的硫化物液滴以及橄榄石和铬铁矿晶体悬浮在上升的岩浆中,并且当岩浆通过时,悬浮物沉降下来。穿过青光山管道。青矿山含硫化物的侵入被解释为该地区峨眉山洪水玄武岩的馈线。

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