首页> 外文期刊>Acta Geologica Sinica >Lead Isotopic Composition and Lead Source of the Huogeqi Cu-Pb-Zn Deposit, Inner Mongolia, China
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Lead Isotopic Composition and Lead Source of the Huogeqi Cu-Pb-Zn Deposit, Inner Mongolia, China

机译:内蒙古霍格奇铜铅锌矿床铅同位素组成及铅源

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The Huogeqi orefield located on the northern side of ML Langshan, Inner Mongolia occurs in the Middle Proterozoic Langshan Group metamorphic rocks, and the orebodies are stratiform. In the past twenty years, many Chinese geologists have conducted researches on the Huogeqi Cu-Pb-Zn deposit, but there, has been still a controversy on its origin. Some advocate that the deposit is of sedimentafy-metamorphic reworking origin, some hold that it is of sea-floor SEDEX origin, and others have a preference for magmatic superimposition origin. The crux of the controversy is that there is no common understanding about the source of ore-forming materials. In this paper, the Pb isotopic compositions of regional Achaean-Early Proterozoic basement rocks, various types of sedimentary-metamorphic rocks and volcanic rocks in the mining district, Late Proterozoic and Hercynian magmatic rocks are introduced and compared with the ore-lead composition, so as to constrain the source of the ore lead. The result indicates that (1) sulfides in the ores have homogeneous Pb isotopic compositions, showing a narrow variation range. Their ~(206)Pb/~(204)Pb ratios are within a range of 17.027-17.317; ~(207)Pb/~(204)Pb ratios, 15.451-15.786 and ~(205)Pb/~(204)Pb ratios, 36.747-37.669; (2) the Pb isotopic compositions of the regional Achaean-Early Proterozoic basement rocks are characteristic of the old Pb isotopic composition at the early-stage evolution of the Earth, which varies over a wider range, reflecting significant differences in Pb isotopic compositions of the ores. All this indicates that the source of ore lead has no bearing on the basement rocks; (3) the sedimentary-metamorphic rocks in the mining district are characterized by highly variable and more radiogenic Pb isotopic compositions and their Pb isotopic ratios are obviously higher than those of ores, demonstrating that ore lead did not result from metamorphic reworking of these rocks; (4) Pb isotopic compositions of Late Proterozoic diorite-gabbro and Hercynian granite are higher than those of ores. Meanwhile, the Pb isotopic compositions of sulfides in the small-sized strata-penetrating mineralized veinlets formed at later stages are completely consistent with that of sulfides in stratiform-banded ores, suggesting that these veinlets are the product of autochthonous reworking of the stratiform-banded ores during the period of metamorphism and the late magmatic superimposition-mineralization can be excluded; (5) amphibolite, whose protolith is basic volcanic rocks, has the same Pb isotopic compositions as ores, implying that ore lead was derived probably from basic volcanism. So, the source of ore-forming materials for the Huogeqi deposit is like that of the volcanic massive sulfide (VMS) deposits. However, the orebodies do not occur directly within the volcanic rocks, and instead they overlie the volcanic rocks, showing some differences from those typical VMS-type deposits.
机译:内蒙古ML狼山北侧的霍格奇矿田发生在中元古代狼山群变质岩中,矿体为层状。在过去的二十年中,许多中国地质学家对霍格奇铜-铅-锌矿床进行了研究,但那里的起源仍存在争议。一些人主张该矿床是沉积变质的返工成因,有些人认为该矿床是海底SEDEX成因,而另一些人则主张岩浆叠加成因。争议的症结在于人们对成矿物质的来源没有共识。本文介绍了矿区,早元古代和海西期岩浆岩中区域亚速亚-早元古代基底岩石,各种类型的沉积-变质岩和火山岩中的铅同位素组成,并将其与矿石-铅组成进行比较。以限制铅的来源。结果表明:(1)矿石中的硫化物具有均一的Pb同位素组成,显示出狭窄的变化范围。它们的〜(206)Pb /〜(204)Pb比在17.027-17.317的范围内; 〜(207)Pb /〜(204)Pb比15.451-15.786和〜(205)Pb /〜(204)Pb比36.747-37.669; (2)亚洲早古生代基底岩中的Pb同位素组成是地球早期演化中老Pb同位素组成的特征,其变化范围较大,反映了该地区Pb同位素组成的显着差异。矿石。所有这些表明,铅矿的来源与基底岩石无关。 (3)矿区沉积变质岩的特征是变化多变,放射成因的Pb同位素组成多,其Pb同位素比明显高于矿石,表明这些岩石的变质返修并不是导致铅的产生; (4)晚元古代闪长闪长岩和海西花岗岩的铅同位素组成高于矿石。同时,后期形成的穿透地层的细小矿脉中硫化物的Pb同位素组成与层状带状矿石中的硫化物完全一致,这表明这些脉状体是层状带状矿床自发返工的产物。可以排除在变质期和岩浆叠加矿化后期的矿石。 (5)角闪石的原石是碱性火山岩,其铅同位素同位素与矿石相同,这表明铅可能来自碱性火山岩。因此,霍格奇矿床的成矿物质来源类似于火山大块硫化物(VMS)矿床。但是,矿体并不直接出现在火山岩内部,而是覆盖在火山岩上,显示出与那些典型的VMS型矿床有所不同。

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