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Distal Pb-Zn-Ag veins associated with the world-class Donggou porphyry Mo deposit, southern North China craton.

机译:与华北克拉通的世界级东沟斑岩钼矿床相关的远端铅锌锌银矿脉。

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摘要

The southern North China craton hosts numerous world-class porphyry Mo and Pb-Zn-Ag vein deposits. Whether or not the Pb-Zn-Ag veins are genetically associated with the porphyry Mo system remains contentious. Here we focus on the genetic relationships between the Sanyuangou Pb-Zn-Ag vein deposit and the world-class Donggou porphyry Mo deposit, and discuss the potential implications from the spatial and temporal relationships between porphyry and vein systems in the southern North China craton.ududAt Sanyuangou, vein-hosted sulfide mineralization mainly comprises pyrite, sphalerite, and galena, with minor chalcopyrite, pyrrhotite, bornite, tetrahedrite, covellite, polybasite and argentite. The mineralization is hosted by a quartz diorite stock, which has a zircon U-Pb age of 1756 ± 9 Ma. However, sericite from alteration selvages of Pb-Zn-Ag sulfide mineralization yields a well-defined 40Ar/39Ar plateau age of 115.9 ± 0.9 Ma. Although nominally younger, the sericite 40Ar/39Ar age is similar to the age of the nearby Donggou porphyry Mo deposit (zircon U-Pb age of 117.8 ± 0.9; molybdenite Re-Os ages of 117.5 ± 0.8 Ma and 116.4 ± 0.6 Ma). Pyrite from Donggou has elevated contents of Mo and Bi, whereas pyrite from Sanyuangou is enriched in Cu, Zn, Pb, Ag, Au, and As. This trace element pattern is consistent with metal zonation typically observed in porphyry related metallogenic systems. Pyrite grains from Sanyuangou have lead isotopes overlapping those from Donggou (17.273–17.495 vs. 17.328–17.517 for 206Pb/204Pb, 15.431–15.566 vs. 15.408–15.551 for 207Pb/204Pb, and 37.991–38.337 vs. 38.080–38.436 for 208Pb/204Pb). Collectively, the geological, geochronological, and geochemical data support a magmatic-hydrothermal origin for the Sanyuangou Pb-Zn-Ag deposit and confirm that the Pb-Zn-Ag veins and the Donggou Mo deposit form a porphyry-related magmatic-hydrothermal system.ududGiven the widespread Pb-Zn-Ag veins and Mo mineralized porphyries in many districts of the southern North China craton, the model derived from this study has broad implications for further exploration of Mo and Pb-Zn-Ag resources in the area.
机译:华北克拉通有许多世界级的斑岩型钼和铅锌锌银矿脉。 Pb-Zn-Ag静脉是否与斑岩Mo系统遗传相关仍存在争议。在这里,我们重点研究三元沟铅锌锌银矿床与世界一流的东沟斑岩钼矿床之间的成因关系,并讨论华北克拉通南部斑岩与静脉系统之间时空关系的潜在意义。在三元沟,脉状硫化物的矿化主要包括黄铁矿,闪锌矿和方铅矿,以及少量的黄铜矿,黄铁矿,斑铜矿,四面体,陨石,多辉石和银辉石。矿物以石英闪长岩为主,锆石的U-Pb年龄为1756±9 Ma。然而,由Pb-Zn-Ag硫化物矿化蚀变边缘形成的绢云母产生的明确的40Ar / 39Ar平台年龄为115.9±0.9 Ma。绢云母40Ar / 39Ar年龄虽然名义上较年轻,但与附近的东沟斑岩钼矿床的年龄相似(锆石U-Pb年龄为117.8±0.9;辉钼矿Re-Os年龄为117.5±0.8 Ma和116.4±0.6 Ma)。东沟的黄铁矿的Mo和Bi含量较高,而三元沟的黄铁矿则富含Cu,Zn,Pb,Ag,Au和As。该痕量元素模式与斑岩相关成矿系统中通常观察到的金属带状一致。来自三元沟的硫铁矿颗粒的铅同位素与东沟的铅同位素重叠(206Pb / 204Pb分别为17.273-17.495和17.328-17.517、207Pb / 204Pb分别为15.431-15.566和15.408-15.551,以及208Pb / 37.991-38.337和38.080-38.436为38.080-38.436 204Pb)。总的来说,地质,年代学和地球化学数据支持了三元沟铅锌锌银矿床的岩浆热液成因,并证实铅锌锌银矿脉和东沟钼矿床形成了与斑岩有关的岩浆热液系统。 ud ud鉴于华北克拉通南部许多地区普遍存在的Pb-Zn-Ag脉和Mo矿化斑岩,本研究得出的模型对该地区Mo和Pb-Zn-Ag资源的进一步勘探具有广泛的意义。 。

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