首页> 外文期刊>Minerals >Ore Genesis and Geodynamic Setting of Laochang Ag-Pb-Zn-Cu Deposit, Southern Sanjiang Tethys Metallogenic Belt, China: Constraints from Whole Rock Geochemistry, Trace Elements in Sphalerite, Zircon U-Pb Dating and Pb Isotopes
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Ore Genesis and Geodynamic Setting of Laochang Ag-Pb-Zn-Cu Deposit, Southern Sanjiang Tethys Metallogenic Belt, China: Constraints from Whole Rock Geochemistry, Trace Elements in Sphalerite, Zircon U-Pb Dating and Pb Isotopes

机译:中国三江特提斯成矿带老厂银铅锌铜矿床的矿床成因和地球动力学背景:全岩石地球化学的约束,闪锌矿中的微量元素,锆石U-Pb定年和铅同位素

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The Laochang Ag-Pb-Zn-Cu deposit, located in the southern margin of the Sanjiang Tethys Metallogenic Belt (STMB), is the typical Ag-Pb-Zn-Cu deposit in this region. Its orebodies are hosted in the Carboniferous Yiliu Formation volcanic-sedimentary cycle and occur as stratiform, stratoid and lenticular. Whether or not the stratabound ore belong to the volcanogenic massive sulfide (VMS) deposit remains unclear and controversial. In this paper, the whole rock geochemistry, trace elements in sphalerite, U-Pb zircon chronology and Pb isotopes were investigated, aiming to provide significant insights into the genesis and geodynamic setting of the Laochang deposit. Lead isotope ratios of pyrite and sphalerite from the stratabound ore are 18.341 to 18.915 for 206 Pb/ 204 Pb; 15.376 to 15.770 for 207 Pb/ 204 Pb; and 38.159 to 39.200 for 208 Pb/ 204 Pb—which display a steep linear trend on Pb-Pb diagrams. This indicates a binary mixing of lead components derived from leaching between the host volcanic rock and mantle reservoir. Sphalerite from stratabound ores is relatively enriched in Fe, Mn, In, Sn, and Ga—similar to typical VMS deposits. Moreover, the Carboniferous volcanic rock hosting the stratabound Ag-Pb-Zn-Cu ores has a zircon U-Pb age of 312 ± 4 Ma; together with previous geochronological and geological evidences, thus, we consider that the stratabound mineralization occur in the Late Paleozoic (~323–308 Ma). Collectively, these geologic, geochemical, and isotopic data confirm that the stratabound ores should be assigned to Carboniferous VMS mineralization. In addition, volcanic rocks hosting the stratabound ore exhibit elevated high field strength elements (HFSEs, Nb, Ta, Zr and Hf) abundance, slight enrichment of light rare earth element (LREE), and depletion of Ba and Sr with obvious Nb-Ta anomalies. Such characteristics suggest that their magma is similar to typical oceanic island basalt. In addition, the oceanic island basalt (OIB)-like volcanic rocks were formed at Late Paleozoic, which could be approximately synchronous with the VMS mineralization at Laochang. Thus, it is suggested that the Laochang VMS mineralization was generated in the oceanic island setting prior to the initial subduction of the Changning-Menglian Paleo-Tethys Ocean.
机译:位于三江特提斯成矿带(STMB)南缘的老厂银-铅-锌-铜矿床是该地区典型的银-铅-锌-铜矿床。它的矿体存在于石炭系伊留组火山沉积沉积循环中,以层状,层状和双凸透镜状存在。地层结合的矿石是否属于火山成块的大块硫化物(VMS)矿床仍不清楚和有争议。本文研究了整个岩石地球化学,闪锌矿中的微量元素,U-Pb锆石年代学和Pb同位素,旨在为老场矿床的成因和地球动力学背景提供重要见解。对于206 Pb / 204 Pb,层状结合矿石中黄铁矿和闪锌矿的铅同位素比为18.341至18.915。 207 Pb / 204 Pb为15.376至15.770; 208 Pb / 204 Pb则从38.159至39.200-在Pb-Pb图上显示出陡峭的线性趋势。这表明源于主体火山岩和地幔储层之间浸出的铅组分的二元混合。与典型的VMS矿床相似,地层结合矿石中的闪锌矿富含Fe,Mn,In,Sn和Ga。此外,拥有层状结合的Ag-Pb-Zn-Cu矿石的石炭纪火山岩的锆石U-Pb年龄为312±4 Ma。因此,结合先前的地质年代学和地质学证据,我们认为地层约束矿化发生在晚古生代(〜323–308 Ma)。这些地质,地球化学和同位素数据共同证实,应将层状结合的矿石分配给石炭纪VMS矿化。此外,地层约束矿石所在的火山岩表现出高的高场强元素(HFSE,Nb,Ta,Zr和Hf)丰度,轻稀土元素(LREE)的少量富集,以及Ba和Sr的损耗以及明显的Nb-Ta异常。这些特征表明它们的岩浆类似于典型的海洋岛玄武岩。此外,晚古生代形成了大洋岛玄武岩(OIB)状火山岩,与老厂的VMS成矿作用大致同步。因此,建议在长宁-孟连古特提斯洋初步俯冲之前,大昌岛VMS矿化是在大洋岛屿环境中产生的。

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