利用锆石和磷灰石成分勘探泰梅尔-谢罗泽梅尔斯卡娅褶皱区佩金斯基和特谢姆斯基花岗岩群中的铜-钼-斑岩矿化物

S. V. Berzin, S. V. Petrov, D. L. Konopelko, M. Y. Kurapov, T. A. Golovina, N. Y. Chernenko, V. Chervyakovskiy
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Their mineral composition was examined using an EPMA Cameca SX100 instrument. The element content in minerals was determined by LA-ICPMS using an NexION 300S instrument equipped with an NWR 213 attachment. Results. Most of the zircons from the Pekinsky and Tessemsky massifs were formed at T < 738°C in oxidized magma with ΔFMQ of 0.6–2.6, which is a favorable sign for the identification of Cu-Mo-Au-porphyry mineralization. Zircons are characterized by elevated (Eu/Eu*)Y and  (Ce/Nd)n/Y ratios, which is also a favorable, though not a strongly reliable, sign for identifying porphyry mineralization. The Eu/Eu* and Sr/Y ratios in the apatites from the Tessemsky massif are higher than those in the apatites from the Pekinsky massif. The rock compositions of both massifs fall within the fields of adakites on the classification diagrams. The estimates of oxygen fugacity (logfO2) calculated from Mn in apatites for four samples agree well within the error limits.  Conclusion. 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引用次数: 0

摘要

研究课题特谢姆斯基花岗岩丘位于北泰米尔构造带,周围是寒武纪岩石。佩金斯基花岗岩丘位于中泰梅尔构造带,周围是变质的新生代岩石。目的以泰米尔半岛的 Pekinsky 和 Tessemsky 花岗岩丘为例,制定在勘探铜-钼-金斑岩矿化时使用花岗岩附属矿物成分的方法。材料和方法。对来自 Pekinsky 岩块的两个花岗岩样本(P1、P2)和来自 Tessemsky 岩块的两个花岗岩样本(T2、T3)中所含的附属锆石和磷灰石进行了研究。使用 EPMA Cameca SX100 仪器检测了它们的矿物成分。矿物中的元素含量是通过配备 NWR 213 附件的 NexION 300S 仪器进行 LA-ICPMS 测定的。结果。来自 Pekinsky 和 Tessemsky 山丘的大多数锆石都是在温度小于 738°C 的氧化岩浆中形成的,ΔFMQ 为 0.6-2.6,这对于确定铜-钼-金斑岩矿化是一个有利的信号。锆石的特点是(Eu/Eu*)Y 和(Ce/Nd)n/Y 比值升高,这也是确定斑岩矿化的一个有利迹象,但并不十分可靠。特谢姆斯基地块磷灰石中的 Eu/Eu* 和 Sr/Y 比率高于佩金斯基地块磷灰石中的 Eu/Eu* 和 Sr/Y 比率。两个山丘的岩石成分都属于分类图中的阿达克岩范围。根据四个样本磷灰石中的锰计算出的氧富集度(logfO2)估算值在误差范围内吻合得很好。 结论考虑了利用附属矿物(锆石和磷灰石)成分勘探与花岗岩有关的铜-钼-金斑岩矿化的具体特点。附属指示矿物可用来对花岗岩群进行分级,以评估其矿石含量。以泰梅尔半岛的两个花岗岩侵入体为例,可以看出特谢姆斯基岩块比佩金斯基岩块更有希望发现伴生铜-钼-金斑岩矿化。
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Utilizing compositions of zircon and apatite for prospecting of Cu-Mo-Auporphyry mineralization in the Pekinsky and Tessemsky granitoid massifs of the Taimyr-Severozemelskaya folded area
Research subject. The Tessemsky granite massif is located in the North Taimyr tectonic zone, surrounded by Cambrian rocks. The Pekinsky granite massif is located within the Central Taimyr zone, surrounded by metamorphosed Proterozoic rocks. Aim. To develop a methodology for using the composition of accessory granitoid minerals when prospecting  Cu-Mo-Au-porphyry mineralization on the example of the Pekinsky and Tessemsky granitoid massifs of the Taimyr Peninsula. Materials and methods. Accessory zircon and apatite contained in two granitoid samples from the Pekinsky massif (P1, P2) and two granitoid samples from the Tessemsky massif (T2, T3) were studied. Their mineral composition was examined using an EPMA Cameca SX100 instrument. The element content in minerals was determined by LA-ICPMS using an NexION 300S instrument equipped with an NWR 213 attachment. Results. Most of the zircons from the Pekinsky and Tessemsky massifs were formed at T < 738°C in oxidized magma with ΔFMQ of 0.6–2.6, which is a favorable sign for the identification of Cu-Mo-Au-porphyry mineralization. Zircons are characterized by elevated (Eu/Eu*)Y and  (Ce/Nd)n/Y ratios, which is also a favorable, though not a strongly reliable, sign for identifying porphyry mineralization. The Eu/Eu* and Sr/Y ratios in the apatites from the Tessemsky massif are higher than those in the apatites from the Pekinsky massif. The rock compositions of both massifs fall within the fields of adakites on the classification diagrams. The estimates of oxygen fugacity (logfO2) calculated from Mn in apatites for four samples agree well within the error limits.  Conclusion. Specific features of using the composition of accessory minerals (zircon and apatite) for prospecting the  Cu-Mo-Au-porphyry mineralization associated with granitoids were considered. Accessory indicator minerals can be used to rank granitoid massifs in order to assess their ore content. The example of two granite intrusions of the Taimyr Peninsula made it was possible to show that the Tessemsky massif is more promising for the discovery of associated Cu-Mo-Auporphyry mineralization than the Pekinsky massif.
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