首页> 外文期刊>Acta Geologica Sinica - English Edition >An Isotopic (Sr, Nd and Pb) Tracer Study on the Xiaoxinancha Gold-rich Copper Deposit in Yanbian, China: Implication for the Geodynamic Model of Diagenesis and Metallogenesis
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An Isotopic (Sr, Nd and Pb) Tracer Study on the Xiaoxinancha Gold-rich Copper Deposit in Yanbian, China: Implication for the Geodynamic Model of Diagenesis and Metallogenesis

机译:延边小新安岔富金铜矿的同位素(Sr,Nd和Pb)示踪研究:对成岩作用和成矿作用地球动力学模型的启示

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An isotopic study was systemically carried out on the granitic complex, diorite-porphyrite, ores and ore minerals of the 103 Ma Xiaoxinancha gold-rich copper deposit in Jilin province to determine the geodynamic model of diagenesis and metallogenesis. Results show that the initial Nd and Sr isotopic compositions of the granitic complex are in the range of 0.70425–0.70505 for (87Sr/86Sr)i, 0.51243–0.51264 for INd, and –1.31 to + 2.64 for εNd(t); those of the diorite-porphyrite are in the range from 0.70438–0.70448 for (87Sr/86Sr)i, 0.51259–0.51261 for INd, and + 1.56 to + 2.09 for εNd(t). For ores and sulfides, the (87Sr/86Sr)i, INd, and εNd(t) values are in the range from 0.70440–0.70805, 0.51259–0.51279 and +1.72 to +5.56, respectively. The Pb isotopic ratios of the granitic complex range from 18.2992–18.6636 for 206Pb/204Pb, from 15.5343–15.5660 for 207Pb/204Pb, and from 38.1640–38.5657 for 208Pb/204pb For diorite-porphyrite, the isotopic ratios of 206Pb/204Pb, 207Pb/204Pb and 208Pb/204b are 18.3919, 15.5794 and 38.3566, respectively, whereas those of the ores and ore sulfides vary from 18.2275–18.3770 for 206Pb/204Pb, from 15.5555–15.5934 for 207Pb/204Pb and from 38.1318–38.3131 for 208Pb/204Pb. The results indicate that the mineralization was correlated to the formation and evolution of the granitic complex and the diorite-porphyrite. Combining with the reported data in petrologic characteristics, elemental geochemistry and chronology, conclusions can be drawn that the geodynamic settings of diagenesis and metallogenesis of this deposit were consistent with the subduction of the Izanagi oceanic plate during the Early Cretaceous. The diorite-porphyrite was formed by the emplacement of the adakitic magma triggered by partial melting of the enriched mantle, which originated from the derivative continental lithospheric mantle metasomatized by dehydration fluids from the subducting oceanic crust. The granitic complex was produced by fractional crystallization of the mixture between the adakitic magma and the high-K calc-alkaline acidic magma, which were generated by the remelting of the lower crust in the course of intraplate upwelling of the adakitic magma. The ore-bearing fluid reservoir convened in a late stage of the evolution of the mixed magma chamber.
机译:对吉林省103个小新安岔茶富金铜矿床的花岗岩体,闪长岩-斑岩,矿石和矿石矿物进行了同位素研究,确定了成岩作用和成矿作用的动力学模型。结果表明,对于( 87 Sr / 86 Sr) i ,对于I Nd 为0.51243-0.51264,对于ε Nd (t)为–1.31至+ 2.64; ( 87 Sr / 86 Sr) i 的闪长岩-卟啉岩的范围在0.70438–0.70448,I的范围为0.71438-0.71261 Nd 和ε Nd (t)的+ 1.56至+ 2.09。对于矿石和硫化物,( 87 Sr / 86 Sr) i ,I Nd 和ε Nd (t)值分别在0.70440–0.70805、0.51259–0.51279和+1.72至+5.56的范围内。花岗岩复合物中的铅同位素比值范围为 206 Pb / 204 Pb为18.2992-18.636, 207 Pb / <为15.5343-15.5660 sup> 204 Pb,对于 208 Pb / 204 pb,从38.1640–38.5657开始对于闪长岩-卟啉岩, 206 Pb / 204 Pb, 207 Pb / 204 Pb和 208 Pb / 204 b分别为18.3919、15.5794和38.3566,而 206 Pb / 204 Pb的矿石和矿石硫化物的变化范围为18.2275-18.3770,而对于 206 Pb / 204 Pb则为15.5555-15.5934。 207 Pb / 204 Pb,对于 208 Pb / 204 Pb,从38.1318–38.3131开始。结果表明,成矿作用与花岗岩复合体和闪长闪长岩的形成和演化有关。结合岩石学特征,元素地球化学和年代学方面的报道数据,可以得出结论,该矿床的成岩作用和成矿作用的地球动力学背景与早白垩纪伊萨纳吉大洋板块的俯冲一致。闪长岩岩浆岩的形成是由于富集地幔部分熔融而触发的岩浆岩浆侵位所致,其源于俯冲洋壳中脱水流体交代的衍生的大陆岩石圈地幔。花岗岩复合物是通过将部分岩浆在板内上升过程中下部地壳重熔而产生的,在部分岩浆和高钾钙碱性酸性岩浆之间的混合物进行分步结晶而产生的。含矿流体储集层在混合岩浆室演化的后期聚集。

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