首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Porphyry and skarn Au-Cu deposits in the Shizishan orefield, Tongling, East China: U-Pb dating and in-situ Hf isotope analysis of zircons and petrogenesis of associated granitoids
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Porphyry and skarn Au-Cu deposits in the Shizishan orefield, Tongling, East China: U-Pb dating and in-situ Hf isotope analysis of zircons and petrogenesis of associated granitoids

机译:中国东部铜陵石子山矿田的斑岩和矽卡岩金铜矿床:锆石的U-Pb测年和原位Hf同位素分析及相关花岗岩的成因

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The magnetite-series (1-type) calc-alkaline granitoid suit, ranging from pyroxene monzodiorite to granodiorite, is associated with the porphyry and skarn gold-copper deposits at the Shizishan orefield in Tongling district, Anhui Province. In-situ U-Pb dating and Hf isotope analysis of magmatic and inherited zircons are combined with whole rock Sr-Nd-Pb isotopic data and mineral thermobarometry to interpret the petrogenesis. The magmatic zircons from the quartz monzodiorites yield weighted average ~(206)Pb/~(23S)U ages of ca. 139 Ma and mean ε_(Hf)(t) value of -19.8±3.9 (1σ), while those from the pyroxene monzodiorite show a similar mean age but notably higher mean ε_(Hf){t) value (-8.5 ± 1.4). The inherited zircons from the quartz monzodiorite yield ages of 0.8, 2.0 and 2.4 Ga with mean ε_(Hf)(t) value of -2.9± 1.4, while those from the pyroxene monzodiorite show younger ages (165 to 245 Ma) but similar mean ε_(Hf)(r) value (-5.6±4.5). Whole rock Sr-Nd-Pb isotope data indicate that crustal material significantly contributed to the magma Mineral thermobarometry results reveal that the depths of the discrete magma chambers were about 23 km, and 10 to 2 km deep.The data above combined with previous studies suggest that: 1) The magma emplacement and crystallization (typically for zircons) mainly occurred at about 139 Ma, consistent with the age of mineralization; 2) The primary pyroxene monzodioritic magma might have mixed with the magma produced by partial melting of the Yangtze lower crust, and accumulated in the magma chamber at ca. 23 km deep in the lower crust level; 3) AFC and magma mixing were the dominate processes for the magmatic evolutions at shallow level (2 to 10 km), where the circumstances were favorable for mineralization.
机译:磁铁矿系列(1型)钙碱性花岗岩服,从辉石辉闪岩到花岗闪长岩,与安徽省铜陵区狮子山矿田的斑岩和矽卡岩型金铜矿床有关。岩浆和继承锆石的原位U-Pb测年和Hf同位素分析与整个岩石Sr-Nd-Pb同位素数据和矿物热压法相结合来解释岩石成因。石英辉长岩中的岩浆锆石的加权平均年龄约为(206)Pb /〜(23S)U。 139 Ma,平均ε_(Hf)(t)值为-19.8±3.9(1σ),而来自辉石辉闪岩的平均年龄相似,但平均ε_(Hf){t)值较高(-8.5±1.4) 。石英单晶闪长岩的锆石生成年龄分别为0.8、2.0和2.4 Ga,平均ε_(Hf)(t)值为-2.9±1.4,而辉石单晶闪长岩的锆石显示年龄更短(165至245 Ma),但均值相似ε_(Hf)(r)值(-5.6±4.5)。整个岩石Sr-Nd-Pb同位素数据表明,地壳物质对岩浆有重要贡献矿物热压法结果表明,离散岩浆室的深度约为23 km,深度为10至2 km,以上数据与先前的研究相结合认为:1)岩浆的沉积和结晶(通常为锆石)主要发生在139 Ma左右,与成矿时代一致; 2)主要的辉石辉长岩二叠纪岩浆可能与扬子下地壳部分融化产生的岩浆混合,并在岩浆腔内堆积。下地壳深23公里; 3)AFC和岩浆混合是浅层(2至10 km)岩浆演化的主要过程,在这种情况下有利于成矿。

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