Ab'/> Constraints on the origin of adakites and porphyry Cu-Mo mineralization in Chongjiang, Southern Gangdese, the Tibetan Plateau
首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Constraints on the origin of adakites and porphyry Cu-Mo mineralization in Chongjiang, Southern Gangdese, the Tibetan Plateau
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Constraints on the origin of adakites and porphyry Cu-Mo mineralization in Chongjiang, Southern Gangdese, the Tibetan Plateau

机译:关于崇江南瓜南瓜省南瓜省藏族和斑岩Cu-Mo矿化的制约因素

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AbstractChongjiang is a low-grade porphyry Cu deposit, located in the Gangdese belt, south Tibet. The petrogenesis and geodynamic settings of the Miocene intrusions associated with the deposit remain controversial. This study presents new results on in situ zircon Hf-O isotopic compositions and U-Pb ages, whole rock major and trace elements, and Sr-Nd isotopes for the adakitic intrusions from Chongjiang deposit. The ore-bearing biotite monzogranite porphyry has adakitic characteristics, with enriched large-ion-lithophile elements (LILE) and light rare earth elements (LREE), and depleted in high-field-strength elements (HFSE), P and Ti. LA-ICP-MS zircon U-Pb dating indicates that the ore-bearing and barren adakites were emplaced at 14.9±0.3Ma and 12.9±0.3Ma, respectively. The porphyry is characterized by relatively high initial87Sr/86Sr ratios (0.7059 to 0.7066), and negative whole-rock εNd(t) values (?3.8 to ?2.6). Zircon δ18O is slightly higher than mantle values (5.0 to 7.2‰), with varied εHf(t) (?1.0 to 7.6). Most of the in situ zircon Hf-O isotopic data plot in a binary mixing trend between MORB and lower continental crust-derived melts. These results indicate contributions from mixing of a mantle-like source (e.g., slab melts) with continental crust. Interestingly, most of the samples plot in the field defined by Dabie adakites (representing partial melting of the lower continental crust), with several samples near/in the circum-Pacific adakite field (representing partial melting of subducted oceanic slabs), which seemingly indicates that Chongjiang adakites mostly formed through partial melting of lower continental crust, with a small amount derived from oceanic slab melts. These may be plausibly explained by plagioclase retention in the thickened Tibetan continental crust, which lowers Sr contents in the magmas during crustal assimilation. Such a model is supported by other adakite discrimination diagrams, which all point towards slab melting. Crustal contamination can compellingly explain the low grade of the Chongjiang deposit. Considering the temporal-spatial distribution of porphyry Cu deposits, geochemical characteristics and high oxygen fugacity, we propose that the subducting Ninetyeast Ridge probably played a critical role in controlling the formation of Miocene adakites and porphyry copper deposits in the eastern Gangdese belt.Highlights?Chongjiang is a low-grade porphyry Cu deposit formed in post-collisional period in Gangdese belt closely related to adakites.?Chongjiang adakitic melts are derived mainly from oceanic slab melting, with contributions from thickened Lhasa lower crust.?Serious crustal contamination explains the low grade of the Chongjiang deposit.]]>
机译:<![cdata [ 抽象 崇江是一个低级斑岩Cu矿床,位于南西藏江叶腰带。与矿床相关的中细胞入侵的纤维化和地球动力学环境仍存在争议。本研究提到原位锆石HF-O同位素组合物和U-PB年龄,整个岩石主要和微量元素的新结果,以及崇江沉积物的Adakitic Intrings的SR-ND同位素。携带矿石的Biotite Monzogranite斑岩具有AdaAxitic特性,具有富含大离子型材的元素(Lile)和轻稀土元素(LREE),并耗尽高场强元件(HFSE),P和TI。 LA-ICP-MS锆石U-PB约会表示矿石和贫瘠adakites分别在14.9±0.3mA和12.9±0.3mA下施加。斑岩的特征在于相对较高的初始 87> sr / 86 sr比率(0.7059至0.7066 ),负全摇滚ε nd (t)值(?3.8到?2.6)。锆科Δ 18> 18 o略高于地幔值(5.0至7.2‰),随着ε hf (T)(?1.0至7.6)。大多数原位锆石HF-O同位素数据绘制在Morb和较低的欧洲地壳衍生的熔体之间的二元混合趋势中。这些结果表明,与大陆地壳混合的贡献。有趣的是,大多数样品在由Dabie Adakites(代表下欧洲地壳的部分熔化)定义的场中,具有近/在循环adakite领域附近的几个样本(代表底层海洋板的部分熔化),这似乎表明了崇江的adakites主要通过偏米熔化的较低的欧洲地壳形成,少量来自海洋板坯熔体。这些可以通过在增稠的藏大陆地壳中通过Plagioclase保留来解释,在地壳同化过程中降低了岩浆中的SR含量。这种模型由其他Adakite鉴别图支持,所有点均向熔化点。地壳污染可能会难以解释崇江矿床的低等级。考虑到斑岩铜沉积物,地球化学特征和高氧气不足的时间空间分布,我们提出了九十二脊的底层可能在控制东部甘蓝腰带中的中生adakites和斑岩铜沉积物的形成方面发挥着关键作用。 突出显示 崇江是一个低级斑岩铜在与Adakites密切相关的冈德斯皮带后碰撞期间的押金。 chon Gjiang Adakitic Melts主要来自海洋板坯熔化,增厚Lhasa下皮的贡献。 严重的地壳污染解释了崇江矿床的低等级。 ]]>

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