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首页> 外文期刊>Arabian journal of geosciences >Mineralogy and mineral geochemistry of the Tuwu porphyry Cu deposit, Eastern Tianshan, NW China: implication for the ore-forming condition and Cu mineralization
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Mineralogy and mineral geochemistry of the Tuwu porphyry Cu deposit, Eastern Tianshan, NW China: implication for the ore-forming condition and Cu mineralization

机译:天山东部矿石斑岩铜矿矿床矿物学和矿物地球化学矿床:对矿石矿化和Cu矿化的影响

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The Tuwu deposit is one of the largest porphyry copper deposits in Eastern Tianshan, NW China. The widespread hydrothermal alteration is associated with porphyries and their wall-rocks in the porphyry deposit can be divided into potassic, chlorite-sericite, phyllic, and propylitic zones. In this study, we conducted a detailed study on the mineralogy of hydrothermal magnetite, mica, and epidote. Magnetite is closely related to the potassic alteration, and evolves from earlier disseminated magnetite (Mt-I) to the later magnetite-quartz +/- biotite +/- pyrite +/- bornite +/- chalcopyrite veins (Mt-II). The significant decrease in the Cr2O3 and V2O3 contents of magnetite from early to late period indicates the gradual increase of oxygen fugacity. The crystallization of magnetite supplies enough reduced sulfur that promotes the sulfide precipitation. The dominance of muscovite (Mc-I) in the early phyllic stage and the increasing of phengite muscovite (Mc-II) in the late phyllic stage suggest the evolution of hydrothermal fluid from a high-temperature and acidic environment to a low-temperature and less acidic environment. This process also results in the decrease of sulfide mineral deposition in the late phyllic stage. Epidote from propylitic zones at Tuwu has similar characteristic with the overprinting epidote in the Yandong porphyry Cu systems. Propylitic Ep-I have higher FeO content than Ep-II. The interaction of Fe-rich propylitic epidote with hydrothermal fluid enhanced both Ca2+ activity and pH value, and favored the precipitation of sulfides (e.g., chalcopyrite). In addition, the Fe-rich and less acidic fluids, which derived from the propylitic zones and flow though the sericitic rocks in the phyllic zones, also promote the deposition of Cu mineralization. Our results, combined with previous research on fluid inclusion, isotopes, and mass transfer, suggest that the changes in temperature, oxygen fugacity, and pH caused by the fluid-rock interaction played a critical role for the Cu mineralization at Tuwu.
机译:Tuwu矿床是天山最大的斑岩铜矿之一,中国北部天山。普遍的水热改变与卟啉和卟啉沉积物中的壁岩相关有关,可分为钾,氯酸盐 - 绢云母,文学和丙基区。在这项研究中,我们对水热磁铁矿,云母和烘焙的矿物进行了详细研究。磁铁矿与母蒸质改变密切相关,并从早期的传播磁铁矿(MT-I)进化到后来的磁铁矿 - 石英+/-生物烟液+/-吡啶料+/-镀锌+/-黄铜矿静脉(MT-II)。从早期到晚期CR2O3和V2O3含量的显着降低表明氧气不足的逐渐增加。磁铁矿供应的结晶足够降低的硫促进硫化物沉淀。早期文学阶段(MC-I)在早期文学阶段的占优势性和磷酸盐肌岩(MC-II)的增加表明水热流体从高温和酸性环境中的进化到低温和酸性环境少。该方法还导致在后期神经阶段中硫化物矿物沉积的降低。 Tuwu的丙基区的ePIDOTE在Yandong斑岩Cu系统中具有类似的特征。丙基EP-I具有比EP-II更高的FEO含量。 Fe富含丙基酸肝脏与水热流体的相互作用增强了Ca2 +活性和pH值,并赞成硫化硫化物的沉淀(例如,黄铜矿)。此外,富含Fe的酸性和较少的酸性流体,其衍生自丙基区并流动,虽然文学区中的胺岩,也促进了Cu矿化的沉积。我们的研究结果与先前的流体包容性,同位素和传质进行了研究表明,温度,氧气不足和由流体 - 岩石相互作用引起的pH的变化在图U对Cu矿化产生了关键作用。

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