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Garnet U-Pb and O isotopic determinations reveal a shear-zone induced hydrothermal system

机译:石榴石的U-Pb和O同位素测定揭示了剪切带诱发的热液系统

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摘要

The absolute crystallization ages of minerals from hydrothermal fluids measured in situ can unravel the timing of key events leading to the formation of, for instance, ore deposits and hydrothermally derived geological terrains. In this study, a skarn iron deposit from northwest (NW) China is shown to have U-Pb garnet and U-Pb zircon ages of 254.2 ± 1.7 Ma and 255.5 ± 1.0 Ma, respectively, which are both significantly younger than magmatism and metamorphism of the region. This skarn age instead correlates with the occurrence of strike-slip and thrust faulting in the region. The water/rock mass ratio of 0.065~0.115 suggests the δ18O garnet composition is ~1‰ at temperatures ranging from 250–450 °C. The low oxygen isotopic composition indicates the role of meteoric water in the garnet formation. These measurements can be interpreted as the shear along faults circulating meteoric water ~10 km below the hanging wall of meta-volcanic sedimentary rock. Meteoric water in this hydrothermal system would leach cations from the meta-volcano-sedimentary rocks necessary for mineralization. Silica-rich hydrothermal fluid reacts with calcic-rich materials in the meta-volcano-sedimentary rocks, depositing the garnet and magnetite. Our work suggests that the shear zone is rich in ores, rendering this deposit for NW China a prospective source for future mineral resource exploration.
机译:在现场测量的热液中矿物的绝对结晶年龄可以揭示关键事件的发生时间,这些关键事件导致形成例如矿床和热液衍生的地质地形。在这项研究中,中国西北部的矽卡岩型铁矿床的铀-石榴石石榴石和锆石的锆石年龄分别为254.2±1.7 Ma和255.5±1.0 Ma,均比岩浆作用和变质作用年轻得多。该地区。相反,该矽卡岩年龄与该地区走滑和逆冲断层的发生有关。水/岩质量比为0.065〜0.115,表明在250–450 C的温度下δ 18 O石榴石的组成为〜1‰。低氧同位素组成表明陨石水在石榴石形成中的作用。这些测量结果可以解释为在超火山沉积岩悬壁下方约10 km处沿循环水循环的断层的剪切力。在这个热液系统中的流水会从矿化所必需的超火山沉积岩中浸出阳离子。富含二氧化硅的热液与中火山沉积岩中的富含钙的物质反应,沉积了石榴石和磁铁矿。我们的工作表明,该剪切带富含矿石,这使得西北地区的矿床成为未来矿产资源勘探的潜在来源。

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