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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Zircon U–Pb and Hf–O isotopes trace the architecture of polymetallic deposits: A case study of the Jurassic ore-forming porphyries in the Qin–Hang metallogenic belt, China
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Zircon U–Pb and Hf–O isotopes trace the architecture of polymetallic deposits: A case study of the Jurassic ore-forming porphyries in the Qin–Hang metallogenic belt, China

机译:锆石U-PB和HF-O同位素追踪多金属沉积物的结构:中国秦悬河河矿石卟啉区的案例研究

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AbstractThe Qin–Hang intra-continental porphyry–skarn Cu polymetallic belt (QHMB) is among the economically important metallogenic belts in South China. The significant differences in the size and metal assemblage of the Jurassic magmatic–hydrothermal ore deposits in this belt remain as an enigma. Here we employ zircon U–Pb and Hf–O isotopes of the Tongshanling and Baoshan Cu–Pb–Zn deposits in the central part of the QHMB to investigate the contrasting metallogenic architecture. Our SIMS zircon U–Pb data indicate that the Tongshanling and Baoshan granodiorite formed at ~160Ma. These rocks show high Mg#values, and negative zirconεHf(t) and highδ18O values suggesting that the magmas of the granodiorite porphyries were mainly generated through the anatexis of older crustal components triggered by the input of mantle-derived magma. The minor content of amphibole phenocrysts, low Sr/Y ratios, negative Eu anomaly, and low zircon Ce4+/Ce3+ratios indicate that the porphyries are relatively less oxidized with less water content compared with the ore-bearing porphyries in the Dexing and Yuanzhuding porphyry Cu deposits in the northern and southern part of the QHMB, suggesting that high magmatic water content and oxidation state are important prerequisites for the formation of large size porphyry–skarn copper deposits in the QHMB. The positive correlation between zirconεHf(t) values with the Cu reserves, as well as zirconδ18O values with the Cu/(Cu+Pb+Zn) ratios of the deposits indicate that the magmatic sources exerted a first-order control on the volume and metal assemblage of deposits in the QHMB. The Hf and Nd isotope contour maps indicate that the central part of the QHMB has high potential for Pb–Zn-dominated magmatic–hydrothermal deposits, whereas the northern and southern part of the QHMB are prospective for large Cu deposits. Our results have important implications in formulating regional exploration strategies for Jurassic porphyry–skarn Cu–Pb–Zn deposits in the Qin–Hang belt.Graphical abstractDisplay OmittedHighlights?The Tongshanling and Baoshan porphyries were formed by input of mafic magma into old crust.?Oxidized and hydrous magma is a pre-requisite for large Cu deposits in the QHMB.?Nature of magmatic source controls the size and metal association of the deposits in the QHMB.]]>
机译:<![cdata [ 抽象 秦挂内欧陆式斑岩 - 矽卡岩Cu多金属腰带(QHMB)是经济上重要的成矿皮带之一在华南。该皮带中侏罗纪岩浆 - 水热矿床沉积物的尺寸和金属组装的显着差异仍然是耳膜。在这里,我们在QHMB的中央部分使用铜山岭和宝山Cu-PB-Zn沉积物的锆U-Pb和HF-O同位素,以研究对比度的成熟结构。我们的SIMS ZIRCON U-PB数据表明,在〜160mA中形成了铜山和宝山颗粒机。这些岩石显示高mg 值,负zircon ε hf (t)和high δ 18 o值表明Granodiorite卟啉的岩浆主要是通过由地幔型岩浆输入引发的旧地壳分量的anatexis产生。氨基吡苯基杂交的次要含量,低Sr / y比率,负欧盟异常和低锆石ce 4 + / ce 3 + / Ce:Sup>比率表明,与南部和QHMB的北部和南部的南部的矿石卟啉铜沉积物相比,卟啉与含水量较少的含水量相对较少,表明高岩浆水含量和氧化状态是QHMB中形成大尺寸斑岩铜矿床的重要先决条件。 zircon ε hf (t)与cu储备的值,以及zircon Δ 18 o沉积物的Cu /(Cu + pb + zn)的值表明岩浆源施加了一个QHMB中沉积物体积和金属组装的一流控制。 HF和ND同位素等高图表明,QHMB的中心部分具有高潜力的PB-Zn主导的岩浆 - 水热沉积物,而QHMB的北部和南部是大型铜矿的前瞻性。我们的研究结果对秦挂带制定侏罗纪斑岩 - 矽卡岩Cu-PB-Zn沉积物的区域勘探策略具有重要意义。 图形抽象 显示省略 突出显示 铜山岭和宝山卟啉p E通过将MAFIC Magma输入到旧地壳中形成。 < CE:PARA ID =“P0010”View =“全部”>氧化和含水岩浆是QHMB中的大型Cu沉积物的先决条件。 岩浆源的性质控制QHMB中存款的大小和金属协会。 ]]>

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