首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Zircon U-Pb ages and geochemistry of the Wenquan Mo-bearing granitioids in West Qinling, China: Constraints on the geodynamic setting for the newly discovered Wenquan Mo deposit
【24h】

Zircon U-Pb ages and geochemistry of the Wenquan Mo-bearing granitioids in West Qinling, China: Constraints on the geodynamic setting for the newly discovered Wenquan Mo deposit

机译:中国西秦岭含温泉钼的花岗岩类锆石的U-Pb年龄和地球化学:新发现的温泉钼矿床的地球动力学环境约束

获取原文
获取原文并翻译 | 示例
       

摘要

East Qinling is the largest porphyry molybdenum province in the world; these Mo deposits have been well documented. In West Qinling, however, few Mo deposits have been discovered although granitic rocks are widespread. Recently, the Wenquan porphyry Mo deposit has been discovered in Gansu province, which provides an insight into Mo mineralization in West Qinling. In this paper we report Pb isotope compositions for K-feldspar and sulfides, S isotope ratios for sulfides, the results obtained from petrochemical study and from in situ LA-ICP-MS zircon U-Pb dating and Hf isotopes. The granitoids are enriched in LILE and LREE, with REE and trace element patterns similar to continental crust, suggesting a crustal origin. The Mg~# (40.05 to 56.34) and Cr and Ni contents are high, indicating a source of refractory mafic lower crust. The ε_(Hf(t)) values of zircon grains from porphyritic monzogranite range from -2.9 to 0.6, and from granitic porphyry vary from -3.3 to 1.9. The zircons have T_(DM2) of 1014 to 1196 Ma for the porphyritic monzogranite and 954 to 1224 Ma for the granitic porphyry, implying that these granitoids were likely derived from partial melting of a Late Mesoproterozoic juvenile lower crust. The Pb isotope compositions of the granitoids are similar to granites in South China, showing that the magma was sourced from the middle–lower crust in the southern Qinling tectonic unit. The Pb isotopic contrast between the Mo-bearing granitoids and ores shows that the Pb in the ore-forming solution was derived from fractionation of a Triassic magmatic system. δ~(34)S values of sulfides are between 5.02 and 5.66‰, similar to those associated with magmatic-hydrothermal systems. LA-ICP-MS zircon U-Pb dating yields crystallization ages of 216.2±1.7 and 217.2±2.0 Ma for the granitoids, consistent with a previously reported molybdenite Re-Os isochron age of 214.4±7.1 Ma. This suggests that the Mo mineralization is related to the late Triassic magmatism in the West Qinling orogenic belt. In view of these geochemical results and known regional geology, we propose that both granitoid emplacement andMomineralization in the Wenquan deposit resulted from the Triassic collision between the South Qinling and the South China Block, along the Mianlue suture. Since Triassic granitoid plutons commonly occur along the Qinling orogenic belt, the Triassic Wenquan Mo-bearing granitoids highlight the importance of the Triassic tectono-magmatic belt for Mo exploration. In order to apply this metallogenic model to the whole Qinling orogen, further study is needed to compare the Wenquan deposit with other deposits.
机译:东秦岭是世界上最大的斑岩钼省。这些钼矿床有据可查。然而,在西秦岭,尽管花岗岩广泛分布,但几乎没有发现钼矿床。最近,在甘肃发现了温泉斑岩斑岩型钼矿床,为西秦岭的钼矿化提供了见识。在本文中,我们报告了钾长石和硫化物的铅同位素组成,硫化物的S同位素比,石化研究和原位LA-ICP-MS锆石U-Pb测年以及Hf同位素的结果。花岗岩中富含LILE和LREE,REE和微量元素的分布与大陆壳相似,表明其为地壳起源。 Mg〜#(40.05〜56.34),Cr和Ni含量较高,说明其是难熔铁质下地壳的来源。斑状斑岩中锆石的ε_(Hf(t))值在-2.9至0.6之间,花岗岩斑岩的ε_(Hf(t))在-3.3至1.9之间变化。锆石的斑岩质斑岩的T_(DM2)为1014-1196 Ma,花岗岩斑岩的T_(DM2)为954-1224 Ma,暗示这些花岗岩可能是由晚中生代幼年下地壳的部分熔融而得的。花岗岩的铅同位素组成与华南地区的花岗岩相似,表明岩浆来自秦岭南部构造单元中下地壳。含钼的花岗岩和矿石之间的铅同位素对比表明,成矿溶液中的铅是从三叠纪岩浆系统的分馏中获得的。硫化物的δ〜(34)S值在5.02-5.66‰之间,与岩浆热液系统有关。 LA-ICP-MS锆石U-Pb测年生成的花岗岩类晶体年龄为216.2±1.7和217.2±2.0 Ma,与先前报道的辉钼矿Re-Os等时年龄为214.4±7.1 Ma相一致。这表明钼矿化与西秦岭造山带晚三叠世岩浆作用有关。鉴于这些地球化学结果和已知的区域地质,我们认为文泉矿床中的花岗岩沉积和矿化作用都是由南秦岭和华南地块沿着绵略缝合线的三叠纪碰撞引起的。由于三叠纪花岗岩类岩体普遍存在于秦岭造山带,因此三叠纪文泉含钼花岗岩突显了三叠纪构造岩浆岩带对钼勘探的重要性。为了将这种成矿模式应用于整个秦岭造山带,还需要进一步研究比较文泉矿床与其他矿床。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号