首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >SHRIMP U-Pb Zircon geochronology of the Altai No. 3 Pegmatite, NW China, and its implications for the origin and tectonic setting of the pegmatite
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SHRIMP U-Pb Zircon geochronology of the Altai No. 3 Pegmatite, NW China, and its implications for the origin and tectonic setting of the pegmatite

机译:中国西北阿尔泰3伟晶岩的SHRIMP U-Pb锆石年代学及其对伟晶岩成因和构造环境的影响

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The "Altai No. 3 granitic pegmatite" in NW China is the largest pegmatite in the world that has been found in an orogenic be it forms one of the largest muscovite deposits in Asia and is most famous for its concentric-ring structure. Although it has been mined for more than 70 years, the age of formation and mineralization of the pegmatite has not been well determined, despite numerous previous geochronological studies. Here we present new results of SHRIMP U-Pb zircon dating. Three weighted mean ~(206)Pb/~(238)U ages of 220 + - 9 Ma, 198 + - 7 Ma and 213 + - 6 Ma were obtained for pegmatite zones 1,5, and 7, respectively. The analyses were made on clear, recrystallized domains and overgrowth rims of large, opaque high-U zircon grains. We interpret the age of 220 + - 9 Ma for zone 1 to approximately represent the initial time of formation for No. 3 pegmatite. An additional date of 213 + - 2 Ma was determined on zircon from a small subordinate vein formed in the late-stage phase of the No. 3 pegmatite. This age set the late age of emplacement of the pegmatite. The time span of 213 to 198 Ma may reflect late stage hydrothermal alteration. In addition, a weighted mean ~(206)Pb/~(238)U age of 277 + - 6 Ma was obtained from small, clear, transparent low-U zircon grains which are more probably xenocrysts. Our new age data indicate that the pegmatite has no genetic relationship with the wall granitic rocks (409 Ma), but is likely related to the early Mesozoic (220 Ma) granitic magmatism that was just recognized. The No. 3 pegmatite was formed in an early Mesozoic anorogenic extensional regime. A stable tectonic setting was undoubtedly required for the formation of the large pegmatite.
机译:中国西北部的“阿尔泰三号花岗岩伟晶岩”是在造山带中发现的世界上最大的伟晶岩。它是亚洲最大的白云母矿床之一,并以其同心环结构而闻名。尽管已进行了70多年的开采,但伟哥岩的形成和矿化的年龄尚未得到很好的确定,尽管之前进行了大量的地质年代研究。在这里,我们介绍了SHRIMP U-Pb锆石测年的新结果。对于伟晶岩区1,5和7,分别获得了220 +-9 Ma,198 +-7 Ma和213 +-6 Ma的三个加权平均〜(206)Pb /〜(238)U年龄。分析是在大型,不透明的高U锆石晶粒的清晰,重结晶区域和过度生长的边缘上进行的。我们将1区的220 +-9 Ma年龄解释为大约代表3号伟晶岩的初始形成时间。在3号伟晶岩后期阶段形成的一条小的次要脉上,在锆石上确定了213 +-2 Ma的附加日期。这个年龄设定了伟晶岩进驻的晚期年龄。 213至198 Ma的时间跨度可能反映了晚期热液蚀变。另外,从小的,透明,透明的低U锆石晶粒获得了加权平均〜(206)Pb /〜(238)U年龄277 +-6 Ma,这很可能是异晶。我们的新年龄数据表明,伟晶岩与壁花岗岩(409 Ma)没有遗传关系,但可能与刚刚认识到的中生代早期(220 Ma)花岗岩浆有关。 3号伟晶岩是在早期中生代厌食性扩张过程中形成的。大型伟晶岩的形成无疑需要稳定的构造环境。

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