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Electron microprobe monazite geochronological constraints on the Late Palaeozoic tectonothermal evolution in the Chinese Tianshan

机译:中国天山晚古生代构造热演化过程中的电子探针独居石年代学约束

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摘要

Electron microprobe monazite data from the early Palaeozoic granitoid gneisses in the Central Tianshan Tectonic Zone provide two main ages: (1) an age of 355 ± 12 Ma obtained on the chemically complex grains, which is good agreement with the high-pressure metamorphic age obtained on eclogite and blueschist rocks from the south Tianshan Tectonic Zone; (2) an age of 323 ± 7 Ma obtained on the complex and the monogenetic grains, which is also closely consistent with the age for a major episode of cooling–recrystallization of these high-pressure rocks. Monazite from the schist of the Xingxingxia complex yields a younger Th/Pb–U/Pb centroid age of 282 ± 9 Ma. This younger age is interpreted as being linked to a magmatic episode, possibly related to underplating–extension, and/or shear activities. These data provide timing constraints on the episodes of metamorphism and high-pressure metamorphism and evidence for transition from compression to extension during the Carboniferous to early Permian, for the Chinese Tianshan region. Moreover, this study shows that electron microprobe dating of monazite, together with recent statistical treatment, can provide a reliable method to reveal a sequence of events within an orogenic cycle.
机译:来自天山中部构造带古生代早期类质岩片麻岩的电子探针独居石数据提供了两个主要年龄:(1)在上获得的355±12 Ma年龄。 化学上复杂的晶粒,与 在天山南部构造带的榴辉岩和blueschist 岩石上获得的高压变质年龄相吻合; (2)在复合物和单基因粒上获得的323 ±7 Ma年龄, 也与主要事件 的年龄紧密相关。这些高压岩石的冷却-再结晶。 星行峡复合岩片岩中的独居石产生的 年轻Th / Pb–U / Pb质心年龄为282± 9 Ma。 这个年轻的年龄被解释为与岩浆的 情节有关,可能与地下扩展和/或 剪切活动有关。这些数据为变质和高压变质的 片段提供了时间约束,并且在 石炭纪到早二叠世期间从压缩过渡到伸展的证据,适用于中国的天山 地区。此外,这项研究表明独居石的电子微探针 约会以及最近的统计处理, 可以提供一种可靠的方法来揭示一系列事件 在造山运动周期内。

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  • 来源
    《Journal of the Geological Society》 |2008年第2期|511-522|共12页
  • 作者单位

    The Key Laboratory of Orogenic Belts and Crustal Evolution, Ministry of Education, School of Earth and Space Sciences, Peking University, Beijing 100871, People's Republic of China (e-mail: swliu@pku.edu.cn)|Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, People's Republic of China;

    The Key Laboratory of Orogenic Belts and Crustal Evolution, Ministry of Education, School of Earth and Space Sciences, Peking University, Beijing 100871, People's Republic of China (e-mail: swliu@pku.edu.cn);

    Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, People's Republic of China;

    The Key Laboratory of Orogenic Belts and Crustal Evolution, Ministry of Education, School of Earth and Space Sciences, Peking University, Beijing 100871, People's Republic of China (e-mail: swliu@pku.edu.cn);

    The Key Laboratory of Orogenic Belts and Crustal Evolution, Ministry of Education, School of Earth and Space Sciences, Peking University, Beijing 100871, People's Republic of China (e-mail: swliu@pku.edu.cn);

    Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, People's Republic of China;

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