首页> 外文OA文献 >Ordovician 40Ar/39Ar phengite ages from the blueschist-facies Ondor Sum subduction-accretion complex (Inner Mongolia) and implications for the early Paleozoic history of continental blocks in China and adjacent areas
【2h】

Ordovician 40Ar/39Ar phengite ages from the blueschist-facies Ondor Sum subduction-accretion complex (Inner Mongolia) and implications for the early Paleozoic history of continental blocks in China and adjacent areas

机译:蓝片岩相Ondor Sum俯冲-增生复合体(内蒙古)的奥陶纪40Ar / 39Ar辉石年龄及其对中国及邻近地区大陆块体的早期古生代历史的意义

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

We obtained 453.2 ± 1.8 Ma and 449.4 ± 1.8 Ma (2{sigma}) laser step-heating 40Ar/39Ar plateau ages for phengite from quartzite mylonites from the blueschist-facies Ondor Sum subduction-accretion complex in Inner Mongolia (northern China). These ages are within error of the inverse isochron ages calculated using the plateau steps and the weighted mean ages of total fusion of single grains. The compositional change from glaucophane in the cores to crossite in the rims of blue amphiboles, as revealed by electron microprobe analysis, points to decompression, probably caused by progressive exhumation of the subducted material. The Late Ordovician ages were not affected by excess argon incorporation because in all likelihood the oceanic sediments were wet on arrival at the trench and free of older detrital mica. The ca. 450 Ma ages are, hence, interpreted as the time of crystallization during mylonitization under high fluid activity at fairly low temperatures. This means that accretion of the quartzite mylonite unit occured about 200 Ma before final closure of the Paleo-Asian Ocean, amalgamation of the Siberian, Tarim and North China cratons, and formation of the end-Permian Solonker suture zone. We argue that the Early Paleozoic evolution of the Ondor Sum complex occurred along the northeastern Cimmerian margin of Gondwana, which was composed of micro-continents fringed by subduction-accretion complexes and island arcs. The later evolution took place during the building of the Eurasian continent following middle Devonian and younger rifting along the East Gondwanan margin and northward drift of the detached North China craton. An extensive review shows that this type of two-stage scenario probably also applies to the geodynamic evolution of other micro-continents like, South China, Tarim, a number of Kazakh terranes, Alashan, Qaidam and Kunlun, as well as South Kitakami and correlatives in Japan, and probably Indochina. Like the North China craton, these were bordered by Early Paleozoic subduction-accretion complexes, island arcs or contained calc-alkaline volcanic margins, like for example, the central Tienshan, North Qinling, North Qaidam-Altun, North Qilian and Kunlun belts in China, as well as the Oeyama and Miyamori ophiolites and Matsugadaira-Motai blueschist belt of Japan and the dismembered Sergeevka ophiolite of the southern part of the Russian Far East. This implies that a vast orogenic system, comprising an archipelago of micro-continents, seems to have existed along the Cimmerian margin of East Gondwana in Early Paleozoic time in which the ultrahigh-pressure metamorphism that characterizes the early evolution of many of the Asian micro-continents occurred.
机译:我们从内蒙古(中国北部)蓝片岩相Ondor Sum俯冲-增生复合体中的石英岩my石中获得了453.2±1.8 Ma和449.4±1.8 Ma(2 {sigma})激光步进加热的40Ar / 39Ar坪年龄的锂铁矿。这些年龄在使用平稳步长计算的逆等时年龄和单粒完全融合的加权平均年龄的误差内。电子微探针分析显示,从核中的葡甘烷到蓝色闪石的边缘中的方铁矿的成分变化表明减压,这可能是由于俯冲物质的逐渐发掘引起的。奥陶纪晚期年龄不受过量氩气掺入的影响,因为海洋沉积物到达沟渠时很可能是湿的,并且没有较老的碎屑云母。该ca。因此,450 Ma年龄被解释为在相当低的温度下,在高流体活度下,在髓鞘化过程中的结晶时间。这意味着在古亚洲洋最终关闭,西伯利亚,塔里木和华北克拉通的融合以及二叠纪末期的Solonker缝合带的形成之前,石英岩my铁质单元的吸积发生在大约200 Ma之前。我们认为,Ondor Sum复杂体的早期古生代演化发生在冈瓦纳的西米里边缘,该边缘由俯冲-增生复合体和岛弧边缘的微大陆组成。后来的演化发生在中泥盆纪和年轻的沿东冈瓦南边缘的裂谷以及分离的华北克拉通的北移之后,欧亚大陆的建设。广泛的回顾表明,这种两阶段情景可能也适用于其他微大陆的地球动力学演化,例如华南,塔里木,许多哈萨克人的地形,阿拉善,柴达木和昆仑,以及南北上及相关地区在日本,甚至在印度支那。像华北克拉通一样,它们与早古生代俯冲-增生复合体,岛弧或含钙碱性火山岩边缘接壤,例如中国的天山中部,北秦岭,柴达木-阿尔屯,北祁连和昆仑带以及日本的上山和宫森蛇绿岩和松下平带墨脱岩带以及俄罗斯远东南部肢解的谢尔盖夫卡蛇绿岩。这意味着,在古生代初期,东贡多瓦纳的西密尔边缘似乎存在着一个由微大陆群岛组成的巨大造山系统,其中超高压变质是许多亚洲微卫星早期演化的特征。大洲发生了。

著录项

相似文献

  • 外文文献
代理获取

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