首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >Continental orogenesis from ocean subduction, continent collision/ subduction, to orogen collapse, and orogen recycling: The example of the North Qaidam UHPM belt, NW China
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Continental orogenesis from ocean subduction, continent collision/ subduction, to orogen collapse, and orogen recycling: The example of the North Qaidam UHPM belt, NW China

机译:从海洋俯冲,大陆碰撞/俯冲到造山带塌陷和造山带循环的大陆造山作用:以北柴达木UHPM带为例,中国西北

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摘要

The North Qaidam ultra-high pressure metamorphic (UHPM) belt in the northern Tibetan Plateau records a complete history of the evolution of a continental orogen from prior seafloor subduction, to continental collision and subduction, and to the ultimate orogen collapse in the time period fromthe Neoproterozoic to the Paleozoic. Lithologies in this UHPMbelt consist predominantly of felsic gneisses containing blocks of eclogite and peridotite. The 1120–900 Ma granitic and psammitic/pelitic gneisses compose themajority of the UHPM belt and is genetically associated with the previous orogenic cycle of Grenville-age, whereas protoliths of the HUPM eclogites are of both the 850–820 Ma continental flood basalts (CFBs) and the 540–500 Ma oceanic crust (ophiolite). The early stage of quartz-stable eclogite-facies metamorphismtook place at ~445–473 Ma, the same age as that of the HP rocks in the North Qilian oceanic suture zone, representing the earliest subducting seafloor rocks exhumed and preserved. Coesite-bearing zircons from the metapelite and eclogite, diamond-bearing zircons from garnet peridotites constrain the UHP metamorphic age of ~438–420 Ma, which represents the timing of continental subduction at depths of 100–200 km, ~10–20 m.y. younger than the early stage of the Qilian seafloor subduction. Therefore, deep subduction of continental crust should be the continuation of oceanic subduction that is pulled down by the sinking oceanic lithosphere or pushed down by the overriding upper plate, which is an expected and inevitable consequence for the scenario of passive continental margins. Partial melting of subducted ocean crust might occur in response to continental subduction at ~435 Ma. The UHP Mrocks started to exhume accompanied by mountain building and deposition of Early Devonian molasses in the North Qilian region at ~420 Ma. Decoupling of oceanic subduction zone and continent UHP Mterranes may be attributed to the different exhumation path and mechanism between the subducted oceanic and continent crusts, or rollback of subduction zone. Decompressionmelting of UHP metamorphosed slab and continental crust during exhumation is responsible for the generation of adakitic melts and S-type granite.Mountain collapse and lithosphere extension happened in the period of ~400–360 Ma and formed diorite–granite intrusions in the UHPM belt, which marked the end of a complete orogenic cycle. This UHP metamorphic belt presents an example ofmulti-epoch tectonic recycles, represented by recombination of the Neoproterozoic Grenvillian orogenesis and the Early Paleozoic Caledonian orogenesis.
机译:青藏高原北部的柴达木北部超高压变质带(UHPM)记录了一个大陆造山带演化的完整历史,从先前的海底俯冲到大陆碰撞和俯冲,再到最终的造山带塌陷。新元古代至古生代。该UHPM带中的岩性主要由含榴辉岩和橄榄岩块的长英质片麻岩组成。 1120–900 Ma的花岗质片麻岩和迷迭香/ peliteic片麻岩构成了UHPM带的大部分,并且与早先的Grenville时代造山带有遗传联系,而HUPM榴辉岩的原生岩都是850–820 Ma的大陆洪水玄武岩(CFBs) )和540–500 Ma洋壳(蛇绿岩)。石英稳定的榴辉岩相变质作用的早期发生在约445-473 Ma处,与北祁连海域缝合线的HP岩石年龄相同,代表着最早发掘和保存的俯冲海底岩石。变质岩和榴辉岩中的含钴岩锆石,石榴石橄榄岩中的含钻石锆石约束了UHP变质年龄〜438-420 Ma,这代表了大陆俯冲的时间为100-200 km,即约10-20m.y。比祁连海底俯冲早期还年轻。因此,大陆壳的深层俯冲应该是被俯冲的海洋岩石圈拉低或被上覆的上板块推低的海洋俯冲的延续,这是被动大陆边缘情景的预期和必然结果。俯冲的洋壳可能在〜435 Ma发生部分融化。 UHP Mrocks开始发掘并伴有山区建设和北祁连地区约420 Ma的早泥盆纪糖蜜的沉积。大洋俯冲带与大陆超高压Mterranes的解耦可能归因于俯冲洋壳与大陆壳之间的掘出路径和机制不同,或俯冲带回滚。挖掘过程中,UHP变质板和大陆壳的减压融化是生成adakitic熔体和S型花岗岩的原因。山体塌陷和岩石圈伸展发生在约400-360 Ma期间,并且在UHPM带形成了闪长岩-花岗岩侵入体,这标志着一个完整的造山周期的结束。该UHP变质带提供了一个多时期构造循环的例子,以新元古代格列维利造山运动和早期古生代古苏格兰造山运动的重组为代表。

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