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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Intermediate P/T-type regional metamorphism of the Isua Supracrustal Belt, southern west Greenland: The oldest Pacific-type orogenic belt?
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Intermediate P/T-type regional metamorphism of the Isua Supracrustal Belt, southern west Greenland: The oldest Pacific-type orogenic belt?

机译:格陵兰西南部伊苏阿超壳带的中间P / T型区域变质作用:最古老的太平洋型造山带?

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The 3.7-3.8 Ga Isua Supracrustal Belt (ISB), southwest Greenland, might be the oldest accretionary complex on Earth. Regional metamorphism of the ISB has a potential to constrain the tectonothermal history of the Earth during the Eoarchean. Chemical and modal analyses of metabasite in the study area (i.e., the northeast part of the ISB) show that the metamorphic grade increases from greenschist facies in the northern part of the study area to amphibolite fades in the southern part. To determine the precise metamorphic P-T ranges, isochemical phase diagrams of minerals of metabasite were made using Perple_X. A synthesis of the estimated metamorphic P-T ranges of the ISB indicates that both the metamorphic pressure and temperature increase systematically to the south in the study area from 3 kbar and 380 degrees C to 6 kbar and 560 degrees C. The monotonous metamorphic P-T change suggests that the northeast part of the ISB preserves regional metamorphism resulting from the subduction of an accretionary complex although the ISB experienced metamorphic overprints during the Neoarchean. Both the presence of the regional metamorphism and an accretionary complex having originating at subduction zone suggest that the ISB may be the oldest Pacific-type orogenic belt. The progressive metamorphism can be considered as a record of intermediate-PIT type geothermal gradient at the subduction zone in the Eoarchean. Intermediate-P/T type geothermal gradient is typical at the current zones of subducting young oceanic crust, such as in the case of the Philippine Sea Plate in the southwest part of Japan. Considering the fact that almost all metamorphisms in the Archean are greenschist-amphibolite facies, the intermediate-P/T type geothermal gradient at the ISB might have been worldwide in the Archean. This would indicate that the subduction of young micro-plates was common because of the vigorous convection of hot mantle in the Archean. (C) 2015 Elsevier B.V. All rights reserved.
机译:格陵兰西南部的3.7-3.8 Ga Isua超环壳带(ISB)可能是地球上最古老的增生复合体。 ISB的区域变质作用有可能限制欧亚大陆时期地球的构造热史。在研究区(即ISB的东北部)进行的代谢物的化学和模式分析表明,变质级别从研究区北部的绿片岩相增加到南部的角闪石褪色。为了确定精确的变质P-T范围,使用Perple_X绘制了偏钛矿矿物的化学相图。 ISB估计的变质PT范围的综合表明,变质压力和温度都在研究区域内从3 kbar和380摄氏度到6 kbar和560摄氏度系统地向南增加。单调的变质PT变化表明: ISB的东北部保留了因增生性复合体俯冲而引起的区域变质作用,尽管ISB在新archarean期间经历了变质叠印。区域变质的存在和起源于俯冲带的增生复合体都表明,ISB可能是最古老的太平洋型造山带。渐进变质可以被认为是在欧陶统俯冲带中的PIT型地热梯度记录。在当前俯冲的年轻洋壳地区,典型的是中P / T型地热梯度,例如在日本西南部的菲律宾海床。考虑到太古代中的几乎所有变质都是绿片岩-闪石相的事实,ISB的中等P / T型地热梯度可能已在太古代中出现。这表明,由于太古代热幔的强烈对流,年轻的微板俯冲很常见。 (C)2015 Elsevier B.V.保留所有权利。

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