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Reconnaissance study of Precambrian metamorphic rocks, northeastern Sino-Korean shield, People's Republic of China

机译:中华人民共和国东北中朝盾构前寒武纪变质岩的勘察研究

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摘要

In eastern Liaoning and southern Jilin Provinces, People's Republic of China, rocks of late Archean, early and middle Proterozoic ages consist of interlayered recrystallized banded iron-formations, pelitic schists, maric and ultramafic amphibolites, and quartzofeldspathic gneisses. The latter two lithologies are volumetrically dominant and include both supracrustals and orthogneisses/orthoamphibolites. New analytical data document the chemically primitive nature of maficultramafic amphibolite and tonalitic granulites of Archean age, which are overlain and invaded by more evolved Proterozoic supracrustal and plutonic units, now metamorphosed. Late Archean (2.8-2.9 b.y.) rock types include metakomatiitic/metatholeiitic pyroxene-bearing amphibolites, and granulitic tonalite gneisses. Early and middle Proterozoic Fuping/Wutai (2.4-2.5 b.y./1.9-2.0 b.y.) and Zhongtiao (1.6-1.8 b.y.) orogenies produced amphibolite/epidote amphibolite and anchimetamorphic to greenschist-facies overprints, respectively. Mineral assemblages suggest intermediate crustal levels of recrystallization for the late Archean low-rank granulite facies metamorphism (and/olig + pargasitic hbl + Ti-rich bio ± opx ± cpx ± garn: 700 ± 100 °C, 6-7 kbar), progressively shallower depths for early and middle Proterozoic amphibolite (olig + blue-green hbl + brown bio: 500 ± 100 °C, 5 ± 1 kbar) and greenschist- (alb + chi + ep + act + phengite: 400 ± 50 °C, 2-3 kbar) facies events. Late Archean and early Proterozoic recrystallizations took place under P-T conditions characteristic of moderately thick sialic crust and inferred Island-arc-like heat fluxes. Crustal growth locally terminated, and the Sino-Korean craton was stabilized about 1.7 b.y. ago. Much later, the complex was affected by a thermal event accompanying Mesozoic calc-alkaline plutonism/volcanism, apparently during the terrane assembly of east Asia.
机译:在中国的辽宁东部和吉林省南部,太古宙晚期,元古代早中期和中中期的岩石由层状重结晶带状铁形成, < / sup>岩屑片岩,马里和超镁铁质闪石,以及石英长石质 片麻岩。后两种岩性是体积上占主导地位的 ,包括表壳和正片麻岩/正闪石。太古时代的花岗石,已被更演化的元古生界和古生界单元覆盖并侵入,现已变质。晚太古代(sup> (2.8-2.9 by)岩石类型包括变质/变质 含辉石的角闪石和花岗质片麻片麻岩。 / Wutai(2.4-2.5 by / 1.9-2.0 by)和中条(1.6-1.8 by)造山带产生闪长石/闪长石和闪石,并变绿为绿片岩相叠印,< sup> 。矿物组合表明晚古宙斯低阶粒岩 相变质作用的地壳重结晶水平(和/低聚+气溶胶hbl +富钛生物 ±opx±cpx±加纳:700±100°C, 6-7 kbar),早期和中部 元古代角闪石的深度逐渐变浅(橄榄色+蓝绿色hbl +棕色生物: 500±100°C,5±1 kbar)和greenschist- (alb + chi + ep + act +硫铁矿:400±50°C,2 -3 kbar)相事件。 在中等中等厚度的sialic 。 >地壳和推断的岛弧状热通量。地壳生长 局部终止,中韩克拉通稳定在大约1.7b.y。前。很久以后,复合物受到 伴随中生代钙碱性岩溶作用/火山作用的热事件的影响, 显然是在东亚的地雷组装期间。

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  • 来源
    《GSA Bulletin》 |1988年第5期|692-701|共10页
  • 作者单位

    Department of Earth and Space Sciences, and Institute of Geophysics and Planetary Physics, University of California, Los Angeles, California 90024;

    Institute of Geochemistry, Academia Sinica, Guiyang, Guizhou Province, People's Republic of China;

    Institute of Geochemistry, Academia Sinica, Guiyang, Guizhou Province, People's Republic of China;

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