首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Supra-subduction zone tectonic setting of the Muslim Bagh Ophiolite, northwestern Pakistan: Insights from geochemistry and petrology
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Supra-subduction zone tectonic setting of the Muslim Bagh Ophiolite, northwestern Pakistan: Insights from geochemistry and petrology

机译:巴基斯坦西北部穆斯林巴格蛇绿岩的超俯冲带构造背景:来自地球化学和岩石学的见解

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The geology of the Muslim Bagh area comprises the Indian passive continental margin and suture zone, which is overlain by the Muslim Bagh Ophiolite, Bagh Complex and a Flysch Zone of marine-fluvial successions. The Muslim Bagh Ophiolite has a nearly-complete ophiolite stratigraphy. The mantle sequence of foliated peridotite is mainly harzburgite with minor dunite and contains podiform chromite deposits that grade upwards into transition zone dunite. The mantle rocks (harzburgite/dunite) resulted from large degrees of partial melting of lherzolite and have also been affected by melt-peridotite reaction. The Muslim Bagh crustal section has a cyclic succession of ultramafic-mafic cumulate with dunite at the base, that grades into wehrlite/pyroxenite with gabbros (olivine gabbro, norite and hornblende gabbro) at the top. The sheeted dykes are immature in nature and are rooted in crustal gabbros. The dykes are mainly metamorphosed dolerites, with minor intrusions of plagiogranites. The configuration of the crustal section indicates that the crustal rocks were formed over variable time periods, in pulses, by a low magma supply rate. The whole rock geochemistry of the gabbros, sheeted dykes and the mafic dyke swarm suggests that they formed in a supra-subduction zone tectonic setting in Neo-Tethys during the Late Cretaceous. The dykes of the mafic swarm crosscut both the ophiolite and the metamorphic sole rocks and have a less-marked subduction signature than the other mafic rocks. These dykes were possibly emplaced off-axis and can be interpreted to have been generated in the spinel peridotite stability zone i.e., <50-60 km, and to have risen through a slab window. The Bagh Complex is an assemblage of Triassic-Cretaceous igneous and sedimentary rocks, containing tholeiitic N-MORB-like basalts and alkali basalts with OIB-type signatures. Nb-Ta depletion in both basalt types suggests possible contamination from continental fragments incorporated into the opening Tethyan oceanic basin during break-up of Gondwana. The lithologies and ages of the Bagh Complex imply that these rocks formed in an area extending from the continental margin over the Neo-Tethyan ocean floor. The Bagh Complex was then juxtaposed with the Muslim Bagh Ophiolite in the final stage of tectonic emplacement
机译:穆斯林巴格地区的地质条件包括印度洋被动大陆边缘和缝合带,该区域被穆斯林巴格蛇绿岩,巴格情结和海河流相继发的复理带覆盖。穆斯林巴格蛇绿岩具有近乎完整的蛇绿岩地层。叶状橄榄岩的地幔层序主要是含少量榴辉岩的哈兹伯格岩,并含有梯形铬铁矿,其向上逐渐过渡到过渡带状榴辉岩。地幔岩石(harzburgite / dunite)是由锂铁矿的较大程度的部分熔融产生的,并且也受到熔融橄榄岩的反应。穆斯林巴格地壳剖面的基性为超镁铁质-镁铁质的周期性堆积,基部为榴辉石,其顶部为辉长岩/辉绿岩,辉长岩(橄榄辉辉石,红土辉石和角闪闪辉辉辉岩)位于顶部。片状堤防自然不成熟,根植于地壳辉长岩。堤主要是变质的白云岩,少量斜长花岗岩侵入。地壳剖面的构造表明,地壳岩石是在低的岩浆供应速率下,在可变的时间段内以脉冲形式形成的。辉长岩,薄片状岩脉和铁镁质岩脉群的整个岩石地球化学表明,它们形成于白垩纪晚期的新特提斯超俯冲带构造环境中。镁铁质群的堤坝横穿了蛇绿岩和变质岩底岩,与其他镁铁质岩相比,俯冲特征不明显。这些堤坝可能是偏离轴线放置的,可以解释为是在尖晶石橄榄岩稳定区即<50-60 km的范围内产生的,并通过板状窗口升起。巴格复合体是由三叠纪-白垩纪的火成岩和沉积岩组成的,其中含有可塑性的N-MORB类玄武岩和带有OIB类型特征的碱性玄武岩。两种玄武岩类型中的Nb-Ta损耗都表明冈瓦纳解体过程中合并入开放的特提斯洋盆的大陆碎片可能造成污染。巴格综合体的岩性和年代表明,这些岩石形成于从新特提斯洋底的大陆边缘延伸的区域中。然后在构造安置的最后阶段将巴格情结与穆斯林巴格蛇绿岩并列

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