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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Geochemistry, geochronology, and Sr-Nd isotopes of the Late Neoproterozoic Wadi Kid volcano-sedimentary rocks, Southern Sinai, Egypt: Implications for tectonic setting and crustal evolution
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Geochemistry, geochronology, and Sr-Nd isotopes of the Late Neoproterozoic Wadi Kid volcano-sedimentary rocks, Southern Sinai, Egypt: Implications for tectonic setting and crustal evolution

机译:埃及西奈半岛南部新元古代Wadi Kid火山沉积岩的地球化学,年代学和Sr-Nd同位素:对构造环境和地壳演化的影响

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摘要

The Kid Group is one of the few exposures of Neoproterozoic metavolcano-sedimentary rocks in the basement of southern Sinai in the northernmost Arabian-Nubian Shield. It is divided into the mostly metamorphosed volcaniclastic Melhaq and siliciclastic Um Zariq formations in the north and the mostly volcanic Heib and Tarr formations in the south. The Heib, Tarr, and Melhaq formations reflect an intense episode of igneous activity and immature clastic deposition associated with core-complex formation during Ediacaran time, but Um Zariq metasediments are relicts of an older (Cryogenian) sedimentary sequence. The latter yielded detrital zircons with concordant ages as young as 647 ±12 Ma, which may indicate that the protolith of Um Zariq schist was deposited after ~647 Ma but 19 concordant zircons gave a ~(206)Pb/~(238)U weighted mean age of 813 ±6 Ma, which may represent the maximum depositional age of this unit. In contrast, a cluster of 11 concordant detrital zircons from the Melhaq Formation yield a weighted mean ~(206)Pb/~(238)U age of 615 ± 6 Ma. Zircons from Heib Formation rhyolite dast define a ~(206)Pb/~(238)U weighted mean age of 609 ± 5 Ma, which is taken to approximate the age of Heib and Tarr formation volcanism. Intrusive syenogranite sample from Wadi Kid yields a ~(206)Pb/~(238)U weighted mean age of 604 ± 5 Ma. These constraints indicate that shallow-dipping mylonites formed between 615 ± 6 Ma and 604 ± 5 Ma. Geochemical data for volcanic samples from the Melhaq and Heib formations and the granites show continuous major and trace element variations corresponding to those expected from fractional crystallization. The rocks are enriched in large ion lithophile and light rare earth elements, with negative Nb anomalies. These reflect magmas generated by melting of subduction-modified lithospheric mande, an inference that is further supported by £Nd(t) = + 2.1 to + 5.5. This mantle source obtained its trace element characteristics by interaction with fluids and melts from subducting oceanic crust during the Late Cryogenian time, prior to terminal collision between fragments of East and West Gondwana at -630 Ma. Positive ENd(t) values and the absence of pre-Ediacaran zircons in all but Um Zariq metasediments indicate minor interaction with Cryogenian and older crust. A model of extensional collapse following continental collision, controlled mainly by lithospheric de-lamination and slab break-off is suggested for the origin of the post-collision volcanics and granites at Wadi Kid. No evidence of pre-Neoproterozoic sources was found. Kid Group Ediacaran volcanic rocks are compositionally and chronologically similar to the Dokhan Volcanics of NE Egypt, which may be stratigraphic equivalents.
机译:Kid Group是在最北端的阿拉伯-努比亚盾构的西奈南部基底中新元古代元火山沉积岩的少数暴露之一。北部分为大部分变质的火山碎屑Melhaq和硅质碎屑的Um Zariq地层,以及南部的大部分火山的Heib和Tarr地层。 Heib,Tarr和Melhaq地层反映了在Ediacaran时期强烈的火成岩活动和未成熟的碎屑沉积,与岩心复合体形成有关,但是Um Zariq沉积物是较老的(低温)沉积序列的遗迹。后者产生的碎屑锆石年龄一致至647±12 Ma,这可能表明Um Zariq片岩的原生质沉积于〜647 Ma之后,但19个一致的锆石给出了〜(206)Pb /〜(238)U权重。平均年龄813±6 Ma,可能代表该单元的最大沉积年龄。相比之下,来自梅尔哈格组的11个一致的碎屑锆石簇产生的加权平均〜(206)Pb /〜(238)U年龄为615±6 Ma。来自Heib组流纹岩碎屑的锆石定义了〜(206)Pb /〜(238)U加权平均年龄609±5 Ma,该年龄近似于Heib和Tarr组火山作用的年龄。瓦迪基德(Wadi Kid)的侵入型片辉石样品的〜(206)Pb /〜(238)U加权平均年龄为604±5 Ma。这些约束条件表明,浅浸的mylonites在615±6 Ma和604±5 Ma之间形成。来自Melhaq和Heib地层以及花岗岩的火山岩样品的地球化学数据显示,连续的主要元素和痕量元素变化与部分结晶所预期的变化相对应。岩石中富含大型的离子亲石剂和轻稀土元素,负Nb异常。这些反射反映了俯冲修饰的岩石圈Mande熔融产生的岩浆,这一推论由£ Nd(t)= + 2.1至+ 5.5进一步支持。该地幔源在晚冰冻期,即在东西方冈瓦纳和西端碎片之间在-630 Ma发生末端碰撞之前,通过与洋壳俯冲而与流体相互作用而获得了其痕量元素特征。除Um Zariq沉积物外,所有ENd(t)值均为正值且没有Ediacaran锆石,表明与低温和旧地壳的相互作用较小。对于瓦迪基德(Wadi Kid)的碰撞后火山岩和花岗岩的起源,提出了一种主要受岩石圈分层和板块折断控制的大陆碰撞后的伸展塌陷模型。没有发现前新古生代的证据。 Kid Group Ediacaran火山岩在成分和时间上与东北埃及的Dokhan火山岩相似,可能与地层相当。

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