乍得Ouaddaï地块南部新元古代岩浆演化

Félix Djerossem, J. Berger, O. Vanderhaeghe, Moussa Isseini, J. Ganne, A. Zeh
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引用次数: 5

摘要

本文介绍了新的岩石学、地球化学、同位素(Nd)和岩浆岩年代学数据,这些岩浆岩来自鲜为人知的南部Ouaddaï地块,位于所谓的撒哈拉变质克拉通的南部边缘。该区为绿片岩—角闪岩相变质沉积岩,由大型前—同构造浅长花岗岩岩基侵入,二长岩、花岗闪长岩和黑云母花岗岩组合形成构造晚期高钾钙碱性套。U-Pb锆石定年结果显示,过铝质黑云母-浅色花岗岩(含有大量太古宙和古元古代的锆石岩心)和白云母-浅色花岗岩的年龄分别为635±3 Ma和613±8 Ma。地球化学指纹图谱与一些演化的喜马拉雅白花岗岩非常相似,表明其母岩浆是由变质沉积岩的白云母和黑云母脱水熔融形成的。黑云母-花岗岩样品属于晚构造高钾-粗玄岩套,含锆石边缘,年龄为540±5 Ma,一致继承的岩心在1050 Ma左右结晶。考虑到中辉石二长岩的高mg #(59)安山岩成分、不同岩石类型之间非常相似的微量元素特征和Nd的非放射性成因同位素特征,富地幔熔融和地壳进一步分异后形成的晚期运动高钾-粗玄岩。这些数据表明Ouaddaï南部是泛非带的一部分。认为它代表了埃迪卡拉世早期以高地温梯度为特征的陆相弧后盆地,导致中下地壳层深熔。在泛非主期构造反转后,晚期运动高钾—高玄生岩体在碰撞后最后阶段就位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neoproterozoic magmatic evolution of the southern Ouaddaï Massif (Chad)
This paper presents new petrological, geochemical, isotopic (Nd) and geochronological data on magmatic rocks from the poorly known southern Ouaddaï massif, located at the southern edge of the so-called Saharan metacraton. This area is made of greenschist to amphibolite facies metasediments intruded by large pre- to syn-tectonic batholiths of leucogranites and an association of monzonite, granodiorite and biotite granite forming a late tectonic high-K calc-alkaline suite. U-Pb zircon dating yields ages of 635 ± 3 Ma and 613 ± 8 Ma on a peraluminous biotite-leucogranite (containing numerous inherited Archean and Paleoproterozoic zircon cores) and a muscovite-leucogranite, respectively. Geochemical fingerprints are very similar to some evolved Himalayan leucogranites suggesting their parental magmas were formed after muscovite and biotite dehydration melting of metasedimentary rocks. A biotite-granite sample belonging to the late tectonic high-K to shoshonitic suite contains zircon rims that yield an age of 540 ± 5 Ma with concordant inherited cores crystallized around 1050 Ma. Given the high-Mg# (59) andesitic composition of the intermediate pyroxene-monzonite, the very similar trace-element signature between the different rock types and the unradiogenic isotopic signature for Nd, the late-kinematic high-K to shoshonitic rocks formed after melting of the enriched mantle and further differentiation in the crust. These data indicate that the southern Ouaddaï was part of the Pan-African belt. It is proposed that it represents a continental back-arc basin characterized by a high-geothermal gradient during Early Ediacaran leading to anatexis of middle to lower crustal levels. After tectonic inversion during the main Pan-African phase, late kinematic high-K to shoshonitic plutons emplaced during the final post-collisional stage.
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