乍得中部gusamra地块花岗岩岩石学及地球化学特征:以岩浆混合为例

Diontar Mbaihoudou, Kwékam Maurice, Fozing Eric Martial, Kagou Dongmo Armand, Tcheumenak Kouémo Jules
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摘要

盖拉地块花岗岩类由黑云母花岗岩、角闪黑云母花岗岩和辉长闪长岩组成,通常含有微颗粒基性包体,其成分从二长辉长岩到正长岩不等。它们是含铝质、高钾钙碱性至钙玄石系列。辉长闪长岩为镁质,角闪岩-黑云母花岗岩为镁质-铁质,黑云母花岗岩为铁质。它们的低重稀土相对于重稀土富集,Nb、Ta、Ti呈负异常。场关系、岩石学和地球化学表明,混合和混染过程可能与与分离结晶有关的花岗岩类的成因更为相关。因此,花岗岩中辉长闪长岩组成的基性包体的存在,辉长闪长岩中碱性长石异晶的恢复,以及花岗岩与辉长闪长岩之间的线性相关性和基性包体在两者之间的中间位置,使我们能够提出岩浆混合作用是古拉花岗岩类演化的主要过程。泛非造山运动后碰撞阶段大陆岩石圈的剥离作用可能导致俯冲变质地幔和下大陆地壳的部分熔融,从而产生古拉花岗岩类岩浆。
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Petrology and Geochemical Characteristic of Granitoids From Guéra Massif in the Central Part of Chad: An Example of Mixing Magmas
The granitoids of Guera Massif are composed of biotite-granite, amphibole-biotite granite and gabbro-diorite and commonly contain micro granular mafic enclaves which vary from monzogabbro to syenite composition. They are metaluminous, high-K calc-alkaline to shoshonitic series. Gabbro-diorite rocks are magnesian while amphibole-biotite granites are magnesian to ferroan, and biotite granites are ferroan. They are enriched in LREEs relative to HREE and display negative anomalies in Nb, Ta and Ti. Fields relationships, petrology and geochemistry indicate that mixing and mingling processes could be more relevant for the genesis of granitoids associated to fractional crystallization. Thus, the presence of mafic enclaves of gabbro-diorite composition in the granites, the resumption of alkaline feldspar xenocrystals in the gabbro-diorites, as well as the linear correlation between the granites and the gabbro-diorites and the intermediate position of the mafic enclaves between the two formations, enable us to propose magmatic mixing as the major process that presided over the evolution of the Guera granitoids. The delamination of the continental lithosphere during the post-collisional phase of the Pan-African orogeny would have caused the partial melting of the subduction-modofied mantle and lower continental crust and thus produced the magmas of the Guera granitoids.
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