喀麦隆(makenene)地区新元古代中非褶皱带花岗岩类与基性岩浆相互作用的野外和岩石学证据

Benjamin Ntieche, Wokwenmendam Nguet Pauline, Eric José Messi Ottou, Mahomed Aziz Mounjouohou, Zakari Nchouwet, Minamou Guy Bertin, Daouda Mfepat, Amidou Moundi
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引用次数: 0

摘要

通过对喀麦隆中非褶皱带Makenene地区的野外和岩石学研究,揭示了该地区基性和长英质岩浆相互作用及其同时代性质的若干特征。它们是:(1)散布在Makenene花岗岩类岩体中的基性岩浆包裹体(MMEs),呈亚圆形和背向脉纹状;(2)在MMEs尾部由纹纹构成的流动结构,与长英质寄主花岗岩类一起折叠,并具有指示流动方向的hinge; (3) MMEs与寄主花岗岩类之间的不规则或尖形边界;(4)磷灰石和黑云母矿物的熄灭;(5)MMEs与其他MMEs或长英质寄主花岗岩类包裹。基性岩浆注入至少经历了4个阶段(从寄主岩浆结晶初期到结晶后期),分别形成了均质花岗质;分散在岩体中的亚球形MMEs;断裂的岩脉和未受干扰的合生基性岩脉。Makenene地区有4个变形阶段(D1 ~ D4)。前两个变形阶段发生在岩浆活动和岩浆作用之前。第三阶段与岩浆活动和岩化期(Eburnean造山期(2.08-2.07 Ga))同期。第四期与泛非造山运动有关。
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FIELD AND PETROGRAPHIC EVIDENCES OF GRANITOIDS AND MAFIC MAGMAS INTERACTION IN THE NEOPROTEROZOIC CENTRAL AFRICAN FOLD BELT IN CAMEROON (MAKENENE AREA)
Field and petrographic studies of the Makenene area in the Central African Fold Belt in Cameroon reveals several features testifying the mafic and felsic magmas interactions and their coeval nature. They are: (1) the Mafic Magmatic Enclaves (MMEs) scattered throughout the Makenene granitoid pluton and displaying sub-rounded shape and back veining, (2) flow structures consisting of schlierens at the tails of MMEs, folded MMEs along with felsic host granitoids with hinge indicating the flow direction, (3) irregular or cuspate boundary between MMEs and host granitoids, (4) quenching of apatite and biotites minerals, (5) MMEs enclosing other MMEs or felsic host granitoids. The mafic magma injection operated during at least four stages (from early to late crystallization state of the host magma) leading respectively to the formation of homogenized granitoid; sub-spherical MMEs scattered in the pluton; dismembered dyke and undisturbed synplutonic mafic dyke. The Makenene area registered four deformation phases (D1 to D4). The first two deformation phases occurred before the magmatism and migmatization events. The third phase is coeval to the magmatism and the migmatization period (at the Eburnean orogeny (2.08-2.07 Ga)). The fourth phase is related to the Panafrican orogeny.
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