贝宁共和国西北部Buem构造单元中足状铬铁矿及其承载岩的地球化学特征:对Dahomeyide造山带地球动力学演化的启示

Daniel N. Kouagou N’Dah , Samuel B. Olobaniyi , Luc C. Adissin Glodji , Sory I.M. Konate , Elhadji Mory Traore , Daniel Kwayisi , Clement B. N’Satta , Ibrahim S. Yerima
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摘要

本文介绍了贝宁共和国西北部布埃姆构造单元(BSU)脚状铬铁矿和赋矿岩的地球化学特征、成因和地球动力学背景。对BSU铬铁矿和基性-超基性岩石进行了定性扫描电镜(SEM)、定量电子探针显微分析(EPMA)和全岩地球化学研究。BSU是Dahomeyide造山带的最西端单元。主要由变质基性-超基性岩和碎屑沉积岩组成。铬铁矿单元暴露在镁质-超镁质岩石中。定性SEM分析表明,铬铁矿主要由铬铁矿和蛇纹石矿物组成。定性EPMA数据表明,BSU尖晶石的Cr2O3和MnO含量(wt%)分别在35.91 ~ 44.53和0.05 ~ 0.16之间变化,为典型的原生cr尖晶石。从BSU铬铁矿中析出的熔体母质组成(13.71 ~ 16.67 wt% Al2O3和FeO/MgO值在0.15 ~ 0.30之间)与morb型岩浆非常相似。BSU铬铁矿及其寄主岩石的化学组成表明,这些铬铁矿极有可能是由MORB结晶而成。岩浆起源于大洋中脊环境的部分熔融,可能发生在西非克拉通边缘泛非造山运动早期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geochemistry of podiform chromitite and host rocks within the Buem Structural Unit, Northwestern Benin Republic: Implications for the geodynamic evolution of the Dahomeyide orogenic belt
The paper presents the geochemistry, origin and geodynamic setting of podiform chromitite and host rocks from the Buem Structural Unit (BSU) in the northwestern Benin Republic. Qualitative Scanning Electron Microscopy (SEM), quantitative Electron probe Micro Analysis (EPMA), and whole-rock geochemical investigation have been conducted on BSU chromite and mafic-ultramafic rocks. The BSU is the westernmost unit of the Dahomeyide orogenic belt. It consists mainly of metamorphosed mafic-ultramafic rock and clastic sedimentary rocks. Chromitites units are exposed within the mafic-ultramafic rocks. Qualitative SEM analyses indicated that chromitite is mainly composed of chromite and serpentine minerals. The qualitative EPMA data shows that Cr2O3 and MnO contents (wt%) of spinel of the BSU varying from 35.91 to 44.53 and from 0.05 to 0.16, respectively and are typical primary Cr-spinel. The calculated parental composition of melts (13.71–16.67 wt% Al2O3 and FeO/MgO values in the range 0.15–0.30) from which the BSU chromitites precipitated is very similar to MORB-type magma. The chemical composition of BSU chromites and its host rocks shows that these chromites were most likely crystallized from MORB. The magma originated as a partial melt that occurred in a Mid Ocean Ridge environment, probably during the early stage of the Pan-African orogeny at the margin of the West African Craton.
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