An appraisal of the geochemistry and geotectonic settings of the pan african rocks around akure and are-ekiti and environments, Southwestern, Nigeria

Obasi Romanus Ayoola
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Abstract

The geochemical characteristics of the Pan-African rocks from Akure and Are –Ekiti and Environs show a minor variations in the contents of silica (SiO2 50.18-98.92 wt%,), alumina, Al2O3 (0.26-17.26wt%), potash (K2O, 0.07-5.98wt%), and iron F2O3 (0.52-10.77wt%) respectively. The rocks suites from both areas are also characterized by high alumina, high silica, and presence of biotite, microcline, monzogranite, syenogranites, diorite, granodiorite as well as granites. The rocks from both studied areas plotted into the S-Type and I-Type granites suggestive of their derivation from mixed sources. The presence of shoshonitic series suggests rock association characterized by k-rich, high Na2O + K2O and low TiO2. The granites from b Akure and Are Ekiti and environs are characteristically potassic with metaluminous I-Type and peraluminous S-Type affinity and elong to high-K calcalkaline to shoshonitic series. The rocks are strongly enriched in Ba-Sr with pronounced negative Eu anomaly, belonging to syn-to post collisional tectonic setting. However, the plots of Rb versus Y+Nb, Rb versus Ta + Yb, Ta versus Yb, Nb versus Y, as well as Ta versusYb respectively showed that the granitic rocks of Akure and Are Ekiti and environs were formed in the tectonic environments of volcanic arcs, syn-collisional and post collisional as well as within plate settings, suggesting their derivation from fractional crystallization and partial melting.
尼日利亚西南部akure和are-ekiti周围泛非岩石的地球化学和大地构造环境评价
Akure和Are -Ekiti及Environs泛非岩石的地球化学特征显示,二氧化硅(SiO2 50.18 ~ 98.92 wt%)、氧化铝、Al2O3 (0.26 ~ 17.26wt%)、钾肥(K2O 0.07 ~ 5.98wt%)和铁F2O3 (0.52 ~ 10.77wt%)含量变化不大。这两个地区的岩石组也具有高铝、高硅的特征,并存在黑云母、微斜长石、二长花岗岩、正长花岗岩、闪长岩、花岗闪长岩和花岗岩。两个研究区的岩石划分为s型和i型花岗岩,表明它们的来源是混合的。铁玄岩系的存在表明岩石组合具有富k、高Na2O + K2O和低TiO2的特征。阿库尔和阿勒埃基提及其周围花岗岩具有钾化特征,具有铝质i型和过铝质s型亲和关系,属于高钾钙碱性-粗玄质系列。岩石强烈富集Ba-Sr,负Eu异常明显,属于同—后碰撞构造环境。然而,Rb与Y+Nb、Rb与Ta + Yb、Ta与Yb、Nb与Y、Ta与Yb的对比图表明,阿库尔和阿雷埃基蒂及其周围的花岗岩形成于火山弧、同碰撞和碰撞后以及板块内的构造环境中,表明它们来源于分离结晶和部分熔融。
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