Petrogenesis and Geotectonic Settings of the Granitic Rocks of Idofin-osi-eruku Area, Southwestern Nigeria using Trace Element and Rare Earth Element Geochemistry

S. Odewumi, V. Olarewaju
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引用次数: 4

Abstract

The Idofin-Osi-Eruku area occur in the south-eastern margin of the southwestern sector of the Nigerian Basement Complex. Granitic rocks and early gneiss samples were studied geologically and geochemically using ICP-MS. The study focuses on the trace elements and rare earth elements geochemistry in determining the geochemical characteristics and geotectonic processes of formation of the granitic rocks. Geologically, Idofin-Osi-Eruku area is underlain by early gneiss, quartzite and marble which have been intruded by granite gneiss, porphyritic granite and fine to medium-grained granite of probable Pan-African (ca. 600Ma) age. Geochemical data indicate that the granitic rocks are Fe-rich potassic granites. The varying ratios of the incompatible elements of Rb/Sr ratios (0.664-1.388) in porphyritic granite, (0.338-2.390) in the fine to medium-grained granite and (0.593-1.509) in granite gneiss are higher than Rb/Sr ratio (0.029) in the early gneiss. Also, Ba/Sr ratios (2.815-5.424) in porphyritic granite, (3.463-4.636) in fine to-medium grained granite and (2.132-4.734) in granite gneiss are higher than Ba/Sr ratio (0.912) in the early gneiss. And Ba/Rb ratios (2.486-6.192) in porphyritic granite, (1.473-1.520) in the fine to-medium grained granite and (3.183-3.595) in the granite gneiss are lower than Ba/Rb ratio (31.02) in the early gneiss. Higher ratios of Rb/Sr and Ba/Sr, and lower ratio of Ba/Rb in the granitic rocks than the early gneiss indicate high fractionation associated with magmatic differentiation. The granite rocks have fractionated REE patterns characterized by enrichment in the LREE which is confirmed by high values of the normalized ratios of La/Yb, Ce/Yb and La/Sm, with negative europium anomalies and varying degrees of HREE depletion which is typical of the crust and also of calc-alkaline rocks. Based on the overall abundances of REE, the similarities in the REE patterns of the granitic rocks suggest the same origin. Geotectonically, the granite gneiss, fine to medium-grained granite and porphyritic granite plot as syncollisional and volcanic arc granites. The granitic rocks are products of volcanic arc magmatism emplaced in the late phase of the Pan-African Orogeny.
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利用微量元素和稀土元素地球化学研究尼日利亚西南部idofin - osii -eruku地区花岗质岩石成因及大地构造背景
idofin - osii - eruku地区位于尼日利亚基底杂岩西南段的东南边缘。采用ICP-MS对花岗岩和早期片麻岩样品进行了地质和地球化学研究。研究重点是微量元素和稀土元素地球化学,确定了花岗岩的地球化学特征和大地构造过程。地质上,idofin - osii - eruku地区发育早期片麻岩、石英岩和大理岩,并被可能为泛非(约600Ma)时代的花岗片麻岩、斑岩花岗岩和细粒至中粒花岗岩侵入。地球化学资料表明,花岗岩为富铁钾质花岗岩。斑岩花岗岩Rb/Sr比值(0.664 ~ 1.388)、细粒~中粒花岗岩Rb/Sr比值(0.338 ~ 2.390)、花岗片麻岩Rb/Sr比值(0.593 ~ 1.509)的不相容元素变化比均高于早期片麻岩Rb/Sr比值(0.029)。斑岩花岗岩Ba/Sr比值(2.815 ~ 5.424)、细粒~中粒花岗岩Ba/Sr比值(3.463 ~ 4.636)、花岗片麻岩Ba/Sr比值(2.132 ~ 4.734)均高于早期片麻岩Ba/Sr比值(0.912)。斑岩花岗岩Ba/Rb比值(2.486 ~ 6.192)、细粒~中粒花岗岩Ba/Rb比值(1.473 ~ 1.520)、花岗片麻岩Ba/Rb比值(3.183 ~ 3.595)均低于早期片麻岩Ba/Rb比值(31.02)。花岗质岩石Rb/Sr和Ba/Sr比值高于早期片麻岩,Ba/Rb比值低于早期片麻岩,表明花岗质岩石分馏程度高,与岩浆分异有关。花岗岩的稀土分馏模式以轻稀土富集为特征,高归一化比值(La/Yb、Ce/Yb、La/Sm)证实了这一特征,并伴有铕负异常和不同程度的稀土亏缺,这是地壳和钙碱性岩石的典型特征。从稀土元素总体丰度来看,花岗质岩石的稀土元素模式具有相似性,表明其成因相同。大地构造上,花岗岩片麻岩、细粒至中粒花岗岩和斑岩花岗岩为同碰撞花岗岩和火山弧花岗岩。花岗质岩石是泛非造山期晚期火山弧岩浆作用的产物。
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