Tectonic Setting of the Syenite Around Igarra, Southwestern Nigeria: Constraints from Geochemistry

F. Ugbe, O. E. Ominigbo, A. Akano
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Abstract

Syenites are relatively rare within the Nigerian Basement Complex. As a result of their rarity, these rocks have been given less research attention over time and are consequently poorly understood. The syenitic rocks at Igarra were studied to ascertain their tectonic evolution using geochemistry. Sampling was carried out using the survey-type geological field mapping approach. A total of 10 samples of syenitic rocks were collected for laboratory analyses. Compositionally, the rocks are intermediate with regards to SiO2 content (58.02% – 60.58%), having Al2O3 and alkali (Na2O + K2O) compositional ranges of 15.34% – 15.52% and 8.99% – 9.7% respectively. The sampled rocks are similar and consistent in their trace and rare earth elements concentrations (the only exception being Zr with values ranging from 4 ppm to 79 ppm). The rocks are relatively enriched in Ba, K, TI, and Sr but depleted in Tc, Nb, U, Hf, Yb, Te and Ta. The syenites also show fairly high ratios of Rb/Nb and Rb/Sr with mean values of 488.627 and 0.171 respectively. As seen from the geochemical analyses, the syenites around Igarra are high-K calcalkaline, alkalic to alkalic-calcic. The rocks are peraluminous in character as shown by the bivariate plot of A/NK vs. A/CNK. Sedimentary protolith with continental crustal parent magma is inferred for these rocks. The similarity and consistency of the trends of major, trace and rare earth elements is indicative of cogenetic origin for the rocks. The geochemistry and discrimination plots for the rocks indicate geodynamic setting ranging from orogenic to post-orogenic. A volcanic arc geotectonic setting is interpreted for the Igarra syenites, with magma emplacement and evolution thought to have been initiated during the late stages of the Pan-African reactivation and continued into post-orogenic times.
尼日利亚西南部Igarra地区正长岩构造背景:地球化学约束
正长岩在尼日利亚地下复合体中相对稀少。由于它们的稀缺性,随着时间的推移,这些岩石得到的研究关注较少,因此人们对它们的了解也很少。用地球化学方法研究了伊加拉地区正长岩的构造演化。采用调查式地质野外填图方法进行采样。共收集了10个正长岩样品进行实验室分析。岩石组成中SiO2含量为58.02% ~ 60.58%,Al2O3和碱(Na2O + K2O)含量分别为15.34% ~ 15.52%和8.99% ~ 9.7%。样品岩石的微量元素和稀土元素浓度相似且一致(唯一的例外是Zr,其值在4 ppm至79 ppm之间)。Ba、K、TI、Sr相对富集,Tc、Nb、U、Hf、Yb、Te、Ta相对富集。正长岩Rb/Nb和Rb/Sr比值较高,平均值分别为488.627和0.171。地球化学分析表明,伊加拉周围正长岩为高钾钙碱性、碱性到碱钙性。A/NK vs. A/CNK的二元图显示,岩石具有过铝质特征。在这些岩石中推断出具有大陆地壳母岩浆的沉积原岩。主量元素、微量元素和稀土元素趋势的相似性和一致性表明了岩石的共成成因。岩石的地球化学和判别图显示了从造山期到后造山期的地球动力学背景。Igarra正长岩的地质构造背景为火山弧,岩浆侵位和演化被认为是在泛非活动后期开始的,并持续到后造山期。
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