埃塞俄比亚高原西北部海克湖南部地区双峰火山岩的岩石学和地球化学特征及其岩石成因

Getie Berlie, Dereje Dereje, Mohammed A. Assen
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摘要

本研究对海克湖地区火山岩的野外、岩石学和全岩地球化学(主量元素和微量元素)资料进行了整理和整合,以了解其岩石成因。研究区主要岩性为下、上玄武岩、流纹岩熔岩、流纹岩凝灰岩、流纹岩火成岩和未焊凝灰岩。岩石学分析表明,长英质岩石以石英和发育良好的钾长石(钾长石)斑晶为主,基质为玻璃质,而基性火山产物以石英-斑晶为主,橄榄石和斜长石斑晶为主。该区为洪水玄武岩-流纹岩双峰组成,中间成分稀少。玄武岩Rb/Nb = 0.5 ~ 0.58, La/Nb = 0.88 ~ 1.06, TiO2= 2.08 ~ 3.04,玄武岩安山岩Rb/Nb =2.7, La/Nb = 1.81, TiO2= 1.96,流纹岩Rb/Nb = 0.97 ~ 1.69, La/Nb = 0.51 ~ 1.08, TiO2= 0.41 ~ 0.71。正Ba和负K异常证明角闪孔地幔源。玄武岩具有较低的CaO/Al2O3比值(0.71 ~ 0.97)和相对较少的分异、扁平三晶型特征,球粒值(TbN/YbN = 1.75 ~ 2.33)。这表明地幔源主要含有尖晶石而不是石榴石。流纹岩的特征是MgO、Fe2O3、TiO和CaO与SiO2呈显著负相关,Ta呈正异常,伴有轻微的Nb槽。这表明分流结晶是流纹岩形成的主要过程,而不是地壳贡献、部分熔融和同化作用形成流纹岩。
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Petrology and geochemistry of bimodal volcanic rocks of Southern Lake Hayk area, northwestern Ethiopian plateau: implication for their petrogenesis
This study presents and integrates field, petrological, and whole-rock geochemical (major and trace elements) data of the volcanic rocks from the Lake Hayk area to understand their petrogenesis. The study area's major lithological components include lower and upper basalt, rhyolitic lava, rhyolitic tuff, rhyolitic ignimbrite, and unwelded tuff. Petrographic analysis suggests that felsic rocks are dominated by quartz and well-developed sanidine (K-feldspar) phenocrysts with glassy groundmass, whereas mafic volcanic products are characterized by aphyric to porphyritic textures with the olivine and plagioclase dominant phenocryst. The area constitutes bimodal composition of flood basaltic to rhyolitic rock with scarce intermediate composition. Basalts have low Rb/Nb = 0.5-0.58, La/Nb = 0.88-1.06 and high TiO2 = 2.08-3.04, basaltic andecite have higher Rb/Nb =2.7, La/Nb = 1.81 and low TiO2= 1.96 and rhyolite Rb/Nb = 0.97-1.69, La/Nb = 0.51-1.08 and lower TiO2 = 0.41- 0.71.The positive Ba and negative K anomalies testify amphibole mantle source. The basalts are characterized by low CaO/Al2O3 ratios (0.71–0.97) and relatively less fractionated and flat hree patterns with (TbN/YbN = 1.75-2.33) chondritic values. This suggests a mantle source mostly containing spinel rather than garnet. Rhyolites are characterized by a steep negative correlation in bivariate plots of MgO, Fe2O3, TiO, and CaO against SiO2 and positive anomaly of Ta with slight Nb trough.  This suggests that Fractional Crystallization is the major process for the genesis of rhyolitic rocks, rather than crustal contribution, partial melting, and assimilation, producing rhyolitic rocks.  
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