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Geochemical constraints on the petrogenesis of the pyroclastic rocks in Abakaliki basin (Lower Benue Rift), Southeastern Nigeria

机译:尼日利亚东南部Abakaliki盆地(下贝努夫裂谷)热碎屑岩成因的地球化学约束

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The pyroclastic rocks in the Cretaceous Abakaliki basin occur mostly as oval-shaped bodies, consisting of lithic/lava and vitric fragments. They are commonly characterized by parallel and cross laminations, as well contain xenoliths of shale, mudstone and siltstones from the older Mu River Group of Albian age. The rocks are basic to ultrabasic in composition, comprising altered alkali basalts, altered tuffs, minor lapillistones and agglomerates. The mineral compositions are characterized mainly by laths of calcic plagioclase, pyroxene (altered), altered olivines and opaques. Calcite, zeolite and quartz represent the secondary mineral constituents. Geochemically, two groups of volcaniclastic rocks, are distinguished: alkaline and tholeiitic rocks, both represented by fresh and altered rock samples. The older alkali basalts occur within the core of the Abakaliki anticlinorium while the younger tholeiites occur towards the periphery. Though most of the rocks are moderate to highly altered [Loss on ignition (WI, 3.43-22.07 wt. %)], the use of immobile trace element such as Nb, Zr, Y, Hf, Ti, Ta and REEs reflect asthenospheric mantle source compositions. The rocks are enriched in incompatible elements and REEs (Sigma REE = 87.98-281.0 ppm for alkaline and 69.45-287.99 ppm for tholeiites). The ratios of La/Yb-n are higher in the alkaline rocks ranging from 7.69 to 31.55 compared to the tholeiitic rocks which range from 4.4 to 16.89 and indicating the presence of garnet-bearing lherzolite in the source mantle. The spidergrams and REEs patterns along with Zr/Nb, Ba/Nb, Rb/Nb ratios suggest that the rocks were generated by a mantle plume from partial melting of mixed enriched mantle sources (HIMU, EMI and EMII) similar to the rocks of the south Atlantic Ocean such as St. Helena (alkaline rocks) and Ascension rocks (tholeiitic rocks). The rocks were formed in a within-plate setting of the intra-continental rift type similar to other igneous rocks in the Benue Rift and are not related to any subduction event as previously suggested. (C) 2018 Elsevier Ltd. All rights reserved.
机译:白垩纪Abakaliki盆地的火山碎屑岩大多呈椭圆形,由石质/熔岩和玻璃碎片组成。它们通常以平行和交叉层状为特征,还含有来自阿尔比时代较早的穆河群的页岩,泥岩和粉砂岩的异岩。这些岩石是组成超碱性的基础,包括改变的碱玄武岩,改变的凝灰岩,次要的拉米石和附聚物。矿物成分的主要特征是钙质斜长石板条,辉石(改变的),改变的橄榄石和不透明。方解石,沸石和石英代表次要矿物成分。在地球化学上,区分出两组火山碎屑岩:碱性岩和生硬岩,均以新鲜和蚀变的岩石样品为代表。较早的碱性玄武岩发生在Abakaliki抗风沙岩的核心区域,而较年轻的冲孔岩则发生在外围。尽管大多数岩石是中等至高度变化的[着火损耗(WI,3.43-22.07 wt。%)],但使用不可移动的痕量元素(如Nb,Zr,Y,Hf,Ti,Ta和REEs)会反映软流圈地幔源组成。岩石富含不相容元素和稀土元素(碱性元素的Sigma REE = 87.98-281.0 ppm,而菱镁矿的REE则为69.45-287.99 ppm)。 La / Yb-n比值在碱性岩中较高,在7.69至31.55之间,而在高脂岩中,La / Yb-n的比率在4.4至16.89之间,表明源地幔中存在着石榴石含锂沸石。蛛网图和REEs模式以及Zr / Nb,Ba / Nb,Rb / Nb之比表明,岩石是由地幔柱产生的,部分地幔是由混合富集地幔源(HIMU,EMI和EMII)的部分融化形成的,类似于南大西洋,例如圣海伦娜(碱性岩石)和扬升岩石(高脂岩石)。这些岩石是在陆内裂谷类型的板内环境中形成的,与Benue裂谷中的其他火成岩相似,并且与以前的俯冲事件无关。 (C)2018 Elsevier Ltd.保留所有权利。

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