首页> 外文期刊>Geochemistry: Interdisciplinary Journal for Chemical Problems of the Geosciences and Geoecology >Petrology and geochemistry of the banded iron-formations from Ntem complex greenstones belt, Elom area, Southern Cameroon: Implications for the origin and depositional environment
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Petrology and geochemistry of the banded iron-formations from Ntem complex greenstones belt, Elom area, Southern Cameroon: Implications for the origin and depositional environment

机译:喀麦隆南部埃洛姆地区Ntem复杂绿岩带中带状铁矿的岩石学和地球化学:对成因和沉积环境的影响

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Banded iron-formations (BIFs) form an important part of the Archaean to Proterozoic greenstone belts in the Southern Cameroon. In this study, major, trace and REE chemistry of the banded iron-formation are utilized to explore the source of metals and to constraint the origin and depositional environment of these BIFs. The studied BIF belongs to the oxide facies iron formations composed mainly of iron oxide (mainly magnetite) mesobands alternating with quartz mesobands. The mineralogy of the BIF sample consists of magnetite and quartz with lesser amount of secondary martite, goethite and trace of gibbsite and smectite. The major element chemistry of these iron-formations is remarkably simple with the main constituents being SiO2 and Fe2O3 which constitute 95.6-99.5% of the bulk rock. Low Al2O3, TiO2, and HFSE concentrations show that they are relatively detritus-free chemical sediments. The Pearson's correlation matrix of major element reveals that there is a strong positive correlation (r = 0.99) of Al with Ti and no to weak negative correlation of Ti with Mn, Ca and weak positive correlation of Si with Ca, suggesting the null to very minor contribution of detrital material to chemical sediment. The trace elements with minor enrichments are transition metals such as Zn, Cr, Sr, V and Pb. This is an indicator of direct volcanogenic hydrothermal input in chemical precipitates. The studied BIF have a low Sigma REE content, ranging between 0.41 and 3.22 ppm with an average of 0.87 ppm, similar to that of pure chemical sediments. The shale-normalized patterns show depletion in light REE, slightly enrichment in heavy REE and exhibit weak positive europium anomalies. These geochemical characteristics indicate that the source of Fe and Si was the result of deep ocean hydrothermal activity admixed with sea water. The absence of a large positive Eu anomaly in the studied BIF indicates an important role of low-temperature hydrothermal solutions. The chondrite-normalized REE patterns are characterized by LREE-enriched (Mean La-CN/Yb-CN = 8.01) and HREE depletion (Mean Tb-CN/Yb-CN = 1.61) patterns and show positive Ce anomalies. With the exception of one sample (LBR133), all of the BIF samples analyzed during this study have positive Ce anomalies on both chondrite- and PASS-normalized plots. This may indicate that the BIFs within the Elom area were formed within a redox stratified ocean. The positive Ce anomalies in the studied samples likely suggest that the basin in which Fe formations were deposited was reducing with respect to Ce, probably in the suboxic or anoxic seawaters. (C) 2015 Elsevier GmbH. All rights reserved.
机译:带状铁构造(BIF)是喀麦隆南部古生代至元古代绿岩带的重要组成部分。在这项研究中,利用带状铁形成的主要,痕量和稀土元素化学来探索金属的来源,并限制这些BIF的来源和沉积环境。所研究的BIF属于氧化物相铁层,主要由氧化铁(主要是磁铁矿)介带和石英介带交替组成。 BIF样品的矿物学由磁铁矿和石英组成,次要马氏体,针铁矿和少量的菱铁矿和蒙脱石组成。这些铁形成的主要元素化学非常简单,主要成分是SiO2和Fe2O3,它们构成大块岩的95.6-99.5%。低的Al2O3,TiO2和HFSE浓度表明它们是相对无碎屑的化学沉积物。主要元素的皮尔逊相关矩阵显示,Al与Ti有很强的正相关(r = 0.99),而Ti与Mn,Ca没有弱的负相关,而Si与Ca的弱正相关性很弱。碎屑物质对化学沉积物的贡献很小。微量富集的痕量元素是过渡金属,例如Zn,Cr,Sr,V和Pb。这是化学沉淀物中直接产生火山热液的指标。所研究的BIF具有较低的Sigma REE含量,范围在0.41至3.22 ppm之间,平均为0.87 ppm,类似于纯化学沉积物。页岩归一化模式显示轻质稀土元素贫化,重质稀土元素稍富集,并呈现出弱的正positive异常。这些地球化学特征表明,Fe和Si的来源是深海热液活动与海水混合的结果。在研究的BIF中不存在大的正Eu异常,这表明低温水热溶液的重要作用。球粒陨石归一化的REE模式的特征是富含LREE(平均La-CN / Yb-CN = 8.01)和HREE耗尽(平均Tb-CN / Yb-CN = 1.61),并显示出正Ce异常。除一个样本(LBR133)外,本研究中分析的所有BIF样本在球粒陨石和PASS归一化图上均具有正Ce异常。这可能表明Elom区域内的BIF是在氧化还原层海洋中形成的。研究样品中铈的正异常可能表明,沉积铁的盆地相对于铈正在减少,可能是在低氧或缺氧的海水中。 (C)2015 Elsevier GmbH。版权所有。

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