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Two Contrasting Iron Deposits in the Precambrian Mineral Belt of Cameroon, West Africa

机译:西非喀麦隆前寒武纪矿带中的两个不同的铁矿床

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Two iron deposits within the Precambrian mineral belt of Cameroon are described in detail for the first time: the Archean Metzimevin replacement iron deposit enclosed in Fe-enriched itabirite, and the Proterozoic granite-hosted, shear zone-related Mayo Binka magnetite deposit. In the Metzimevin deposit, quartz is corroded and microplaty hematite overprints martite-textured hematite. The Mayo Binka massive magnetite veins show evidence of deformation in magnetite (fracturing and microbrecciation) and in overgrowths of specular hematite (mechanical twinning and undulating extinction). The magnetite is partially replaced by hematite (martitization) and goethite. Ores from both deposits have >88 percent total Fe_2O_3 and low contents of contaminants such as SiO_2, Al_2O_3, MgO, CaO, P_2O_5, and TiO_2 They are also poor in Cu, Pb, Zn, V, Cr, and Ni. The Metzimevin massive hematite is characterized by an accentuated light rare earth element depletion relative to the Fe-enriched itabirite. It is suggested that the Metzimevin iron deposit is the result of hypogene leaching of gangue minerals from, and further hematitization of, an itabirite protore. Although the genesis of the Mayo Binka massive magnetite is unclear, it is spatially related to Neoproterozoic granitic rocks. The data allow some comparison of these little known, but potentially economic iron deposits, with some of the world's better investigated deposits, and are useful to the exploration efforts for iron ore currently underway in Cameroon and the Central African subregion.
机译:首次详细介绍了喀麦隆的前寒武纪矿带中的两个铁矿床:封闭在富含铁的黄铁矿中的太古代Metzimevin替代铁矿床,以及与剪切带有关的元古代花岗岩承载的Mayo Binka磁铁矿床。在Metzimevin矿床中,石英受到腐蚀,微片状赤铁矿叠印了马氏体纹理化的赤铁矿。 Mayo Binka大块磁铁矿脉显示出磁铁矿变形(破裂和微缩微晶化)和镜面赤铁矿过度生长(机械孪晶和起伏消光)的证据。磁铁矿被赤铁矿(马氏体化)和针铁矿部分替代。两种矿床的矿石中总Fe_2O_3含量均> 88%,并且诸如SiO_2,Al_2O_3,MgO,CaO,P_2O_5和TiO_2等污染物的含量较低。它们的Cu,Pb,Zn,V,Cr和Ni含量也很差。 Metzimevin块状赤铁矿的特征在于,相对于富铁的伊壁石而言,稀土元素的轻度加剧。有人提出,Metzimevin铁矿床是从Itanite原型中脉石矿物的次生性浸出和进一步血化的结果。尽管尚不清楚Mayo Binka块状磁铁矿的成因,但它在空间上与新元古代的花岗岩有关。数据可以对这些鲜为人知但具有潜在经济价值的铁矿床,与世界上某些经调查更好的矿床进行一些比较,对目前喀麦隆和中非次区域正在进行的铁矿石勘探工作很有用。

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