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Geological and metallurgical characteristics of banded iron formation associated detrital iron mineralisation in Central West Africa

机译:中非共和国带状铁形成相关脱铁矿化的地质和冶金特征

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Recent exploration has identified the presence of detrital iron deposits (DIDs) associated with banded iron formation (BIF) units in the north-west of the Congo Craton, Gabon. The regional geology comprises a complex of granitoids and gneisses assigned to the Archaean Chaillu Complex, within which older slivers of lower amphibolite-grade greenstones are preserved including muscovite-biotite-garnet-bearing felsic schist, amphibolite and BIF. These units are typically overlain by several metres of residuum comprising colluvium, eluvium and duricrust. The residuum is overlain by a regionally extensive loess cover from 2 m to 10 m thick.The DIDs occur within the weathered residuum as mostly unconsolidated gravels with lesser canga (CAN) duricrust draped over deeply weathered hematite. Head grades are in the range of 45 to 52 per cent Fe. Fresh BIF, located from 30 to 50 m below surface, is comprised of magnetite-quartz±amphibole. The detrital iron gravels are comprised of rod- and plate-shaped clasts of hematite (martite)-maghemite-goethite composition, in a ferruginous sand to clay-sized matrix. The DID form ridges and plateaus that coincide with magnetic highs defined using high-resolution ground magnetic surveys.The field relations and petrography indicate that the detrital iron accumulations are the result of weathering (including enrichment) and erosion of primary BIF. This includes removal of quartz, further oxidation and re-cementation of BIF to form ferruginous caprock. This cap and the in situ oxidised BIF were subsequently disaggregated and liberated, and further weathered to form the detrital iron accumulations.Metallurgical test work on bulk detrital iron samples has shown this material can be upgraded to lump and fines iron ore products with grades of 62 to 65 per cent Fe using simple scrubbing and wet screening, followed by dense media separation of the -1 mm fraction, with overall mass yields from 75 to 85 per cent. The test work indicates a high ratio of lump to fines products, sometimes exceeding 50:50.
机译:最近的探索已经确定了与刚果克拉顿西北部的带状铁形成(BIF)单位相关的脱脂铁沉积(DID)的存在。区域地质包括分配给大型川鲁复合物的花岗岩和片状,其中较旧的倒数倒数级绿色岩石的较旧的碎片被保存,包括含云钠 - 生物烟灰碱的铰链,倒置倍铬和BIF。这些单位通常覆盖在多米的残留物中,包括抗胰蛋白酶,Eluvium和DuRicrust。将残余物通过2米至10μm厚的区域广泛的黄土覆盖物俯仰。该状况发生在被风化的残余物中,大多是未溶解的砾石,较小的苍苍(罐)杜兰氏菌覆盖在深深风化的赤铁矿上。头部等级在45%至52%的Fe。距离表面30至50米以下的新鲜BIF,由磁铁矿 - 石英±阳吡啉组成。滴乳铁砾石由赤铁矿(Martite)-Magemite-甲酸酯组合物的杆状和板状泥浆组成,在铁砂砂中与粘土大小的基质组成。该表现的形成脊和平坦化合物与使用高分辨率地面磁性调查定义的磁性高度一致。现场关系和岩画表明碎屑的铁累积是风化(包括富集)和原发性BIF的侵蚀的结果。这包括去除石英,进一步氧化和重新粘合BIF以形成铁骨谱。随后将该帽和原位氧化的BIF分解和释放,并进一步被风化形成了碎屑的铁累积。散装碎屑原铁样品的metullgical试验工作表明,这种材料可以升级为块状,含有62级的铁矿石产品使用简单的擦洗和湿筛选至65%的Fe,然后致密介质分离-1mm馏分,总质量产量为75%至85%。测试工作表明块状的高比例为罚款产品,有时超过50:50。

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