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首页> 外文期刊>Mineralium deposita >3D modeling of the laterites on top of the Koniambo Massif, New Caledonia: refinement of the per descensum lateritic model for nickel mineralization
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3D modeling of the laterites on top of the Koniambo Massif, New Caledonia: refinement of the per descensum lateritic model for nickel mineralization

机译:3D建模后代在Koniambo Massif,新喀里多尼亚的顶部:改进镍矿化的每个Descensum外层模型

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摘要

Resulting from the weathering of the Peridotite Nappe, laterites are abundant in New Caledonia and host one of the largest nickel deposits worldwide. This work presents a 3D model of the Koniambo nickel laterite ore deposit. It shows that the laterites are located along the ridges of the massif and organized as hectometric-sized patches obliquely cut by the topography and distributed at various elevations. Three kinds of geometry were observed: (i) a thick laterite cover (between 20 and 40 m) overlying saprolite and mainly localized on topographic highs, (ii) a thin laterite cover (from a few meters to 20 m) mainly localized on areas with gentle slopes, and (iii) exposure of saprolite without laterite cover. Our data show that Ni-rich and Ni-poor areas are organized as hectometric-sized patches which broadly correlate with the distribution of the laterite thickness. The highest Ni areas are localized on slopes where laterite cover is thin or absent. The areas with lowest Ni are located in topographic highs under the thickest laterite cover. The vertical Ni mass balance for each borehole shows that, in areas with thick laterite cover, Ni is sub-equilibrated to slightly depleted whereas in areas with thin laterite cover, Ni is enriched. This suggests the existence of lateral infiltration of water rich in dissolved Ni, from areas such as topographic highs to downstream slope areas, in a process leading to enrichment of saprolite in Ni in slope areas. Mechanical transport and leaching of laterite material on slopes, including Ni-bearing material, could also contribute to local enrichment of Ni in the saprolite.
机译:由橄榄石Nappe的风化产生,新喀里多尼亚的肤色丰富,并举办全球最大的镍矿床之一。这项工作介绍了Koniambo Nickel Widdite Oree矿床的3D模型。结果表明,外侧物位于受裂的脊沿着地形倾斜地切割的铰接尺寸的贴片,并分布在各种升高。观察到三种几何形状:(i)稠藏覆盖的厚度盖(20至40米)覆盖皂石,主要是局部高度局部,(ii)薄的后卫盖(从几米到20米)主要是区域化的随着柔和的斜坡,(iii)没有覆盖物的凝固物暴露。我们的数据表明,富含Ni和Ni差的区域被组织为铰接尺寸的贴片,与红外厚度的分布宽泛相关。最高的NI区域是在斜坡上定位的,其中覆盖薄薄或不存在。最低Ni的区域位于最厚的红土盖下方的地形高度。每个钻孔的垂直Ni质量平衡表明,在具有厚覆盖盖的区域,Ni被亚平衡到略微耗尽,而在具有薄的后卫盖的区域中,富集Ni。这表明在倾斜区域中Ni中富集皂石的过程中,从溶解Ni的溶解Ni的横向渗透到溶解Ni的横向渗透到下游斜坡区域。在斜坡上的斜坡上的机械运输和浸出的横向材料,也可以有助于皂沸石中Ni的局部富集。

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