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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Mineral exploration and basement mapping in areas of deep transported cover using indicator heavy minerals and paleoredox fronts, Yilgarn Craton, Western Australia
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Mineral exploration and basement mapping in areas of deep transported cover using indicator heavy minerals and paleoredox fronts, Yilgarn Craton, Western Australia

机译:矿产勘查和地下室映射领域深刻的重型运输覆盖使用指标矿物质和paleoredox方面,Yilgarn克拉通,澳大利亚西部

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摘要

Glacial sediments have been thoroughly integrated into mineral exploration protocols in the Northern hemisphere (e.g., Canada and Fennoscandia), but have received less attention in Australia. In Western Australia (WA), Permo-Carboniferous diamictites, buried by younger Cenozoic sediments, cover scattered areas that have potential to host gold and nickel mineralization, in the NE of the Yilgarn Craton. A systematic stratigraphic, mineralogical and geochemical study was undertaken to determine whether diamictites in the Agnew-Lawlers gold province have properties that may help target concealed mineralization. At the Agnew-Lawlers District, rocks intersected in 31 drill holes NE of the Waroonga gold mine, were interpreted in terms of lithological, textural and paleolandscape, mineralogical and geochemical variations to select the best sampling media for mineral exploration and provenance assessment. The paleotopographic variation, asymmetry of the depositional basin, polymictic composition, matrix-supported, mixed angular and rounded and poorly sorted texture of the diamictite clasts indicate mechanical dispersal from proximal and distal, heterogeneous source rocks. Ferromagnesian minerals, chromite, Cr-magnetite, magnetite and Ni-Cu-Fe sulfides are abundant in the diamictite close to mafic-ultramafic source rocks. Monazite, apatite, zircon and clasts derived from pyrite-bearing quartz veins increase in abundance in the diamictite close to the Waroonga shear zone that separates granitoid/gneiss terrain from the Scotty Creek metasediments. Ilmenite is extensively distributed in diamictites throughout the study area and its Mn content can be used to differentiate between felsic and mafic source rocks. Alteration of ilmenite to titanite, monazite to apatite and thorite, and replacement and fracture-filling of pentlandite to monazite suggest felsic, intrusive-related hydrothermal alteration of the source rocks prior to mechanical weathering. Late Paleozoic tropical weathering associated with oscillation of water table and icehouse to greenhouse climatic shift has created paleoredox fronts in the Permo-Carboniferous sequence. Below the redox fronts, diamictites are unweathered, rich in detrital sulfide and opaque oxide minerals and can be used in provenance studies and tracing mineralization. These characteristics of unweathered diamictite are the optimal sampling medium target for provenance studies and mineral exploration. These are cemented mainly by calcareous cement where they overlie mafic-ultramafic rocks and by pyrite cement where they overlie the Scotty Creek metasediments. Above the redox fronts, diamictites are variably weathered to ferruginous and bleached kaolinitic saprolites which are stable under oxidizing, circum-neutral conditions. Ferruginous diamictites are rich in recycled redox-sensitive elements derived from oxidation of ferromagnesian, sulfide and opaque oxide heavy minerals. These weathering features can be used to identify weathered diamictite for sampling for hydromorphic metal dispersion studies. Crown Copyright (C) 2015 Published by Elsevier B.V. All rights reserved.
机译:冰川沉积物已经完全集成到矿产勘查的协议北半球(例如,加拿大和Fennoscandia),但得到了更少的关注在澳大利亚。石炭-二叠系杂岩,埋了年轻的新生代沉积物,覆盖分布地区有潜在举办金和镍矿化,Yilgarn克拉通东北的。系统的地层、矿物学和地球化学研究是进行确定是否杂岩Agnew-Lawlers黄金省的属性可以帮助目标隐蔽的矿化。区,岩石在31个钻孔不交叉Waroonga金矿,是解释岩性、结构paleolandscape、矿物学和地球化学选择最佳抽样媒体变化矿产勘查和来源评估。paleotopographic变异,不对称的沉积盆地,polymictic组成,matrix-supported、混合角和圆角差分类结构的杂岩碎屑从近端和显示机械分散远端,异构烃源岩。铁镁矿物矿物质、铬铁矿、Cr-magnetite磁铁矿和Ni-Cu-Fe硫化物丰富杂岩接近mafic-ultramafic来源岩石。来自pyrite-bearing石英脉增加丰富的杂岩接近Waroonga剪切带之间花岗岩类岩石/片麻岩Scotty溪的地形变质沈积物。分布在整个研究杂岩区域和锰含量可以用来区分镁铁质和长英质的来源岩石。独居石磷灰石和钍石,和更换独居石和裂隙充填的镍黄铁矿建议长英质的,intrusive-related热液变更前的烃源岩机械风化。风化与振荡的水表和冰室温室气候的转变创造了paleoredox方面的吗石炭-二叠系序列。方面,杂岩未风化的,丰富的碎屑硫化氧化和不透明矿物和可用于起源研究和跟踪矿化。未风化的杂岩是最优抽样中起源研究目标和矿物质探索。石灰水泥他们躺在的地方由黄铁矿mafic-ultramafic岩石和水泥他们躺在Scotty溪变质沈积物。在氧化还原方面,杂岩是不可或缺的饱经风霜的铁质和漂白非腐泥土下稳定的氧化,circum-neutral条件。杂岩富含回收redox-sensitive元素来源于氧化铁镁矿物,硫化物氧化和不透明的重矿物质。来确定抽样风化杂岩水成金属分散研究。版权(C) 2015爱思唯尔出版的帐面价值版权。

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