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The exploration for, and possible genesis of, some Archaean granite/gneiss-hosted gold deposits in the Pietersburg granite-greenstone terrane

机译:彼得斯堡花岗岩-绿岩地层中一些古生花岗岩/片麻岩岩床金矿的勘探及可能的成因

摘要

The gold mineralization event within Archaean granite-greenstone terranes occurred during the late Archaean, and followed the intrusion of syn- to late-tectonic granitic plutons into previously deformed greenstone belts. An Archaean granite/gneiss-hosted gold deposit, in terms of this project, is classified as having a gold-assay cutoff of 1g/metric ton over widths of at least several metres, or higher grades over narrower widths and/or verbal descriptions that indicate such values. Fluid inclusion studies and isotopic data identify two possible origins forthe auriferous fluids; namely magmatic and metamorphic. The exploration target according to the magmatic model, is a late-Archaean, hydrothermally altered, mineralized and fractured granitic intrusion preferably with a granodioritic or quartz-dioritic composition. The exploration target according to the metamorphic replacement model is a granitic stock that has intruded a zone of crustal weakness such as a shear zone, active during the late Archaean. Alternatively, the granitic intrusion should be affected by regionally extensive late-Archaean shearing. It should be hydrothermally altered, deformed and mineralized. Five areas within the Pietersburg granite-greenstone terrane were selected for the 'Regional Area Selection' phase of exploration for Archaean granite/gneiss-hosted gold deposits; namely Roodepoort, Waterval, Ramagoep,Moletsie and Matlala. Roodepoort contains a known granodiorite-hosted gold deposit; the Knight's Pluton, and served as an orientation survey for this project. The use and interpretation of LANDSAT images formed an integral part of exploration techniques; to assess their usefulness in the exploration of Archaean granite/gneiss-hosted gold deposits. Area selection criteria for granite/gneiss-hosted gold mineralization at Roodepoort are the major ENE-trending shear zone, the NNW-trending lineament and hydrothermal alteration, shearing, quartz-stockworks andsulphide mineralization within the Knight's Pluton. The origin of the gold within the Knight's Pluton is uncertain; both magmatic and metamorphic models are possibilities. Ongoing exploration is in progress at Roodepoort. The only area selection criterion for granite/gneiss-hosted goldmineralization at Waterval is the sericitized, subcropping granites located within trenches. Gold mineralization is insignificant. No area selection criteria for Archaean granite/gneiss-hosted gold mineralization were located at Ramagoep, Matlala and Moletsie. No further exploration isrecommended for all these areas. The MES image interpretations were successful in identifying lineaments,granitic outcrops, greenstones, vegetation and soil cover. The Clay-iron images adequately differentiated betweeen iron-rich and clay-bearing areas. However, not all clay-bearing areas were associated with hydrothermalalteratian; field checks were necessary to discriminate between weathered granites and hydrothermally altered granites. The Wallis images served to locally enhance the contrasts of the MES and Clay-iron images.
机译:古生代花岗岩-绿岩地层内的金矿化事件发生在古生代晚期,随后是同构造至晚期构造的花岗岩岩体侵入先前变形的绿岩带。就该项目而言,古生花岗岩/片麻岩型金矿床的金分界线至少在几米的宽度内为1g /公吨,在较窄的宽度和/或口头描述中具有较高的品位。指出这些值。流体包裹体研究和同位素数据确定了金耳液的两个可能的来源。即岩浆和变质。根据岩浆模型的勘探目标是晚Archaean的,热液蚀变的,矿化的和断裂的花岗岩侵入体,优选具有粒二叠纪或石英二叠纪成分。根据变质替换模型,勘探目标是花岗岩,侵入了古生代晚期活跃的地壳薄弱区,如剪切带。另外,花岗岩侵入应受区域广泛的晚期Archaean剪切的影响。应该对其进行热液改造,变形和矿化。彼得斯堡花岗岩-绿岩地层中的五个区域被选为“古区”花岗岩/片麻岩岩床金矿勘探的“区域选择”阶段。即Roodepoort,Waterval,Ramagoep,Moletsie和Matlala。鲁德普特(Roodepoort)含有已知的花岗闪长岩型金矿床。骑士的冥王星,并担任该项目的方向调查。 LANDSAT图像的使用和解释是探索技术的组成部分;评估其在古生花岗岩/片麻岩岩型金矿勘探中的有用性。 Roodepoort花岗岩/片麻岩型金矿化的区域选择标准是主要的ENE趋势剪切带,NNW趋势线以及骑士岩体内的热液蚀变,剪切,石英储层和硫化物矿化。骑士的冥王星内的黄金来源尚不确定;岩浆和变质模型都是可能的。 Roodepoort正在进行勘探。 Waterval花岗岩/片麻岩型金矿化的唯一区域选择标准是位于沟渠内的浆化的,下茬的花岗岩。金矿化微不足道。 Ramagoep,Matlala和Moletsie没有古生花岗岩/片麻岩型金矿成矿的区域选择标准。建议不要对所有这些领域进行进一步的探索。 MES图像解释成功地识别了纹路,碎屑露头,绿岩,植被和土壤覆盖物。粘土铁图像充分区分了富铁和含土区域。然而,并不是所有的含粘土地区都与热液石炭有关。为了区分风化花岗岩和热液蚀变花岗岩,必须进行现场检查。瓦利斯(Wallis)图像有助于局部增强MES和粘土铁图像的对比度。

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