首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >The Paleoproterozoic MacLellan deposit and related Au-Ag occurrences, Lynn Lake greenstone belt, Manitoba: An emerging, structurally-controlled gold camp
【24h】

The Paleoproterozoic MacLellan deposit and related Au-Ag occurrences, Lynn Lake greenstone belt, Manitoba: An emerging, structurally-controlled gold camp

机译:古普罗古麦克兰矿床及相关AU-AG出现,林恩湖Greenstone Belt,Manitoba:一个新兴,结构控制的金营

获取原文
获取原文并翻译 | 示例
       

摘要

The Paleoproterozoic Era is important for Au-Ag mineralization, including deposits in the Trans-Hudson Orogen of central Canada. The association between Au-Ag deposits and regional structures that formed during this era has seen markedly less research than Archean counterparts. The MacLellan deposit and related Au-Ag occurrences occur within the northern part of the Paleoproterozoic Lynn Lake greenstone belt in northwest Manitoba. Field relationships, combined with a detailed characterization of the host rocks, alteration, and structure, along with mass balance calculations, indicate that the host rocks were largely derived from a common amphibole plagioclase schist protolith (originally a porphyritic basalt) that was variably deformed and altered to initially biotite quartz during D-2 deformation, and subsequently to Cr-bearing chlorite (carbonate, amphibole, quartz) during the late stages of D-2 and D-3. Gold-silver mineralization is associated with these alteration events and consists predominantly of native Au, aurostibite (AuSb2), Au in arsenopyrite, and Ag in galena. These can be separated into two distinct Au mineralizing events: 1) early disseminated arsenopyrite aligned with D-2 fabrics that contains structurally-bound Au; and 2) late fracture-filling native Au, aurostibite, and Au-rich rims and fractures on and within arsenopyrite. The highest concentrations of Au and Ag occur where E-W trending dextral D-2 shear zones intersect NNE-SSW trending brittle faults (D-4), suggesting late re mobilization of precious metals by hydrothermal fluids into dilatant zones. The structural control on formation and distribution of Au-Ag deposits along the MacLellan Shear Zone is similar to that observed along the regionally significant Johnson Shear Zone, which occurs in the southern portion of the Lynn Lake greenstone belt, suggesting similar processes operated within both portions of the belt. Integrating detailed geologic and structural mapping, petrography, geochemistry, and alteration, demonstrates that these Au-Ag occurrences formed as a result of structurally-controlled mineralizing systems associated with major shear zones, rather than being primarily syngenetic in origin (i.e., seafloor exhalative), as previously suggested. These major Paleoproterozoic shear zones display similar characteristics and relationships to well-documented structural 'breaks' in Archean terranes (e.g., Porcupine-Destor Deformation Zone and Larder Lake-Cadillac Deformation Zone), suggesting that, at least in terms of the Lynn Lake region, structural and mineral deposit forming processes may have occurred on comparable spatial scales to those in Archean systems.
机译:古典古代时代对于AU-AG矿化很重要,包括加拿大中部的Trans-Hudson Orogen中的矿床。在此时代形成的AU-AG存款和区域结构之间的关联显着较少,研究比Archean对应物更少。 Maclellan押金和相关的Au-AG发生发生在古邦特罗省北部的北部Manitoba北部的北部部分。与宿主岩,改变和结构的详细表征相结合的田间关系表明宿主岩石大部分衍生自常见的锥形巨乳酶Schist原料(最初是卟啉玄武岩)可变变形的和在D-2变形期间最初改变为最初的Biotite石英,并且随后在D-2和D-3的后期进行Cr承载的亚氯酸盐(碳酸盐,倒话,石英)。金银矿化与这些改变事件有关,主要由Au,Aurostibite(Ausb2),Au在阿塞纳博物馆中的Ag和Ag中组成。这些可以分为两个不同的Au矿化事件:1)早期散发的砷吡啶与含有结构上结合的Au的D-2织物一致; 2)晚期骨折填充天然Au,菌根纤维素和富含植物的边缘和骨折和亚塞诺特。最高浓度的Au和Ag发生,其中E-W趋势D-2剪切区与NNE-SSW趋势脆性故障(D-4)相交,表明通过水热流体进入稀释剂区后期重新动员贵金属。沿着麦克兰剪切区的Au-Ag沉积物的形成和分布的结构控制类似于沿着区域显着的Johnson剪切区观察到的,该区域发生在Lynn Lake Greenstone皮带的南部,建议在两个部分内操作的类似过程皮带。整合详细的地质和结构映射,探测器,地球化学和改变,表明,由于与主要剪切区相关的结构控制的矿化系统而形成的这些AU-AG发生,而不是主要以原产地(即,海底呼气)如前所述。这些主要古地区剪切区显示了在阿奇地区的良好记录的结构“休息”(例如,豪猪 - 特性变形区和垃圾箱湖-Cadillac变形区)的类似特征和关系,这表明至少在林恩湖区方面在对比的空间尺度上可能已经发生了结构和矿物质沉积成型过程。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号