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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Geologic and geophysical evidence for the influence of deep crustal structures on Paleozoic tectonics and the alignment of world-class gold deposits, north-central Nevada, USA
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Geologic and geophysical evidence for the influence of deep crustal structures on Paleozoic tectonics and the alignment of world-class gold deposits, north-central Nevada, USA

机译:美国内华达州中北部深地壳结构对古生代构造的影响和世界一流金矿的排列的地质和地球物理证据

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摘要

Geologic data concur with geophysical and isotopic data that suggest the presence of deep crustal fault zones along the Baffle Mountain-Eureka (BME) trend and elsewhere in Nevada. The fault zones may have originated during Proterozoic rifling of the continent and were likely substantially reactivated and modified during Paleozoic tectonism. Five distinct Paleozoic structural and stratigraphic domains are defined that demonstrate the complexity of Paleozoic tectonic events and also lead to hypotheses about ways in which the margin could have been modified. The current locations of these domains adjacent to the geophysically and isotopically defined indicators of the buried continent edge corroborate their interactions with the continental margin. During the Tertiary, preexisting crustal fault zones were intersected and reopened during episodes of extension and served as the conduits for deep-sourced, gold-rich fluids, which were disseminated into Paleozoic slope facies sedimentary rocks, forming sediment-hosted Carlin-type and other deposits. Multiple factors including the locations of these deep-seated structures, the original configuration of the lower Paleozoic continental margin of Nevada, and its subsequent reactivation during the Paleozoic all were fundamental controls on the location of younger mineral deposits. A clearer understanding of the original configuration of the margin and of the effects of subsequent Paleozoic and Mesozoic tectonic events on the margin would provide insight into the locations of these and other prospective mineral belts.
机译:地质数据与地球物理和同位素数据一致,表明沿Baffle Mountain-Eureka(BME)趋势和内华达州其他地区存在深层地壳断层带。断层带可能起源于该大陆的元古代裂谷,并可能在古生代构造运动中被重新激活和改造。定义了五个不同的古生代构造和地层区域,这些区域说明了古生代构造事件的复杂性,并且还导致了关于可能对边界进行修改的方式的假设。这些区域的当前位置与被掩埋大陆边缘的地理和同位素定义的指示符相邻,从而证实了它们与大陆边缘的相互作用。在第三纪期间,先前的地壳断层带在延伸期间被相交并重新开放,并作为深层来源的富金流体的管道,这些流体被散布到古生代斜坡相沉积岩中,形成了以沉积物为主的卡林型和其他存款。包括这些深层结构位置,内华达州下古生代大陆边缘的原始构造以及其随后在古生代重新活化的多种因素都是对较年轻矿床位置的基本控制。对边缘的原始构造以及随后的古生代和中生代构造事件对边缘的影响的更清晰的了解将提供对这些和其他潜在矿带的位置的认识。

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