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A scale-integrated exploration model for orogenic gold deposits based on a mineral system approach

机译:基于矿物系统方法的敌模金沉积尺度综合勘探模型

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摘要

Concept-based orogenic gold exploration requires a scale-integrated approach using a robust mineral system model. Most genetic hypotheses for orogenic gold deposits that involve near-surface or magmatic-hydrothermal fluids are now negated in terms of a global mineral system model. Plausible models involve metamorphic fluids, but the fluid source has been equivocal. Crustal metamorphic-fluid models are most widely-accepted but there are serious problems for Archean deposits, and numerous Chinese provinces, including Jiaodong, where the only feasible fluid source is sub-crustal. If all orogenic gold deposits define a coherent mineral system, there are only two realistic sources of fluid and gold, based on their syn-mineralization geodynamic settings. These are from devolatilization of a subducted oceanic slab with its overlying gold-bearing sulfide-rich sedimentary package, or release from mantle lithosphere that was metasomatized and fertilized during a subduction event, particularly adjacent to craton margins. In this model, CO2 is generated during decarbonation and S and ore-related elements released from transformation of pyrite to pyrrhotite at about 500??°C. This orogenic gold mineral system can be applied to conceptual exploration by first identifying the required settings at geodynamic to deposit scales. Within these settings, it is then possible to define the critical gold mineralization processes in the system: fertility, architecture, and preservation. The geological parameters that define these processes, and the geological, geophysical and geochemical proxies and responses for these critical parameters can then be identified. At the geodynamic to province scales, critical processes include a tectonic thermal engine and deep, effective, fluid plumbing system driven by seismic swarms up lithosphere-scale faults in an oblique-slip regime during uplift late in the orogenic cycle of a convergent margin. At the district to deposit scale, the important processes are fluid focussing into regions of complex structural geometry adjacent to crustal-scale plumbing systems, with gold deposition in trap sites involving complex conjugations of competent and/or reactive rock sequences and structural or lithological fluid caps. Critical indirect responses to defined parameters change from those generated by geophysics to those generated by geochemistry with reduction in scale of the mineral system-driven conceptual exploration.Graphical abstractDownload : Download high-res image (276KB)Download : Download full-size image
机译:基于概念的Orogenic Gold探索需要使用稳健的矿物系统模型进行规模综合的方法。涉及近表面或岩浆 - 水热流体的造口金沉积物的大多数遗传假设现在毫不符合全球矿物系统模型。合理的模型涉及变质液,但流体源已经等离成。地壳变质流体模型最广泛接受,但是,阿道亚存款存在严重问题,以及众多中国省份,包括焦东,其中唯一可行的流体源是亚壳。如果所有organic金矿床定义相干矿物系统,则只有两个现实的液体和金子来源,基于其同步矿化地球动力学设置。这些是从脱覆海洋板的脱挥发化,其覆盖的耐金硫化物丰富的沉积包装,或从地幔岩石圈释放,这些岩石圈在俯冲事件期间弥思和施肥,特别是靠近克拉顿边缘。在该模型中,在脱碳和矿石相关元件期间产生CO 2,从黄铁矿转化到吡喃酸盐在约500Ω℃下释放到Pyrrhotite期间。这种造口金矿系统可以通过首先识别Geogynamic的所需设置来应用于沉积尺度的概念探索。在这些设置中,可以在系统中定义临界金矿化过程:生育,架构和保存。可以识别定义这些过程的地质参数以及地质,地球物理和地球化学代理和对这些关键参数的响应。在地球节动力到省级,关键过程包括由地震围绕在会聚边缘的次升高期间倾斜滑动制度在倾斜滑动制度中推动的构造热发动机和深层,有效的流体管道系统。在地区存入规模,重要的过程是流体聚焦到与地壳级管道系统相邻的复杂结构几何区域的流体,陷阱位点中的金沉积,涉及能力和/或反应性岩石序列和结构或岩性液体盖的复合缀合。关键间接响应到定义的参数从地球物学生成的参数改变到地球化学产生的那些,随着矿物系统驱动的概念探索的规模减少。图绘图:下载高分辨率图像(276KB)下载:下载全尺寸图像

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