胶西北招远滕家金矿床黄铁矿原位微量元素特征及其对成矿过程的启示

    In-situ trace element characteristics of pyrite in the Tengjia gold deposit at Northwestern Jiaodong Peninsula: Implications for the ore-forming process

    • 摘要: 【研究目的】山东招远滕家金矿是胶西北地区招平成矿带新发现的特大型金矿床。黄铁矿是该金矿床中重要的载金矿物,目前仍缺乏对该矿床黄铁矿显微结构和微量元素组成的研究,限制了对成矿过程的理解。【研究方法】本文利用LA-ICP-MS技术原位分析了滕家金矿黄铁矿微量元素组成,探讨了金的赋存状态、沉淀机制以及成矿流体的演化。【研究结果】镜下观察表明高品位金矿化集中于石英-多金属硫化物阶段,伴随多金属硫化物出现大量可见金。LA-ICP-MS剥蚀曲线证实高品位金矿石黄铁矿内部存在大量亚微米级的含金矿物(Au-Ag-Te),而黄铁矿本身Au含量很低(<1×10-6),表明Au主要以可见金形式矿化。晶格金的再活化不足以在贫金黄铁矿内部产生含金矿物包裹体,高品位金矿石中大量可见金更可能是从成矿流体中直接沉淀形成。黄铁矿多变的As含量和Co/Ni比值指示初始成矿流体与围岩发生了不同程度的水岩反应。黄铁矿As与Au解耦的特征暗示了成矿流体淋滤围岩形成富As流体不是Au富集的必要条件,初始成矿流体富Au和可见金快速沉淀对形成高品位金矿化更加关键。【结论】结合滕家金矿产出于招平断裂带下盘,推断深部成矿热液在断裂缓倾角平台较封闭空间内发生不同程度流体-围岩反应,是金矿形成的主要机制。

       

      Abstract: ObjectiveThe Tengjia gold deposit is a newly-discovered altered rock-type giant lode gold deposit located within the illustrious gold-rich Zhaoping fault of northwestern Jiaodong peninsula. Despite pyrite being a main carrier of Au, little is known about microstructure and trace element characteristics of pyrite in the Tengjia Au deposit, which limits our understanding of the ore-forming process.MethodsIn this study, trace element composition of pyrite in the Tengjia gold deposit was analyzed by using LA-ICP-MS, with the aim of investigating the occurrence state, migration and precipitation mechanism of gold, as well as constraining the source of mineralization fluids and the ore-forming process.ResultsHigh grade gold mineralization mostly occurred in the quartz-polymetallic sulfide stage, with a large amount of visible gold appearing concurrently with polymetallic sulfides. Time resolved depth profiles for single spot LA-ICP-MS analyses demonstrate the existence of sub-micron gold-bearing minerals (Au-Ag-Te) within some pyrites of high grade gold ore, whereas most pyrites have significantly low Au(<1×10-6), suggesting predominant of visible gold in the Tengjia gold deposit. Since pyrites in Tengjia gold deposits are mostly Au-poor, remobilizaiton of lattice Au is unlikely to be the key process generating visible gold. Alternatively, visible gold should be directly precipitated from ore-forming fluids. The variable As content and Co/Ni ratio of pyrite in the Tengjia gold deposit indicate varying degrees of water-rock reaction. The decoupled Au and As geochemistry of pyrite from the Tengjia gold deposit implies that As-rich fluids generated from water-rock reaction is not necessarily Au-rich, and that a initial Au-rich ore-forming fluid combined with rapid visible gold precipitation is more important for high grade gold mineralization.ConclusionsCombined with the fact that Tengjia gold deposit occurred in the lower plate of Zhaoping fault, it could be inferred that variable fluid-rock reaction between deep-sourced ore-forming fluids and wall rocks within a small space is the main ore-forming mechanism for Tengjia gold deposit.

       

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