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Mapping arsenopyrite alteration in a quartz vein-hosted gold deposit using microbeam analytical techniques

机译:利用微束分析技术绘制石英脉状金矿床中毒砂的蚀变图

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An unworked quartz vein-hosted gold deposit occurs in the Clew bay area of County Mayo, western Ireland. The veins are late-Caledonian in age and transect greenschist-facies poly-deformed Silurian quartzites. The veins contain disseminated arsenopyrite that may be a primary mineral source for elevated levels of arsenic (As) found in groundwater samples recovered from wells related spatially to the gold deposit. Levels from 5 to 188 mu g/L (significantly above the 7.5 mu g/L threshold for safe drinking water) have been detected. A series of element distribution maps using a scanning electron microscope (Hitachimodel S-4700) linked to an energy-dispersive spectrometer (INCA (R) Oxford Instruments) and mineral distribution maps generated by QEMSCAN (R) (Quantitative Evaluation of Minerals by Scanning electron microscopy) were used to map the distribution of the primary arsenopyrite and related secondary As-bearing phases. Laser Raman microspectroscopy was used to identify the secondary As-bearing phases. 'Island weathering' of primary arsenopyrite together with hydrated pseudomorphs of arseniosiderite, pharmacosiderite and scorodite after arsenopyrite are recorded. Circulating groundwater hydrates the primary arsenopyrite, providing the release mechanism that forms the secondary As-bearing phases that occur as microfracture infills together with muscovite and biotite. The textural relationships between the primary and secondary As minerals indicate their potential as mineral sources of As that could enter transport pathways leading to its release into groundwater.
机译:未开采的石英脉状金矿床发生在爱尔兰西部马约郡的克利夫湾地区。脉的年龄为晚卡莱多期,横切绿片岩相的多变形志留纪石英岩。矿脉中散布着毒砂,可能是从与金矿床空间相关的井中回收的地下水样品中发现的砷含量升高的主要矿物质来源。检测到的水平为5至188μg / L(大大高于安全饮用水的7.5μg / L阈值)。使用连接到能量色散光谱仪(INCA(R)Oxford牛津仪器)的扫描电子显微镜(Hitachimodel S-4700)生成的一系列元素分布图和QEMSCAN(R)生成的矿物分布图(通过扫描电子定量评估矿物)显微镜)来绘制主要毒砂和相关的次生含砷相的分布图。激光拉曼光谱法用于鉴定次生含砷相。记录了毒砂中主要毒砂的“岛风化”以及砷化黄铁矿,药代菱铁矿和臭葱石的水合假晶型。循环地下水水合主要毒砂,提供释放机制,形成次生含砷阶段,当微裂缝填充物与白云母和黑云母一起发生时,形成含砷次生相。初级和次级砷矿物之间的结构关系表明它们作为砷的矿物源的潜力,这种砷可能进入运输途径导致其释放到地下水中。

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