首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >The Lemoine Auriferous Volcanogenic Massive Sulfide Deposit, Chibougamau Camp, Abitibi Greenstone Belt, Quebec, Canada: Geology and Genesis
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The Lemoine Auriferous Volcanogenic Massive Sulfide Deposit, Chibougamau Camp, Abitibi Greenstone Belt, Quebec, Canada: Geology and Genesis

机译:加拿大魁北克,阿比比比绿石带,奇布卡马营地,勒莫因火山金成矿型块状硫化物矿床:地质与成因

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The Lemoine auriferous volcanogenic massive sulfide deposit (0.76 Mt at 4.6 g/t Au, 4.2 wt % Cu, and 9.5 wt % Zn) is part of the Chibougamau camp located in the northeastern part of the Abitibi greenstone belt. The deposit is hosted by a steeply dipping, S-facing homoclinal volcanic succession (-2729-2726 Ma Waconichi Formation, Lemoine Member) composed of effusive and intrusive tholeiitic rhyolites and andesites cut by comagmatic diorite and gabbro dikes and overlain by transitional to mildly calc-alkaline basalts, andesites, and rhyolites. Seven predominant synvolcanic alteration assemblages, now intensely deformed and metamorphosed to upper greenschist facies, were defined based on their mineralogy and position relative to ore. Albite-quartz, sericite-carbonate, sericite-chlorite, sericite-chlorite-(Zn), and chlorite-sericite-epidote-carbonate assemblages define semiconcordant zones that are stacked from the paleoseafloor to the deep footwall. In contrast, chlorite and chlorite-sericite-chloritoid assemblages overprint the other alteration zones and form subconcordant to now transposed discordant zones in the deposit footwall. Most alteration assemblages are characterized by relative SiO_2, CaO, and Na_2O mass losses and relative FeO, MgO, K_2O, and CO_2 mass gains. Whole-rock oxygen isotopes indicate that the temperatures of alteration ranged from -100° to 150℃ (sericite-carbonate assemblage) to >350℃ (sericite-chlorite, chlorite-sericite-chloritoid, and chlorite assemblages). The chlorite-sericite-chloritoid assemblage, and to some extent the sericite-chlorite assemblage, are associated with strong to near total depletion of light rare earth elements possibly due to reaction with Cl-bearing, mildly acidic fluids at depth in the ore-forming hydrothermal system. The sulfide lens was formed in part on the seafloor and in part by subseafloor replacement. The massive sulfides are particularly rich in Bi, suggesting a possible magmatic input into the Lemoine ore-forming hydro-thermal system. High Bi concentrations in the mineralizing system are likely to have enhanced Au precipitation by scavenging the precious metal from the hydrothermal fluids. The Au-rich nature of the Lemoine auriferous volcanogenic massive sulfide deposit can be explained by a combination of very efficient metal transport, highly effective capture of metals at or near the seafloor, and a possible magmatic contribution to the hydrothermal system.
机译:Lemoine含铁的火山成矿块状硫化物矿床(4.6 g / t Au处0.76 Mt,4.2 wt%Cu和9.5 wt%Zn)是位于Abitibi绿岩带东北部的Chibougamau营地的一部分。该矿床由陡倾的,面向S面的单斜向火山岩层序(-2729-2726 Ma Waconichi组,Lemoine成员)组成,由喷发性和侵入性的流纹岩流纹岩和安山岩组成,并由岩浆闪长岩和辉长岩岩脉切割,并由过渡至轻度钙化覆盖-碱性玄武岩,安山岩和流纹岩。根据它们的矿物学和相对于矿石的位置,定义了七个主要的火山作用蚀变组合,这些组合现在已经严重变形并变质为上层绿岩相。阿尔比特-石英,绢云母-碳酸盐,绢云母-亚氯酸盐,绢云母-亚氯酸盐-(碳酸锌)和绿泥石-绢云母-闪长岩-碳酸盐组合物定义了从高地层到深底壁堆积的半共融带。相比之下,亚氯酸盐和亚氯酸盐-绢云母-类胡萝卜素组合物覆盖了其他蚀变带,并形成次相融,形成了现在沉积层底盘中转位的不协调带。大多数蚀变组合的特征是相对SiO_2,CaO和Na_2O的质量损失以及相对FeO,MgO,K_2O和CO_2的质量增加。全岩氧同位素表明,蚀变温度范围为-100°至150℃(绢云母-碳酸盐组合物)至> 350℃(绢云母-亚氯酸盐,亚氯酸盐-绢云母-类固醇和亚氯酸盐组合)。亚氯酸盐-绢云母-类氯酸盐组合物,在某种程度上与绢云母-亚氯酸盐组合物,可能与轻稀土元素的强至几乎完全耗尽有关,这可能是由于与成矿深度深处含Cl的弱酸性流体反应所致。热液系统。硫化物镜片部分形成在海底,部分通过海底置换形成。块状硫化物特别富含Bi,表明可能向岩溶成矿热液系统输入岩浆。通过从水热流体中清除贵金属,矿化系统中的高Bi浓度可能会增强Au的沉淀。 Lemoine的金铁质火山成矿块状硫化物矿床的富金性质可以通过非常有效的金属传输,在海底或附近高效捕获金属以及可能对热液系统的岩浆作用来解释。

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