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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Geochemical, mineralogical and microbiological characterization of a sulphide-bearing carbonate-rich gold-mine tailings impoundment, Joutel, Quebec
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Geochemical, mineralogical and microbiological characterization of a sulphide-bearing carbonate-rich gold-mine tailings impoundment, Joutel, Quebec

机译:魁北克Joutel含硫化物的富含碳酸盐的金矿尾矿库的地球化学,矿物学和微生物学表征

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The results of an integrated geochemical and mineralogical study conducted at the Agnico-Eagle gold-mine tailings impoundment, Joutel, Quebec, are correlated with bacterial populations determined from an enumeration of 3 groups of Thiobacilli. The tailings were determined to contain approximately 5 wt.% sulphide-S, predominantly as pyrite, and up to 30 wt.% carbonate minerals, chiefly as dolomite-ankerite and siderite. The objective of the study was to evaluate the potential for the development of acidic drainage and dissolved-metal migration in carbonate-rich tailings impoundments, and to compare the results of the geochemical and microbiological characterization of the tailings. Sulphide-oxidation reactions have proceeded to a depth of 20-100 cm below the tailings surface. Pyrrhotite consistently shows more alteration than pyrite and arsenopyrite. Pyrrhotite is altered mainly through the replacement by goethite. The most abundant Thiobacilli are neutrophilic bacteria of the Thiobacillus thioparus type. The maximum most probable number values for these bacteria occur 20-40 cm below the tailings surface, a depth that coincides with the disappearance of oxide coatings. This observation, coupled with the sharp decline in gas-phase O-2 concentration, suggests that rapid bacterially-mediated S-oxidation is occurring at this depth. The pore-water pH throughout the tailings varies between 6.5 and 8.5; nd low-pH waters were observed in the impoundment. These neutral pH conditions are attributed to the effect of acid-consuming carbonate-mineral dissolution reactions, which are also indicated by increased concentrations of Mg and Ca and alkalinity in the shallow zone of the tailings. As a result of these acid-neutralization reactions, dissolved metal concentrations are low. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 42]
机译:在魁北克省乔特尔的Agnico-Eagle金矿尾矿库中进行的综合地球化学和矿物学研究的结果与通过3组硫杆菌的计数确定的细菌种群相关。确定该尾矿包含约5 wt。%的硫化物S(主要为黄铁矿)和至多30 wt。%的碳酸盐矿物,主要为白云石-马铁矿和菱铁矿。该研究的目的是评估富碳酸盐尾矿库中酸性排水和溶解金属迁移的发展潜力,并比较尾矿的地球化学和微生物学表征结果。硫化物氧化反应已进行到尾矿表面以下20-100厘米的深度。硫铁矿比黄铁矿和毒砂始终显示出更多的蚀变。锂铁矿的改变主要是通过针铁矿的替代。最丰富的硫杆菌是硫杆菌硫杆菌型的嗜中性细菌。这些细菌的最大最可能数值出现在尾矿表面以下20-40厘米处,该深度与氧化物涂层的消失相符。这一观察结果,加上气相O-2浓度的急剧下降,表明在此深度发生了细菌快速介导的S氧化。整个尾矿中的孔隙水pH值在6.5和8.5之间变化。在水库中观察到低pH值的水。这些中性的pH条件归因于消耗酸的碳酸盐-矿物溶解反应的影响,这也通过尾矿浅区Mg和Ca浓度的增加以及碱度的增加来表明。这些酸中和反应的结果是,溶解的金属浓度低。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:42]

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