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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Source, attenuation and potential mobility of arsenic at New Britannia Mine, Snow Lake, Manitoba
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Source, attenuation and potential mobility of arsenic at New Britannia Mine, Snow Lake, Manitoba

机译:曼尼托巴省雪湖新不列颠尼亚矿中砷的来源,衰减和潜在迁移率

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摘要

This study was to investigate the source, mobility and attenuation of As at the New Britannia Mine, Snow Lake, Manitoba. One major source of As contamination was determined to be an arsenopyrite residue stockpile (ARS) containing refractory Au in a waste rock impoundment. It appears that As is still moving through glacial clay at the base of the ARS into a confined aquifer even though the pile was capped in the year 2000. Arsenic is also being mobilized from a deposit of tailings, which formed following spills by previous owners, Nor Acme. Arsenic from the tailings is being mobilized by oxidation of arsenopyrite and reduction of arsenate to the more mobile arsenite by arsenate-reducing bacteria. This contamination is affecting a shallow unconfined aquifer and surface water flowing from the tailings through wetlands towards Snow Lake. Arsenic is being attenuated by adsorption to hydrated ferric oxides (HFO) in the tailings, wetland soils and aquatic plants. Although As in surface water, soils and plants along the flow path from the mine to Snow Lake are above Canadian drinking water guidelines, efficient natural attenuation by HFO in soils and plants of the wetlands have limited the concentration in Snow Lake to below drinking water standards.
机译:这项研究旨在调查曼尼托巴省雪湖新不列颠尼亚矿的砷的来源,迁移率和衰减。确定As污染的一个主要来源是在废石堆场中含有难熔金的毒砂残留物储备(ARS)。看来,即使该桩是在2000年封顶的,As仍在通过ARS底部的冰川粘土进入密闭的含水层。砷也正在从尾矿的沉积中动员起来,后者是先前所有者的溢出所形成的,也不是Acme。尾矿中的砷通过砷砂黄铁矿的氧化而动员,并通过减少砷酸盐的细菌将砷酸盐还原为更具流动性的砷酸盐。这种污染正在影响浅层的无限制含水层以及从尾矿流经湿地流向雪湖的地表水。砷被尾矿,湿地土壤和水生植物中的水合氧化铁(HFO)吸附而被衰减。尽管与地表水一样,从矿山到斯诺湖的水流沿线的土壤和植物都超过了加拿大的饮用水标准,但湿地土壤和植物中HFO的有效自然衰减将斯诺湖的浓度限制在饮用水标准以下。

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