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Analysis of wind-driven resuspension of metal mine sludge in a tailings pond

机译:尾矿池中金属矿泥的风驱悬浮分析

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Shallow water covers, typically less than 2 m deep, are commonly used to store tailings and minimize environmental degradation. Studies have, however, shown that wind induced waves can erode and resuspend tailings in areas where the water cover is much shallower than 1 m, possibly leading to oxidation of sulphide minerals, acid generation, and release of heavy metals. The present work investigated erosion and resuspension of co-disposed, cohesive mill tailings and lime neutralization sludge in a tailings pond located at the Heath Steele mine site, near Miramichi, New Brunswick, Canada. From measured wind data and published equations, suspended sediment concentrations were modeled for various water cover depths and compared to measured total suspended solids (TSS) values and the federal effluent discharge guideline of 25 mg L~(-1). The computed suspended sediment concentrations agreed with those measured at the effluent discharge point. The results show that winds blowing in the direction of the major axis of the pond contributed most to resuspension and elevated TSS.
机译:浅水覆盖层通常小于2 m,通常用于存储尾矿并最大程度地减少环境恶化。然而,研究表明,风浪可以侵蚀和重悬水深小于1 m的区域的尾矿,这可能导致硫化物矿物氧化,酸产生和重金属释放。本工作调查了位于加拿大新不伦瑞克省米拉米奇附近的希思·斯蒂尔矿场的尾矿池中并置的粘性磨机尾矿和石灰中和污泥的侵蚀和重悬浮。根据测得的风数据和公开的方程式,对各种水覆盖深度的悬浮沉积物浓度进行建模,并与测得的总悬浮固体(TSS)值和联邦污水排放准则25 mg L〜(-1)进行比较。计算得出的悬浮沉积物浓度与在废水排放点测得的浓度一致。结果表明,沿池塘长轴方向吹的风对悬浮和TSS升高的影响最大。

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