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Causes and environmental impact of the gold-tailings dam failure at Karamken, the Russian Far East

机译:俄罗斯远东卡拉姆肯淘金坝失效的原因和环境影响

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Karamken was one of the most-productive gold-processing plants of the former Soviet Union located in the Magadan Region of the Russian North Far East. This paper discusses the causes, environmental damage and current geo-ecological conditions at the site facility after the accidental breakage of the storage pond in 2009 following industrial activity termination of this state enterprise (1994). The amassed water-saturated tailings from the mineral processing amounted similar to 280,000 m(3), corresponding to a total mass weight of 340,000 tons. The on-site multi-proxy investigations indicate synergic effects of hydrogeology, meteorology, engineering and human factors to have accounted for this major technical and environmental disaster. Piled sedimentary waste masses mobilized by removal of the dam-protective construction components initiated a water leakage into the main dam body and its eventual failure. Activated thixotropic processes of plagioclase clay-enriched sediments in conjunction with heavy machinery works on top of the 27 m-high frontal levee above destabilized permafrost grounds together with lack of the facility maintenance are the main causes for this industrial accident. The outburst of the accumulated deposits spilled large quantities of toxic elements stored in the pulverized saturated tailings, poisoning ground waters and causing severe damage to the local riverine ecosystem and fishery, as well as destruction of the nearby town with human casualties. The identified spillage risk factors could be used to forecast the stability of other similar facilities in the sub-Arctic areas.
机译:Karamken是位于俄罗斯北部远东玛达地区的前苏联的最富有成效的黄金加工厂之一。本文讨论了2009年储存池在本国企业(1994)的工业活动终止后储存池发生意外破损后的现场设施的原因,环境损害和当前地球生态条件。来自矿物加工的大使水饱和尾矿相似于280,000米(3),对应于340,000吨的总质量重量。现场的多功能调查表明了对水文地质,气象,工程和人类因素的协同作用,以占这一主要的技术和环境灾难。通过移除坝体保护施工部件动员的堆积沉积废物在主坝体中引发了水泄漏及其最终失败。与重型机械配件相结合的激活血管蛋白粘土沉积物的激活触变过程在稳定的多年堤坝上方的27米高的前堤的顶部以及缺乏设施维护的主要原因是这种工业事故的主要原因。累积沉积物的爆发溢出了大量的毒性元素,储存在粉碎的饱和尾矿中,中毒地面水域,并对当地河流生态系统和渔业造成严重损害,以及与人类伤亡的附近城镇的破坏。确定的溢出危险因素可用于预测子北极地区其他类似设施的稳定性。

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