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首页> 外文期刊>Journal of South American earth sciences >Pollution and potential risk assessment of flood sediments in the urban area of the mining Copiapo basin (Atacama Desert)
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Pollution and potential risk assessment of flood sediments in the urban area of the mining Copiapo basin (Atacama Desert)

机译:Copiapo盆地市区城区洪水沉积物的污染与潜在风险评估(阿塔卡马沙漠)

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摘要

In 2015 an extraordinary hydrometeorological event occurred in the southern Atacama Desert (northern Chile) that resulted in a catastrophic flood in the city of Copiapo. A large volume of detrital sediments was transported downstream, provoking an economic and environmental disaster in the Copiapo Valley, a region dominated by mining activity. Loads of sediment and residues were moved by the flow and deposited throughout the urban area of Copiapo. The current study explores the geochemical features and associated pollution risks of metal(loid)s in sediments collected in different points of the city after the flood event. Results revealed that, despite the high natural concentration of elements due to geogenic chemical composition of the area, geoaccumulation of Al, As, Cd, Co, Cu, Hg, Fe, Mn, Ni and Pb showed moderate contamination when compared to the background concentrations of the area. Furthermore, Hg, originating from legacy mining practices, constituted the main environmental risk associated with the flood sediments. Finally, data from this study were compared to other flood events and mining spills; some contaminants in the 2015 flood sediments in Copiapo were higher than some historical mining disasters. This work highlights the potential intersection between anthropogenic activities (mining) and extreme hydrometeorological events (floods) in arid environmental degraded areas.
机译:2015年,南阿卡拉姆沙漠(北智利)发生了非凡的水力气象事件,在Copiapo市中导致了灾难性的洪水。大量的堕落沉积物在下游运输,在Copiapo Valley挑起了经济和环境灾难,该区域由采矿活动占主导地位。沉积物和残留物的负荷由流量移动并沉积在CopiaPo的城市地区。目前的研究探讨了在洪水事件之后在城市不同观点收集的沉积物中金属(Loid)S的地球化学特征和相关污染风险。结果表明,尽管由于地源化学成分,但与背景浓度相比,尽管Al的造环,Al,As,Cd,Co,Cu,Hg,Fe,Mn,Ni和Pb,As,As,Cd,Co,Cu,Hg,Fe,Mn,Ni和Pb的含量,尽管是高的天然浓度。该地区。此外,源于遗产挖掘实践的HG构成了与洪水沉积物相关的主要环境风险。最后,将本研究的数据与其他洪水事件和采矿泄漏进行比较; Copiapo 2015年洪水沉积物中的一些污染物高于一些历史挑战灾害。这项工作突出了干旱环境退化地区的人为活动(采矿)和极端水样事件(洪水)的潜在交叉。

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