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首页> 外文期刊>Water, Air, and Soil Pollution >The Chemistry of Sub-Alpine Streams in Mined Regions of the North Cascades Range
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The Chemistry of Sub-Alpine Streams in Mined Regions of the North Cascades Range

机译:北喀斯喀特山脉矿区的亚高山流化学

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摘要

One hundred and fifty years of mineral extraction throughout the mountainous Ruby Creek watershed, Washington has left a legacy of historical hard rock mines and placer claims and their wastes. We conducted a watershed-scale chemical analysis of these gold-bearing tributaries, accounting for seasonal variability in streamflow, to identify spatial and temporal changes in stream chemistry and attribute them to natural processes or mining activities. We used hierarchical cluster analysis (HCA) to group chemically similar water samples based on concentrations of 23 metals, pH, and conductivity and compared the chemistry of HCA-generated clusters of water samples using pairwise comparisons to find chemical patterns. Total concentrations of As, Ba, Ca, Mg, Na, Sb, and Se, dissolved concentrations of Fe, and conductivity increased as streamflow progressed from snowmelt-influenced to baseflow. High total concentrations of Al, Cd, Co, Cr, Cu, Fe, Mn, Mo, Ni, Pb, Sb, V, and Zn during spring snowmelt and after rains were attributable to acid mine drainage at historical hard rock mines and prospect sites. Smaller-scale placer mining, by way of suction dredging and motorized gold panning, was associated with high concentrations of Al, Ba, Cd, Co, Fe, Mg, Mn, Mo, and Zn downstream. Stream biota may be adversely affected by exposure to Pb, which exceeded USEPA's Aquatic Life Criteria, and exposure to particulate metals suspended in the water column.
机译:华盛顿在整个山区的红宝石溪流域开采了一百五十年,留下了历史悠久的硬石矿山和砂矿索赔及其废物的遗产。我们对这些含金支流进行了分水岭规模的化学分析,考虑了溪流的季节性变化,以识别溪流化学的时空变化并将其归因于自然过程或采矿活动。我们使用层次聚类分析(HCA)根据23种金属的浓度,pH和电导率对化学相似的水样品进行分组,并使用成对比较比较HCA生成的水样品簇的化学性质,以查找化学模式。 As,Ba,Ca,Mg,Na,Sb和Se的总浓度,Fe的溶解浓度和电导率随着流量从融雪影响到基础流量而增加。在春季融雪期间和降雨后,Al,Cd,Co,Cr,Cu,Fe,Mn,Mo,Ni,Pb,Sb,V和Zn的高总浓度归因于历史悠久的硬岩矿山和勘探地点的酸性矿山排水。通过抽吸挖泥和机动淘金进行规模较小的砂矿开采,与下游的高浓度Al,Ba,Cd,Co,Fe,Mg,Mn,Mo和Zn有关。暴露于超过USEPA《水生生物标准》的铅和暴露于悬浮在水柱中的颗粒金属可能会对河流生物区系产生不利影响。

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