首页> 外文期刊>Journal of environmental monitoring: JEM >Chemical speciation and partitioning of trace metals (Cd, Co, Cu, Ni, Pb) in the lower Athabasca river and its tributaries (Alberta, Canada)
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Chemical speciation and partitioning of trace metals (Cd, Co, Cu, Ni, Pb) in the lower Athabasca river and its tributaries (Alberta, Canada)

机译:阿萨巴斯卡河下游及其支流(加拿大艾伯塔省)中的微量金属(镉,钴,铜,镍,铅,铅)的化学形态和分配

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摘要

Concentrations of Cd, Co, Cu, Ni and Pb were measured in particulate and dissolved phases at 11 sites located upstream and near Athabasca oil sands development. The in situ discrimination between non-labile and labile dissolved metals was done using diffusive gradients in thin-films (DGT) devices. The DGT-labile fraction of Co and Ni was 30% lower near development sites whereas Cu, Cd and Pb showed minor changes spatially. It was found that an 8-fold increase in dissolved organic matter (DOM) near development induced a rapid decrease in DGT-labile metals. Dissolved metal concentrations were used along with DOM, major ions, nutrients, pH and conductivity to calculate the distribution of dissolved metal species using the speciation model WHAM. Labile-DGT metal concentrations agreed well with WHAM-predicted concentrations. It was also found that a significant amount of metals were associated with the non-DGT labile fraction (i.e. colloidal DOM) and colloid abundance was more important than suspended particulate matter abundance in influencing metal mobility near Athabasca oil soils development. Since changes in colloidal DOM levels are likely to be the result of surface mining activities, this confirms the serious effects of oil sands activities on metal biogeochemical cycles in the lower Athabasca River.
机译:在阿萨巴斯卡油砂开发上游和附近的11个地点,测量了颗粒相和溶解相中Cd,Co,Cu,Ni和Pb的浓度。使用薄膜(DGT)装置中的扩散梯度可以对非不稳定和不稳定的溶解金属进行原位识别。在发育点附近,Co和Ni的DGT不稳定分数降低了30%,而Cu,Cd和Pb的空间变化较小。已发现,接近发育期的溶解有机物(DOM)增加了8倍,导致DGT不稳定金属迅速减少。使用形态模型WHAM,将溶解的金属浓度与DOM,主要离子,养分,pH和电导率一起使用,以计算溶解的金属物质的分布。不稳定的DGT金属浓度与WHAM预测的浓度非常吻合。还发现大量金属与非DGT不稳定组分(即胶体DOM)有关,胶体丰度比悬浮颗粒物丰度在影响阿萨巴斯卡油土开发附近的金属迁移率方面更为重要。由于胶体DOM水平的变化很可能是露天开采活动的结果,这证实了油砂活动对阿萨巴斯卡河下游金属生物地球化学循环的严重影响。

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