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Resuspension Of Contaminated Field And Formulated Reference Sediments Part I: Evaluation Of Metal Release Under Controlled Laboratory Conditions

机译:污染场地和参考沉淀物的重悬第一部分:在受控实验室条件下评估金属释放

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In aquatic systems where metal contaminated sediments are present, the potential exists for metals to be released to the water column when sediment resuspension occurs. The release and partitioning behavior of sediment-bound heavy metals is not well understood during resuspension events. In this study, the release of Cd, Cu, Hg, Ni, Pb and Zn from sediments during resus'pension was evaluated using reference sediments with known physical and chemical properties. Sediment treatments with varying quantities of acid volatile sulfide (AVS), total organic carbon (TOC), and different grain size distributions were resus-pended under controlled conditions to evaluate their respective effects on dissolved metal concentrations. AVS had the greatest effect on limiting release of dissolved metals, followed by grain size and TOC. Predictions of dissolved concentrations of Cd, Ni, Pb and Zn were developed based on the formulated sediment ∑_(metal)/AVS ratios with ∑_(metal) being the total sediment metal concentration. Predicted values were compared to measured dissolved metal concentrations in contaminated field sediments resus-pended under identical operating conditions. Metal concentrations released from the field sediments were low overall, in most cases lower than predicted values, reflecting the importance of other binding phases. Overall, results indicate that for sulfidic sediments, low levels of the study metals are released to the dissolved phase during short-term resuspension.
机译:在存在被金属污染的沉积物的水生系统中,当沉积物重新悬浮时,金属可能会释放到水柱中。在重悬过程中,与沉积物结合的重金属的释放和分配行为尚不十分清楚。在这项研究中,使用具有已知物理和化学特性的参考沉积物评估了重悬浮过程中沉积物中Cd,Cu,Hg,Ni,Pb和Zn的释放。在控制的条件下重悬用不同量的酸挥发性硫化物(AVS),总有机碳(TOC)和不同粒度分布进行的泥沙处理,以评估其对溶解金属浓度的影响。 AVS对限制溶解金属的释放影响最大,其次是晶粒度和TOC。基于确定的沉积物∑_(金属)/ AVS比,以∑_(金属)为总沉积物金属浓度,开发了Cd,Ni,Pb和Zn溶解浓度的预测。将预测值与在相同操作条件下重悬的受污染野外沉积物中测得的溶解金属浓度进行比较。从田间沉积物释放的金属浓度总体较低,在大多数情况下低于预测值,反映了其他结合相的重要性。总体而言,结果表明,对于硫化物沉积物,短期再悬浮过程中,少量的研究金属释放到溶解相中。

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