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首页> 外文期刊>Analytica chimica acta >Copper and nickel speciation in mine effluents by combination of two independent techniques
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Copper and nickel speciation in mine effluents by combination of two independent techniques

机译:两种独立技术的结合使矿山废水中的铜和镍形态发生变化

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To control potentially toxic metals in water resources it is necessary to know metal speciation and changes in the metal speciation that occur after aqueous effluents containing metals are discharged into freshwa-ters. This work explores the speciation of nickel and copper in metal-mining aqueous effluents. Diffusive gradients in thin films (DGT) technique and competing ligand exchange (CLE) method have been applied to determine the speciation of nickel and copper. The results of this investigation demonstrate that combination of two analytical techniques having complementary analytical capabilities can provide a better physicochemical picture of metal speciation than either one of the analytical technique can do alone. The combined use of these techniques revealed that copper formed labile complexes having slow diffusion coefficient along with the presence of small labile copper complexes. Nickel-dissolved organic complexes (DOC) complexes in the aqueous effluent have been found to have fast diffusion coefficient. The results are likely to have environmental significance for providing a link between the metal species in mine aqueous effluent and their bioavailability by determining the characteristics of copper and nickel complexes in metal-mine aqueous effluents. This knowledge is expected to promote a better understanding of the lability of DOC complexes of copper and nickel in mining effluents.
机译:为了控制水资源中潜在的有毒金属,有必要了解金属形态和金属形态的变化,这些变化是在将含有金属的含水废水排入淡水之后发生的。这项工作探讨了金属矿山废水中镍和铜的形态。薄膜中的扩散梯度(DGT)技术和竞争配体交换(CLE)方法已用于确定镍和铜的形态。这项研究的结果表明,与两种分析技术中的任何一种单独相比,具有互补分析能力的两种分析技术的组合可以提供更好的金属形态的物理化学图像。这些技术的组合使用表明,铜形成的不稳定配合物具有缓慢的扩散系数,并且存在小的不稳定的铜配合物。已发现在废水中溶解镍的有机配合物(DOC)配合物具有快速扩散系数。通过确定金属矿山废水中的铜和镍络合物的特性,该结果可能具有环境意义,有助于在矿山废水中的金属种类与其生物利用度之间建立联系。预计该知识将有助于更好地理解采矿废水中铜和镍的DOC复合物的可靠性。

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