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首页> 外文期刊>International Journal of Environmental Sciences >Chemical speciation of copper and cadmium in Kameng river sediments using sequential extraction procedure
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Chemical speciation of copper and cadmium in Kameng river sediments using sequential extraction procedure

机译:卡孟河沉积物中铜和镉的化学形态分步萃取法

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摘要

Kameng River is a major north bank tributary of the Brahmaputra River and it originates in the Himalayas. The Kameng river traverses through West Kameng and East Kameng districts in Arunachal Pradesh and happens to be the lifeline of the scattered human population within the river basin. To understand the behavior of toxic trace elements in the bed sediments, chemical speciation studies are commonly applied. In this study a modified sequential extraction procedure was applied to study the geochemical partitioning of Cu and Cd in the sediments, their bioavailability and also the degree of risk associated with their remobilization from the sediment matrix. Cadmium was found to be highly associated with the labile fraction in all the sampling sites and thus posed a high risk of remobilization in the water system. Risk assessment criteria applied to the experimental data also suggested high risk of toxicity to living beings due to Cd bioavailability. Cu was found to poses low to medium risk owing to its affinity to the residual and non-labile phases.
机译:卡蒙河是雅鲁藏布江的主要北岸支流,发源于喜马拉雅山。卡蒙河横穿阿鲁纳恰尔邦的西卡蒙地区和东卡蒙地区,恰好是流域内分散人口的生命线。为了了解床底沉积物中有毒微量元素的行为,通常采用化学形态研究。在这项研究中,采用了改进的顺序萃取程序来研究沉积物中Cu和Cd的地球化学分配,它们的生物利用度以及从沉积物基质中迁移出来的风险程度。在所有采样点中,镉都与不稳定部分高度相关,因此在水系统中存在很高的迁移风险。应用于实验数据的风险评估标准还表明,由于镉的生物利用度,对生物毒性的风险很高。由于铜对残留相和非不稳定相的亲和力,它被发现具有中低风险。

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