Department of Chemistry, University of Lagos Akoka-Yaba, Lagos, Nigeria.
Environ Monit Assess. 2011 Jan;172(1-4):319-27. doi: 10.1007/s10661-010-1336-4. Epub 2010 Feb 18.
In the determination of the best sequential extraction procedures (SEP) for the speciation of metals in sediment samples from the Lagos lagoon system, three sequential extraction procedures were compared for the fractionation of Cd, Cr, Cu, Pb, and Zn. The SEP compared included a modified Tessier's procedure carried out in five steps, while the two other procedures were the three-step original Community Bureau of Reference (BCR) and the modified BCR techniques (four steps). Quantification of the metal concentration was achieved with a flame atomic absorption spectrophotometer. The results obtained by the three methods were compared, and the modified BCR and Tessier SEP were found to extract more Cu, Cr, Pb, and Zn in the reducible phase and therefore a decrease in the oxidizable phase than the original BCR SEP. The most mobile elements were found to be Cd, Pb, and Zn. These are of environmental concern, as these potentially toxic metals could be easily released into the aquatic environment with consequent ingestion by aquatic organisms, thereby entering the food chain. The mass balance (percent recovery) was found to be between 85% and 115% in most cases. Prior to the comparison, the analytical performance of the laboratory was tested using a secondary reference material, GLAURM, using the three-step modified BCR procedure. The results showed high reliability of the analytical performance of the laboratory for all the metals considered.
在确定拉各斯泻湖系统沉积物中金属形态的最佳连续提取程序 (SEP) 时,比较了三种连续提取程序用于 Cd、Cr、Cu、Pb 和 Zn 的形态分离。比较的 SEP 包括在五个步骤中进行的改良 Tessier 程序,而另外两个程序是原始社区参考局 (BCR) 的三步法和改良 BCR 技术 (四步法)。金属浓度的定量是通过火焰原子吸收分光光度法实现的。比较了三种方法的结果,发现改良的 BCR 和 Tessier SEP 在可还原相中提取了更多的 Cu、Cr、Pb 和 Zn,因此可氧化相中的含量减少。最具移动性的元素是 Cd、Pb 和 Zn。这些元素令人关注,因为这些潜在的有毒金属很容易释放到水生环境中,然后被水生生物摄入,从而进入食物链。在大多数情况下,质量平衡(回收率百分比)在 85%到 115%之间。在进行比较之前,使用 GLAURM 二级参考物质,通过三步改良 BCR 程序对实验室的分析性能进行了测试。结果表明,实验室对所有考虑的金属的分析性能具有高度可靠性。