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Fractionation of Cd, Cr, Pb and Ni in roadside soils of Uyo, Niger Delta Region: Nigeria using the optimized BCR sequential extraction technique

机译:尼日尔河三角洲乌约地区路边土壤中Cd,Cr,Pb和Ni的分离采用优化的BCR连续萃取技术

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摘要

The optimized BCR sequential extraction procedure was applied to nine roadside soil samples for the determination of Cd, Cr, Pb and Ni. The extractable metals were isolated into three operationally defined fractions viz: acid extractable, reducible and oxidizable. The residue was treated with aqua regia solution. Metal analysis was done using flame atomic absorption spectrophotometry with air-acetylene flame. Results obtained showed the concentrations of the metals as relative abundance in the mobile phases of the samples (based on the sum of the first three fractions) are in the following order: Cd(91.9) > Pb(82.8) > Ni(49.5) > Cr(39.0). The most non-mobilizable metals were Cr and Ni which are generally lithogenic, associated with the silicate matrix, and the order is as follows: Cr(61.0)>Ni(50.5)>Pb(17.2)>Cd(8.1). The recovery of all the metals expressed as the ratio of total metal concentration to fractional sum of the optimized BCR sequential extraction procedure was of the order: Cr(95.6) > Pb(95.0) > Ni(94.8) > Cd(92.4).
机译:优化的BCR顺序萃取程序应用于9个路边土壤样品,用于测定Cd,Cr,Pb和Ni。将可提取的金属分离为三个可操作定义的馏分,即可酸提取,可还原和可氧化的部分。残留物用王水溶液处理。使用空气乙炔火焰的火焰原子吸收分光光度法进行金属分析。所获得的结果表明,样品流动相中的金属浓度(相对于前三个馏分的总和)相对丰度按以下顺序排列:Cd(91.9)> Pb(82.8)> Ni(49.5)>铬(39.0)。不可移动性最高的金属是Cr和Ni,它们通常与硅酸盐基体缔合成岩作用,其顺序如下:Cr(61.0)> Ni(50.5)> Pb(17.2)> Cd(8.1)。以优化的BCR顺序萃取程序的总金属浓度与分数总和之比表示的所有金属的回收率依次为:Cr(95.6)> Pb(95.0)> Ni(94.8)> Cd(92.4)。

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