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首页> 外文期刊>Journal of analytical chemistry >A new sensitive method for the determination of trace mercury by differential pulse polarography: Application to raw salt sample
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A new sensitive method for the determination of trace mercury by differential pulse polarography: Application to raw salt sample

机译:差分脉冲极谱法测定痕量汞的新灵敏方法:在原盐样品中的应用

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摘要

A new indirect differential pulse polarographic (DPP) method is established for the trace determination of mercury(II). Because of its toxic effects on human health, trace determination of mercury is very important. An indirect method had to be used since no polarographic peak is observed in its direct determination. According to the standard potentials, the reaction between Sn(II) and Hg(II) was found suitable. The peak of Sn(II) at about -0.40 V is sharp, high and very reproducible, which enables the determination of low concentrations of Hg(II). For this purpose, to a known amount of Sn(II) present in the polarographic cell (acetic acid, HAc, pH 1-2), the unknown Hg(II) sample is added and the quantitative reaction takes place directly in the cell. The Hg(II) concentration is calculated simply from the decrease of the Sn(II) peak. The limit of detection (LOD) was found as 2 x 10(-7) M for S/N = 3. Interferences of some common cations, such as Fe, Cd, Cu, Zn and Pb and anions have been investigated. Only Pb had an overlapping peak with Sn(II). This peak overlap was eliminated simply by working at pH 2 (HAc electrolyte), because of the shift of the Pb peak in the Ac complex to -0.7 V. This method was successfully applied to synthetic samples and raw salt sample taken from a salt lake in Turkey.
机译:建立了一种新的间接微分脉冲极谱法(DPP),用于痕量汞的测定。由于其对人体健康的毒性作用,痕量汞的测定非常重要。由于在直接测定中未观察到极谱峰,因此必须使用间接方法。根据标准电势,发现Sn(II)和Hg(II)之间的反应是合适的。 Sn(II)的峰在约-0.40 V处清晰,高且可重现,这使得可以测定低浓度的Hg(II)。为此,向极谱池中存在的已知量的Sn(II)(乙酸,HAc,pH 1-2)中添加未知的Hg(II)样品,然后直接在池中进行定量反应。 Hg(II)浓度仅根据Sn(II)峰的减少来计算。当S / N = 3时,检出限(LOD)为2 x 10(-7)M。已研究了某些常见阳离子(如Fe,Cd,Cu,Zn和Pb和阴离子)的干扰。只有Pb与Sn(II)的峰重叠。由于Ac络合物中的Pb峰向-0.7 V移动,仅通过在pH 2(HAc电解质)下工作即可消除此峰重叠。该方法已成功应用于合成样品和从盐湖中提取的原盐样品在土耳其。

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