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Determination of Ultra-Trace Mercury in Water Samples Based on Cold Vapor Atomic Fluorescence Spectrometry Using a Gold Trap

机译:金捕集器冷蒸气原子荧光光谱法测定水样中的痕量汞

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This paper presents a method for mercury determination in water samples, at trace level using Cold Vapor Atomic Fluorescence Spectrometry (CVAFS). Mono, divalent mercury and organo-mercury compounds are converted to divalent mercury by oxidation with KbrO(3)-KBr in hydrochloric acid, as a result of Br and BrCl reaction. Before the analyses, the excess of Br is removed by ascorbic acid. The divalent mercury is then reduced to the elemental form using 20 g/L tin chloride in acid medium, purged with argon in a hygroscopic membrane in order to retain humidity and then withhold on a gold trap. Gold trap is used to concentrate Hg vapor prior to detection. After heating the trap, mercury is detected using an ozone-free Hg lamp. The analytical performance parameters of the method have been investigated (detection limit, quatification limit, working range, precision, recovery). The method is suitable for determination of ultra-trace mercury content from drinking, surface and wastewater samples.
机译:本文介绍了一种使用冷蒸气原子荧光光谱法(CVAFS)测定痕量水样中水银的方法。由于Br和BrCl反应,在盐酸中用KbrO(3)-KBr氧化将一价,二价汞和有机汞化合物转化为二价汞。在分析之前,多余的Br被抗坏血酸去除。然后在酸性介质中使用20 g / L氯化锡将二价汞还原成元素形式,然后在吸湿膜中用氩气吹扫以保持湿度,然后将其保留在金阱中。金捕集器用于在检测之前浓缩汞蒸气。加热疏水阀后,使用无臭氧的汞灯检测汞。研究了该方法的分析性能参数(检测限,定量限,工作范围,精密度,回收率)。该方法适用于测定饮用水,地面和废水样品中的痕量汞。

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