2008Jiangxi Chemical IndustryRequires access

Determination of Mercury in Environmental Water by Hydride Generation Atomic Fluorescence Spectrometry

Zhen Chen

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Abstract

The determination of mercury in environmental water by the hydride generation atomic fluorescence spectrometry was investigated.Optimum working conditions of the instrument were studied,including flow rate of carrier gas,concentration of potassium tetrahydroborate solution and acidity of sample solution.Under the optimum condition,the detection limit was 0.04ng/mL.The method has been applied to the determination of mercury in environmental water.The recovery was in the range of 96 %~104 %.The relative standard deviation was 1.9 %.

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The determination of mercury in environmental water by the hydride generation atomic fluorescence spectrometry was investigated.Optimum working conditions of the instrument were studied,including flow rate of carrier gas,concentration of potassium tetrahydroborate solution and acidity of sample solution.Under the optimum condition,the detection limit was 0.04ng/mL.The method has been applied to the determination of mercury in environmental water.The recovery was in the range of 96 %~104 %.The relative standard deviation was 1.9 %.

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Available abstract

The determination of mercury in environmental water by the hydride generation atomic fluorescence spectrometry was investigated.Optimum working conditions of the instrument were studied,including flow rate of carrier gas,concentration of potassium tetrahydroborate solution and acidity of sample solution.Under the optimum condition,the detection limit was 0.04ng/mL.The method has been applied to the determination of mercury in environmental water.The recovery was in the range of 96 %~104 %.The relative standard deviation was 1.9 %.

Key concepts: Mercury (programming language), Hydride, Detection limit, Chemistry, Relative standard deviation, Environmental chemistry, Analytical Chemistry (journal), Mass spectrometry

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