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Preconcentration and determination of ultra trace amounts of palladium in water samples by dispersive liquid-liquid microextraction and graphite furnace atomic absorption spectrometry

机译:分散液液微萃取-石墨炉原子吸收光谱法对水样中痕量钯的富集和测定

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摘要

A highly sensitive, simple and rapid method is presented for the determination of palladium using graphite furnace atomic absorption spectrometry after its separation and preconcentration by dispersive liquid-liquid microextraction. Ultra traces of Pd were extracted and preconcentrated in acidic water samples by using 2-amino-1-cyclohexene-1-dithiocarboxylic acid as a suitable chelating agent, and carbon tetrachloride and acetone as extraction and disperser solvents, respectively. The experimental parameters were optimized in order to enhance the extraction efficiency. After optimizing the extraction conditions and various instrumental parameters, an enhancement factor of 350 was obtained. The analytical curve absorbance vs. concentration was linear over the range 0.02–0.6 µg L-1 Pd. The detection limit and relative standard deviation were 0.007 µg L-1 and 4.2%, respectively. The method was successfully applied to the determination of palladium in roadside soil and several aqueous samples. Keywords Palladium - Dispersive liquid-liquid microextraction - Graphite furnace atomic absorption spectrometry - Applications
机译:提出了一种灵敏,简便,快速的方法,通过分散液-液微萃取分离富集石墨炉原子吸收光谱法测定钯。通过使用2-氨基-1-环己烯-1-二硫代羧酸作为合适的螯合剂,分别用四氯化碳和丙酮作为萃取和分散剂,在酸性水样中萃取和预富集痕量的Pd。优化实验参数以提高提取效率。优化提取条件和各种仪器参数后,获得了350的增强因子。在0.02–0.6 µg L -1 Pd范围内,分析曲线的吸光度与浓度呈线性关系。检出限和相对标准偏差分别为0.007 µg L -1 和4.2%。该方法已成功应用于路边土壤和几种水性样品中钯的测定。钯-分散液-液微萃取-石墨炉原子吸收光谱法-应用

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