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Determination of the different oxidation states of As and Sb by a new electrochemical hydride generator coupled with atomic fluorescence spectrometry

机译:新型电化学氢化物发生器-原子荧光光谱法测定砷和锑的不同氧化态

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摘要

A novel disk electrochemical hydride generator has been developed for the determination of As and Sb. Compared with the traditional thin-layer cell, the disk cell combined the advantages of quick assembly and easy operation. This electrochemical system for hydride generation in neutral buffer solutions has been studied for analytical usefulness in coupling with atomic fluorescence spectrometry. It was found that the use of neutral phosphate buffer solution could markedly increase the fluorescence intensity of As(III) and Sb(III) and reduce the impact of cathode erosion on the stability of signal intensity. At the same time, the fluorescence intensity of As(V) and Sb(V) were almost suppressed totally. The detection limits (3a) of 0.031 μgL~(-1) As(III) and 0.026 μgL~(-1) Sb(III) in aqueous solutions were obtained, respectively. The precisions (n = 11) for 20 μgL~(-1) As(III) and Sb(III) were 2.0% and 2.7%, respectively. The method was successfully applied for determination of different oxidation states of As and Sb in environmental samples.
机译:已经开发了一种新型的圆盘电化学氢化物发生器,用于测定砷和锑。与传统的薄层存储单元相比,该磁盘存储单元具有快速组装和易于操作的优点。已经研究了这种在中性缓冲溶液中生成氢化物的电化学系统在与原子荧光光谱法耦合方面的分析实用性。发现使用中性磷酸盐缓冲溶液可以显着提高As(III)和Sb(III)的荧光强度,并减少阴极腐蚀对信号强度稳定性的影响。同时,几乎完全抑制了As(V)和Sb(V)的荧光强度。分别获得了水溶液中0.031μgL〜(-1)As(III)和0.026μgL〜(-1)Sb(III)的检出限(3a)。 20μgL〜(-1)As(III)和Sb(III)的精密度(n = 11)分别为2.0%和2.7%。该方法已成功应用于环境样品中砷和锑不同氧化态的测定。

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