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Separation of trace antimony and arsenic prior to hydride generation atomic absorption spectrometric determination

机译:氢化物发生原子吸收光谱法测定前痕量锑和砷的分离

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摘要

A separation method utilizing a synthetic zeolite (mordenite) was developed in order to eliminate the gas phase interference of Sb(III) on As(III) during quartz furnace hydride generation atomic absorption spectrometric (HGAAS) determination. The efficiency of the proposed separation method in the reduction of suppression effects of transition metal ions on As(III) signal was also investigated. Among the volatile hydride-forming elements and their different oxidation states tested (Sb(III), Sb(V), Se(IV), Se(VI), Te(IV), and Te(VI)), only Sb(III) was found to have a signal depression effect even at low (μg l−1) concentrations under the experimental conditions employed. It has been shown that mordenite adsorbs Sb(III) quantitatively, even at a concentration of 1000 μg l−1, at pHs greater than two, and also, it reduces the initial concentrations of the transition metal ions to lower levels which can be tolerated in many studies. The adsorption of Sb(III) on mordenite follows the Freundlich isotherm and is endothermic in nature.
机译:为了消除在石英炉氢化物发生原子吸收光谱法(HGAAS)测定过程中Sb(III)对As(III)的气相干扰,开发了一种使用合成沸石(丝光沸石)的分离方法。还研究了所提出的分离方法在降低过渡金属离子对As(III)信号抑制作用方面的效率。在测试的挥发性氢化物形成元素及其不同的氧化态中(Sb(III),Sb(V),Se(IV),Se(VI),Te(IV)和Te(VI)),只有Sb(III )被发现甚至在所采用的实验条件下在低浓度(μg-1)下也具有信号抑制作用。结果表明,即使在pH值大于2的条件下,丝光沸石也能定量吸附Sb(III),即使浓度为1000μgl-1,也能将过渡金属离子的初始浓度降低至可以容忍的较低水平在许多研究中。 Sb(III)在丝光沸石上的吸附遵循Freundlich等温线,并且本质上是吸热的。

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