首页> 外文期刊>Analytica chimica acta >SIMULTANEOUS DETERMINATION OF ARSENIC, ANTIMONY AND SELENIUM BY GAS-PHASE DIODE ARRAY MOLECULAR ABSORPTION SPECTROMETRY, AFTER PRECONCENTRATION IN A CRYOGENIC TRAP
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SIMULTANEOUS DETERMINATION OF ARSENIC, ANTIMONY AND SELENIUM BY GAS-PHASE DIODE ARRAY MOLECULAR ABSORPTION SPECTROMETRY, AFTER PRECONCENTRATION IN A CRYOGENIC TRAP

机译:冷冻捕集器中富集-气相色谱分子吸收光谱法同时测定砷,锑和硒。

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This paper describes a method for the simultaneous determination of As(III), Sb(IV) and Se(IV) by combining hydride generation and gas phase molecular absorption spectrometry. A system for continuous hydride generation has been designed and developed, based an the use of a double process of gas-liquid separation, and optimal compromise operation conditions for the three compounds have been found. After generation, the hydrides are collected in a liquid nitrogen cryogenic trap, and then evaporated and driven to the flow cell of a diode array spectrophotometer, in which the transient signals over the 190-250 nm wavelength interval are measured. Under the recommended conditions (sample flow: 35 ml min(-1), 0.5 M HCl; reductor flow: 4 ml min(-1) of 4% NaBH4 solution) linear response ranges above 50 mu g l(-1) for As(III), 30 mu g l-1 for Sb(III) and 200 mu g l(-1) for Se(IV) are obtained with detection limits of 22 mu g l(-1), 15 mu g l(-1) and 65 mu g l(-1), respectively. Multiwavelength linear regression equations were used for the simultaneous determination of the three elements in different synthetic samples, with good precision and accuracy and to study simultaneously the interference from different chemical species for the three compounds. Results were similar to those obtained by other techniques using hydride generation. [References: 25]
机译:本文介绍了一种结合氢化物发生和气相分子吸收光谱法同时测定As(III),Sb(IV)和Se(IV)的方法。基于气液分离的双重过程,设计并开发了一种连续氢化物生成系统,并且发现了这三种化合物的最佳折衷操作条件。生成后,将氢化物收集在液氮低温阱中,然后蒸发并驱动至二极管阵列分光光度计的流通池,在其中测量190-250 nm波长范围内的瞬态信号。在推荐条件下(样品流量:35 ml min(-1),0.5 M HCl;还原剂流量:4 ml min(-1)的4%NaBH4溶液)对于As( III),Sb(III)30μg l-1和Se(IV)200μgl(-1)的检出限分别为22μgl(-1),15μgl(-1)和65 mu gl(-1)分别。多波长线性回归方程用于同时测定不同合成样品中的三种元素,具有良好的精密度和准确性,并同时研究了不同化学物种对这三种化合物的干扰。结果类似于使用氢化物​​生成的其他技术获得的结果。 [参考:25]

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