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On-line HPLC-UVano-TiO2-ICPMS system for the determination of inorganic selenium species

机译:在线HPLC-UV / nano-TiO2-ICPMS系统测定无机硒种类

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We have developed an UVano-TiO2 vapor generation (VG) device that when coupled between a chromatographic column and an ICP mass spectrometer provides a simple and sensitive hyphenated method for the determination of Se(IV) and Se(VI) without the need to use conventional chemical VG techniques. Because our proposed VG device allows both Se(IV) and Se(VI) species in the column effluent to be converted on-line into volatile Se products, which are then measured directly by the ICPMS, the safety risks and the probability of contamination arising from the use of additional chemicals are both low. To achieve the maximum signal intensity, we optimized a number of the operating parameters of the UVano-TiO2 VG device, including the acidity, the amounts of TiO2 and formic acid, and the length of the reaction coil, with respect to their effects on the reduction efficiency of the analyte species. This hyphenated method achieves excellent detection limits-0.06 and 0.03 ng mL(-1) for Se(IV) and Se(VI), respectively-because of the high efficiencies of the conversions of Se(IV) and Se(VI) to their respective volatile products and the lower blank level achieved, relative to those of other traditional systems. In addition, because the conversion efficiency of the analyte selenium species reached its maximum level within 36 s of irradiation, the working time (similar to 12 min) was limited primarily by time required for the chromatographic separation. A series of validation experiments-analysis of the 1643e Standard Reference Material and natural water samples-indicated that our proposed methods can be applied satisfactorily to the determination of inorganic selenium species in water samples.
机译:我们开发了一种UV / nano-TiO2蒸气发生(VG)装置,该装置在色谱柱和ICP质谱仪之间耦合时,提供了一种简便,灵敏的联用方法来测定Se(IV)和Se(VI)使用常规化学VG技术。因为我们提出的VG设备允许将塔流出物中的Se(IV)和Se(VI)物质在线转化为挥发性Se产物,然后由ICPMS直接对其进行测量,安全风险和产生污染的可能性所使用的附加化学药品均较低。为了获得最大信号强度,我们针对其效果优化了UV / nano-TiO2 VG装置的许多操作参数,包括酸度,TiO2和甲酸的量以及反应线圈的长度。分析物种类的还原效率。由于Se(IV)和Se(VI)的转化效率很高,该联用方法实现了出色的检出限-Se(IV)和Se(VI)分别为0.06和0.03 ng mL(-1)。与其他传统系统相比,各自的挥发性产品和较低的空白水平得以实现。此外,由于分析物硒物质的转化效率在照射后36 s内达到其最大水平,因此工作时间(约12分钟)主要受到色谱分离所需时间的限制。一系列验证实验(对1643e标准参考物质和天然水样品的分析)表明,我们提出的方法可以令人满意地应用于水样品中无机硒的测定。

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