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采用介质阻挡放电原子化器进行分析物预富集/原子化的氢化物发生原子吸收光谱法痕量测定锑。

Trace determination of antimony by hydride generation atomic absorption spectrometry with analyte preconcentration/atomization in a dielectric barrier discharge atomizer.

作者信息

Zurynková Pavla, Dědina Jiří, Kratzer Jan

机构信息

The Czech Academy of Sciences, Institute of Analytical Chemistry, Veveří 97, CZ-602 00, Brno, Czech Republic; Charles University, Faculty of Science, Department of Analytical Chemistry, Hlavova 8, Prague 2, CZ 128 43, Czech Republic.

The Czech Academy of Sciences, Institute of Analytical Chemistry, Veveří 97, CZ-602 00, Brno, Czech Republic.

出版信息

Anal Chim Acta. 2018 Jun 20;1010:11-19. doi: 10.1016/j.aca.2018.01.033. Epub 2018 Jan 31.

Abstract

Atomization conditions for antimony hydride in the plasma atomizer based on a dielectric barrier discharge (DBD) with atomic absorption spectrometric detection were optimized. Argon was found as the best discharge gas under a flow rate of 50 mL min while the DBD power was optimum at 30 W. Analytical figures of merit including interference study of As, Se and Bi have been subsequently investigated and the results compared to those found in an externally heated quartz tube atomizer (QTA). The limit of detection (LOD) reached in DBD (0.15 ng mL Sb) is comparable to that observed in QTA (0.14 ng mL Sb). Finally, possibility of Sb preconcentration by stibane in situ trapping in a DBD atomizer was studied. For trapping time of 300 s, the preconcentration efficiency and LOD, respectively, were 103 ± 2% and 0.02 ng mL.

摘要

基于介质阻挡放电(DBD)的等离子体雾化器中氢化锑的雾化条件,采用原子吸收光谱检测进行了优化。发现在流量为50 mL/min时,氩气是最佳放电气体,而DBD功率在30 W时最佳。随后研究了包括砷、硒和铋的干扰研究在内的分析性能指标,并将结果与在外部加热石英管雾化器(QTA)中得到的结果进行了比较。DBD中达到的检测限(LOD)(0.15 ng/mL Sb)与QTA中观察到的检测限(0.14 ng/mL Sb)相当。最后,研究了在DBD雾化器中原位捕集锑烷对锑进行预富集的可能性。对于300 s的捕集时间,预富集效率和LOD分别为103±2%和0.02 ng/mL。

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