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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >An automatic cryotrapping and cryofocussing system for parallel ICP-MS and EI-MS detection of volatile arsenic compounds in gaseous samples
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An automatic cryotrapping and cryofocussing system for parallel ICP-MS and EI-MS detection of volatile arsenic compounds in gaseous samples

机译:全自动ICP-MS和EI-MS平行检测气相色谱法测定气态样品中挥发性砷化合物的深冷和聚焦系统

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摘要

A new GC-ICP-MS/EI-MS coupling is presented, which enables the quantification and identification of volatile metal and metalloid compounds in gaseous samples simultaneously. The proposed assembly is fully controlled using Windows compatible software to ensure precise and reproducible analytical results. The cryotrapping (CT) system is critical for sensitive and precise detection of volatile arsenic compounds. Thus, the CT trap was newly designed and factors affecting CT efficiency were comprehensively optimized, especially the trapping materials, trapping flow rates, heating rates and trapping temperatures. Silanized glass beads (2 mm) as the packing material in the CT trap greatly increased the trapping efficiency. A relatively high trapping flow rate (200 mL min~(-1)) gave the best recoveries. An adequate heating rate (e.g. 11.3 watt × 360 s) was required to desorb arsenic and to prevent thermal decomposition. Liquid argon was demonstrated to be the most appropriate coolant, since this prevented freezing of O_2 and blockage of the trap. In comparison, cryofocusing (CF) was less dependent on aforementioned parameters. Thick film chromatography allowed baseline separation of different arsine compounds at room temperature and eliminated the interference from xenon. Analysis of volatile arsenic with more complicated structures such as triethylarsine using a CT-CF technique is suitable for qualitative but not for quantitative purposes due to lower stability of these compounds. The resulting detection limits and RSD of arsine and methyl arsines with ICP-MS detection are 0.12-0.41 pg arsenic, and 0.76-1.29%, which is remarkably lower than those in previous studies.
机译:提出了一种新型的GC-ICP-MS / EI-MS偶合器,它可以同时定量和鉴定气态样品中的挥发性金属和准金属化合物。使用Windows兼容软件对建议的组件进行完全控制,以确保精确和可重复的分析结果。冷冻捕获(CT)系统对于灵敏,精确地检测挥发性砷化合物至关重要。因此,重新设计了CT捕集阱,并全面优化了影响CT效率的因素,尤其是捕集材料,捕集流速,加热速率和捕集温度。硅烷化玻璃珠(2毫米)作为CT捕集阱中的填充材料,大大提高了捕集效率。较高的捕集流速(200 mL min〜(-1))可获得最佳的回收率。需要足够的加热速率(例如11.3瓦×360 s)以解吸砷并防止热分解。液态氩被证明是最合适的冷却剂,因为这可以防止O_2冻结和捕集阱阻塞。相比之下,低温聚焦(CF)较少依赖上述参数。厚膜色谱法可在室温下基线分离不同的rs化合物,并消除了氙气的干扰。使用CT-CF技术分析具有更复杂结构的挥发性砷(例如三乙基ar)适用于定性分析,但由于这些化合物的稳定性较低,因此不适用于定量分析。 ICP-MS检测得到的rs和甲基a的检出限和相对标准偏差分别为0.12-0.41 pg和0.76-1.29%,显着低于以前的研究。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2013年第2期|293-300|共8页
  • 作者

    Gunter llgen; Jen-How Huang;

  • 作者单位

    Chemische Analytik, BayCEER, University of Bayreuth, Dr Hans-Frisch Strasse 1-3, D-95448, Bayreuth, Germany;

    Institute of Environmental Geosciences, University of Basel, CH-4056 Basel, Switzerland;

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