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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Interference standard and oxide ion detection as strategies to determine phosphorus and sulfur in fuel samples by inductively coupled plasma quadrupole mass spectrometry
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Interference standard and oxide ion detection as strategies to determine phosphorus and sulfur in fuel samples by inductively coupled plasma quadrupole mass spectrometry

机译:干扰标准和氧化物离子检测作为通过电感耦合等离子体四极杆质谱法测定燃料样品中磷和硫的策略

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摘要

Due to their high ionization energies and severe spectral interferences, P and S are challenging elements in inductively coupled plasma quadrupole mass spectrometry (ICP-QMS). An alternative to improve sensitivity is to monitor P and S oxide and hydroxide species which are easily formed under cool plasma conditions. To improve accuracy, an interesting approach is the interference standard (IFS) method. Similar to internal standardization, the IFS method is based on the idea that interfering polyatomic ions and some Ar species (IFS) present similar behaviors in the plasma. Thus, by applying a conventional external calibration method and using the analytical-IFS signal ratio, one can minimize the contribution of the interfering ion to the analytical signal and improve accuracy. In this work, plasma operating conditions are adjusted to maximize the formation of ~(31)P~(16)O~+, ~(32)S~(16)O~+ and ~(32)S~(16)OH~+. Under the optimal conditions and using the ~(36)ArH~+ as an IFS probe, limits of detection as low as 5 and 600 μg 1~(-1) are obtained for P and S determined at mlz 47 and 49, respectively. The efficiency of the IFS method in reducing interferences, e.g. ~(30)Si~(16)OH~+ on ~(31)P~(16)O~+, and ~(31)P~(16)OH~+ on ~(32)S~(16)O~+, is also evaluated. Accuracy is significantly improved in lubricating oil, diesel and biodiesel analyses. No significant differences are observed between the reference values and the ones obtained with the ~(36)ArH~+ IFS probe at a 95% confidence level. The ~(36)Ar~+ and ~(38)Ar~+ IFS probes are also efficient in most determinations.
机译:由于它们的高电离能和严重的光谱干扰,P和S在电感耦合等离子体四极杆质谱(ICP-QMS)中是具有挑战性的元素。提高灵敏度的另一种方法是监视在冷等离子体条件下容易形成的P和S氧化物和氢氧化物。为了提高准确性,一种有趣的方法是干扰标准(IFS)方法。与内部标准化类似,IFS方法基于这样的思想,即干扰多原子离子和某些Ar物种(IFS)在等离子体中表现出相似的行为。因此,通过应用常规的外部校准方法并使用分析型IFS信号比,可以使干扰离子对分析信号的贡献最小化并提高准确性。在这项工作中,调整等离子体操作条件以最大程度地形成〜(31)P〜(16)O〜+,〜(32)S〜(16)O〜+和〜(32)S〜(16)OH 〜+。在最佳条件下,使用〜(36)ArH〜+作为IFS探针,分别在mlz 47和49处测定的P和S的检出限分别低至5和600μg1〜(-1)。 IFS方法在减少干扰方面的效率,例如〜(31)P〜(16)O〜+上的〜(30)Si〜(16)OH〜+和〜(32)S〜(16)O上的〜(31)P〜(16)OH〜+ 〜+,也会被评估。润滑油,柴油和生物柴油分析的准确性显着提高。在95%置信度下,参考值与〜(36)ArH〜+ IFS探针获得的参考值之间没有观察到显着差异。 〜(36)Ar〜+和〜(38)Ar〜+ IFS探针在大多数测定中也很有效。

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  • 来源
    《Journal of Analytical Atomic Spectrometry 》 |2012年第8期| p.1274-1279| 共6页
  • 作者单位

    Group of Applied Instrumental Analysis, Department of Chemistry,Federal University of Sao Carlos, Sao Carlos, SPCaixa Postal 676,13560-970, Brazil;

    Group of Applied Instrumental Analysis, Department of Chemistry,Federal University of Sao Carlos, Sao Carlos, SPCaixa Postal 676,13560-970, Brazil;

    Group of Applied Instrumental Analysis, Department of Chemistry,Federal University of Sao Carlos, Sao Carlos, SPCaixa Postal 676,13560-970, Brazil;

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