首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Development of an electrothermal vaporization ICP-MS method and assessment of its applicability to studies of the homogeneity of reference materials
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Development of an electrothermal vaporization ICP-MS method and assessment of its applicability to studies of the homogeneity of reference materials

机译:电热汽化ICP-MS方法的发展及其在参考材料均质性研究中的适用性评估

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摘要

A method has been developed for measurement of the homogeneity of analyte distribution in powdered materials by use of electrothermal vaporization with inductively coupled plasma mass spectrometric (ETV-ICP-MS) detection. The method enabled the simultaneous determination of As,Cd,Cu,Fe,Mn,Pb,and Zn in milligram amounts of samples of biological origin. The optimized conditions comprised a high plasma power of 1500 W,reduced aerosol transport flow, and heating ramps below 300 deg C s~(-1). A temperature ramp to 550 deg C ensured effective pyrolysis of approximately 70% of the organic compounds without losses of analyte. An additional hold stage at 700 deg C led to separation of most of the analyte signals from the evaporation of carbonaceous matrix compounds.The effect of time resolution of signal acquisition on the precision of the ETV measurements was investigated. An increase in the number of masses monitored up to 20 is possible with not more than 1% additional relative standard deviation of results caused by limited temporal resolution of the transient signals. Recording of signals from the nebulization of aqueous standards in each sample run enabled correction for drift of the sensitivity of the ETV-ICP-MS instrument. The applicability of the developed method to homogeneity studies was assessed by use of four certified reference materials. According to the best repeatability observed in these sample runs,the maximum contribution of the method to the standard deviation is approximately 5% to 6% for all the elements investigated.
机译:已经开发出一种通过使用电热汽化和电感耦合等离子体质谱(ETV-ICP-MS)检测来测量粉末材料中分析物分布均匀性的方法。该方法可以同时测定毫克量的生物来源样品中的As,Cd,Cu,Fe,Mn,Pb和Zn。优化的条件包括:1500 W的高等离子功率,减少的气溶胶传输流量以及低于300℃s〜(-1)的加热斜率。升温至550摄氏度可确保约70%的有机化合物有效热解,而不会损失分析物。在700摄氏度的附加保持阶段导致大部分分析物信号与碳质基质化合物的蒸发分离。研究了信号采集的时间分辨率对ETV测量精度的影响。由于瞬态信号的有限时间分辨率而导致的结果的相对标准偏差不超过1%的情况下,所监视质量的数量最多可以增加到20个。记录每个样品中水样雾化产生的信号,可以校正ETV-ICP-MS仪器灵敏度的漂移。通过使用四种认证的参考材料评估了开发的方法对同质性研究的适用性。根据在这些样品运行中观察到的最佳可重复性,对于所有调查的元素,该方法对标准偏差的最大贡献约为5%至6%。

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