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首页> 外文期刊>Analytica chimica acta >Comparison of inductively coupled plasma spectrometry techniques For the direct determination of rare earth elements in digests from geological samples
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Comparison of inductively coupled plasma spectrometry techniques For the direct determination of rare earth elements in digests from geological samples

机译:电感耦合等离子体光谱技术的比较,用于直接测定地质样品中的消化物中的稀土元素

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Inductively coupled plasma quadrupole mass spectrometry (ICP-QMS), 1CP sector field mass spectrometry (ICP-SFMS) and ICP atomic emission spectrometry (ICP-AES) were compared with regard to the direct determination of rare earth elements (REEs) in geological samples. In order to reduce the polyatomic interferences occurring in ICP-QMS, the use of a cooled spray chamber was optimized, obtaining a significant decrease of the oxide ions formation (about 50%) and a consequent mitigation of the interfering effects. Precision and accuracy of the method were demonstrated by the analyses of sediment and soil certified reference materials. ICP-SFMS working in high-resolution mode also provided accurate results, with similar precision to ICP-QMS (RSD%: 3-8%) and comparable or better limits of detection. Quantification limits of the procedures were 18-52ng g~(-1) and 10-780 ng g~(-1) for sector field- and quadrupole-ICP-MS, respectively. Accurate and precise determination of most REEs was also achieved by ICP-AES using both pneumatic and ultrasonic nebulization, after a careful selection of the emission lines and compensation for non-spectral interferences by internal standardization. The three techniques were finally applied to glaciomarine sediment samples collected in Antarctica, providing comparable analytical data on REE abundance and depth pattern.
机译:比较了电感耦合等离子体四极杆质谱(ICP-QMS),1CP扇形场质谱(ICP-SFMS)和ICP原子发射光谱(ICP-AES)在直接测定地质样品中稀土元素(REE)方面的优势。为了减少ICP-QMS中发生的多原子干扰,对冷却喷雾室的使用进行了优化,从而显着减少了氧化物离子的形成(约50%),从而减轻了干扰作用。通过对沉积物和土壤认证的参考物质的分析证明了该方法的准确性和准确性。以高分辨率模式工作的ICP-SFMS还提供了准确的结果,其精度与ICP-QMS相似(RSD%:3-8%),并且检测限相当或更好。对于扇形场和四极杆ICP-MS,该方法的定量限分别为18-52ng g〜(-1)和10-780 ng g〜(-1)。在仔细选择了发射线并通过内部标准化补偿了非光谱干扰之后,ICP-AES还使用气动和超声雾化技术对大多数稀土元素进行了准确而准确的测定。最后,将这三种技术应用于在南极收集的冰川海洋沉积物样品,提供了有关稀土元素丰度和深度模式的可比分析数据。

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