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FUNDAMENTAL INVESTIGATIONS OF A 148 MEGAHERTZ INDUCTIVELY COUPLED PLASMA DISCHARGE.

机译:148 Megahertz感应耦合等离子体放电的基础研究。

摘要

Fundamental investigations have been carried out on an Inductively Coupled Plasma (ICP) operated at 148 MHz, a frequency which is nearly three times higher than any previously reported for analytical ICPs used in spectrochemical analysis. High frequency operation is expected to provide easier sample introduction into the discharge, with a consequence of less energetic conditions in the central channel. Several plasma diagnostic techniques were employed in order to determine the conditions experienced by the analyte species in this source for spectrochemical analysis. Three different torch systems were investigated at 148 MHz and compared to the "standard" 27 MHz configuration. The highest excitation temperatures and electron densities were obtained in the 27 MHz configuration, and the lowest values in the largest torch at 148 MHz. Intermediate values were obtained in the intermediate-size torches at 148 MHz. These observations correlate reasonably well with the ratio of the plasma radius to the skin depth (r/s). The skin depth defines the region in which the majority of the electrical energy is deposited into the discharge, and is smaller at 148 MHz than at 27 MHz. The measurement of electron densities also allows the estimation of how closely a particular discharge approaches Local Thermal Equilibrium (LTE). As may be expected, LTE is most closely approached in the 27 MHz arrangement. The less energetic conditions characterized by lower temperatures and electron densities result in less intense analyte emission from the high frequency ICPs. Signal-to-Background ratios and detection limits reflect this trend, but the linearity of the calibration curves and freedom from vaporization interferences are not degraded. Finally, the introduction of organic solvents is much easier, and better detection limits in an organic matrix are obtained at 148 MHz. These investigations have shown the utility of classifying the effects of changing torch sizes and operating frequencies by means of the r/s ratio. This provides the analyst with a means of selecting the general range of conditions to be employed in a particular analysis.
机译:已经对工作在148 MHz的电感耦合等离子体(ICP)进行了基础研究,该频率比以前报道的用于光谱化学分析的ICP的频率高出近三倍。由于中央通道中的能量条件较少,高频操作有望使样品更容易引入放电。为了确定该来源中用于光谱化学分析的分析物种类所经历的条件,采用了几种等离子体诊断技术。在148 MHz下研究了三种不同的割炬系统,并将其与“标准” 27 MHz配置进行了比较。在27 MHz的配置中获得了最高的激发温度和电子密度,在148 MHz的最大割炬中获得了最低的值。在148 MHz的中等大小的割炬中获得了中间值。这些观察结果与血浆半径与皮肤深度的比值(r / s)合理地相关。趋肤深度定义了大部分电能沉积到放电中的区域,并且在148 MHz时比在27 MHz时小。电子密度的测量还可以估算特定放电接近局部热平衡(LTE)的程度。可以预料,在27 MHz安排中,LTE最接近。以较低的温度和电子密度为特征的能量较低的条件导致高频ICP的分析物发射强度降低。信噪比和检测极限反映了这一趋势,但是校准曲线的线性和不受汽化干扰的自由度并未降低。最终,有机溶剂的引入要容易得多,并且在148 MHz下获得了更好的有机基质检测限。这些研究表明,可以通过r / s比对改变割炬尺寸和工作频率的影响进行分类。这为分析人员提供了选择要在特定分析中使用的一般条件范围的方法。

著录项

  • 作者

    WEBB BRYAN DOUGLAS.;

  • 作者单位
  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 en
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