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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Local effects of atomizing analyte droplets on the plasma parameters of the inductively coupled plasma
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Local effects of atomizing analyte droplets on the plasma parameters of the inductively coupled plasma

机译:雾化分析物液滴对感应耦合等离子体的等离子体参数的局部影响

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Monodisperse droplets from aqueous analyte solutions with selected diameters in the range 35-67 μm are introduced into an inductively coupled plasma with frequencies between 1 to 10 droplets per second. The effect of desolvation and atomization in the ICP is studied end-on by optical emission spectroscopy employing simultaneously up to three calibrated monochromators with fast photomultipliers. The onsets of desolvation and analyte atomization and the extremely fast diffusion of hydrogen in the ICP and its effect on the plasma are studied by simultaneous measurements of hydrogen, analyte and Ar lines. The local cooling by analyte atomization as well as the recovering of the plasma excitation temperature after completed atomization is measured quantitatively in dependence on time applying the Boltzmann plot method to simultaneously recorded line intensities of atomized analyte atoms which act as plasma probes. Furthermore, it is shown that relatively small differences in analyte mass cause significant temperature changes during atomization and, as consequence, strong variations of the emission intensity of analyte lines during atomization if measured by end-on observation.
机译:将来自选定直径在35-67μm范围内的分析物水溶液的单分散液滴引入到感应耦合等离子体中,其频率为每秒1至10个液滴。通过同时使用多达三个带有快速光电倍增管的已校准单色仪的光发射光谱学,最终研究了ICP中去溶剂化和雾化的影响。通过同时测量氢气,分析物和Ar线,研究了去溶剂化和分析物雾化的发生以及氢在ICP中的快速扩散及其对等离子体的影响。应用玻尔兹曼图法同时记录用作等离子体探针的雾化分析物原子的线强度,根据时间定量测量通过分析物雾化产生的局部冷却以及完成雾化后等离子体激发温度的恢复。此外,还表明,分析物质量的较小差异会导致雾化过程中温度发生显着变化,因此,如果通过末端观察进行测量,则会导致雾化过程中分析物线的发射强度发生强烈变化。

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