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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Effect of sodium during the aerosol transport and filtering in inductively coupled plasma atomic emission spectrometry
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Effect of sodium during the aerosol transport and filtering in inductively coupled plasma atomic emission spectrometry

机译:电感耦合等离子体原子发射光谱法中气溶胶运输和过滤过程中钠的影响

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摘要

Robust conditions, i.e. high R.F. power and low carrier gas flow rate were used to minimize the role of the plasma and to emphasize the contribution of the sample introduction system in the effect of Na in ICP-AES. Two combinations of pneumatic nebulizers and spray chambers were selected to obtain different Na effects, A conespray nebulizer was used with a cyclone spray chamber, and a cross-flow nebulizer was coupled to a double-pass spray chamber. A decrease in the ICP-AES analyte signal was observed with Na solutions under so-called robust conditions, irrespective of the sample introduction system employed. The cross-flow nebulizer associated with the double-pass spray chamber was more sensitive to Na presence than the other combination. These observations can be partially explained by a decrease in the solvent transport rate observed in presence of Na. It has been found that, in every case, the presence of Na did not modify the characteristics of the primary aerosol, while the tertiary aerosol is significantly modified. Finer droplets were obtained at the exit of the spray chamber when Na was present. Also, recirculation of the aerosol led to a significant element enrichment of the largest droplets for the Na solutions. It can be concluded that the effect of Na occured during the aerosol transport and filtering through the spray chamber. (C) 1998 Elsevier Science B.V. [References: 46]
机译:坚固的条件,即高R.F.高功率和低载气流速被用来最小化等离子体的作用,并强调样品引入系统对ICP-AES中Na的影响。选择气动雾化器和雾化室的两种组合以获得不同的Na效果,将锥形喷雾雾化器与旋风雾化器一起使用,并将错流雾化器连接到双程雾化器。不论采用何种样品引入系统,在所谓的坚固条件下,使用Na溶液均可观察到ICP-AES分析物信号的降低。与双通道雾化室关联的错流雾化器比其他组合对Na的存在更为敏感。这些观察结果可以部分地通过在Na存在下观察到的溶剂传输速率的降低来解释。已经发现,在每种情况下,Na的存在都不会改变初级气溶胶的特性,而第三级气溶胶则被显着地改变。当存在Na时,在喷雾室的出口处获得更细的液滴。同样,气雾剂的再循环导致Na溶液中最大液滴的大量元素富集。可以得出结论,Na的影响发生在通过喷雾室的气溶胶传输和过滤过程中。 (C)1998 Elsevier Science B.V. [参考:46]

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