首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Influence of pressure and atomizer length on absorption curves in ETA-AAS measurements for standardless analysis
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Influence of pressure and atomizer length on absorption curves in ETA-AAS measurements for standardless analysis

机译:压力和雾化器长度对ETA-AAS测量中用于无标分析的吸收曲线的影响

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摘要

A new method for standardless analysis in electrothermal atomic absorption spectroscopy has been recently proposed whose implementation requires the use of special atomizers and power supplies not available in the market. Up to now, with the proposed method, only volatile elements have been determined with good results because it can be applied only if all atoms injected are simultaneously present in the atomizer for a time interval sufficiently long that a good value of absorbance can be measured. This can be obtained if the heating rate is sufficiently high and the removal of atoms from the atomizer slow. From a theoretical model based only on diffusion, it can be deduced that the possibility of standardless analysis in the mode described above can be enhanced if the length of the atomizer is increased and the diffusion coefficient of the analyte is decreased. From the results obtained by comparing data from atomizers of 36 and 50 mm in length and at different pressures, it can be inferred that the removal mechanism is basically controlled by diffusion but that other mechanisms, like convection, are also present. [References: 16]
机译:最近提出了一种用于电热原子吸收光谱法的无标分析的新方法,其实施需要使用市场上没有的特殊雾化器和电源。迄今为止,利用所提出的方法,仅挥发性元素被确定具有良好的结果,因为仅当所有注入的原子同时存在于雾化器中的时间间隔足够长以致可以测量良好的吸光度值时,才可以应用该挥发性元素。如果加热速率足够高并且从雾化器中去除原子的速度很慢,则可以实现这一点。从仅基于扩散的理论模型,可以推断出,如果增加雾化器的长度并且减小分析物的扩散系数,则可以提高上述模式下的无标准分析的可能性。通过比较长度为36和50 mm的雾化器在不同压力下的数据所获得的结果,可以推断出去除机理基本上是由扩散控制的,但还存在对流等其他机理。 [参考:16]

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