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Investigation of phosphorus atomization using high-resolution continuum source electrothermal atomic absorption spectrometry

机译:使用高分辨率连续源电热原子吸收光谱法研究磷雾化

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摘要

The atomization of phosphorus in electrothermal atomic absorption spectrometry has been investigated using a high-resolution continuum source atomic absorption spectrometer and atomization from a graphite platform as well as from a tantalum boat inserted in a graphite tube. A two-step atomization mechanism is proposed for phosphorus, where the first step is a thermal dissociation, resulting in a fast atomization signal early in the atomization stage, and the second step is a slow release of phosphorus atoms from the graphite tube surface following the adsorption of molecular phosphorus at active sites of the graphite surface. Depending on experimental conditions only one of the mechanisms or both might be active. In the absence of a modifier and with atomization from a graphite or tantalum platform the second mechanism appears to be dominant, whereas in the presence of sodium fluoride as a modifier both mechanisms are observed. Intercalation of phosphorus into the graphite platform in the condensed phase has also been observed; this phosphorus, however, appears to be permanently trapped in the structure of the graphite and does not contribute to the absorption signal.
机译:已经使用高分辨率连续谱源原子吸收光谱仪研究了电热原子吸收光谱法中磷的雾化,并从石墨平台以及插入石墨管的钽舟中进行了雾化。提出了一种针对磷的两步雾化机制,其中第一步是热解离,从而在雾化阶段的早期产生快速的雾化信号,而第二步是磷原子在石墨管表面缓慢释放。在石墨表面的活性部位吸附分子磷。根据实验条件,只有一种或两种机制可能有效。在没有改性剂和石墨或钽平台雾化的情况下,第二种机理似乎占主导,而在氟化钠作为改性剂的存在下,两种机理都可以观察到。还观察到磷在冷凝相中嵌入石墨平台;但是,这种磷似乎永久性地捕获在石墨的结构中,并且对吸收信号没有贡献。

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